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Operating manual
Universal control for
dump scale
MEAG-DUMP
MEAG-DUMP-66698-7-3-1506en-US
Table of contents
1
1.1
1.2
1.3
Important information
Availability of the instructions .......................................................................
Applicable documents ...................................................................................
Contact ..........................................................................................................
1.3.1
Feedback regarding this manual ..................................................
Personnel qualifications ................................................................................
1.4.1
Electrician ......................................................................................
5
5
5
5
5
5
5
2
2.1
2.2
2.3
2.4
2.5
2.6
Safety
Intended use .................................................................................................
Technical condition .......................................................................................
ATEX designation .........................................................................................
Personnel qualifications ................................................................................
Installation .....................................................................................................
Earthing .........................................................................................................
6
6
6
6
6
7
7
3
3.1
3.2
3.3
3.4
3.5
3.6
3.7
Technical data
Housing .........................................................................................................
Ambient conditions ........................................................................................
Electrical data ................................................................................................
Force transducer (DMS/LC) ..........................................................................
Interfaces .......................................................................................................
Miscellaneous ................................................................................................
Design versions .............................................................................................
8
8
8
8
9
9
9
9
4
4.1
4.2
4.3
4.4
Description
Nameplate .....................................................................................................
Operating principle ........................................................................................
Operating modes ...........................................................................................
Sequence ......................................................................................................
10
10
10
10
11
5
5.1
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
5.10
5.11
Connection
Circuit board EBD 1312 ................................................................................
Jumpers EBD 1312 .......................................................................................
Connection for power supply ........................................................................
RS-485 SIO_0 interface ................................................................................
RS-485 SIO_1 interface ................................................................................
Profibus DP or RS-485 SIO_2 .....................................................................
CAN interface ................................................................................................
24 V inputs ....................................................................................................
24 V outputs ..................................................................................................
0 … 5 V or 0/4 … 20 mA analog inputs .....................................................
0/4 … 20 mA analog outputs .......................................................................
12
12
13
13
14
14
15
15
16
17
19
20
6
6.1
Operation
Display operating elements ..........................................................................
21
21
1.4
2
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Table of contents
6.2
Parameters and parameter groups ..............................................................
22
7
7.1
7.2
7.3
7.4
7.5
7.6
7.7
Configuration
Set the application ........................................................................................
Device-specific settings .................................................................................
Using the input wizard ..................................................................................
Scale calibration ............................................................................................
Starting/stopping the scale ...........................................................................
Managing recipes ..........................................................................................
Restoring factory settings .............................................................................
24
24
24
25
25
26
26
27
8
8.1
8.2
Parameters
Notes for the parameter details ...................................................................
Application parameters .................................................................................
8.2.1
USER (operating parameters) parameter group ..........................
8.2.2
MAIN (main parameters) parameter group ..................................
8.2.3
REC (recipe parameters) parameter group .................................
8.2.4
TCON (configuration parameters) parameter group ....................
Basic parameters ..........................................................................................
8.3.1
SYS (system configuration) parameter group ..............................
8.3.2
ADC (Analog/Digital Converter) parameter group .......................
8.3.3
HOST (SIO_1/SIO_2 serial interface) parameter group ..............
8.3.4
ENET (Ethernet) parameter group ...............................................
8.3.5
TCP (Ethernet TCP/IP) parameter group .....................................
8.3.6
PBDP (Profibus DP) parameter group .........................................
8.3.7
SERV (service information) parameter group ..............................
8.3.8
PRN parameter group (printer) .....................................................
28
28
28
28
30
33
34
41
41
47
51
53
56
58
61
67
9
9.1
9.2
9.3
9.4
9.5
9.6
Alarms and messages
Application alarms .........................................................................................
Basic alarms ..................................................................................................
Display alarm *No Comm An* ......................................................................
Display status 7-segment display .................................................................
Status messages ...........................................................................................
Short messages ............................................................................................
71
71
73
77
77
79
81
10
10.1
10.2
10.3
10.4
10.5
Spare parts
Basic versions ...............................................................................................
Options ..........................................................................................................
Spare parts in stock ......................................................................................
Spare parts lists ............................................................................................
Spare parts for printer ML3320 ....................................................................
83
83
83
84
84
85
11
11.1
Appendix
Force transducer connections ......................................................................
11.1.1
Force transducer types and wire colors .......................................
11.1.2
4-wire force transducer .................................................................
11.1.3
6-wire force transducer .................................................................
DMS terminal box .........................................................................................
11.2.1
Dimensions and technical specifications for terminal box
VKK1-4 ..........................................................................................
11.2.2
Dimensions and technical specifications for terminal box
VKK2-8 ..........................................................................................
11.2.3
4-wire force transducer with connection box ...............................
86
86
86
86
86
87
8.3
11.2
87
87
88
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Table of contents
3
11.3
11.4
11.5
11.6
11.7
11.8
4
11.2.4
6-wire force transducer with connection box ...............................
LC module .....................................................................................................
11.3.1
Dimensions and technical specifications ......................................
11.3.2
4-wire force transducer with LC module ......................................
11.3.3
6-wire force transducer with LC module ......................................
CAN expansion modules ..............................................................................
11.4.1
Types .............................................................................................
11.4.2
Connection .....................................................................................
11.4.3
LED display ...................................................................................
Remote control ..............................................................................................
11.5.1
Installation version .........................................................................
11.5.2
Table or wall version .....................................................................
11.5.3
Connect to MEAG circuit board SIO_0 ........................................
Printer ML3320 ..............................................................................................
11.6.1
Connection and settings ...............................................................
11.6.2
Printer settings ..............................................................................
Calibration .....................................................................................................
11.7.1
Setting parameters ........................................................................
11.7.2
Calibration memory .......................................................................
11.7.3
Test stop ........................................................................................
EU declaration of conformity ........................................................................
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Table of contents
88
88
88
89
89
90
90
90
90
92
92
93
93
94
94
94
95
95
96
96
97
1
Important information
1.1
Availability of the instructions
These instructions constitute part of the product.
►
►
1.2
Retain the instructions and other applicable documents over the entire lifetime of the product and keep them at hand for reference.
Pass on the instructions and other applicable documents to the next owner
or operator of the product.
Applicable documents
The following documents supplement these operating instructions.
The documents are written for programmers. The descriptions are therefore only
available on request and only in German or English.
1.3
Designation
Identification number
Profibus DP protocol
MEAG-MDDx-66499
Description of the serial interface RS-485
MEAF-66435
Contact
►
►
►
1.3.1
If you have any questions, please contact the nearest branch of Bühler
Group. See www.buhlergroup.com.
Keep the instructions ready at hand.
Keep the machine number ready to hand.
Feedback regarding this manual
Requests and suggestions relevant to this manual
technical.documentation@buhlergroup.com.
1.4
Personnel qualifications
1.4.1
Electrician
Individuals who work on electrical equipment must be technically trained or have
attended and passed the manufacturer's training.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 1 Important information
5
2
Safety
2.1
Intended use
The device controls exclusively the machine indicated on the title page.
►
2.2
Use the device only for its intended purpose.
Technical condition
If the control unit is operated when defective, then safety, function and availability will be compromised.
►
►
►
►
►
►
2.3
Only operate the control unit when in perfect technical condition.
Comply with the maintenance schedule.
Only use original spare parts.
If the operational behavior of the control unit changes, check the machine for
general errors.
Rectify faults immediately.
Do not convert or modify the control unit without authorization.
ATEX designation
The ATEX designation specifies under which conditions the control system can
be used in or attached to an Ex zone.
►
2.4
Note the nameplate.
Personnel qualifications
Unqualified personnel cannot recognize risks and are thus exposed to greater
danger.
►
►
►
6
Only charge qualified personnel with tasks described in these operating instructions.
The plant operator must ensure that personnel comply with local laws and
regulations for safe and hazard-conscious work.
The plant operator must assign responsibilities and make these known. Provide keys and passwords only to assigned personnel.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 2 Safety
2.5
Installation
1
Ensure degree of protection IP65 and seal integrity for ATEX zone 22:
►
2.6
Secure housing with BÜLTE retaining rings supplied (1).
Earthing
Earthing housing:
►
Ensure that the housing is correctly earthed.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 2 Safety
7
3
Technical data
3.1
Housing
Designation
Height
300 mm
Width
380 mm
Depth
155 mm
Weight, approx.
10 kg
Degree of protection
3.2
IP65
Ambient conditions
Designation
Value Unit
Temperature range (during operation)
–10 … +50 °C
Temperature range (switched off)
–10 … +75 °C
Humidity, non-condensing
3.3
Value Unit
max. 95 %
Electrical data
Power supply
Designation
24 V DC variant according to DIN 19240
(+20 % / –15 %)
Network version (+10 % / –15 %)
Value Unit
24 V DC
100 … 240 V AC
43 … 67 Hz
Power consumption, max.
40 VA
24 V inputs (8)
Designation
Current consumption, max.
Value Unit
15 mA
24 V outputs (12)
Designation
Load, short-circuit-proof, max.
Total load, max.
8
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 3 Technical data
Value Unit
200 mA
1 A
Analog outputs 0/4 … 20 mA (2)
Designation
Value Unit
Load resistance, max.
500 Ω
Resolution
1000 Parts
Analog inputs 0/4 … 20 mA (2)
Designation
Value Unit
Input resistance
230 Ω
Resolution
900 Parts
Can be switched to
0 … 5 V
Input resistance at power input
3.4
10 kΩ
Force transducer (DMS/LC)
Designation
Value Unit
Bridge feed
5 V DC
Input measuring range
–19 … 19 mV
Internal resolution for input measuring range,
approx.
1 000 000 Parts
Calibratable resolution, max.
5000 d
Load cell resistance
43 … 1100 Ω
Load cell resistance (calibratable)
43 … 350 Ω
Max. 8 load cells with
350 Ω
Min. permissible input signal (calibratable)
3.5
Max. line length (at 0.5 mm2)
50 m
Max. line length (at 1.0 mm2)
100 m
Interfaces
■
■
■
■
3.6
Profibus-DP: Profibus-Slave, 9-pin D-Sub socket
USB: USB device interface for service
CAN: CAN interface for expansion modules
RS-485: Serial HOST interface
Miscellaneous
■
■
■
■
3.7
0.6 / calibration μV
value
Flash memory for program and data logger
Battery-powered RAM for parameters: Data protection for at least 20 years
Noise emission (emission): EN 50081-1 class B complied with
Noise immunity (immunity): EN 50082-2 industrial sector complied with
Design versions
See page 83, chapter “Basic versions”.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 3 Technical data
9
4
Description
4.1
Nameplate
Bühler AG, CH-9240 Uzwil
Type:
MEAG
No.:
Drawing No: EKP -80012-810
Built in:
Un: 24 V DC
In: 1 A
II 3D A22 tD 70 °C IP65 50 °C X
Class II Div 2 Group G
Fig. 4.1
Nameplate (example)
Do not remove or cover up the nameplate.
4.2
Operating principle
MEAG universal control units control, regulate and monitor processes for machines and apparatus such as scales, bagging scales, slide gates and flow balancers.
The control unit software can be configured for various applications. It is operated in the same way for all applications.
4.3
Operating modes
The following operating modes are available:
■
■
■
10
Continuous scale (intake weigher, check weigher)
The scale registers the weighed product. “Residual discharge” adds a surplus dump to the total. Nominal rate = 0 / nominal total weight = 0.
Preselected rate (mill feed B1 scale)
The scale determines the throughput. The system functions on the basis of
the preselected rate. Nominal rate > 0. See TCON.FMAX and USER.FLO/
FLOS parameters.
Loading scale
The scale doses a preselected nominal total weight of product (Σ1 S). It is
also possible to work with a nominal rate.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 4 Description
4.4
Sequence
Steps 2 to 8 are processed cyclically.
Step
no.
Name
Description
1
Initial situation
The control is waiting. The scale is not on. Nothing is released or the total weight has been reached.
2
Dosing
Fill the weighing container. The control unit waits until the
nominal dump weight (MAIN.DWTS) has been reached or
the process is aborted by “Residual discharge”.
3
Gross
weight
Saves the gross weight during standstill. Pressure compensation valve is open.
4
Emptying
release
Waits until there is 24 V at the “Emptying release” input (only if TCON.DIPB = ON or ON_P).
5
Emptying
Empties the weighing container until the weight is below the
zero tare (TCON.MEWT).
6
Close
scale
Closes the discharge gate. With monitoring if the “Scale
closed” probe is present.
7
Tare
Saves the tare during standstill. Calculates the actual dump
and the total weight. Pressure compensation valve is open.
8
Batch
end
When in “Preselected rate” mode. Waits until a new cycle
begins. When TCON.IMOD = FULL or FULLR, the control
waits until the probe in the scale upper surge hopper is covered.
0
Calibrating
The calibration switch is in the CAL position. Calibrating the
weight and modifying certain parameters is only possible in
this position.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 4 Description
11
5
Connection
5.1
Circuit board EBD 1312
X50
+24V
1
0V
2
3
PE
X1
X55
F1
26
25
Battery
USB
X80
X41
1
2
3
H1
X100
CAN
1
2
1
1
2
2
3
3
4
4
X51
S10_0
X30
X70
2
3
4
H200
H201
H202
H203
5
2
3
1
X81
1
2
3
2
6
5
4
3
4
5
SIO_1 X31
X7
2
3
4
H205
H206
H207
2
3
4
H209
H210
H211
3
H101
1
2
3
4
5
5
6
5
7
6
6
8
OUT 8 … 11
X4
H100
4
5
OUT 4 … 7
X3
Fig. 5.1
1
H208
2
IN 0 … 3
X5
H102
H103
6
7
X62
H104
V
A
V
A
H105
6
1
H204
S2
LC
1
7
X2
Profibus
1
X10
4
6
X40
CAL
RUN
A-OUT
1
1
1
2
OUT 0 … 3
3
B
A
4
B
A
5
X71
B
A
6
5
4
2
H106
H107
X314
3
1
2
3
4
8
5
IN 4 … 7
X6
A - IN
X8
6
5
4
6 WIRE 1
2
4 WIRE
3
EBD 1312
6 6 WIRE
5
4 WIRE
4
X313
EBD 1312
F1 Safety fuse, 2 A, delay-action.
S2 Calibration switch to prevent settings being changed without authorization.
Normal mode: Set calibration switch RUN.
Setting parameters: Set calibration switch to CAL.
12
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 5 Connection
5.2
Jumpers EBD 1312
X80
X71
B
A
X70
B
A
1
2
3
X81
1
2
3
B
A
6
5
4
X314
X62
V
A
6
5
4
V
A
1
2
3
6
5
4
6 WIRE 1
2
4 WIRE 3
6
5
4
EBD 1312
6 WIRE
4 WIRE
X313
Fig. 5.2
X71 left
B = Profibus at X40
A = RS-485 SIO_2 at X40
X71 right
B = Hardware test OFF
A = Hardware test ON (for plant)
X70 left
B = Profibus at X40
A = RS-485 SIO_2 at X40
X70 right
B = Profibus at X40
A = RS-485 SIO_2 at X40
X62
A = Current input at X8
V = Voltage input at X8
(left AI0, right AI1)
X81
1 ... 6 = Pullup
2 ... 5 = Term
3 ... 4 = Pulldown, SIO_1
X80
1 ... 6 = Pullup
2 ... 5 = Term
3 ... 4 = Pulldown, SIO_0 display
X313
1 ... 2 = 6 wire
2 ... 3 = 4 wire
5 ... 6 = 6 wire
4 ... 5 = 4 wire
6-wire force transducer
4-wire force transducer
Connection for power supply
The power supply unit is only available in the 115/230 V AC version.
according to nameplate
115/230 V AC version
24 V DC
Feeder unit G1
100...240 V AC
5.3
N
Neutral
L
Phase
Terminal (yellow/green) PE
24 V DC version
Circuit board
EBD 1312
X1
MEAG
1
1
+24 V
2
2
0 V
3
3
PE
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 5 Connection
13
5.4
RS-485 SIO_0 interface
The plug is reserved for (local or remote) control.
X30
Pole
Function
1
1
+24 V
2
2
0 V
3
3
RXD TXD +
4
4
RXD TXD –
X
Signal
Description
X30:1
+24 V
+24 V output voltage. Provides voltage for local
and/or remote control.
X30:2
0 V
0 V and shield connection
X30:3
RXD TXD +
RS-485 SIO_0 positive signal
X30:4
RXD TXD –
RS-485 SIO_0 negative signal
Connect bus terminating resistor to X80. All 3 jumpers are connected as standard.
■
■
5.5
If remote control is available as well as local control, remove the central
jumper X80:2–5.
If both controls are available, activate bus terminating resistor X54 = B.
RS-485 SIO_1 interface
Used primarily as a HOST interface.
X31
Pole
Function
1
1
+24 V
2
2
0 V
3
3
RXD TXD +
4
4
RXD TXD –
X
Signal
Description
X31:1
+24 V
+24 V output voltage. Do not use. Communication
takes place via X31:3 and X31:4.
X31:2
0 V
0 V and shield connection
X31:3
RXD TXD +
RS-485 SIO_1 positive signal
X31:4
RXD TXD –
RS-485 SIO_1 negative signal
Connect bus terminating resistor to X81. No jumpers are connected as standard.
■
■
14
If the control system is the last device on the bus, plug in middle jumper
X81:2–5.
If the HOST has no bias resistors, connect external jumpers X81:1‑6 and
X81:3‑4 to last device.
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 5 Connection
5.6
Profibus DP or RS-485 SIO_2
Switching with the X70 (left and right) and X71 (left) jumpers between Profibus
DP and RS-485 SIO_2:
B = Profibus DP
A = RS-485 SIO_2
■
■
Always leave right jumper X71 at position B.
9
8
7
6
5.7
5
4
3
2
1
X
Signal
Description
X40:3
RS485_B
Profibus-DP / RS-485 SIO_2, positive signal
X40:4
RTS
Profibus DP norm
X40:5
0 V_EX
Profibus DP norm
X40:6
+5 V_EX
Profibus DP norm
X40:8
RS485_A
Profibus-DP / RS-485 SIO_2, negative signal
CAN interface
X100
X
Pole
Function
1
1
+24 V
2
2
0 V
3
3
CAN H
4
4
CAN L
Signal
Description
X100:1 +24 V
+24 V output voltage. Supplies CAN module with
voltage.
X100:2 0 V
0 V and shield connection
X100:3 CAN H
CAN positive signal
X100:4 CAN L
CAN negative signal
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 5 Connection
15
5.8
24 V inputs
X5/X6
DI
X
Terminal
Function
X5
Function
X6
1
2
3
4
5
1
+24 V_IO
+24 V_IO
2
DI_0.0
DI_0.4
3
DI_0.1
DI_0.5
4
GND
GND
5
+24 V_IO
+24 V_IO
6
7
8
6
DI_0.2
DI_0.6
7
DI_0.3
DI_0.7
8
GND
GND
Signal
0.0 X5:2 Release
Description
24 V = Start dosing
Only activated when the input is programmed at the
SYS.EIN parameter.
0.1 X5:3 Clear total 24 V pulse lasting min. 200 ms. The erasable total
weight is set to 0.
0.2 X5:6 Residual
discharge
24 V pulse lasting min. 200 ms. Emptying of scale. The
signal is only accepted in steps 1 and 2.
0.3 X5:7 Emptying
release
24 V = Emptying is released. The probe in the lower
surge hopper is uncovered. When this input is not in
use, TCON.DIPB = OFF.
0.4 X6:2 Scale
probe
closed 1
24 V = Scale closed. Drop bottom closed. If there is no
probe, TCON.CTST = OFF.
0.5 X6:3 Scale
probe
closed 2
24 V = Scale closed. Drop bottom closed. If two probes
are present, TCON.CTST = ON1+2.
0.6 X6:6 Upper
surge
hopper
probe
24 V = Probe in upper surge hopper is uncovered. No
product. For probe function, see TCON.IMOD parameter.
0.7 X6:7 Continue
dosing
24 V = Continue to dose upon reaching the nominal total weight (pulse or continuous signal). This function is
reset internally when stop or residual discharge is selected.
Note on continue dosing: When working with a nominal
total weight, with a cut-off point and in “Dosing from the
full” operating mode, the upper surge hopper probe is
bypassed on reaching the cut-off point. When working
without a nominal total weight, but in “Dosing from the
full” operating mode, the upper surge hopper probe is
bypassed.
Digital I/O expansion module
The module must have address 1 and TCON.OPTDIO = ON.
16
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 5 Connection
X101/X102/X103
5.9
Terminal
Function
X102
Function
X103
1
2
3
4
5
1
+24 V_IO
+24 V_IO
6
7
8
2
Signal
DI_1.8
3
DI_1.5
DI_1.9
4
GND
GND
5
+24 V_IO
+24 V_IO
6
DI_1.6
DI_1.10
7
DI_1.7
DI_1.11
8
GND
GND
DI
X
Description
1.5
X102:3 Clear
alarm
24 V pulse lasting min. of 200 ms.
1.6
X102:6 Remote
If SYS.RIN = ON
■ 0 V = Local (set point configured on the display)
■ 24 V = Remote (set point configured remotely).
1.7
X102:7 Inlet slide 24 V = Inlet slide gate is closed
gate probe 0 V = Inlet slide gate is open
When this input is not in use, TCON.INPB = OFF
1.8
X103:2 Pressure
monitoring
24 V = Air pressure is OK. When this input is not in
use, TCON.PRES = OFF.
1.9
X103:3 Weighing
container
probe
24 V = Probe in weighing container is uncovered
0 V = Probe is covered with product
When this input is not in use, TCON.HLPB = OFF
1.10 X103:6 Start
(pulse signal)
24 V pulse lasting min. of 200 ms. Start metering
process from step 1. This only functions if
TCON.STRT = ON or STORE
1.11 X103:7 Stop
(pulse signal)
24 V pulse lasting min. 200 ms. Stops the dosing
process after the scale has been emptied and then
remains in step 1. This only functions if
TCON.STRT = ON or STORE
24 V outputs
X2/X3/X4
1
2
3
4
5
6
Terminal
Function
X2
Function
X3
Function
X4
1
D0_0.0
D0_0.4
D0_0.8
2
D0_0.1
D0_0.5
D0_0.9
3
D0_0.2
D0_0.6
D0_0.10
4
D0_0.3
D0_0.7
D0_0.11
5
GND
GND
GND
6
GND
GND
GND
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Chapter 5 Connection
17
DO
X
Signal
Description
0.0
X2:1 Alarm
0 V = alarm if SYS.AINV = ON.
0.1
X2:2 End value
reached
24 V = The nominal total weight has been reached
The output is reset using “Clear total”.
0.2
X2:3 Step 1
24 V = The control unit is in step 1.
0.3
X2:4 Weight pulse 24 V = Pulse according to TCON.WIMP.
0.4
X3:1 Emptying
24 V = Discharge valve is activated. Bottom gates
open. Activated in step 5 during the emptying process.
0.5
X3:2 Dosing
24 V = Inlet slide gate valve is activated. Inlet slide
gate is open. Activated in step 2 during the filling
process.
0.6
X3:3 Aspiration
24 V = Aspiration valve is activated (aspiration valve
is in aspirate position). Activated in step 2 during the
filling process and in step 3 during overrun time.
0.7
X3:4 Pressure
compensation
24 V = Pressure compensation valve is activated.
Pressure compensation valve is closed. No pressure
compensation. 0 V in steps 0 (calibrating), 3 (gross
weight), and 7 (tare) during the weight acceptance
process.
0.8
X4:1 Outside rate
tolerance
24 V = The actual flow rate FLO falls outside of the
tolerance limits MAIN.TOL+, MAIN.TOL-
0.9
X4:2 Cut-off point
reached
24 V = Cut-off point MAIN.CUTW was reached during the dosing process with a nominal total weight.
0.10 X4:3 Enable feed- 24 V = The scale is on. No alarm present. Can be
ing
used e.g. for switching on feed elements.
0.11 X4:4 Rate = 0
24 V = The scale is on and is waiting for product.
Digital IOs on LC module
LC module is only active when ADC.BCHNR = 1.
Digital IOs are only active when TCON.LCIO = ON.
X301/X302/X303
18
Terminal
Function
X301
Function
X302
Function
X303
1
2
3
4
5
1
+24 V_IO
+24 V_IO
2
DI_1.24
DI_1.28
3
DI_1.25
DI_1.29
4
GND
GND
5
+24 V_IO
+24 V_IO
6
7
8
6
DI_1.26
DI_1.30
7
DI_1.27
DI_1.31
8
GND
GND
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Chapter 5 Connection
DO
X
Signal
Description
1.24 X302:2 Emptying
24 V = Discharge valve is activated. Drop bottoms
open. Activated in step 5 during the emptying process.
1.25 X302:3 Dosing
24 V = Inlet slide gate valve is activated. Inlet slide
gate is open. Activated in step 2 during the filling
process.
1.26 X302:6 Aspiration
24 V = Aspiration valve is activated. Aspiration valve
is in aspirate position. Activated in step 2 during the
filling process and in step 3 during overrun time.
1.27 X302:7 Pressure
compensation
24 V = Pressure compensation valve is activated.
Pressure compensation valve is closed. No pressure
compensation. 0 V in steps 0 (calibrating), 3 (gross
weight), and 7 (tare) during the weight acceptance
process.
DI
X
Signal
Description
1.28 X302:2 Scale probe 24 V = Scale closed. Drop bottom closed. If there
closed
is no probe, the TCON.CTST parameter must be
set to OFF.
1.29 X303:3 Inlet slide
gate probe
24 V = Inlet slide gate is closed
0 V = Inlet slide gate is open
When this input is not in use, TCON.INPB = OFF
1.30 X303:6 Pressure
monitoring
24 V = Air pressure OK. When this input is not in
use, TCON.PRES = OFF.
1.31 X303:7 Weighing
container
probe
24 V = Probe in weighing container is uncovered
0 V = Probe is covered with product
When this input is not in use, TCON.HLPB = OFF
Scale probe 24 V = Scale closed. Drop bottom closed. If two
closed 2
probes are present, the TCON.CTST parameter
must be set to ON1+2.
5.10
0 … 5 V or 0/4 … 20 mA analog inputs
X8
1
2
3
4
5
Terminal
Function
1
+ AI_0
2
GND
3
+ AI_1
4
GND
5
+ 5V_A
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Chapter 5 Connection
19
AI
X8
Signal
Description
0.0 X8:1 +
X8:2 -
0/4 … 20 mA
X62 on the
left = A
0 … 5 V
X62 on the
left = V
Analog nominal rate if SYS.REM = REMA.
20 mA or 5 V according to the TCON.FAO
rate.
0.1 X8:3 +
X8:4 -
0/4 … 20 mA
X62 on the
right = A
0 … 5 V
X62 on the
right = V
-
0 mA or 4 mA can be set at SYS.AI. Use shielded cables for connections. Connect the shield to terminal X8:2 or X8:4.
5.11
0/4 … 20 mA analog outputs
X7
1
2
3
4
5
AO X7
Signal
Terminal
Function
1
+ AO_0
2
GND
3
+ AO_1
4
GND
5
GND
Description
0.0 X7:1 + 0/4 … 20 mA Actual rate analog. 20 mA correspond to
TCON.FAO
X7:2 0.1 X7:3 + 0/4 … 20 mA
X7:4 0 mA or 4 mA can be set at SYS.AO. Use shielded cables for connections.
Connect shield to terminal X7:5.
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Chapter 5 Connection
6
Operation
6.1
Display operating elements
H1
H2
H3
H4
H5
H6
lb
kg
S1
S2
S3
S4
F
S5
S6
S7
S8
H1
Remote control
H2
Refill the weighing container
H3
Preselected end value. Lit up = Nominal total specified; Flashing = Nominal total weight
reached.
H4
Control. Lit up = Capacity control activated.
H5
Current scale weight is in the zero range.
H6
Scale standstill. See ADC.MOT.
H7
Weight unit (lb)
H8
Weight unit (kg)
S1
<Start/Stop> key. When lit up, activated. When flashing, activated, but upper surge hopper
probe does not report any product.
S2
Weighing container's <Emptying> key. When lit up, emptying is active. When flashing,
emptying function has not been released. If the calibration switch is in the CAL position,
press and hold down key to directly activate “Emptying” output.
S3
<Clear alarm> / <Lamp test> / <ESC edit> key. When flashing, alarm is pending.
S4
<Function> key with special function depending on parameter. When lit, special function is
available.
S5
<Arrow> key for changing the parameter group or position when editing.
S6
<Data input> key for changing or applying values.
S7
<Plus> key for selecting the next parameter or increasing a value.
S8
<Minus> key for selecting the previous parameter or decreasing a value.
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Chapter 6 Operation
21
6.2
Parameters and parameter groups
Parameters in this document have the notation “Parametergroup.Parameter”, e.g.
SYS.TYP is the parameter TYP of the parameter group SYS. The decimal precision of the displayed weight values depends on the ADC.DIV parameter. Set the
weight unit at the ADC.UNIT parameter.
The following diagram shows the structure of the parameter groups. P1, P2 and
P3 represent the individual parameters.
USER
S5
S5
+
> 1s
S6
S5
S5
S5
S5
S5
MAIN
SYS
ADC
HOST
PBDP
SERV
P1
...
...
...
...
...
P2
...
...
...
...
...
P3
...
...
...
...
...
...
...
...
...
...
...
…
…
…
…
…
…
S8
S7
Fig. 6.1
Example of a parameter structure
Complete parameter structure:
The control system is operated via the USER parameter group and subordinate
parameter groups such as MAIN, SYS etc.
The control system's display changes after 600 seconds by default without user
input to the first parameter of the USER parameter group.
Function
Description
Invoke subordinate parameter
group.
Press
Change to the next subordinate parameter group.
Select parameters.
and
for 1 second.
button.
+ to the next parameter.
to the previous parameter.
Edit parameters.
Press
for 1 second until cursor or
parameter flashes.
Select decimal point with
Increase parameter value.
Decrease parameter value.
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Chapter 6 Operation
Press
+.
Press
.
.
Function
Save parameter value.
Invoke USER parameter group.
Description
Press
Press
.
for 1 second.
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Chapter 6 Operation
23
7
Configuration
7.1
Set the application
Select the desired application with the SYS.TYP parameter.
Prerequisites:
■
■
The application is not in operation.
Calibration switch in CAL position.
Further information about the calibration switch: See page 12,
chapter “Circuit board EBD 1312”.
Important
The control system application is normally already set in the factory.
► Only carry out the following procedure if the application was reset or not
set.
1. Press
and
for 1 second.
→ Changes to the subordinate parameter group.
2. Press
until the SYS parameter group is selected.
→ The TYP parameter is displayed with the default value NOAPP.
3. Press
for 1 second.
→ The parameter value flashes.
4. Press
+ or
until the application is displayed.
5. Press
again.
→ The parameter value lights up. The application is selected.
The program restarts automatically.
7.2
24
Device-specific settings
►
Select application.
► SYS.TYP = DUMP.
►
Set level probe in lower surge hopper.
► If a lower surge hopper probe is connected to the “Emptying release” input, set TCON.DIPB = ON. If the signal is transferred by the system control unit, set TCON.DIPB = ON_P.
►
Set upper surge hopper probe
► If a probe is connected to the “Upper surge hopper probe” input, set
TCON.IMOD = FULL or FULLR parameter.
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Chapter 7 Configuration
►
7.3
Set nominal dump.
► Set nominal weight for dump at MAIN.DWT/DWTS parameter.
Using the input wizard
Enter parameter values with the input wizard.
Important
This procedure is used to change important settings that have normally already been set in the factory.
► Only carry out this procedure if the most important parameters were not
configured in the factory or if the control system is to be reset.
1. Calibration switch in CAL position.
2. Press
until the SYS parameter group is displayed.
3. Press
.
→ The message ASSIST ON lights up briefly. The input wizard is activated.
flashes.
4. Change the displayed parameter. To do this, press
→ The parameter value flashes.
5. Press
+ or
for 1 second.
until the desired parameter value is displayed.
6. Press
again.
→ The parameter value is set.
to move to the next parameter.
7. Press
8. Repeat steps 3 to 6 until all parameters have been set.
→ The message ASSIST OFF lights up briefly. The input wizard is deactivated.
7.4
disappears.
Scale calibration
If there are several scales present, perform this process separately for each
scale. Select the individual scales with the ADC.CHNR parameter.
Prerequisites
■
■
■
Calibration switch is in CAL position.
If still present, remove transport locking device from weighing container or
weighing platform. Weighing containers or weighing platform hang freely.
The scale is empty.
1. Switch on the control. After switching on, wait at least 10 minutes.
2. Zero scale:
► Select ADC.ZERO parameter.
► Press
for 1 second.
→ A rotating clock symbol is displayed. Do not touch the scale during this
process.
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Chapter 7 Configuration
25
3. Calibrate scale:
► Select ADC.CALW parameter.
► Enter the total weight of the calibration weights. The calibration weight
should be 30...100 % of the load capacity.
► Fasten the calibrations weights symmetrically in the intended places.
► Press
for 1 second.
→ A rotating clock symbol is displayed. Do not touch the scale during this
process.
4. Select ADC.WT parameter.
5. Check whether the value displayed matches the calibration weight value.
6. Remove the calibration weights.
→ 0 is displayed for ADC.WT parameter.
7. For scales with several load cells:
► Place a weight of 0.1 … 20 kg (depending on scale size) on each of the
load cells in turn.
► If the weight is not displayed correctly, eliminate the fault following the
scale's operating instructions.
8. Set calibration switch on main circuit board to RUN.
7.5
Starting/stopping the scale
When starting, the scale goes from step 1 to step 2. The inlet slide gate opens.
The scale waits for the product. Stopping exits the started cycle. The scale goes
to step 1 after the emptying process. If TCON.DSTO = ON, the cycle also stops
during “Residual discharge”.
The following applies depending on the value of the SYS.REM parameter (local
or remote control):
■
■
7.6
Local operation (SYS.REM = LOC)
□ Press <S1> key to start the scale even if the digital release input is being used. If TCON.KSTO = ON, the scale can also be stopped again using the <S1> key.
□ If TCON.KSTO = OFF, go to the ADC.WT parameter and press the
<S4> key until the scale is in step 1.
Remote control (SYS.REM = REMS or REMP)
□ The scale is started and stopped through remote control via the serial interface or the Profibus DP.
□ If the digital input is being used for enabling, this function takes precedence.
Managing recipes
The control system has 51 recipes (recipe numbers 0 … 50). Recipe number 0
is the working recipe which contains the active values.
Recipes can only be written when the REC parameter group is available in the
application. We would only recommend using recipes if working with different
products. Recipe mode is always activated for some applications, e.g. bagging
controls, and does not have to be activated in such cases.
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Chapter 7 Configuration
1. Activate recipe mode.
► Select the “TCON.RECM” parameter.
► Select the MAIN or USER value.
→ Depending on the value selected, the parameters for loading (LOAD) and
saving (SAVE) recipes are in either the MAIN or USER parameter group.
2. Setting recipe parameters
► Select the “REC.NR” parameter.
►
Press
for 1 second.
►
Select recipe number with
►
Press
►
+ or
and
key combination.
to select the parameter required.
Use + or
+ or
.
again. The recipe number can also be set with the
and
3. Load recipe (loading an existing recipe from the memory to working recipe
0)
► Select “USER.LOAD” or “MAIN.LOAD” parameter.
►
Press
►
Use
for 1 second.
+ or
to select the recipe required.
► Press
again.
→ OK is displayed.
4. Remove write protection for recipes (if activated).
► Select the “REC.PROT” parameter.
► Select the OFF value.
→ Write protection is turned off.
5. Save recipe (saving the working recipe in an existing or new recipe)
► Select “MAIN.SAVE” or “USER.SAVE” parameter.
►
Press
for 1 second if an existing recipe is to be optimized.
►
Press
for 1 second if a new recipe is to be created. Use
+ or
to select the recipe number required. Press
.
→ OK is displayed. The recipe has been successfully saved.
7.7
Restoring factory settings
The parameters of the universal control are reset to the factory settings with the
following procedure.
CAUTION
All set values are overwritten.
► All parameters that differ from the factory setting must be reentered.
1. Select the “SYS.INIT” parameter.
2. Press
for 8 seconds.
→ The universal control is reset to factory settings.
Indicated on the display: NOAPP.
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Chapter 7 Configuration
27
8
Parameters
8.1
Notes for the parameter details
The letter after “Step” indicates to what extent the corresponding parameter is
locked for the change when the input lock is activated. The following values apply:
Step Description
No information. Parameters can always be adjusted.
C
Parameters can be adjusted when the calibration switch is set to CAL.
L
Parameter can be adjusted if LOCK parameter = OFF.
Locked if LOCK parameter = LOW/MED/HIGH.
M
Parameter can be adjusted if LOCK parameter = OFF/LOW.
Locked if LOCK parameter = MED/HIGH.
H
Parameter can be adjusted if LOCK parameter = OFF/LOW/MED.
Locked if LOCK parameter = HIGH.
A
Hide parameter if SYS.HIDE = ON.
The input lock is set with the “SYS.LOCK” parameter. It is deactivated by default. See page 44, parameter “SYS.LOCK”.
8.2
Application parameters
When an “x” or an “n” comes after the parameter name, this corresponds to the
channel number.
8.2.1
USER (operating parameters) parameter group
Notes on the “parameter number”:
The value of the “parameter number” stands for the parameter that is displayed
after a certain time if no button is pressed during this time. It is set in the
“SYS.SD” parameter.
If the SD parameter has the value 1, for example, the parameter of the USER
parameter group whose parameter number has the value 1 is used.
This data is only used in the USER parameter group.
USER.FLO/FLOS Actual and nominal rate
Range of val- 0 … FMAX
Default value:
0
ues:
P-Pos: 0
Unit:
t/h or cwt/h
A nominal rate is only possible if a maximum rate is specified at TCON.FMAX.
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Chapter 8 Parameters
USER.Σ1/Σ1S
Actual and nominal total weight
Range of val- 0 … 99 999 999
Default value:
0
Unit:
kg
ues:
P-Pos: 1
USER.Σ2
USER.WT
►
Display nominal weight: press
►
Clear current total weight: press
.
for 1 second.
Non-erasable total weight
P-Pos: 2
Unit:
kg
P-Pos: 3
Unit:
kg
Display
Current weight on load cell (right). Step display in the middle.
When overloaded, dashes appear on the top. When underloaded, dashes appear on the bottom. In the event of an invalid converter value, dashes appear in
the middle.
►
►
Residual discharge in manual operation mode: press
for 1 second.
Residual discharge from step 2 followed by scale stop in step 1 in manual
.
operation mode: press and hold down
USER.LOAD
Loading the recipe into working recipe 0
Range of val- 1 … 50
Level: M
ues:
P-Pos: 4
Only available when TCON.RECM = USER.
►
USER.SAVE
Load recipe: press
or after changing recipe number.
Save recipe
Range of val-
1 … 50
Level:
M
ues:
P-Pos: 5
Only available when TCON.RECM = USER.
►
►
Save recipe: press
or after changing recipe number.
If PROTECT is displayed, select another number or turn off the write protection on the recipe (REC.PROT = OFF).
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Chapter 8 Parameters
29
USER.PRINT
Print last job
P-Pos: 6
Only present if PRN.PSIO = SIO1/SIO2.
8.2.2
MAIN (main parameters) parameter group
MAIN.DWT/DWTS Actual and nominal dump
Range of val- MINW … MAXW
Level:
M
Default value:
20.00
ues:
kg
Unit:
The range is set with the TCON.MINW and TCON.MAXW parameters.
MAIN.CUTW
Cut-off weight
Range of val- 0 … 9999
Level:
M
Default value:
0
Unit:
kg
Unit:
kg
ues:
Is only used if nominal total weight > 0.
MAIN.LSU
Last total weight
►
MAIN.FWT
Display ID number of the last total weight: press
.
Gross weight
kg
Unit:
Gross weight saved in step 3. If there is a number after the parameter, this is
the scale number.
►
MAIN.EWT
Switch between the scales: press
and
+ or
.
Tare
kg
Unit:
Tare saved in step 7. If there is a number after the parameter, this is the scale
number.
►
30
Switch between the scales: press
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Chapter 8 Parameters
and
+ or
.
MAIN.TOL+
Positive rate tolerance
0 … 4000.000
Range of val-
Level:
M
Default value:
0.000
ues:
Unit:
t/h
If TOL+ = 0, an excessive rate is not monitored.
MAIN.TOL–
Negative rate tolerance
Range of val- 0 … 4000.000
Level:
M
Default value:
0.000
ues:
Unit:
t/h
If TOL- = 0, an insufficient rate is not monitored.
MAIN.SCNT
Total counter
Increased by 1 with “Clear total”.
MAIN.DCNT
Dump counter, can be cleared
Set to 0 with “Clear total”.
MAIN.DC2
MAIN.LOAD
Dump counter, cannot be cleared
Load recipe into working recipe 0
1 … 50
Range of values:
MAIN.SAVE
■
Only available when TCON.RECM = MAIN.
►
Load recipe: press
or after changing recipe number.
Save recipe
Range of val-
1 … 50
Level:
M
ues:
■
Only available when TCON.RECM = MAIN.
►
►
Save recipe: press
or after changing recipe number.
If PROTECT is displayed, select another number or turn off the write protection in the recipe (REC.PROT = OFF).
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Chapter 8 Parameters
31
MAIN.RPRO
Continue dosing
OFF
Default value:
The function is automatically deactivated in the event of “Residual discharge” or
“Stop”.
Value
Function
OFF Do not continue dosing.
ON Continue dosing is switched on.
►
MAIN.DTST
Switch on/off: press
.
Test stop (check gross and tare weight)
Shows the saved gross or tare weight and the current scale weight. With increased resolution for test purposes. During the test stop, the scale stops after
accepting the gross or tare weight.
MAIN.JOBID
and
+ and
►
Activate/deactivate test stop: press
►
Weighing process: press
►
Display weight values with normal resolution: press
.
.
.
Displaying job memory
The ID number of the last job is displayed by default.
MAIN.TEST
►
Switch between the ID numbers for the job data: press
►
Switch to next or previous entry: press
►
Switch to last entry: press
►
Print the currently displayed job: press
,
+ and
►
Work through the test stages: press
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Chapter 8 Parameters
+ or
.
for 5 seconds.
Valve and probe test (factory test)
Level:
32
and
C
.
.
.
8.2.3
REC.NR
REC (recipe parameters) parameter group
Recipe no.
Range of val-
0 … 50
0
Default value:
ues:
This number is only used for viewing or changing recipes. 0 = working recipe.
■ Only available when TCON.RECM = ON.
REC.DWTS
Nominal dump
Range of val- MINW … MAXW
Level:
M
20.00
Default value:
ues:
kg
Unit:
The range is set with the TCON.MINW and TCON.MAXW parameters. If there is
a number after the parameter, this is the recipe number.
►
REC.CWT
Switch between the recipes: press
and
Cut-off weight for nominal weight targeting
Level: M
0 … 9999
Range of val-
+ or
.
Default value:
0
Unit:
kg
ues:
Filling is cut off to achieve the nominal dump DWTS exactly. This parameter is
automatically optimized if a value > 0 is entered in the TCON.CTWT parameter.
If there is a number after the parameter, it is the recipe number.
►
REC.CUTW
Switch between the recipes: press
Cut-off weight
Range of val- 0 … 9999
Level:
and
+ or
M
Default value:
0
Unit:
kg
.
ues:
Is only used if nominal total weight > 0. Switches off the feed (using the “Cut-off
point reached” output) in order to reach a total amount (e.g. at product loading).
If there is a number after the parameter, this is the recipe number.
►
Switch between the recipes: press
and
+ or
.
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Chapter 8 Parameters
33
REC.PROT
Write protection for recipe during SAVE
Level:
Value
M
OFF
Default value:
Function
OFF Write protection is deactivated.
ON Write protection is activated.
8.2.4
TCON (configuration parameters) parameter group
TCON.DTYP
Scale type
Level:
C
Default value:
MSDL
Various type-dependent parameter values are reset when adjusting the parameter.
Value
Function
MSDL Automatic dump scale.
MSDT GRANEX silo scale.
MWBL TUBEX pipe scale.
TCON.DSIZE
Scale size
Level:
C
40
Default value:
Value depends on settings of TCON.DTYP parameter. Various type-dependent
parameter values are reset when adjusting the parameter.
TCON.RECM
Recipe mode
Level:
Value
C
OFF
Default value:
Function
OFF Recipes are deactivated. Only recipe 0 is available.
MAIN The recipes are used and LOAD/SAVE is available in the MAIN parameter
group.
USER The recipes are used and LOAD/SAVE is available in the USER parameter
group.
TCON.MAXW
Maximum dump size
MINW … 99.999
Range of val-
Level:
C
Default value:
40.00
ues:
Unit:
TCON.MINW
Minimum dump size
Range of val- 100 … MAXW
Level:
C
Default value:
kg
8.00
ues:
Unit:
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kg
TCON.MINT
Smallest amount to be dispensed
100 … 99 999
Range of val-
Level:
C
8.00
Default value:
ues:
kg
Unit:
TCON.FMAX
Maximum rate
Range of val- 0 … 4000.000
Level:
L
Default value:
0.000
ues:
Unit:
Value
t/h or cwt/h
Function
0 Capacity control turned off.
> 0 Capacity control is activated. The maximum flow rate limits the input range of
the nominal rate FLOS.
TCON.WIMP
Weight pulse (weight per pulse)
Range of val- 1 … 99 999
Level:
C
Default value:
10.00
ues:
kg
Unit:
►
TCON.IMPM
If TCON.IMPM = TIME, select the value such that approx. 2 pulses are sent
per dump or cycle.
Weight pulse mode
Level:
Value
C
Default value:
TIME
Function
OFF Weight pulse deactivated.
PACK01 Pulse packet with 0.1 second pulse and pause.
PACK05 Pulse packet with 0.5 second pulse and pause.
TIME Pulses regularly distributed with 0.5 second pulse.
TCON.FAVG
Average of the actual rate
Range of val- 1 … 10
Level:
L
Default value:
4
ues:
The number of rate values for the floating average of the actual rate FLO.
TCON.MEWT
Maximum zero tare
Range of val- 10 … 99 999
Level:
L
Default value:
2.00
ues:
Unit:
kg
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35
TCON.CTWT
Correction of nominal weight targeting
Level: L
0.0 … 1.0
Range of val-
Default value:
0.5
ues:
Value
Function
0 Nominal weight targeting off.
> 0 Nominal weight targeting activated. Correction of the internal cut-off point according to the set value.
TCON.CTST
“Scale closed” test
Level:
C
Default value:
OFF
Monitors the discharge gate using one or two limit switches.
Value
Function
OFF Test deactivated.
ON1 Monitoring with one limit switch.
ON1+2 Monitoring with two limit switches.
►
Display number of A022 errors: press
.
Upper surge hopper probe mode
TCON.IMOD
Level:
Value
L
Default value:
OFF
Function
OFF Upper surge hopper probe has no function.
FULL Dosing from the full if the probe is covered.
FULLR Dosing from the full if the probe is covered. The upper surge hopper is also automatically emptied with “Residual discharge”.
INT Dosing with “Intermediate emptying” for the SERV.TINT time if the probe is covered.
TCON.HLPB
Level probe on weighing container.
Level:
Value
Function
OFF Probe is not present.
ON Probe is present.
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L
Default value:
OFF
TCON.DIPB
Level probe on lower surge hopper
Level:
Value
L
OFF
Default value:
Function
OFF The “Emptying release” input is not being used. There is no probe connected
and no control signal pending. Emptying is possible at all times.
ON The “Emptying release” input is being used. There is 24 V at the input.
Emptying is released if:
■ SYS.REM = REMP and emptying is released via Profibus.
■ SYS.REM ≠ REMP
ON_P Release emptying via Profibus The “Emptying release” input is not being used.
Emptying is released if:
■ SYS.REM = REMP and emptying is released via Profibus.
■ SYS.REM ≠ REMP
TCON.INPB
Monitoring the inlet slide gate with a probe
Default value:
OFF
Monitoring compressed air with a pressure switch
Level: C
Default value:
OFF
Level:
Value
C
Function
OFF Probe is not present.
ON Probe is present.
►
TCON.PRES
Value
Display number of A032 errors: press
.
Function
OFF Pressure switch is not present.
ON Pressure switch is present.
►
TCON.FAO
Display number of A033 errors: press
AO and AI rate
0.000 … 4000.000
Range of val-
Level:
.
L
Default value:
10.000
ues:
Unit:
t/h
Rate of analog output (AO) and analog input (AI) 20 mA. If using tandem
scales, the value relates to both scales.
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37
TCON.ACUT
Automatic cut-off point
Level:
L
Default value:
OFF
Automatically determines the product overrun with an intermediate stop during
loading operations (using a specified nominal total weight).
Value
Function
OFF Cut-off point deactivated.
ON Cut-off point activated.
TCON.CCYC
Control cycle
Range of val- 1 … 20
Default value:
1
Delay time before “WAIT PRODUCT” message appears
Level: L
Default value:
0 … 600
30
Level:
C
ues:
Value
Function
1 The tare is checked during every dump.
2 … 20 The tare is checked during every nth dump.
TCON.TNPR
Range of values:
Unit:
Value
s
Function
0 No message
> 0 Time in seconds after which the message is output.
TCON.TARD
Delay before automatic residual discharge
Range of val- 0 … 600
Level: L
Default value:
0
Unit:
s
ues:
Value
Function
0 No automatic residual discharge.
> 0 Once product feed is complete, automatic residual discharge starts after the set
time.
TCON.TDMA
Maximum emptying time
Range of val- 0.1 … 99.9
Level:
L
Default value:
15.0
ues:
Unit:
TCON.TDMI
Minimum emptying time
Range of val- 0.1 … 9.9
Level:
L
Default value:
s
2.0
ues:
Unit:
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s
TCON.TINT
Intermediate emptying time
Range of val- 0.1 … 9.9
Level:
L
Default value:
2.0
ues:
Unit:
TCON.TDAP
Delay time until ventilation after dosing
Level: L
0.1 … 9.9
Range of val-
Default value:
s
0.6
ues:
Unit:
TCON.TDAD
Delay time until ventilation after emptying
Level: L
0.1 … 9.9
Range of val-
Default value:
s
0.4
ues:
Unit:
TCON.TASP
Aspiration time after dosing
Range of val- 0.1 … 9.9
Level:
L
Default value:
s
0.5
ues:
Unit:
TCON.TBLK
Dosing blocking time
Range of val- 0.1 … 9.9
Level:
L
Default value:
s
1.5
ues:
Unit:
TCON.TSTA
Maximum downtime
Range of val- 0.1 … 9.9
Level:
L
Default value:
s
5.0
ues:
Unit:
TCON.TFWD
Acceptance delay for gross weight
0.1 … 5.0
Range of val-
Level:
L
Default value:
s
0.3
ues:
Unit:
TCON.TEWD
Acceptance delay for tare
Range of val- 0.1 … 5.0
Level:
L
Default value:
s
0.3
ues:
Unit:
s
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39
TCON.HTYP
Host protocol type
Value
Level:
L
Default value:
STD
Level:
L
Default value:
OFF
Function
STD Standard host protocol.
MWET MWET host protocol.
ETPC Interface to MWET-PC.
ETPCNP As ETPC but without parity bit.
TCON.STRT
Start/stop inputs (pulse signal)
Value
Function
OFF The inputs do not have a function.
ON Inputs start and stop the scale.
STORE The inputs are functioning.
The start signal is stored even when release = 0 V.
TCON.DSTO
Automatic stop
Level:
L
Default value:
OFF
Automatically stops after “Residual discharge” or at “End value reached”.
Value
Function
OFF Automatic stop deactivated.
ON Automatic stop activated.
TCON.KSTO
Stop release
Level:
Value
L
Default value:
OFF
Default value:
OFF
Function
OFF Stop function not released.
ON Stop function released.
TCON.FDP
Flow rate format on the serial interface (HOST)
Level: L
Value
Function
OFF 1 kg/h or 1 lb/h.
ON 10 kg/h or 0.1 cwt/h.
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Chapter 8 Parameters
TCON.KEY_S2
Assignment of <S2> key
Level:
Value
L
Default value:
DISC
C
Default value:
OFF
Function
DISC Emptying.
ZERO Zero to a maximum of TCON.MEWT.
ZERO3D Zero to a maximum of ± 3 DIV.
TCON.OPTDIO
Optional digital IO with module number 1
Level:
Switch the unit off and then on again to activate any modification.
Value
Function
OFF No additional IOs.
ON Additional digital IOs used according to the IO list.
TCON.LCIO
Digital IOs on LC module
Level:
C
Default value:
OFF
Various valves and probes can also be connected to the LC module.
Value
Function
OFF No IOs on LC module.
ON Use IO on LC module.
TCON.DATINI
Data initialization
Level:
C
Reset saved data, such as set points, total weights and counters, to their original values. This has no effect on the setting parameters.
►
Initialize data: press
for 1 second.
8.3
Basic parameters
8.3.1
SYS (system configuration) parameter group
SYS.TYP
Select application
Level:
Value
C
Default value:
NOAPP
Function
NOAPP No application selected.
No signal from the outputs, e.g. when switching on for the first time after data
loss.
DMS-T (strain DMS transmitter (strain gauge transmitter).
gauge)
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Chapter 8 Parameters
41
Value
Function
FBAL Automatic flow balancer MZAH.
BAG Bagging scale.
DUMP Dump scale (all types).
DIFF Loss-in-weight feeder (all types).
CHECK Check weigher for bag filling lines.
DCOS Metering control for batch scale or loading.
BAGD1 Differential bagging scale MWBC, single scale system.
BAGD3 Differential bagging scale MWBC, triple scale system.
SLIDE Volumetric feed gate.
ICONV Pulse converter.
MWEJ MWEJ retrofit for MWBD/F.
DEVICE Temperature controller (MBHA, MBDA, DSDC, DNCB, OTW).
DUMP2 Tandem dump scale.
GSCREW GRAVISCREW MSDR.
BSPB Vertical whitener TOPWHITE.
BAG2 Double bagging scale.
CONWD Automatic moisture control system (MYFD, MOZG; MFYE, MOZH).
SAM Sample collector
NIR Measuring instruments with NIR technology.
DIFFS Micro-loss-in-weight feeder with servo drive.
SYS.REM
Local/Remote operation
Level:
Value
L
Default value:
LOC
Function
LOC Local: Operation on the display.
REMS Remote – Serial: Set point specification via serial interface.
Not supported: SORT, OLFB.
REMA Remote – Analog (nominal rate 0/4 … 20 mA).
Not supported: SORT, OLFB.
REMP Remote – Profibus DP: Control exclusively via Profibus. Set-point specification
and control signals via Profibus active.
REMTCP Remote – Network, protocol according to “SYS.ENET”.
REME Remote – Profinet or Ethernet-IP.
Only possible if “SYS.ENET” = P-NET or ETH-IP.
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Chapter 8 Parameters
SYS.RIN
24 V input remote
Level:
Value
L
Default value:
OFF
Function
OFF There is no remote input.
ON With 0 V remote input, device in local operation.
With 24 V remote input, operation according to “SYS.REM” parameter.
SYS.EIN
24 V input release
Level:
Value
L
Default value:
OFF
Function
OFF Input has no function.
ON Input is still functioning.
ONLOC Input only functions in local operation.
ONREM Input only functions in remote operation.
OFF_PB The three inputs DI0.0 … DI0.2 have no function and can be freely used via
Profibus DP.
SYS.DISP
Remote control
Level:
Value
L
Default value:
OFF
Default value:
ON
Function
OFF No remote control.
LOC Local operation (remote control display only).
REM Remote operation (local display only).
BOTH Both local and remote operation.
SYS.EDIS
Extended keyboard
Level:
Value
L
Function
OFF No extended keyboard.
ON Extended keyboard present (numeric keypad and function keys F1 … F8).
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43
SYS.PSAV
Power saving mode
Level:
Value
L
Default value:
STOP
Function
OFF Display is constantly lit.
STOP Standby when stopped and when no button is pressed for 10 minutes. An LED
flashes.
ON Standby if no key is pressed for 10 minutes. An LED flashes when stopping.
Running light with one LED each if not stopped.
SYS.SD
Standard operating parameters
0 … 9
Range of val-
Level:
L
Default value:
0
ues:
The value entered for the “SYS.SD” parameter relates to the parameter numbers
of the individual parameters in the USER parameter group. See tables for USER
parameter group. The parameter of the USER parameter group, the parameter
number of which corresponds to the value given here, is shown on the display
after 600 seconds as standard if no key is pressed during this time. The standard time for the change (600 seconds) can be changed in the SDT parameter.
The range stated here depends on the number of parameters in the USER parameter group for the respective application.
SYS.SDT
Automatic change to the standard operating parameter
Level: L
Default value:
0 … 9999
Range of val-
600
ues:
Unit:
Value
s
Function
0 No automatic change.
>0 If no button is pressed during the set time, the display changes to the standard
operating parameter. See “SYS.SD” parameter.
SYS.LOCK
Input lock
Default value:
OFF
The “SYS.LOCK” parameter prevents certain parameters from being entered and
changed. It is always possible to display the parameters.
Value
Function
OFF No lock. All parameters can be adjusted.
LOW Low lock. Parameters marked as L are locked.
MED Medium lock. Parameters marked as M and L are locked.
HIGH High lock. Parameters marked as H, M and L are locked.
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Chapter 8 Parameters
SYS.MSG
Display messages
Value
Level:
L
Default value:
ALL
Level:
L
Default value:
OFF
Function
OFF Display no messages.
ALL Display all messages.
STPOFF Do not display "stop" messages.
SYS.ACLR
Clear alarm
Value
Function
OFF Alarms are acknowledged automatically.
ON
SYS.AINV
Alarms are only acknowledged with
24 V input “Clear alarm”.
, via the serial interface, Profibus or the
Invert alarm output
Value
Level:
L
Default value:
ON
Level:
L
Default value:
0
Function
OFF 24 V upon alarm.
ON 0 V upon alarm.
SYS.AO.x
Analog outputs
0 / 4
Range of values:
mA
Unit:
Mode of the analog outputs. Switchover 0 / 4 … 20 mA.
►
SYS.AI.x
Select additional analog outputs: Press and hold down
Analog inputs
0 / 4 mA or 5 V
Range of val-
Level:
L
and press
+.
0 mA
Default value:
ues:
Mode of the analog inputs. Switchover 0 / 4 … 20 mA or 0 … 5 V.
►
►
Select additional analog inputs: Press and hold down
Note the setting at jumpers X62.
and press
+.
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45
SYS.AOADJ.x
Align analog outputs
Range of val- 90.0 … 110.0
Level:
L
100.0
Default value:
ues:
%
Unit:
The current value will be changed in percentage increments.
►
SYS.AIADJ.x
Select additional analog outputs: Press and hold down
Align analog inputs
Range of val- 90.0 … 110.0
Level:
L
and press
+.
100.0
Default value:
ues:
%
Unit:
The current value will be changed in percentage increments.
►
Select additional analog inputs: Press and hold down
and press
+.
Hide parameters
SYS.HIDE
Level:
Value
L
Default value:
OFF
C
Default value:
200
Function
OFF Do not hide parameters.
ON Parameters with step = A are hidden.
SYS.CANBR
Baud rate of CAN bus
Range of val- 10 … 1000
Level:
ues:
Unit:
kBaud
The Bühler standard baud rate of 200 and CAN-Open baud rates are supported.
■ 200
■ 10
■ 20
■ 50
■ 125
■ 250
■ 500
■ 800
■ 1000
►
46
If lines are longer than 200 meters: Reduce the baud rate.
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Chapter 8 Parameters
SYS.ENET
Ethernet interface, Profinet/Ethernet/IP
Level:
Value
C
Default value:
OFF
Function
OFF Ethernet interface switched off. EBD1325/EBD1326.
P-NET Profinet EBD1326.
ETH-IP Ethernet-IP EBD1325.
SYS.TCP
Ethernet interface TCP/IP
Level:
Value
L
Default value:
OFF
Function
OFF Ethernet TCP/IP - interface switched off. EBD1330.
ROPTCP Remote operation protocol via TCP. Connection to MEAT operating element.
TCP-IP Profibus protocol via TCP.
SYS.INIT
Basic initialization of all parameters
Level:
C
Resets all parameters to factory settings.
►
8.3.2
Reset all parameters: See page 27, chapter “Restoring factory settings”.
ADC (Analog/Digital Converter) parameter group
ADC.CHNR
Channel number of values displayed
0 … 3
Range of val-
Default value:
0
ues:
Parameter is only available if several LC channels are used.
Value
Function
0 LC input main circuit board.
1 LC module 1.
2 LC module 2.
3 LC module 3.
ADC.WT.x
Current scale weight
Unit:
►
►
kg
Display current scale weight to one more decimal place: press
.
Always display scale weight to one more decimal place: press and hold
down
and press
+ at the same time (for CAL).
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47
ADC.ZERO.x
Zero scale
Level:
C
The zeroing process sets the scale to a weight of zero. A rotating clock symbol
is displayed when zeroing.
►
ADC.CALW.x
Zero scale: press
for 1 second.
Calibration weight
10.000 … 1000.000
Range of val-
Level:
C
Default value:
40.000
ues:
kg
Unit:
The input value corresponds to the applied calibration weight. When calibrating,
a rotating clock symbol is displayed.
►
Calibrate: press
for 1 second.
Weight range monitoring
Range of val- 0.000 … 999 999.999
ADC.MAXR.x
Level:
C
Default value:
0.000
ues:
kg
Unit:
Value
Function
0 Weight range monitoring turned off.
> 0 Alarm AD-converter when current weight > MAXR +9 DIV or < –5 % MAXR
(calibratable > MAXR +9 DIV or < 0).
ADC.DIV
Resolution of weight readings
Range of val- 0.001 … 50.000
Level:
C
Default value:
0.001
ues:
Corresponds to pitch d. The smaller the value, the more accurately the scales
indicate the weight. If DIV is adjusted, all weight values are given a different validity.
ADC.UNIT
Weight unit
Level:
Value
C
Default value:
Function
NO No weight unit.
KG Weight unit kg. The "kg" LED is lit up when weight values are displayed.
LB Weight unit lb. The "lb" LED is lit up when weight values are displayed.
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Chapter 8 Parameters
KG
ADC.FILT
Number of weight values for digital filtering
Level: C
2 … 128
Range of val-
Default value:
2
Default value:
0.5
Default value:
0.0
ues:
ADC.MOT.x
Standstill tolerance in the number of d (DIV)
Range of val- 0.0 … 99.9
Level: C
ues:
Value
Function
0.0 Switched off. Always at standstill.
> 0 Determination of standstill status active.
ADC.TMOT
Standstill delay time
Range of val- 0 … 9.9
Level:
C
ues:
s
Unit:
ADC.AZER
Automatic zeroing
Range of val- 0.00 … 1000.00
Level:
C
Default value:
0.00
ues:
Unit:
kg
Tolerance in kg.
Value
Function
0 Automatic zeroing is turned off.
> 0 If the current weight value is within the set tolerance and there is a standstill,
the scale performs automatic zeroing.
MAXR > 0: zero range ± 4 % of MAXR.
MAXR = 0: zero range according to AZER value.
ADC.NORM
Calibratability
Level:
Value
C
Default value:
INDST
Function
INDST Industrial operation for internal applications.
OIML Control unit for applications which can be calibrated.
(Clear total only in step 1.)
NTEP Control unit for applications which can be calibrated in North America.
(Clear total only in step 1.)
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49
ADC.BCHNR
Base channel
0 … 1
Range of val-
Level:
C
0
Default value:
ues:
Number of the first measuring channel.
Value
Function
0 LC input main circuit board.
1 LC module 1.
►
ADC.PUPT
Set this parameter to 1 when using calibratable versions.
Power-up time
Range of val- 10 … 600
Level:
C
Default value:
10
ues:
s
Unit:
Corresponds to waiting time between switching on the device and the weight
value being displayed.
►
ADC.ZADV.x
Set this parameter to 300 when using calibratable versions.
Internal AD converter value. Zero point (ZERO).
–524 288 … +524 287 Level: C
Range of val-
Default value:
0
Default value:
100 000
ues:
ADC.DADV.x
Internal AD converter value
0 … 999 999
Range of val-
Level:
C
ues:
Difference between calibration value and zero point (CALW-ZERO).
ADC.ADV.x
Internal AD converter value
ADC.SWVERS
Weight registration software version
Is only shown for calibratable applications. The display shows the value when
powering up too.
ADC.DEVNR
Device number for LC module identification
Range of val- 0 … 9999
Level: C
Default value:
0
ues:
Is only shown for applications which can be calibrated. Corresponds to device
number at the top right on the calibration plate. If an LC module displays a different number, the "A073 DEVNR" alarm is triggered.
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Chapter 8 Parameters
8.3.3
HOST (SIO_1/SIO_2 serial interface) parameter group
Bühler standard scale protocol
HOST.SIO
RS-485 interface
Level:
Value
L
Default value:
SIO1
Function
OFF No interface is being used. Neither interface, SIO_1 or SIO_2, is being used for
the host.
SIO1 Host interface connected to SIO_1 on the main circuit board.
SIO2 HOST interface connected to SIO_2 at X40.
Profibus DP not used, see X70, X71.
SIO12 HOST interface connected to SIO_1 on main circuit board and SIO_2 connected
to X40.
Profibus DP not used, see X70, X71.
RS422 HOST interface RS-422 with transmitter connected to SIO_1 on the main circuit
board and receiver connected to SIO_2 at X40.
Profibus DP not used, see X70, X71.
HOST.ADR
RS-485 communication address
Range of val- 0 … 255
Level:
L
Default value:
0
Level:
C
Default value:
4800
Level:
L
Default value:
NO
ues:
HOST.BAUD
Baud rate of the serial interfaces
■
■
■
HOST.PARITY
4800
9600
19 200
Parity bit of the serial interfaces
The data itself is always 8 bits.
Value
Function
NO No parity bit.
EVEN Even parity bit.
ODD Odd parity bit.
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HOST.TOUT
Timeout of the serial interfaces
Range of val- 0 … 99
Level:
L
Default value:
0
Unit:
s
ues:
The device stops metering if no more communication has taken place during the
timeout time.
Value
Function
0 No timeout monitoring.
1 … 99 Timeout in seconds. The monitoring is only active when “SYS.REM” = REMS.
HOST.WFOR
Weight format for serial interfaces
Level:
Value
L
Default value:
FIX
Function
FIX Fix format same as in old scale control units.
DUMP, DIFF: kg.
DIFF device type MSDE or MSDF: g.
BAG: according to “ADC.DIV” parameter.
DIV According to the “ADC.DIV” parameter.
HOST.ENBL
Start / stop via the serial interface
Value
Level:
L
Default value:
OFF
Level:
L
Default value:
OFF
Function
OFF Start/stop function deactivated.
ON Start/stop function activated.
HOST.COMP
Compatibility mode MEAF
Value
Function
OFF Interface is defined according to MEAG interface protocol.
ON Interface is defined according to MEAF interface protocol.
►
52
Switch on when replacing MEAF with MEAG.
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Chapter 8 Parameters
8.3.4
ENET (Ethernet) parameter group
When “SYS.ENET” = OFF, the parameter group is not visible.
ENET.ADR
Profinet address
Level:
L
0
Default value:
Current address for Profinet communication. The MEAG registers with this address.
meag-123 (ENET.ADR = 123)
Only available with ProfiNet - SYS.ENET - P-NET.
In addition, the current bus status is shown.
Value
Function
NoCom No communication available.
ERROR Error on the additional printed board assembly EBD1325/EBD1326.
WIRED A cable was connected.
RUN The connection was established successfully.
ENET.MPDP
Ethernet operating mode
Level:
Value
L
Default value:
EXTD_L
Function
NORM Normal protocol with 24-byte data for sending and receiving. For description,
see operating manual 66499.
SHORT Compact protocol DMS-T. Output byte not consistent (IM308B).
SHORTK Compact protocol DMS-T. Output byte consistent (IM308C).
EXTD_S Short extended protocol. Contains the NORM protocol with additional 32-byte
data.
EXTD_L Long extended protocol. Contains the NORM protocol with additional 48-byte
data.
ENET.IP
IP address
Display showing the IP address currently set or the server status.
Only available with Ethernet/IP - SYS.ENET - ETH-P.
Value
Function
192.168.15.29 IP address currently set.
SERVER The server starts up.
START
SERVER ER- No connection to server.
ROR
SERVER CON- The server settings are updated.
FIG
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ENET.SUBNET
Subnet mask
Display showing subnet mask currently set.
Only available with Ethernet/IP - SYS.ENET - ETH-P.
ENET.STDGW
Standard Gateway
Display showing standard gateway currently set.
Only available with Ethernet/IP - SYS.ENET - ETH-P.
ENET.IPSET.x
Input new IP address. x = 0 … 3
0 … 255
Range of val-
Level:
C
Default value:
0
ues:
The 4 bytes of the IP address are input as a single value.
Example: 192.168.15.1
“ENET.IPSET.0” = 192
“ENET.IPSET.1” = 168
“ENET.IPSET.2” = 15
“ENET.IPSET.3” = 1
Only available with Ethernet/IP - SYS.ENET - ETH-P.
ENET.SNSET.x
and
+.
►
Select next byte: Press
►
Start control system with new IP address: Press
Input new subnet mask. x = 0 … 3
Range of val- 0 … 255
Level:
C
for 10 seconds.
Default value:
ues:
The 4 bytes of the subnet mask are input as a single value.
Example: 255.255.252.0
“ENET.SNSET.0” = 255
“ENET.SNSET.1” = 255
“ENET.SNSET.2” = 252
“ENET.SNSET.3” = 0
Only available with Ethernet/IP - SYS.ENET - ETH-P.
54
Select next byte: Press
►
Start control system with new IP address: Press
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and
+.
►
for 10 seconds.
0
ENET.GWSET.x
Input new standard gateway. x = 0 … 3
Level: C
0 … 255
Range of val-
Default value:
0
ues:
The 4 bytes of the standard gateway are input as a single value.
Example: 192.168.15.10
“ENET.SNSET.0” = 192
“ENET.SNSET.1” = 168
“ENET.SNSET.2” = 15
“ENET.SNSET.3” = 10
Only available with Ethernet/IP - SYS.ENET - ETH-P.
ENET.TOUT
+.
►
Select next byte: Press
►
Start control system with new IP address: Press
Timeout for Ethernet
Range of val- 0.1 … 99.9
and
Level:
L
for 10 seconds.
Default value:
1.0
ues:
Unit:
s
The device triggers an alarm if no communication takes place during the timeout
time.
■ The monitoring is only active when “SYS.REM” = REME.
ENET.STATUS
Value
Status indicator of the communication
Function
NoCom No communication available.
ERROR Error on the additional printed board assembly EBD1325/EBD1326.
WIRED A cable was connected.
RUN The connection was established successfully.
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ENET.COM
Communication status indicator
Displays the communication status.
Examples:
■ 0×C0000140 = RCX_E_NETWORK_FAULT
■ 0×C0000141 = RCX_E_CONNECTION_CLOSED
■ 0×C0000142 = RCX_E_CONNECTION_TIMEOUT
■ 0×C0000143 = RCX_E_LONELY_NETWORK
■ 0×C0000144 = RCX_E_DUPLICATE_NODE
■ 0×C0000145 = RCX_E_CABLE_DISCONNECT
Number, left (netx communication status):
■ 0 = RCX_COMM_STATE_UNKNOWN
■ 1 = RCX_COMM_STATE_NOT_CONFIGURED
■ 2 = RCX_COMM_STATE_STOP
■ 3 = RCX_COMM_STATE_IDLE
■ 4 = RCX_COMM_STATE_OPERATE
Number, right (netx number errors):
■ 0 = no error
■ > 0 = Error code in accordance with netx description “netx Dual-Port Memory Interface DPM”.
8.3.5
TCP (Ethernet TCP/IP) parameter group
If “SYS.TCP” = OFF, the parameter group is not visible.
Ethernet operating mode
TCP.MPDP
Level:
Value
L
Default value:
EXTD_L
Function
NORM Normal protocol with 24-byte data for sending and receiving. For description,
see operating manual 66499.
SHORT Compact protocol DMS-T. Output byte not consistent (IM308B).
SHORTK Compact protocol DMS-T. Output byte consistent (IM308C).
EXTD_S Short extended protocol. Contains the NORM protocol with additional 32-byte
data.
EXTD_L Long extended protocol. Contains the NORM protocol with additional 48-byte
data.
TCP.IP
IP address
Display showing the currently set IP address or the server status.
Value
Function
192.168.15.29 Currently set IP address.
SERVER The server starts up.
START
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Value
Function
SERVER ER- No connection to server.
ROR
SERVER CON- The server settings are being updated.
FIG
TCP.SUBNET
Subnet mask
Display showing currently set subnet mask.
TCP.STDGW
Standard gateway
Display showing currently set standard gateway.
TCP.IPSET.x
Input of new IP address. x = 0 … 3
Range of val- 0 … 255
Level: L
Default value:
0
ues:
The 4 bytes of the IP address are entered as a single value.
Example: 192.168.15.1
“TCP.IPSET.0” = 192
“TCP.IPSET.1” = 168
“TCP.IPSET.2” = 15
“TCP.IPSET.3” = 1
TCP.SNSET.x
and
+.
►
Select next byte: press
►
Start control system with new IP address: press
Input new subnet mask. x = 0 … 3
0 … 255
Range of val-
Level:
L
for 10 seconds.
Default value:
0
ues:
The 4 bytes of the subnet mask are entered as a single value.
Example: 255.255.252.0
“TCP.SNSET.0” = 255
“TCP.SNSET.1” = 255
“TCP.SNSET.2” = 252
“TCP.SNSET.3” = 0
and
+.
►
Select next byte: press
►
Start control system with new IP address: press
for 10 seconds.
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TCP.GWSET.x
Input new standard gateway. x = 0 … 3
Range of val- 0 … 255
Level: L
Default value:
0
ues:
The 4 bytes of the standard gateway are entered as a single value.
Example: 192.168.15.10
“TCP.SNSET.0” = 192
“TCP.SNSET.1” = 168
“TCP.SNSET.2” = 15
“TCP.SNSET.3” = 10
TCP.TOUT
+.
►
Select next byte: press
and
►
Start control system with new IP address: press
Timeout for Ethernet TCP/IP
0.1 … 99.9
Range of val-
Level:
L
for 10 seconds.
Default value:
1.0
ues:
Unit:
s
The device triggers an alarm if no communication takes place within the specified time.
■ Monitoring is only active when “SYS.REM” = REMTCP.
TCP.COM
Communication counter
Level:
L
The counter is incremented when a valid data packet arrives.
►
8.3.6
Clear counter: press
.
PBDP (Profibus DP) parameter group
PBDP.ADR
Profibus DP communication address
Range of val- 0 … 255
Level: L
Default value:
ues:
In addition, the status of the connection is displayed:
Value
Function
NoCom No communication to the host.
ERROR Hardware error.
TIMOUT Timeout was triggered.
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0
PBDP.TOUT
Timeout for Profibus-DP
0.1 … 99.9
Range of val-
Level:
L
Default value:
1.0
ues:
s
Unit:
The device stops metering if no more communication takes place during the
timeout time.
■ The monitoring is only active when “SYS.REM” = REMP.
PBDP.WFOR
Weight format for the Profibus DP protocol
Level:
Value
L
Default value:
FIX
Default value:
NORM
Function
FIX Fix format same as in old scale control units.
DUMP, DIFF: kg.
DIFF device type MSDE or MSDF: g.
BAG: according to “ADC.DIV” parameter.
DIV According to the “ADC.DIV” parameter.
PBDP.MPDP
Profibus DP operating mode
Level:
Value
L
Function
NORM Normal protocol with 24-byte data for sending and receiving. For description,
see operating manual 66499.
SHORT Compact protocol DMS-T. Output byte not consistent (IM308B).
SHORTK Compact protocol DMS-T. Output byte consistent (IM308C).
EXTD_S Short extended protocol. Contains the NORM protocol with additional 32-byte
data.
EXTD_L Long extended protocol. Contains the NORM protocol with additional 48-byte
data.
PBDP.COMP
Compatibility mode MEAF
Level:
Value
L
Default value:
OFF
Function
OFF Interface is defined according to MEAG interface protocol.
ON Interface is defined according to MEAF interface protocol.
►
Switch on when replacing MEAF with MEAG.
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PBDP.CTRLB
Control bits display
Display showing first 4 bytes of received data of Profibus NORM protocol as
hexadecimal value. Example: F010050A.
Sequence on display: byte 3 | byte 2 | byte 1 | byte 0.
Bits 7 … 0.
PBDP.STATB
Status bits display
Display showing first 4 bytes of transmitted data of Profibus NORM protocol as
hexadecimal value. Example: 00340B11.
Sequence on display: byte 3 | byte 2 | byte 1 | byte 0.
Bits 7 … 0.
PBDP.DSDIR
Data set direction analysis filter
Default value:
RXD
Use analysis filter to select a data set from the Profibus protocol. Its value is
displayed via “PBDP.DAT”.
Value
Function
RXD Received data (PLC → device)
TXD Transmitted data (device → PLC)
PBDP.DSNR
Data set number analysis filter
Range of val- 0 … 255
Default value:
0
Default value:
0
Default value:
8
Default value:
1
ues:
PBDP.DSIDX
Data set index analysis filter
0 … 255
Range of values:
PBDP.DSBYTE
Data set byte analysis filter
8 … 23
Range of values:
PBDP.DSTYPE
Data set type analysis filter
1, 2, 4
Range of values:
Unit:
Number of bytes in the value under consideration.
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BYTE
PBDP.DAT
Data set value display
Value of the data set defined with the filter.
The value is updated when the corresponding data set is accessed. Note
“PBDP.DSCNT” access counter to check.
PBDP.DSCNT
Access counter data set
The counter is increased by 1 each time the data set defined by the filter is accessed.
Reset counter: Press
8.3.7
SERV.ID
.
SERV (service information) parameter group
Display identification text
Displayed identification text transmitted by a host (e.g. B1 SCALE). A maximum
of 28 characters are possible.
►
SERV.V_PROG
Extension of the text: Press
.
Program version
Entire program, application and basic system (e.g. V18A).
SERV.V_APPL
Application version
Version and name of the application (e.g. V17A).
SERV.V_BASE
Basic system version
Version of the basic system (application-independent software, e.g. V15D).
SERV.V_BOOT
SERV.DATE
Bootloader version
Date
Range of val-
00.01.01 … 99.12.31
Level:
L
00.00.00 … 23.59.59
Level:
L
ues:
SERV.TIME
Time
Range of values:
The clock is switched on by default. A battery test is performed every 24 hours.
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SERV.ERR.x
List of alarms
The last alarm is displayed in the form ERR.0 A006. The second to last alarm is
displayed with ERR.–1 etc.
►
Display older entries: Press and hold down
►
►
Display newer entries: Press and hold down
and press + .
Display details (alarm text, date and time) of entry in turn: Press and hold
down
SERV.EVT.x
and press
.
.
List of events
For operation, see “SERV.ERR” parameter.
All events (incl. alarms) are displayed.
SERV.ALLEVT.x List of alarms and events
For operation, see “SERV.ERR” parameter.
Alarms and events are displayed mixed.
SERV.CPU
Computer load
Display left: Current CPU utilization in %.
Display right: Maximum time in [ms] for a program execution.
►
Reset maximum value: Press
for 1 second.
SERV.SADR
System address in the case of a program error
SERV.PCNT
Counter for power failures
SERV.ELOG
Internal recording of the events
Level:
Value
C
Default value:
Function
ON Recording activated.
OFF Recording deactivated.
►
62
Delete entries: Press
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for more than 5 seconds.
ON
SERV.VLOG
Internal recording of values
Level:
Value
C
Default value:
OFF
Function
ON Recording activated.
OFF Recording deactivated.
►
SERV.CLOG
Delete entries: press
for more than 5 seconds.
Internal recording of cyclical data
Level:
Value
C
Default value:
ON
Function
OFF Recording deactivated.
ON Recording activated.
►
Delete entries: Press
for more than 5 seconds.
Internal recording of job data
SERV.JLOG
Level:
Value
C
Default value:
ON
Function
ON Recording activated.
OFF Recording deactivated.
►
Delete job data: Press
for more than 5 seconds.
Simulation mode
SERV.SIMM
Level:
C
Default value:
OFF
Inputs are simulated by means of the output signals.
Program and control system are tested without product.
Value
Function
ON Simulation activated.
OFF Simulation deactivated.
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SERV.SERM
Service mode
Level:
C
OFF
Default value:
Set digital and analog outputs for test purposes.
Value
Function
ON Function activated.
OFF Function deactivated.
TEST Test mode for the print test.
SERV.DIN
Digital inputs
Also applies to options with digital inputs (e.g. 1.0 … 1.11).
►
SERV.DOUT
Select input (0.0 … 0.x): Press and hold down
+ or
and press
.
Digital outputs
Also applies to options with digital outputs (e.g. 1.0 … 1.11).
►
Select output (0.0 … 0.x): Press and hold down
and press
+ or
.
►
SERV.DISPIN
Set or delete outputs if “SERV.SERM” = ON: Press
.
Digital inputs of the display circuit board
Displays the current state of the 24 V inputs.
■ 0 = 0 V
■ 1 = 24 V
(Display 000 → IN 3 / IN 2 / IN 1)
SERV.AIN.x
Analog input circuit board
V / mA
Unit:
Current voltage or present current.
►
SERV.AOUT.x
Select input: Press and hold down
and press
.
Analog outputs
Unit:
Present current.
64
+ or
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mA
SERV.LC
►
Select output: Press and hold down
and press
►
Set output voltage if “SERV.SERM” = ON: Press
+ or
.
.
DMS input
mV
Unit:
Current input voltage.
►
SERV.TINT
Select input: Press and hold down
and press
+ or
Current temperature on the display circuit board
Unit:
SERV.SIO1
.
°C
Serial interface 1
Serial interface 1 RS-485 to host or other use. If the “HOST.SIO” parameter is
not activated for the corresponding interface, " --- OFF" is displayed. The following elements are displayed from left to right:
■ Communication counter. Is raised by 1 (0 … 9999) per communication.
■ Bus activity. “*” means that a signal was received.
■ Command. Identification of the data with different telegrams. “-” means that a
command with lower-case characters was received.
■ Error number:
□ 0 = no error
□ 1 = timeout or no answer
□ 2 = undefined command or undefined identification
□ 3 = incorrect checksum
□ 4 = incorrect data length
SERV.SIO2
Serial interface 2
Serial interface 2 RS-485 to host or other use. For description, see
“SERV.SIO1”.
SERV.USB
USB status display
If OFF is displayed, no USB cable is connected. The following elements are displayed:
■ Left: Number of data packets received.
■ Right: Current utilization of the data transfer as %.
20 KByte/s = 100 %.
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SERV.P-DP
Profibus DP status display
Display options:
Value
Function
WPAR Wait for the parameterization via the bus.
WCFG Wait for the configuration via the bus.
DEXC Normal operation. Data exchange without error.
TIMOUT Data exchange too slow. Timeout error.
INIERR Initialization error hardware module general.
LENERR Initialization error hardware module data lengths.
SERV.CALCNT
Counter for calibration switch activation
Is incremented by 1 each time RUN is switched to CAL. Is only shown for applications which can be calibrated.
SERV.CALDAT
Date the calibration switch was last activated
Is only shown for applications which can be calibrated.
►
SERV.PUPDAT
Display date: Press
.
Power-up date
Date on which the control system was last activated.
►
SERV.PDWDAT
Display date: Press
.
Power-down date
Date on which the control system was last deactivated.
►
SERV.TEST
Display date: Press
.
Function test
Level:
■
Value
L
Not present in DIFFS application.
Function
OFF Function test stopped.
ON Function test starts (for internal production only).
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Default value:
OFF
8.3.8
PRN parameter group (printer)
PRN.PSIO
RS-485 printer interface
Level:
Value
L
OFF
Default value:
Function
OFF No interface is being used. Neither interface SIO_1 nor SIO_2 are being used
for the printer.
SIO1 Printer interface with SIO_1 on X31.
SIO2 Printer interface with SIO_2 on X40.
PRN.PPROT
RS-485 interface protocol
Level:
Value
L
PRNO
Default value:
Function
PRNO OKI Microline ML182/280/3320 printer with STX/ETX protocol.
PRNX Printer with X-ON/X-OFF protocol (EPSON).
PRNN Printer without protocol. No printer acknowledgement.
PRN.BAUD
RS-485 baud rate
Level:
L
Default value:
19 200
Level:
L
Default value:
EVEN
Must also be set on the printer.
■
■
■
■
■
1200
2400
4800
9600
19 200
RS-485 parity bit
PRN.PARITY
Must also be set on the printer. The data itself is always 8 bits.
Value
Function
NO No parity bit.
EVEN Even parity bit.
ODD Odd parity bit.
PRN.PJOB
Printing job report
Level:
Value
L
Default value:
OFF
Function
OFF Do not print report.
ON A report is printed when the print job is completed (e.g. at “Clear total”).
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PRN.PHREP
Printing report hourly
Level:
Value
L
Default value:
OFF
Function
OFF Do not print report.
ON The total weight, hourly total and hourly rate are printed hourly on one row.
PRN.PCYC
Cyclic print-out
Level:
Value
L
Default value:
OFF
Function
OFF Do not print report.
ON The dump counter, rate, gross and tare weight and actual dump are printed after each scale cycle.
PRN.PLEN
Page length
Range of val-
0 … 96
Level:
L
Default value:
0
ues:
Value
Function
0 No form feed (e.g. printing on continuous paper).
> 0 Form feed if the number of lines printed corresponds to the page length.
PRN.LFTM
Left edge (margin)
Range of val- 0 … 14
Level:
L
Default value:
0
L
Default value:
OFF
ues:
Value
Function
0 No left margin.
> 0 Left margin in spaces for all print-outs.
PRN.MJOB
Print several print jobs on the same page
Level:
Value
Function
OFF Each print job is printed on a new page.
ON A print job is printed on the current page if there is still enough space for it (only if PRN.PLEN = 0).
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PRN.JOBL
Number of lines per print job
Range of val- 0 … 96
Level:
L
Default value:
0
ues:
Number of lines per print job (only with “Clear total”).
Value
Function
0 Do not insert blank lines.
> 0 Complete length of print job in lines. If the print job has fewer lines than stated,
the difference is filled with blank lines. For printing short forms or labels on continuous paper if PRN.PLEN = 0.
PRN.DPOS_L
Line position of date/time for print job
Range of val- 0 … 96
Level: L
Default value:
1
Default value:
1
Default value:
1
Default value:
20
Default value:
1
ues:
Value
Function
0 Date/time is not printed.
> 0 Date/time is printed on the stated line.
PRN.DPOS_C
Column position of date/time for print job
Range of val- 1 … 60
Level: L
ues:
PRN.NPOS_L
Line position of ID number for print job
Level: L
0 … 96
Range of values:
Value
Function
0 ID number is not printed.
> 0 ID number is printed on the stated line.
PRN.NPOS_C
Column position of ID number for print job
Range of val- 1 … 60
Level: L
ues:
PRN.V1PO_L
Line position of weight value 1 for print job
Level: L
1 … 96
Range of values:
Line position of weight value 1 for print job (e.g. total weight Σ1 for DUMP,
DIFF; position of gross weight for DMS-T; position of component weight for
DCOS).
Value
Function
0 Weight value is not printed.
> 0 ID number is printed on the stated line.
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PRN.V1PO_C
Column position of weight value 1 for print job
Range of val- 1 … 60
Level: L
Default value:
40
Default value:
0
ues:
PRN.V2PO_L
Line position of weight value 2 for print job
Level: L
0 … 96
Range of values:
Line position of weight value 2 for print job (e.g. total weight which cannot be
cleared Σ1 for DUMP, position of net weight for DMS_T).
Value
Function
0 Weight value is not printed.
> 0 ID number is printed on the stated line.
PRN.V2PO_C
Column position of weight value 2 for print job
Range of val- 1 … 60
Level: L
ues:
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Default value:
1
9
Alarms and messages
Alarms and messages have the following syntax: The letter A for alarm or W for
warning followed by a three-digit number.
Example: A073.
If a number follows the alarm or warning, it is a device-specific warning. The
number then indicates the device number.
Example: A073.2
If no further details are provided about the acknowledgement, the acknowledgement of the alarm depends on the “SYS.ACLR” parameter. See page 45,
parameter “SYS.ACLR”.
■
■
“SYS.ACLR = OFF” = Automatic acknowledgement if the cause of the alarm
has been remedied or when a change has been made to Step 1.
“SYS.ACLR” = ON: No automatic acknowledgement. Acknowledgement only
or 24 V input “Clear alarm”.
possible with
9.1
A020
Application alarms
MOVE
Cause
Correction
The scale weight is not at a stand- ►
still.
►
►
►
A021
Cause
Avoid violently shaking the scale.
Check inlet and outlet elements for leaks.
Remove anything influencing aspiration.
Increase the maximum downtime TCON.TSTA or downtime tolerance ADC.MOT.
DISCTIME
Correction
The scale is not emptied within the ►
maximum allotted emptying time.
The discharge gate does not open
or only opens part way.
Increase the maximum emptying time TCON.TDMA.
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A022
DISCOPEN
Cause
Correction
The discharge gate is open when
►
dosing starts, during dosing, during ►
acceptance of the gross weight or ►
after emptying. A defective “Scale
closed” probe could be one of the
causes.
A023
HOPPER
Cause
Correction
The probe is still covered after
►
emptying. This is possibly due to a
defective probe or because product
is sticking to the probe. Only possible with the optional weighing container probe.
W026
Set TCON.HLPB parameter correctly.
FLOWTOL
Cause
Correction
The actual flow rate does not fall
within the preselected tolerance
range. Not on alarm output.
►
►
A030
Determine the cause of the incorrect rate.
Increase tolerances for MAIN.TOL+ and MAIN.TOL- parameters.
ZERO
Cause
Correction
Error when zeroing. Excessive
weight deviation when zeroing.
►
►
►
►
A032
Cause
Check inlet slide gate.
Calibrate again.
Increase zero tare.
Residual discharge.
INOPEN
Correction
The inlet slide gate is open in the
►
initial position, when the weight is
►
being accepted or during emptying. ►
The inlet slide gate is closed during ►
the dosing process. Only with the
►
optional inlet slide gate monitor.
72
Set TCON.CTST parameter correctly.
Check discharge gate.
Check the pressure.
Check inlet slide gate.
Check pressure of compressed air.
Check function of inlet slide gate monitoring probe.
Set TCON.INBP parameter correctly.
Residual discharge.
Bühler AG
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Chapter 9 Alarms and messages
A033
PRESSURE
Cause
Correction
Pressure drop in compressed air.
Only with the optional compressed
air monitoring.
►
►
►
9.2
A001
Check pressure of compressed air.
Correctly set compressed air probe.
Check TCON.PRES parameter.
Basic alarms
FLASH
Cause
Correction
The FLASH is defective.
►
►
A002
Switch device off and on.
If the alarm is repeated, replace main circuit board.
RAM
Cause
Correction
The RAM is defective.
►
►
A003
Switch device off and on.
If the alarm is repeated, replace main circuit board.
RUNTIME
Cause
Correction
Runtime error during the program
execution. Software or hardware
problem.
►
►
►
►
A004
Switch device off and on.
If the alarm is repeated, note down “SERV.SADR” and
contact Bühler customer service.
Initialize data or load new program version.
If the alarm is repeated, replace main circuit board.
WATCHDOG
Cause
Correction
Timeout during a program cycle.
Software or hardware problem.
►
►
►
►
A005
Switch device off and on.
If the alarm is repeated, note down “SERV.SADR” and
contact Bühler customer service.
Initialize data or load new program version.
If the alarm is repeated, replace main circuit board.
NO 24V
Cause
Correction
The voltage is too low (< 18 V).
►
►
►
Measure voltage at X1.
If the voltage is lower than 18 V, locate the cause. The
power supply unit may be faulty or overloaded.
If the voltage exceeds 18 V, replace main circuit board.
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Chapter 9 Alarms and messages
73
A006
DATALOST
Cause
Correction
Loss of data in the battery-buffered ►
RAM. The parameters and various ►
data are reset to the original value. ►
Can occur during software downloads.
A007
RANGE
Cause
Correction
The measuring range has exceed- ►
ed or fallen below the normal limits. ►
►
►
►
A008
Recalibrate.
Check jumper X313.
Check for foreign material on the weighing container,
e.g. have the transport locking devices been removed?
Increase the value of the “ADC.MAXR” parameter or set
it to 0.
Check the installation position of the force transducers.
ADCAL
Cause
Correction
There are too few AD values for
calibration.
►
►
►
►
►
A009
Recalibrate.
Check jumper X313.
Check for foreign material on the weighing container,
e.g. have the transport locking devices been removed?
Check the installation position of the force transducers.
Apply sufficient weight for calibration to take place.
ADFCT
Cause
Correction
The AD converter module supplies
no values.
►
A011
Cause
Replace the main circuit board.
LOW4MA
Correction
Set point < 4 mA. Only possible if ►
the analog set point is 4 … 20 mA ►
(“SYS.REM” = REMA).
►
►
74
Check that battery base is firmly in place.
If new software was loaded, acknowledge alarm.
Disconnect the control system from the mains. Wait
15 minutes. Switch on the control. If the alarm is repeated, replace battery.
Measure the current.
Set the counterpart to 4 … 20 mA.
Rectify line interruption.
Check jumper X62.
Bühler AG
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Chapter 9 Alarms and messages
A012
HOST COM
Cause
Correction
Timeout on host interface. The host ►
system no longer communicates
►
with the device.
►
►
W013
Run the host system.
Check functionality or wiring of the interface cable.
Check jumper X31.
Increase the timeout value of the “HOST.TOUT” parameter or set it to 0.
EXTDISP
Cause
Correction
Serial communication to remote
control device interrupted. Only
possible with optional remote control device.
►
►
►
A014
PROFI-DP
Cause
Correction
Profibus error or communication
►
has been interrupted (time-out). De- ►
vice stopped. Alarm only if
“SYS.REM” = REMP.
►
►
►
W016
Check the wiring.
Check adjustment of X80.
Check the value of the “SYS.DISP” parameter.
Check the wiring.
Check the address setting in the value of the
“PBDP.ADR” parameter.
Check the adjustment of the operating mode in the value of the “PBDP.MPDP” parameter.
Increase the timeout value of the “PBDP.TOUT” parameter.
Check master configuration.
PRINTER
Cause
Correction
Printer fault
►
►
►
►
W017
Cause
Refill with paper.
Check whether printer is selected.
Check value of “PRN.PSIO” parameter.
Check the wiring.
DISPLAY
Correction
Communication to the primary dis- ►
play is interrupted. The display it►
self can no longer display the error.
►
Check adjustment of X80.
Set address on the display (see display alarm *No
Comm An*).
Check the wiring.
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Chapter 9 Alarms and messages
75
W018
BATTERY
Cause
Correction
Buffer battery has insufficient voltage or clock has stopped.
►
►
A070
CAN Ctn
Cause
Correction
Interrupted communication with a
CAN module. t = A (EBD 1317)
t = D (EBD 1318/20)
t = L (EBD 1319) n = 1…31 (module address). If CAN COM is displayed, the whole bus is faulty.
►
A071
►
►
►
Note error display on CAN module. Refer to description
of CAN extension modules in appendix.
Check the wiring.
Check address setting on CAN modules.
Check whether configured CAN modules are present.
CAN Mtn
Cause
Correction
A CAN module transmits an error.
t = A (EBD 1317)
t = D (EBD 1318/20)
t = L (EBD 1319) n = 1…31 (module address).
►
A072
►
Correction
A CAN module has an output error. ►
t = D (EBD 1318/20)
t = L (EBD 1319) n = 1…31 (mod- ►
ule address).
►
A073
Correction
The LC module has an incorrect in- ►
ternal device number. Only with
►
calibratable make.
Cause
Note error display on CAN module. Continue in accordance with the module description in the Appendix.
Check wiring of digital outputs.
Check whether alarm stops when output plug connector
is disconnected.
DEVNR
Cause
W075
Note error display on CAN module. Continue in accordance with the module description in the Appendix.
Replace CAN module.
CAN Dtn
Cause
Use the correct LC module.
Set the upper device number from the calibration plate
on MEAG. See page 50, parameter “ADC.DEVNR”.
WARNTEMP
Correction
The temperature in the device is
►
too high. The temperature sensor is ►
located on the display circuit board.
76
Check that battery base is firmly in place.
Replace battery while device is switched on, then switch
control system off and back on again.
Check the temperature in the device.
Install the device in a cooler location.
Bühler AG
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Chapter 9 Alarms and messages
A076
HIGHTEMP
Cause
Correction
The permissible maximum tempera- ►
ture in the device has been ex►
ceeded. The temperature sensor is
located on the display circuit board.
A077
DIGOUT
Cause
Correction
One or more of the outputs deviate ►
from expected behavior.
9.3
Check the temperature in the device.
Install the device in a cooler location.
Remove external voltage or overload sources.
Display alarm *No Comm An*
If this error is displayed, the connection to the circuit board is interrupted. The
configured address is displayed.
■
■
Address 1 = local display in the front door
Address 3 = remote control
Enter address:
1. Press
2. Press
5 times, for approx. ½ second each time.
.
3. Select corresponding address with
9.4
4. Press
.
5. Press
.
+ or
.
Display status 7-segment display
The 7-segment display H1 on the main circuit board reflects the hardware status. If the decimal point is flashing, the control system is activated.
The 7-segment display shows the status and error messages. In the following
table, the status messages are listed on the 7-segment after the display.
Display
Status
The middle segments are displayed cyclically
from top to bottom.
Standard operation.
There are no messages.
L
Software is installed and activated after the restart.
If the display is
If the service tool is used, press <Activate software>. If the
flashing, the
control system is disconnected from power supply, the new
download has not software is also activated.
yet been completed.
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Chapter 9 Alarms and messages
77
Display
Status
U
USB connection active.
Device is connected to PC via a USB cable.
P
Profibus is attached and connected.
For further information: See page 66, parameter
“SERV.P-DP”.
C
New software is copied.
Program 1 is updated. Program 2 is copied. Status message is displayed only during the startup phase.
F
Program 1 is defective. Program 2 is copied.
Status message is displayed only during the startup phase.
In the following table, the error messages are listed on the 7-segment after the
display. If an “E” flashes alternately with another symbol, an error message is
pending. “E d”, for example, indicates that “E” und “d” are flashing alternately.
1
Cause
Correction
Fault in the FLASH memory. No
application present. No application
started.
►
►
Disconnect printed circuit board from power supply.
Clean with compressed air.
Restart. If the error is repeated, replace printed circuit
board.
2
Cause
Correction
Fault in the DRAM memory. No ap- ►
plication started. For example, as a
result of a short circuit on the print- ►
ed circuit board due to copper residue.
Disconnect printed circuit board from power supply.
Clean with compressed air.
Restart. If the error is repeated, replace printed circuit
board.
b
Cause
Correction
Fault in battery RAM memory. No
application started.
►
►
Disconnect printed circuit board from power supply.
Clean with compressed air.
Restart. If the error is repeated, replace printed circuit
board.
E L
Cause
Correction
Defective software version installed. ►
Program 1 shows an incorrect
checksum.
►
78
Reinstall software. If the display does not change, request a new software version.
Disconnect device from power supply. After restart, program 2 is used automatically.
Bühler AG
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Chapter 9 Alarms and messages
E 3
Cause
Correction
►
See A003 RUNTIME
E 4
Cause
Correction
►
See A004 WATCHDOG
E 5
Cause
Correction
►
See A005 NO 24V
E b
Cause
Correction
►
See W018 BATTERY
E 6
Cause
Correction
►
See A006 DATALOST
E C
Cause
Correction
►
See A070 CAN COM, A071 CAN MOD, A072
CAN DOUT
E d
Cause
Correction
►
9.5
See W017 DISPLAY
Status messages
Status messages provide information about the device state. The messages appear in alternation with the normal display and only while the state persists.
Alarms have higher priority and overwrite status messages.
Some of the following messages are application-specific, i.e. they do not occur
with every control.
Display
State
LOCAL STOP
Device was stopped manually.
STOP
Device was stopped because 0 V is present at the 24 V
input “Enable/Start”.
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Chapter 9 Alarms and messages
79
80
Display
State
c STOP
Device was stopped because no enable is connected via
Profibus or RS-485 (HOST).
v STOP
Device was stopped because the set point is too low.
m STOP
Device was stopped because no motor current is measured for the grinding motors. The motors were not started or the current measurement is not working.
Σ STOP
Device was stopped because the required total or a required number was reached.
WAIT PRODUCT
Device is started but no product is present (e.g. product
probe is uncovered).
REFILL
Fill function is active (not normal filling).
SUSPEND
The machine was started, but there is no feeding enable.
DISCHARGE
Discharge function (or residual discharging) is active (not
normal emptying).
CAL MODE
CAL mode is active. Calibration switch in CAL position.
SERVICE
Service mode is active, i.e. “SERV.SERM” = ON (outputs
can be set).
LOCAL
The device is operated locally. Only if REMOTE input is
active and 0 V is applied.
MANUAL
The device is operated manually. No automatic control
sequence.
EMERGENCY
Device is in emergency operation (“TCON.MODE”).
TEACHING
Device is in learning mode.
HIGH SETP
Set point is too high. The set point is limited to the maximum value.
SIM ON
Simulator mode is activated, i.e. “SERV.SIMM” = ON.
SIM FREEZE
Simulator mode is on but passive.
TEST
Device is in test mode.
LOW SETP
Set point is too low. The set point is limited to the minimum or 0.
WARM UP
Wait until the AD converter is stable.
STOP OPEN OK
Device is stopped. All elements are in home position.
The machine may be switched off or opened.
OVERLOAD
The grinding motor utilization has exceeded 130 %. The
grinding rollers were disengaged.
SAVE BUSY
Automatic grinding gap adjustment has sent a save request. However, the message has not been acknowledged by the host system.
HL INLET
The product probe in the inlet signals that it is covered
(0 V). This message is only output if “TCON.HL IN” =
DIG_IN.
Bühler AG
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Chapter 9 Alarms and messages
9.6
Short messages
Short messages are operating aids. They appear once at the touch of a button.
Some of the following messages are application-specific, i.e. they do not occur
with every control.
Display
State
OK
Input detected and applied.
Example: When a recipe has been loaded.
LOCK
Parameter modification is locked.
See page 44, parameter “SYS.LOCK”.
REMOTE
The control system is in remote operation mode, e.g. via
Profibus. Parameters can only be edited in remote operation mode, e.g: “SYS.REM” = REMP.
See page 42, parameter “SYS.REM”.
PROTECT
Recipes are protected from being overwritten. The recipes cannot be saved.
See page 34, parameter “REC.PROT”.
DATA INIT
Initialization is executed. The control is reset to default
values.
See page 47, parameter “SYS.INIT”.
SET ZERO
Zero adjustment is executed.
See page 48, parameter “ADC.ZERO.x”.
SET CAL
Calibration is executed.
See page 48, parameter “ADC.CALW.x”.
SET TARE
Taring is executed.
WT INIT
Weight values are re-initialized.
Example: If “ADC.DIV” is adjusted.
WAIT
The device processes an order and prompts the operator
to wait.
Do not operate the control while WAIT is displayed.
CLEAR
Data is being deleted.
ESC
Modification has been aborted.
Example: If
is pressed during a modification.
OCCUPIED
Interface is occupied.
Example: If SIO is set to host and is to be changed to
an external device.
NO EDIT
Modification not possible.
Example: When attempting to modify display parameters.
NO CAL
Modifications only possible if calibration switch is in CAL
position.
Example: When attempting to modify “SYS.TYP” if the
calibration switch is in RUN position.
NO LOCAL
Modifications only possible in LOCAL mode.
NO STOP
Modifications only possible when device is stopped.
NO SETVAL
No set point present.
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Chapter 9 Alarms and messages
81
82
Display
State
ASSIST ON
The input assistant has been started.
ASSIST OFF
The input assistant has been exited.
MANUAL START
Process has been started manually.
MANUAL STOP
Process has been stopped manually.
OUT OF RANGE
The input value is outside the valid range.
ERROR
Action has failed.
NO MODE
The selected function is not available in this operating
mode.
Bühler AG
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Chapter 9 Alarms and messages
10
Spare parts
10.1
Basic versions
10.2
MEAG with display in the mild steel housing, IP65 protection
Part. No.
115/230 V AC
EKP -80058-810
24 V DC
EKP -80012-810
115/230 V AC calibratable
EKP -80152-810
24 V DC calibratable
EKP -80151-810
MEAG with display in the stainless steel housing, IP65
Part. No.
115/230 V AC
EKP -80060-810
24 V DC
EKP -80081-810
115/230 V AC calibratable
EKP -80154-810
24 V DC calibratable
EKP -80153-810
Wall model with mounted display, IP20
Part. No.
24 V DC
EKP -80123-810
Options
Option
Part. No.
MEAG calibratable assembly (cover for the calibration
switch and the DMS terminals; may be installed later)
EKP -80011-810
LC module in the housing (CAN extension load cell in a
terminal box; necessary for calibratability)
EKP -80118-810
Analog module EBD 1317 e.g. for device type DEVICE
In stainless steel housing
EKP -80241-810
Analog module EBD 1317 e.g. for device type DEVICE
In normal steel housing
EKP -80242-810
MEAG display module (remote control / built-in version;
built into cabinet doors)
EKP -80004-810
Remote control: table or wall model
EKP -80042-810
Terminal box for 1 … 4 load cells, type VKK1-4
UXE -26527-301
Terminal box for 5 … 8 load cells, type VKK2-8
UXE -26527-303
Cable 6 x 0.75 mm², shielded
UNE -30600-069
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Chapter 10 Spare parts
83
10.3
Spare parts in stock
Stocks of spare parts and parts subject to wear are an important requirement for
the permanent operational readiness of the control system.
Bühler spare parts often fulfil special manufacturing and delivery specifications.
Bühler sells spare parts in accordance with state-of-the-art technology.
Only spare parts delivered by Bühler are inspected and approved. Spare parts
from other sources might negatively change the prescribed constructional qualities of the control system and/or impair safety.
10.4
Spare parts lists
Spare parts for basic device. Strongly recommended for storage:
Designation
Part. No.
Basic print, EBD 1312. With current program version.
EKP -95076-810
Display print, EBD 1316
EKP -84337-810
Spare parts for corresponding design version. Recommended for storage:
Designation
Part. No.
Print expansion keyboard
EBD 1314
EKP -84440-810
Circuit board CAN extension (analogue I/O)
EBD 1317
EKP -85360-810
Circuit board CAN extension (digital I/O)
EBD 1318
EKP -85361-810
Print CAN expansion load cell
EBD 1319
EKP -85371-810
Print CAN module digital I/O
EBD 1320
EKP -85397-810
Pulse power supply 100 … 240 V AC. Only contained in
115/230 V AC design version.
UNE -80206-001
Fuse F1 (basic print, 2 A slow).
UNE -22002-025
More spare parts:
Designation
Part. No.
Profibus plug
UXE -36405-820
USB cable 1.8 m for dVice2L
UXE -30802-031
Cable set (strands) numbered for CAN extension or display
circuit board:
84
200 mm
WEWS-95011-810
500 mm
WEWS-95012-810
1000 mm
WEWS-95013-810
1400 mm
WEWS-95014-810
4-wire cable, shielded, twisted into pairs. For serial interface, CAN module or printer.
UXE -30605-301
Bühler AG
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Chapter 10 Spare parts
10.5
Designation
Part. No.
Interface converter RS-232/RS-485 MI400e-RD. For connection to PC or as connection to a printer ML3320.
UXE -36906-003
Display print and foil, assembled.
EKP -80004-810
Display foil (without print).
EKP -10006-010
Display 4-pole ribbon cable (EBD 1312 – EBD 1316).
EKP -10007-010
Battery for the RAM.
UNE -74921-029
BÜLTE retaining ring.
UNN -14024-005
Spare parts for printer ML3320
Designation
Part. No.
Microline 3320 (ML3320) dot matrix printer for 230V AC
UXE -34951-220
Microline 3320 (ML3320) dot matrix printer for 115V AC
UXE -34951-210
RS232/current loop interface selection for Microline 3320;
additional circuit board must be fitted in printer
UXE -34951-117
Single-sheet feeder for Microline 3320
UXE -34951-221
Black ink ribbon
UXE -34951-110
RS-232/RS-485 interface converter MI400e-RD
UXE -36906-003
Printer cable between MI400 interface converter and printer EKP -80246-810
RS-485 cable between MEAG and MI400 (state length)
UXE -30605-301
Bühler AG
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Chapter 10 Spare parts
85
11
Appendix
11.1
Force transducer connections
11.1.1
Force transducer types and wire colors
Type/signal
Electric
terminal
Designation HBM
Z6…
Revere SHBx
R-…-C3-SC
Reznicek &
Hlach
DB-10-…
Shield
X10:1
SHIELD
yellow
transparent
yellow
Sense+
X10:2
S+
green
yellow
Feeder unit+ X10:3
OUT+
blue
green
black
white
Signal+
X10:4
IN+
white
white
red
yellow
Signal-
X10:5
IN-
red
red
white
green
Feeder unit- X10:6
OUT-
black
black
blue
brown
Sense-
S-
gray
blue
11.1.2
X10:7
4-wire force transducer
X10
1 Shield
EBD 1312
2 S+
3 OUT+
4 IN+
5 IN 6 OUT 7 S-
11.1.3
1
6 WIRE
4 WIRE
X313
6-wire force transducer
X10
1 Shield
EBD 1312
2 S+
3 OUT+
4 IN+
5 IN 6 OUT 7 S-
86
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 11 Appendix
1
X313
6 WIRE
4 WIRE
burster
8523-500
(BSPB only)
11.2
DMS terminal box
11.2.1
Dimensions and technical specifications for terminal box VKK1-4
Version and order number: See page 83, chapter “Options”.
11.2.2
Material
Aluminum
Degree of protection
IP65
Weight
1 kg
Dimensions and technical specifications for terminal box VKK2-8
Version and order number: See page 83, chapter “Options”.
Material
Steel plate
Degree of protection
IP65
Weight
2.5 kg
Bühler AG
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Chapter 11 Appendix
87
11.2.3
4-wire force transducer with connection box
Load cell
Output
gn
bl
bl
wh
wh
rd
rd
blk
blk
1 Shield
3 OUT+
4 IN+
5 IN 6 OUT -
gr
1
6 WIRE
4 WIRE
X313
7 S-
ye
ye
EBD 1312
2 S+
X10
11.2.4
6-wire force transducer with connection box
Load cell
gn
Output
gn
bl
bl
wh
wh
rd
rd
blk
blk
gr
gr
ye
ye
1 Shield
3 OUT+
4 IN+
5 IN 6 OUT 7 SX10
11.3
LC module
11.3.1
Dimensions and technical specifications
200
160
IO 24...27
7 6 5 4 3 2 1
150
110
LC
X301
1
2
3
4
5
6
7
8
IO 28...31
H324
H325
H326
H327
X302
1
2
3
4
5
6
7
8
H328
CAN
H329
H330
1
2
3
4
H350
H331
X100
X303
1
2
3
4
Out 28…31
Out 24…27
NC
EBD1319
S300
Order numbers: See page 83, chapter “Options”.
Technical data
88
ON
ON
OFF
OFF
X99
X312
Material
Steel plate
Degree of protection
IP65
Bühler AG
MEAG-DUMP-66698-7-3-1506-en-US
Chapter 11 Appendix
EBD 1312
2 S+
1
X313
6 WIRE
4 WIRE
Technical data
11.3.2
Weight
approx. 1 kg
Cable cross section
max. 1.5 mm2
Lid
can be lead sealed
Height
80 mm
4-wire force transducer with LC module
X313
1
1
SH
S+
3
5V
4
I+
5
I-
6
0V
6 WIRE
4 WIRE
X100
1
2
3
4
S1
X301
X99
EBD 1319
11.3.3
X100
CAN
1
2
3
4
24V
0V
R/T+
R/T-
ON
OFF
EBD 1312
6-wire force transducer with LC module
X313
1
1
2
SH
S+
3
5V
4
I+
5
I-
6
0V
7
6 WIRE
4 WIRE
X100
1
2
3
4
S-
X301
EBD 1319
1
X99
X100
CAN
1
2
3
4
24V
0V
R/T+
R/T-
ON
OFF
EBD 1312
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Chapter 11 Appendix
89
11.4
CAN expansion modules
11.4.1
Types
11.4.2
Circuit
board
CAN expansion modules
Description
EBD 1317
Analog I/O
8 analog inputs.
Each input can be configured for various functions.
PT100
PT1000
0/4 … 20 mA
0 … 5/10 V
± 80 mV difference
2 analog outputs
0/4 … 20 mA
EBD 1318
Digital I/O
12 digital I/Os 24 V
Each of the 12 I/Os can be configured as input or
output.
EBD 1319
Load Cell
1 high-resolution load cell input
(LC), calibrat- 8 digital I/Os 24 V
able
Each of the 8 I/Os can be configured as input or
output.
EBD 1320
Digital I/O
Safe Output
8 digital inputs 24 V
8 digital outputs 24 V
Connection
EBD 1311 / EBD1312
EBD 1317/18/19/20
1
X100 CAN
24 V 0 V R/T+ R/T1
2
3
4
X100
1
2
X99
3
EBD 1317/18/19/20
1
ON
OFF
4
X100
1
2
ON
OFF
X99
3
4
Connecting the module:
1. Wire the CAN Interface as BUS.
2. On the last module, switch the terminations on (X99 = ON).
3. On all others, switch the terminations off (X99 = OFF).
11.4.3
LED display
Each CAN expansion module contains a 1-digit LED display; EBD 1320 has a
2-digit display. It indicates the hardware status.
A flashing decimal point indicates that the module is in operation.
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Chapter 11 Appendix
A number from 1 … 9 indicates the address; a number from 1 … 31 for
EBD 1320. If several CAN expansion modules of the same type are present, different addresses must be set according to the I/O description of the application.
Set address:
1. Keep the button pressed down until the address flashes.
2. Keep pressing the button until the corresponding address is displayed.
3. Keep the button pressed down until the address does not flash any more.
If an “E” flashes alternately with another symbol, an error message is pending.
If, for example, “E” and “3” flash alternately, the fault “E 3” is pending. Meaning
of the error messages:
E 1
Cause
Correction
Software error
►
Switch module off and back on again.
If the message is displayed again, replace module.
E 2
Cause
Correction
EEPROM data loss
►
►
Switch module off and back on again.
If the message is displayed again, replace module.
Check whether the correct address is
displayed.
E 3
Cause
Correction
No connection to CAN interface
►
►
Press button and check address.
Check settings of the parameters on
the MEAG.
E 4
Cause
Correction
A/D converter error
►
Switch module off and back on again.
If the message is displayed again, replace module.
E 5
Cause
Correction
Digital outputs
►
One or more of the outputs deviates
from expected behavior. (External
voltage, short circuit, overload).
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Chapter 11 Appendix
91
E 6
Cause
Correction
No external 24 V for EBD 1320
►
Check external 24 V at X105:1 plug.
LED 24 V EXT lights up when there
is voltage.
E b
Cause
Correction
Automatic baud rate search (no
connection to CAN interface).
►
►
11.5
Press button and check address. (For
setting see address.)
Check settings of the parameters on
the MEAG.
Remote control
A remote control is an additional display and control unit that is installed at another location.
11.5.1
Installation version
235
206
101
127
113
99
101
Fig. 11.1
Technical data
92
Parts no.
EKP -80004-810
Type of protection
IP65
Depth
40 mm
Power supply
+24 V DC from the device control system
6 bores
6 mm in diameter
Cable cross section
max. 2.5 mm2
Front panel section
99 x 206 mm
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Chapter 11 Appendix
11.5.2
Table or wall version
Fig. 11.2
Technical data
11.5.3
Parts no.
EKP -80042-810
Type of protection
IP65
Depth
40 mm
Power supply
+24 V DC from the device control system
4 bores
5.5 mm in diameter
Cable cross section
max. 2.5 mm2
Connect to MEAG circuit board SIO_0
MEAG
Basisprint
EBD 1312
MEAG
Anzeigeprint
EBD 1316
X80
1
2
3
6
5
4
1
2
3
4
SIO_0
X30
X51
SIO_0
X30
X50
1
+24 V Line
1
2
0 V Line
2
2
3
RXD_TXD +
3
3
4
RXD_TXD -
4
1
4
SIO_0
X50
X51
Fig. 11.3
If the local display unit is removed from the control system and installed elsewhere, it is to be connected as a remote control. Address 1 is still used, however, and the value of the parameter SYS.DISP will remain on OFF.
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Chapter 11 Appendix
93
With a distance of 5 m or more, use a shielded, 4-core cable.
Recommended cable: UXE -30605-301
1. Set address on the remote control.
►
Press
5 times.
►
Press
►
Select address 3 with the
►
Press
.
►
Press
.
.
+ or
.
2. Activate interface.
► Select SYS.DISP parameter.
►
►
until parameter value flashes.
Press
Select the corresponding value. See page 43, parameter “SYS.DISP”.
11.6
Printer ML3320
11.6.1
Connection and settings
MI400e-RD
Converter
RS485/RS232
MEAG
EBD 1312
ML3320
Printer
Option RS232/Current loop
ON
1
SP1 SP2
A
A
12345678
SIO_1
X31
J2
J1
B
2
0 V Line
5
2
2
3
RXD_TXD +
4
3
3
4
RXD_TXD -
3
5
7
2
3
4
SIO_1
11.6.2
DSUB
9pol
X31
DSUB
25pol
B
SP3
C B A
SP4
B A
SP1=B
SP2=A
SP3=A
SP4=A
SP5=B
B A
SP5
Printer settings
Each time the key is pressed, one line is printed out. The group is printed out
on the left, the menu item in the centre and the value set on the right.
1. Reset printer settings.
► Press and hold down the <SEL> and <LF> keys and at the same time
switch on the printer at the main switch.
2. Change to settings mode.
► There must be paper in the printer.
► Hold down the <SHIFT> key and press the <MENU> key at the same
time.
→ MENU LED lights up. The functions described under the keys are active.
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Chapter 11 Appendix
3. Set the character set.
► Keep pressing the <GROUP> key until you reach the Symbol Sets
group.
► Keep pressing the <ITEM> key until you reach the Code Page menu
item.
► Keep pressing the <SET> key until the Multilingual value is set. Set the
Cyrillic 2 character set for Russian.
4. Set parity.
► Keep pressing the <GROUP> key until you reach the Serial I/F group.
► Keep pressing the <SET> key until the Even value is set.
5. Set the baud rate.
► Keep pressing the <ITEM> key until you reach the Baud Rate menu
item.
► Keep pressing the <SET> key until the 19200 BPS value is set.
6. Set DSR.
► Keep pressing the <ITEM> key until you reach the DSR Signal menu
item.
► Keep pressing the <SET> key until the Invalid value is set.
7. Print all printer settings.
► Press the <PRINT> key.
8. Changing to operating mode.
► Hold down the <SHIFT> key and press the <MENU> key at the same
time.
→ The SEL LED lights up. The printer is ready for operation.
9. Turn the printer off and back on again.
11.7
Calibration
Depending on the version, the MEAG control unit may be used for traffic with
mandatory calibration requirements. The scale must be fitted with an LC module
for this purpose. A calibration sign is stuck next to the display.
MID Directive 2004/22/EC for automatic scales is satisfied.
11.7.1
Setting parameters
The calibration switch on the EBD 1312 main circuit board prevents settings being changed without authorization. To set parameters, move the calibration
switch to CAL. The following parameters correspond to the calibration data and
must be set as per the calibration sign:
■
■
■
■
Max = TCON.MAXW and ADC.MAXR
Min = TCON.MINW
∑min = TCON.MINT
dt = ADC.DIV
Secure the calibration switch with the calibration cover and a safety decal.
Punch in the value of the SERV.CALCNT parameter on the safety decal
(CALCNT counts the number of switch movements).
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Chapter 11 Appendix
95
11.7.2
Calibration memory
The device is fitted with a calibration memory. This stores a data record each
time “Clear total” is carried out. A data record comprises the time and date, the
ID number, the total weight and the checksum. The calibration memory comprises a FLASH memory permanently fitted on the EBD 1312 main circuit board.
This can store 120,000 entries and is structured as a circular buffer. If the memory overflows, the oldest entries are overwritten. The MAIN.JOBID parameter
displays the saved data.
11.7.3
Test stop
For the dynamic test, the gross weight and the tare can be checked for every
dump. See MAIN.DTST parameter.
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Chapter 11 Appendix
11.8
EU declaration of conformity
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Chapter 11 Appendix
97
98
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Chapter 11 Appendix
Parameter list
Production plant:
Name:
Date:
Parameter
Default value
Unit
USER.FLO/FLOS
0
t/h or cwt/h
USER.Σ1/Σ1S
0
kg
USER.Σ2
kg
USER.WT
kg
Customer value
USER.LOAD
USER.SAVE
USER.PRINT
MAIN.DWT/DWTS
20.00
kg
MAIN.CUTW
0
kg
MAIN.LSU
kg
MAIN.FWT
kg
MAIN.EWT
kg
MAIN.TOL+
0.000
t/h
MAIN.TOL–
0.000
t/h
MAIN.SCNT
MAIN.DCNT
MAIN.DC2
MAIN.LOAD
MAIN.SAVE
MAIN.RPRO
OFF
MAIN.DTST
MAIN.JOBID
MAIN.TEST
REC.NR
0
REC.DWTS
20.00
kg
REC.CWT
0
kg
REC.CUTW
0
kg
REC.PROT
OFF
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Chapter 11 Parameter list
99
100
Parameter
Default value
Unit
TCON.DTYP
MSDL
TCON.DSIZE
40
TCON.RECM
OFF
TCON.MAXW
40.00
kg
TCON.MINW
8.00
kg
TCON.MINT
8.00
kg
TCON.FMAX
0.000
t/h or cwt/h
TCON.WIMP
10.00
kg
TCON.IMPM
TIME
TCON.FAVG
4
TCON.MEWT
2.00
TCON.CTWT
0.5
TCON.CTST
OFF
TCON.IMOD
OFF
TCON.HLPB
OFF
TCON.DIPB
OFF
TCON.INPB
OFF
TCON.PRES
OFF
TCON.FAO
10.000
TCON.ACUT
OFF
TCON.CCYC
1
TCON.TNPR
30
s
TCON.TARD
0
s
TCON.TDMA
15.0
s
TCON.TDMI
2.0
s
TCON.TINT
2.0
s
TCON.TDAP
0.6
s
TCON.TDAD
0.4
s
TCON.TASP
0.5
s
TCON.TBLK
1.5
s
TCON.TSTA
5.0
s
TCON.TFWD
0.3
s
TCON.TEWD
0.3
s
TCON.HTYP
STD
TCON.STRT
OFF
TCON.DSTO
OFF
TCON.KSTO
OFF
TCON.FDP
OFF
TCON.KEY_S2
DISC
kg
t/h
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Chapter 11 Parameter list
Customer value
Parameter
Default value
TCON.OPTDIO
OFF
TCON.LCIO
OFF
Unit
Customer value
TCON.DATINI
SYS.TYP
NOAPP
SYS.REM
LOC
SYS.RIN
OFF
SYS.EIN
OFF
SYS.DISP
OFF
SYS.EDIS
ON
SYS.PSAV
STOP
SYS.SD
0
SYS.SDT
600
SYS.LOCK
OFF
SYS.MSG
ALL
SYS.ACLR
OFF
SYS.AINV
ON
SYS.AO.x
0
SYS.AI.x
0 mA
SYS.AOADJ.x
100.0
%
SYS.AIADJ.x
100.0
%
SYS.HIDE
OFF
SYS.CANBR
200
SYS.ENET
OFF
SYS.TCP
OFF
s
mA
kBaud
SYS.INIT
ADC.CHNR
0
ADC.WT.x
kg
ADC.ZERO.x
ADC.CALW.x
40.000
kg
ADC.MAXR.x
0.000
kg
ADC.DIV
0.001
ADC.UNIT
KG
ADC.FILT
2
ADC.MOT.x
0.5
ADC.TMOT
0.0
s
ADC.AZER
0.00
kg
ADC.NORM
INDST
ADC.BCHNR
0
ADC.PUPT
10
s
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Chapter 11 Parameter list
101
Parameter
Default value
ADC.ZADV.x
0
ADC.DADV.x
100 000
Unit
ADC.ADV.x
ADC.SWVERS
ADC.DEVNR
0
HOST.SIO
SIO1
HOST.ADR
0
HOST.BAUD
4800
HOST.PARITY
NO
HOST.TOUT
0
HOST.WFOR
FIX
HOST.ENBL
OFF
HOST.COMP
OFF
ENET.ADR
0
ENET.MPDP
EXTD_L
s
ENET.IP
ENET.SUBNET
ENET.STDGW
ENET.IPSET.x
0
ENET.SNSET.x
0
ENET.GWSET.x
0
ENET.TOUT
1.0
s
ENET.STATUS
ENET.COM
TCP.MPDP
EXTD_L
TCP.IP
TCP.SUBNET
TCP.STDGW
TCP.IPSET.x
0
TCP.SNSET.x
0
TCP.GWSET.x
0
TCP.TOUT
1.0
s
TCP.COM
PBDP.ADR
0
PBDP.TOUT
1.0
PBDP.WFOR
FIX
PBDP.MPDP
NORM
PBDP.COMP
OFF
s
PBDP.CTRLB
102
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Chapter 11 Parameter list
Customer value
Parameter
Default value
Unit
Customer value
PBDP.STATB
PBDP.DSDIR
RXD
PBDP.DSNR
0
PBDP.DSIDX
0
PBDP.DSBYTE
8
PBDP.DSTYPE
1
BYTE
PBDP.DAT
PBDP.DSCNT
SERV.ID
SERV.V_PROG
SERV.V_APPL
SERV.V_BASE
SERV.V_BOOT
SERV.DATE
SERV.TIME
SERV.ERR.x
SERV.EVT.x
SERV.ALLEVT.x
SERV.CPU
SERV.SADR
SERV.PCNT
SERV.ELOG
ON
SERV.VLOG
OFF
SERV.CLOG
ON
SERV.JLOG
ON
SERV.SIMM
OFF
SERV.SERM
OFF
SERV.DIN
SERV.DOUT
SERV.DISPIN
SERV.AIN.x
V / mA
SERV.AOUT.x
mA
SERV.LC
mV
SERV.TINT
°C
SERV.SIO1
SERV.SIO2
SERV.USB
SERV.P-DP
SERV.CALCNT
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Chapter 11 Parameter list
103
Parameter
Default value
Unit
SERV.CALDAT
SERV.PUPDAT
SERV.PDWDAT
104
SERV.TEST
OFF
PRN.PSIO
OFF
PRN.PPROT
PRNO
PRN.BAUD
19 200
PRN.PARITY
EVEN
PRN.PJOB
OFF
PRN.PHREP
OFF
PRN.PCYC
OFF
PRN.PLEN
0
PRN.LFTM
0
PRN.MJOB
OFF
PRN.JOBL
0
PRN.DPOS_L
1
PRN.DPOS_C
1
PRN.NPOS_L
1
PRN.NPOS_C
20
PRN.V1PO_L
1
PRN.V1PO_C
40
PRN.V2PO_L
0
PRN.V2PO_C
1
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Chapter 11 Parameter list
Customer value
Bühler AG
CH-9240 Uzwil, Schweiz
T +41 71 955 11 11
F +41 71 955 33 79
www.buhlergroup.com
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