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DMR167902 RevB SPRD System Planning Data

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Site Planning Reference Data
System Level
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System Planning Data
CSIP Level 0:
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Philips has taken care to ensure the accuracy of this document. However, Philips assumes no liability for errors or omissions and reserves the
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changes in the product(s) or program(s) described in this document at any time.
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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Table of Contents
1
INTRODUCTION ............................................................................................................................ 3
1.1 Purpose and intended use.............................................................................................................. 3
1.2 Applies to ........................................................................................................................................ 3
1.3 Document History ........................................................................................................................... 3
1.4 Glossary ......................................................................................................................................... 3
2
MECHANICAL DATA .................................................................................................................... 4
3
ENVIRONMENTAL DATA ............................................................................................................. 5
4
ELECTRICAL DATA ...................................................................................................................... 5
4.1 Allura Systems................................................................................................................................ 5
4.2 Azurion Systems............................................................................................................................. 6
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4.3 Allura Systems and Azurion Systems ............................................................................................. 6
5
NETWORK DATA .......................................................................................................................... 7
6
REMOTE SERVICE DATA ............................................................................................................ 7
7
EARTHQUAKE PROVISIONS ....................................................................................................... 8
8
PRE-INSTALLATION REQUIREMENTS ....................................................................................... 9
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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1
INTRODUCTION
1.1
Purpose and intended use
This document gives a site planning guideline for the installation of these systems:
1.2
Applies to
Allura
Azurion
1.3
Revision
Reason for change
B
Updated Larc mechanical data
Changes with respect to previous revision are highlighted yellow
Changed CSIP level from 1 to 0.
Corrected heat emission data
Corrected mains resistance values for Azurion systems
Changed input rating from 400 V – 480 V to 380 V – 480 V for Azurion R2.1 and higher
Added mains resistance values for R2.1 and higher
Corrected mains resistance values
Changed maximum diameter of input wiring
Example of best practice earthquake provision changed
Some minor improvements
Corrected noise levels
Changed environmental room condition table column ‘Operation’ to ‘Installed’
Corrected environmental data
Corrected electrical data
Corrected Heat Emission
Corrected electrical data
Changed heat output, acoustic noise and electrical requirements
Introduction of R8.2
A
11
10
09
08
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Document History
07
05
04
03
02
01
00
1.4
Glossary
For an explanation of the abbreviations and terms used in this publication, refer to the Glossary for IGT
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
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2
MECHANICAL DATA
Crate
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Part
L
[mm]
W
[mm]
Minimum
H
[mm]
Weight
[N]
L
[mm]
W
[mm]
H
[mm]
Weight
[N]
Larc1, assembled
2900
1150
2075
9500
2730
800
1900
9500
Larc1 - U arc
3170
1150
2145
7990
2550
800
1970
6850
Larc1 - C arc
3170
1150
2145
6600
2800
800
1900
5450
Larc3, assembled
2900
1200
2200
11000
2550
870
1970
9500
Poly G floor, assembled
2500
1100
2160
12690
2323
779
1969
11250
Poly G floor, base (split)
990
990
1485
5150
990
990
1400
5100
C-arc Poly G
2500
1100
1980
9200
2018
974
1945
8000
L-arm (Poly G and Clea(2))
2990
990
1450
9500
2362
885
2020
8600
C-arc CLEA(2)
2500
1100
2160
9200
2274
880
1990
8000
CLEA floor
3040
1160
2020
14920
2300
846
2020
13400
Clip rails
4770
210
130
680
4300
95
100
270
Monitor ceiling carriage
3660
690
415
930
3510
392
251
800
MCS monitors (6-Mon.)
1880
880
1900
3700
1424
450
951
2500
AD7X table top
3250
730
330
750
3190
608
330
750 N
AD7X base (fixed)
2000
790
1340
5000
2000
790
1340
5000
AD7X base (swivel)
2000
790
1390
6000
2000
790
1390
6000
FlexMove (largest crate)
2264
1445
1865
4300
2264
860
1865
4300
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
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3
ENVIRONMENTAL DATA
Installed and Operational
Stock / Transport
+15 °C to +30 °C
-25 °C to +70 °C
Max. 0.5 °C/minute
20% to 80% (non-condensing)
Humidity shall be stable within 10%.
This is not room-specific, and is
therefore valid for all rooms where a
part of the system is located.
NA
5% to 95% (noncondensing)
10 Hz to 150 Hz
0.15 mm
1.0 g
10 Hz to 150 Hz
0.15 mm
1.0 g
Temperature
Temperature gradient
Humidity
Vibrations / Shock range
Vibrations / Shock amplitude
Vibrations / Shock acceleration (peak)
Shock pulse duration
6 ms to 10 ms
6 ms to 10 ms
The vibration and shock criteria listed above must be met to prevent damage to the system.
For image quality specific requirements are applicable to the stands, see Site Planning Guideline.
Copies are uncontrolled
Air pressure
700 hPa to 1060 hPa
700 hPa to 1100 hPa
Average heat emission during clinical use
Data applicable for basic system:
MCS with large monitor in ER
1 workstation + 2 x small monitor in CR
Add 350 W for additional large monitor
Add 80 W for additional small monitor
Add 300 W for additional workstation
Exam Room Monoplane: 1600 W
Exam Room Biplane: 1800 W
Technical Room Monoplane: 3700 W
Technical Room Biplane: 6500 W
Control Room Monoplane: 570 W
Control Room Biplane: 570 W
Acoustic Noise – Exam Room
Standby 40 dB(A) to 45 dB(A)
Operation max. 60 dB(A), with the
following exceptions:
Max. 75 dB(A) during ≥ 30 °/s DRA
scan
Max. 71 dB(A) during all other
geometry movements
NA
Acoustic Noise – Technical Room
Standby < 60 dB(A)
Operation max. 68 dB(A)
NA
Acoustic Noise – Control Room
Standby < 50 dB(A)
Operation max. 60 dB(A)
4
ELECTRICAL DATA
4.1
Allura Systems
NA
NA
NA
NA
NA
NA
NA
Mains Supply Impedance
Hospital
Mains
Voltage
Frequency
3~400 V
3~415 V
3~440 V
3~460 V
3~480 V
50/60 Hz
50/60 Hz
50/60 Hz
50/60 Hz
50/60 Hz
Peak
Current
330 A
325 A
315 A
310 A
300 A
Hospital
Mains
Fuse1
76 A…125 A
73 A…125 A
69 A…125 A
66 A…125 A
63 A…125 A
Max.
Resistance
at mains
switch
140 mΩ
215 mΩ
325 mΩ
400 mΩ
465 mΩ
Additional
Internal
Resistance
+ 80 mΩ
+ 80 mΩ
+ 80 mΩ
+ 80 mΩ
+ 80 mΩ
Max
Resistance
at
Generator
= 220 mΩ
= 295 mΩ
= 405 mΩ
= 480 mΩ
= 545 mΩ
1
Note that, based upon local codes and regulations, additional restrictions may apply that limit the
allowable upstream protective disconnect device rating. The term Hospital Mains Fuse is the
overcurrent protective device for the dedicated branch circuit powering the Allura Xper system. It may
be implemented with a fuse or other locally approved protective disconnect device with gG current-time
characteristics
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
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4.2
Azurion Systems
Mains Supply Impedance
Hospital
Mains
Voltage
Frequency
3~380 V3
3~400 V
3~415 V
3~440 V
3~480 V
50/60 Hz
50/60 Hz
50/60 Hz
50/60 Hz
50/60 Hz
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4.3
Peak
Current
330 A
330 A
325 A
315 A
300 A
Hospital
Mains
Fuse2
80 A…125 A
76 A…125 A
73 A…125 A
69 A…125 A
63 A…125 A
Max.
Mains
Resistanc
e
at MM-X
74 mΩ
140 mΩ
215 mΩ
325 mΩ
465 mΩ
Additional
Internal
Resistance
Max. Mains
Resistance
at ME-X
+ 60 mΩ
+ 60 mΩ
+ 60 mΩ
+ 60 mΩ
+ 60 mΩ
= 134 mΩ
= 200 mΩ
= 275 mΩ
= 385 mΩ
= 525 m
Allura Systems and Azurion Systems
•
From R8.2 onwards, the Velara generator is replaced with the Certeray iX generator.
The main difference for site planning between the Velara generator and the Certeray generator is
that the Certeray generator has no direct connection to hospital mains power. The Certeray
generator is powered and grounded by the M-cabinet.
•
All ratings above are valid for monoplane and biplane systems, because biplane systems alternate
their X-ray exposure pulses.
•
All connected phase wires shall have an upstream disconnect switch with a rating of ≤ 125 A.
•
All installations and wiring up to the incoming mains power shall be installed and verified to comply
with applicable local regulations.
•
The connected supply shall be compliant with NEMA standard XR9 – Power Supply Guideline for
X-ray machines.
•
Input wiring shall be min. 6AWG (13.3 mm2) and max. 00AWG (67.4 mm2).
•
The peak current is the max. instantaneous current measured over an extremely short period of
time (8.33 milliseconds, or half a cycle). The momentary current during exposure does not exceed
125 A per phase observed over any 5 second window.
•
The maximum required power is 100 kVA.
•
The tolerance on the allowed nominal mains voltage shall not exceed ±10%.
•
Hospital mains fuses must have gG characteristics (slow blow).
If the mains resistance requirement can’t be met, an additional transformer is required to increase
the mains voltage (or the cables must be made shorter).
2
Note that, based upon local codes and regulations, additional restrictions may apply that limit the
allowable upstream protective disconnect device rating. The term Hospital Mains Fuse is the
overcurrent protective device for the dedicated branch circuit powering the Allura Xper system. It may
be implemented with a fuse or other locally approved protective disconnect device with gG current-time
characteristics.
3
Hospital Mains Voltage 3~380 V is only supported for Azurion Systems R2.1 or higher
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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5
NETWORK DATA
Connector type
Network layers
UTP
BNC
AUI
Standard Ethernet (10 Base-T)
Yes
No
No
Fast Ethernet (100 Base-T)
Gb Ethernet (1000 Base-T)
NOTE
Connect the Ethernet-port of the system only to a UL60950
approved network equipment in the hospital.
6
REMOTE SERVICE DATA
Copies are uncontrolled
Refer to the Network Connectivity Sheet.
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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7
EARTHQUAKE PROVISIONS
Make sure that the local earthquake provisions comply with the local codes and regulations.
These are some examples of best practices for cabinets:
1. Washers M6 (4x)
2. Bolt M6x12 (4x)
3. Bolt M10x40 (2x)
4. Washer M10 (2x)
5. Anchor bolt M10, Ø16x60 (2x)
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6. Pre-drilled holes Ø3
Rebore for M6 threaded holes (4x)
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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8
PRE-INSTALLATION REQUIREMENTS
Ceiling construction installed and leveled
•
All walls, floors, and ceiling finished
•
Radiation protection installed
•
Computer flooring (where applicable) installed
•
Doors (including leaded doors and windows) installed and lockable
•
All cable ducts/conduits installed
•
Pull strings installed in empty conduits
•
All contractor supplied cabling pulled and terminated
•
Room lighting installed and operational
•
Heating, ventilation, and air conditioning installed and operational
•
Cabinet rear covers installed
•
Mains power installed for M-Cabinet
•
Wall sockets available
•
Floorplate(s) installed and leveled
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•
DMR167902 RevB
CSIP Level 0
ATTENTION: THIS PAGE CONTAINS COPYRIGHTED MATERIALS THAT ARE CONFIDENTIAL AND/OR PROPRIETARY.
ANY RELEASE OR DISTRIBUTION OF THIS MATERIAL, WITHOUT PERMISSION, IS A VIOLATION OF LAW.
Copyright © 2023 Koninklijke Philips N.V. All rights reserved
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