Asahi/America Thermoplastic Valves

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Asahi/America
New Technology
Fieldbus
Electric & Pneumatic Actuation
• ABB Industrial Systems Inc.
• Accutech
• Advanced Distillatiom
Technology
• Applied Information Scienncr
• Asahi/America
• Automation Research
Institute of Ministry
of Metallurgical Industry
• Automax/Accord Controls
•Bailey Japan Co., Ltd.
• Baker Hughes INTEQ
• Bentley Nevada Corporation
• Boing
• BB Oil-Alliance Refinery
•Bray International, Inc.
•Chevron Research &
Technology
•Chinese Fieldbus Professional
Commission
•Chiyoda Corporation
•Chubu Electric Power Company
•City of Columbus Wastewater
Treatment
•Control System Integrators
Association
•Crouse hindes/CEAG-digi table
•Delta t
•DKK Corporation
•Dresser Industries
•Duke/Fluor Daniel
•du Pont Engineering Co.
•EL-O-MATIC BV
•Elsag Baily Process Automation
•Endress + Hauser GmbH + Co.
•Exxon Research & Engineering
•Co.
•Fieldbus Inc.
•FINT
•Fisher Controls International,
•Inc.
•Fisher-Rosemount Systems Inc.
•Fraunhofer Institute
•Fuji Electric Co., Ltd.
•GAXT Terminals Corp.
•Groupe Schneider
• Hartmann & Braun AG
• Hitachi, Ltd.
• Honeywell Inc.
• HuaKong Technology Co., Ltd.
•ICT, Inc.
• ifak
• Instrument Control Service, Inc.
• I&PCEA
• Intellution, Inc
• InterlinkBT
• Jet Propulsion Laboratory
• JGC Corp.
• K-Patents Oy
•Keneka Engineering Corp.
•Kinetics Technology
•International
•Knick Elektronische
•Meßgeräte GmbH &Co.
•Konsberg Simrad AS
•Koso Service Co., Ltd.
•KROHNE Messtechnik GmbH
•& Co.
•Kurihara Kogyo Co., Ltd
•Magnetrol International
•Measurement Technology Ltd.
•Micro Motion, Inc.
•Mitsubishi Electric
•Corporation
•Mobile Technology C
•Monsanto Company
•Moore Products Co.
•National Instruments Corp.
•NEC Corporation
•Neles-Jamesbury Oy
•NEMA
•Niigata Masoneilan Co., Ltd.
•Nippon Gear Co., Ltd.
•Norsk Hydro a.s.
•Ohkura Electric Co., Inc.
•Omni Flow Computers
•Oval Engineering Co., Ltd.
•Rockwell Automation
•PC&E
•Rosemount Analytical, Inc.
• PDVSA-Servicois
Automatizagion
•Rosemount Inc.
• Pepperl+Fuchs
•Saudi Arabian Oil Company
• PMV,Palmstiernas Instruments•Shanoc, Inc.
•POHTO
•Shenyang Institue of Automation
• Praxair, Inc.
•Shell Oil Company
• Presys Instrumentos e
•Shimadzu Corporation
Sistemas Ltda.
•SHIP STAR Associates Inc.
• R. Stahl Schaltgeräte GmbH
•Siemens Energy & automation,
•Relcom Inc.
Inc.
• Research Reacto Institute of •Sira Test & Certification, Ltd.
Kioto University
•SMAR
• Richard Hirschmann Of
•Smar Research
America, Inc.
•Softing GmbH
• SRC NIITEPLOPRIBOR
• SRI International
• Stone & Webster Engineering
Corp.
•StoneL Corporation
• The Foxboro
• Tokyo Keiso Co., Ltd.
• Toshiba Corporation
• VALTEK International
• VEGA Grieshaber KG
• Walsh Automation Inc.
• Westinghouse Electric
• Westlock Controls
•Wonderware Corporation
•WorldFIP Europe
•Yamaha Corporation
•Yamatake-Honeywell Co., Ltd.
•Yokogawa Electric Corporation
•Yokogawa Electronics Co., Ltd
Intellis
Network
Monitors
Typical Hardwired System
IO/Cabinet
PLC
Tank
Level Sensors
Automated Valves
INTELLIS Network System
PLC
Tank
Level Sensors
Automated Valves
INTELLIS Network System
Intellis System
PLC
Network
Monitor
Field
Network
Field
Network
Network
Communications
The Economic Advantages of
Field Networks
Labor Costs
The utilization of a serial
communications field network
will greatly contribute to the
overall reduction of labor costs
as compared to the conventional
hardwired scheme where individual wires must be pulled
through a protected conduit that is hundreds of feet long.
Hardwired 180 valve system $223,905
Networked 180 valve system $102,129
Material Costs
The amount of conduit, fittings, wire, and
junction housings is greatly reduced.
When compared with conventional
systems, field networks eliminate a
substantial amount of field wiring and
the labor necessary to install it.
Hardwired 180 valve system $228,404
Networked 180 valve system $182,355
Maintenance Costs
Field networks create the
foundation for a plant wide
valve management system that
takes full responsibility for
monitoring and diagnosing
valve performance from
installation to predictive/
preventive maintenance
scheduling.
The Network Monitor
INTRODUCING THE ICoT
PROXIMITY POSITIONER
ICoT
•The ICoT positioner
has been designed
with ease of
maintenance as a
primary consideration.
•There are only two
main components:
Sealed Electronic
Canister and
IP Transducer.
•Minimum spare parts
required and ease of
future upgrades.
ICoT
The First Proximity
Positioner
The Advantages Offered By Proximity
Sensors & Switches Can Now Be
Introduced To The Smart Positioner
With The Hall Effect Sensor Offering
Non-Contact Feedback Data.
NON-CONTACT FEEDBACK
ROTARY
No Linkage To Wear, Damage Or MissAlign, So Increasing Accuracy And
Reliability Of Feedback
NON-CONTACT FEEDBACK
LINEAR
Availability Of
Various Length
Triggers Systems
0.300” to 48.0
inch Strokes.
No Troublesome
Rotary / Linear
Conversion
Linkage Kits.
REMOTE MOUNTING OF
ICOT POSITIONER
With Feedback
Signals Now
Being Electrical
Rather Than
Mechanical, The
Positioner Is No
Longer Required
To Be Mounted
On The Valve.
Advantageous
For Extreme
Vibration and
Temperature
ICoT JR.
Integrated Position
Transmitter
The ICoT 4100 is standardly equipped with
an integrated 4 to 20mA position feedback
transmitter.
ICoT
Standard Features
4 to 20mA Position
Transmitter
Same unit for linear or
rotary applications.
20 micron inlet filter
Three pressure
gauges
Single acting, double
acting or air assisting
actuation.
Optional Integrated
Components:
 Position Sensors
 Emissions Monitor
 Solenoid Valve
ICoT
A Full Range of Proximity Positioners
Current Available Ranges:
•
•
•
ICoT 4100 Series:
ICoT 4200 Series:
ICoT 4300 Series:
Electro-Pneumatic Positioner
Intelligent Positioner w/ Keypad
Intelligent Positioner w/ HART
Future Available Ranges:
•
•
ICoT 4400 Series:
ICoT 4500 Series:
Intelligent Positioner w/ Fieldbus
Intelligent Positioner w/ Profibus
ICoT
PROCESS BENEFITS
Increase In Accuracy and Sensitivity
(Minimal Hysteresis)
Speed Of Response, Speed Control.



Tighter Control Of Process Loop.
Quality Of Process Output Increased.
More Aggressive Control Maybe Employed.
Reliability Increase.

Lower Down Time For Maintenance & ReCalibration.
HANDHELD CALIBRATION
Connection For 275 Handheld
Full Calibration Of Positioner From Any
Point On The Loop, At The Instrument
Or I/O Card.
CONNECTION TO
HART SOFTWARE
In Summary
ICoT Benefits:
Non-Contact Positioning.
Remote Mounting Ability.
Valve Optimization Through PID
Control.
Accuracy Improvement Due To
Integrator.
Electronic Speed Control.
Push Button Calibration For Speed &
Accuracy.
Linear & Rotary Applications From One
Positioner Package.
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