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HoneywellEXPERION PKSSeries C I/O User's Guide EPDOC-X126-en-A November 2019

From:Honeywell | Author:LIAO | Time :2025-08-19 | 928 Browse: | 🔊 Click to read aloud ❚❚ | Share:

that enables programming and reprogramming the executable image (rather than substitution of

a removable hardware component). The preferred method of delivery of the image is over the

IOLINK.

Refer to Life Cycle changes for Series C IO modules and IOTAs section for life cycle update.

TIP

Series C IOLINK cannot contain any PM I/O IOPs.

C300 IOLINK block parameter IOLINKTYPE is used to determine if the IOLINK supports

either Series C I/O or PM I/O.

IOM

model

names

IOM block

name

Description # of

chnls

Similar to

PMIO type

IOP

model

names

CUPAIH01

CCPAIH01

AI-HART High Level Analog Input with HART

(supports differential inputs on only

channel 13 through channel 16)

Refer to Attention

16 HLAIHART

CCPAIH02

AI-HART2 High Level Analog Input with HART

((supports differential inputs on all 16

channel)

16 HLAIHART

CCPAIX02

AI-HART2 High Level Analog Input with

Differential/Single-ended non-HART

(supports differential inputs on all 16

channels)

16 HLAI

CCPAIX01

AI-HL1 High Level Analog Input with Differential

non-HART

(supports differential inputs on only

channel 13 through channel 16)

16 HLAI

NOTES:

1. There are two models of High Level Analog Input such as, CU-PAIX01 and CU-PAIN01. The

Module Hardware and the corresponding IOTAs are different and CU-PAIN01 is a new model.

From the perspective of configuration and implementation, both High Level Analog Input

models use the same IOM Block such as, AI-HL. It must be noted that the two models utilize

the same configuration; online migration is not possible as mixed redundant pair is not

possible. There are two models of Analog Output such as, CU-PAOX01 and CU-PAON01.

Hence, similarly configuration, implementation, and interoperability constraints apply and CUPAON01 is the new model.

2. Two new models of AI-HART (CC-PAIH02) and AI-HL (CC-PAIX02) modules are introduced to

replace the older models of the AI-HART (CC-PAIH01) and AI-HL (CC-PAIX01) modules. The

new models support both single-ended and differential inputs.

3. With R410, a new model of HART Analog Input CC-PAIH51 is introduced. The HART Analog

nput CC-PAIH51 and Cx-PAIH01 use the same IOM block, that is, AI-HART. The configuration

and implementation mentioned in note 1 applies to the HART Analog Input module.

4. With R410, a new model of HART Analog Output CC-PAOH51 is introduced. The HART Analog

Output CC-PAOH51 and Cx-PAOH01 use the same IOM block, that is., AO-HART. The

configuration and implementation mentioned in note 1 applies to the HART Analog Output

module.

5. With R410, a new model of Digital Input 24V DC CC-PDIL51 is introduced. The Digital Input

24V DC CC-PDIL51 and Cx-PDIL01 use the same IOM block, that is, DI-24. The configuration

and implementation mentioned in note 1 applies to the Digital Input 24V module.

6. With R410, a new model of Digital Output 24V DC CC-PDOD51 is introduced. The Digital

Output 24V DC CC-PDOD51 and Cx-PDOB01 use the same IOM block, that is, DO-24B. . The

configuration and implementation mentioned in note 1 applies to the Digital Output 24V

module.

7. Starting with R430, a new model of Low Level Analog Input Mux CC-PAIM51 is introduced.

8. The UIO (CC-PUIO01) has 32 configurable input or output channels. Each channel can be

configured as one of the following:

l Analog Input (0-20mA or 4-20mA active)

l Analog Output (4-20mA active)

l Digital Input (with or without line monitoring)

l Digital Output (with or without line monitoring)

9. The UIO (CC-PUIO31) module is introduced with R432 and has 32 configurable input or output

channels that are identical to the UIO (CC-PUIO01) module.

ATTENTION

Series C IO modules introduced in ExperionPKS R410.x release should not be used

with its prior ExperionPKS releases R400.x. Do not try to downgrade the firmware of

Series C IO Modules introduced in ExperionPKS R410.x release, as IOM will not

work and it is difficult to recover as well.

l Compatibility matrix between AI modules and differential AI modules

l Compatibility matrix between AO modules and differential AO modules

l Difference between AI-HART modules Cx-PAIH01 and Cx-PAIH51

l Difference between AO-HART modules Cx-PAOH01 and Cx-PAOH51

l Difference between bussed low voltage Digital Input modules Cx-PDIL01 and Cx-PDIL51

l Difference between low voltage Digital Output modules Cx-PDOB01 and Cx-PDOD51

l Difference between AI-LLMUX and CC-PAIL51 modules Cx-PAIM01 and Cx-PAIM51

l Identifying supported Series C I/O modules

l Considerations for replacing or pairing Series C Analog I/O modules in a redundant

configuration

3.3.1 Compatibility matrix between AI modules and differential AI

modules

You can choose the AI modules based on your functionality requirements. The following table lists

the functionalities and the respective AI modules.


  • GE IS200AEPBH1B IS200AEPBH1B‑REV‑AA Pitch-Charger Control PCB Board
  • GE IS200EDEXG1ADA EX2100 SCR Trigger Control Board
  • GE 151X1207CK01SA01 IS200EDEXG1A EX2100 SCR
  • GE 151X1233DD02SA02 IS200AEPBH1B - Variant for pitch control charger assembly
  • GE 151X1233DB01SA01 IS200AEPBH1B - 10kW Wind Power Converter
  • GE 151X1233DB01SA01R | IS200AEPBH1B 10KW Converter
  • GE 151X1233DD01SA02 Pitch Battery Charger (109W6931P001)
  • GE 151X1233DD01SA02 Pitch Battery Charger Assy IS200AEPBH1B
  • GE 151X1233DB02SA02 Rev A IS200AEPBH1B Wind Turbine Converter
  • GE 151X1207CK02SA02 SCR 4400 V 1850 A IS200EDEXG1ADA General Electric EX2100
  • Triconex 3723X 32-Channel TMR Analog Input Module with HART
  • SHINKAWA VM-21G  SIGNAL CONDITIONER SOCKET
  • SHINKAWA VM-21R REVOLUTION SIGNAL CONDITIONER
  • SHINKAWA VM-21T DISPLACEMENT INPUT THRUST SIGNAL CONDITIONER
  • SHINKAWA VM-21D 6-WIRE LVDT SIGNAL CONDITIONER
  • SHINKAWA VM-21P 3-WIRE LVDT SIGNAL CONDITIONER
  • SHINKAWA VM-21A  VIBRATION SIGNAL CONDITIONER
  • SHINKAWA VM-21K DISPLACEMENT INPUT VIBRATION SIGNAL CONDITIONER
  • SHINKAWA VM-25S01 CONDITION MONITORING SYSTEM
  • SHINKAWA VM-25 CONDITION MONITORING SYSTEM
  • SHINKAWA VM-772B DEVICE CONFIG
  • SHINKAWA VM-771B MCL VIEW
  • SHINKAWA VM-76B INSTRUMENT RACK
  • SHINKAWA VM-75B POWER SUPPLY MODULE
  • SHINKAWA VM-742B NETWORK COMMUNICATION MODULE
  • SHINKAWA VM-741B LOCAL COMMUNICATION &  PHASE MARKER MODULE
  • SHINKAWA VM-722B 9-CHANNEL RELAY MODULE
  • SHINKAWA VM-707B AERODERIVATIVE GAS TURBINE  MONITOR MODULE
  • SHINKAWA VM-706B ROD DROP MONITOR MODULE
  • SHINKAWA VM-705B 18-CHANNEL TEMPERATURE   MONITOR MODULE
  • SHINKAWA VM-704B TEMPERATURE MONITOR MODULE
  • SHINKAWA VM-702B ABSOLUTE VIBRATION  MONITOR MODULE
  • SHINKAWA VM-701B VIBRATION / DISPLACEMENT MONITOR MODULE
  • SHINKAWA MODEL VM-5X INTERFACE UNIT
  • SHINKAWA MODEL VM-5W2 DUAL POWER SUPPLY INSTRUMENT RACK
  • SHINKAWA MODEL VM-5H4  INSTRUMENT RACK (for VM-5Z5.6.7)
  • SHINKAWA MODEL VM-5G  SINGLE UNIT   INSTRUMENT RACK
  • SHINKAWA MODEL VM-5Z5,6,7  POWER SUPPLY UNIT
  • SHINKAWA MODEL VM-5Y1,2,3 RELAY MODULE UNIT
  • SHINKAWA MODEL VM-5P3 PHASE MARKER UNIT
  • SHINKAWA MODEL VM-53 DUAL COMMUNICATION UNIT
  • SHINKAWA MODEL VM-52 BOTTOM HOLD MONITOR
  • SHINKAWA MODEL VM-51 ROD DROP MONITOR
  • SHINKAWA MODEL VM-5R TACHOMETER
  • SHINKAWA MODEL VM-5S DUAL TACHOMETER
  • SHINKAWA MODEL VM-5A DUAL VALVE
  • SHINKAWA MODEL VM-5E DUAL CASE
  • SHINKAWA MODEL VM-5L COMPLEMENTARY INPUT
  • SHINKAWA MODEL VM-5N RAMP DIFFERENTIAL
  • SHINKAWA MODEL VM-5D DUAL DIFFERENTIAL
  • SHINKAWA MODEL VM-5T DUAL THRUST MONITOR
  • SHINKAWA MODEL VM-5C ECCENTRICITY MONITOR
  • SHINKAWA MODEL VM-5M DUAL PATH MONITOR
  • SHINKAWA MODEL VM-5B DUAL ACCELERATION MONITOR
  • SHINKAWA MODEL VM-5U DUAL SEISMIC MONITOR
  • SHINKAWA MODEL VM-55 VIBRATION MONITOR
  • SHINKAWA VM-742B1-5 VIBRATION MONITORING SYSTEM CARD
  • Shinkawa PSP-17B P-24-64A P-24-64B Circuit Board Module
  • SHINKAWA MGP-67 PCB
  • Shinkawa JBP-278 P-22-48A-1 P-22-48B-1 Circuit Board Module
  • Shinkawa VM-721B 18-CHANNEL RELAY MODULE
  • Shinkawa FRP-337 P-26-54A P-26-54B Circuit Board Module
  • Shinkawa CPP-111 P-25-59A P-25-59B Circuit Board Module
  • Shinkawa WKN-142K2-2 Vibration Transmitter
  • SHINKAWA VL-202A08L-1012 Rotor Position Monitor Probe Sensor
  • Shinkawa CPP-128 P-26-74A P-26-74B Circuit Board Module
  • Honeywell 51402755-100 PROCESSOR CARD
  • Honeywell 51107595-100 Power
  • HONEYWELL 51304544-100 Control Board
  • HONEYWELL 51109919-100 BOARD
  • HHoneywell 51204160-175 Digital Input Module
  • Honeywell 51304754-150 High Level Analog Input Module
  • HONEYWELL 51304690-100 DIGITAL INPUT CARD
  • Honeywell 51401635-150  COMM CONTROL
  • HONEYWELL 51204174-175 MC-TAOY 52 ANALOG OUTPUT BOARD
  • HONEYWELL  51400596-100
  • HONEYWELL 51401291-100 board card
  • HONEYWELL 51401642-150 I/O LINK MODULE
  • Honeywell LCN‑E Hub Power Supply 38500148‑300
  • Honeywell LCN‑E Hub redundant 38500143‑202 Twisted‑pair LCN
  • Honeywell LCN‑E Hub non‑redundant,38500143‑102
  • Honeywell Enhanced Micro‑TDC‑3000 System Unit MX‑DTAC01K2
  • Honeywell Enhanced Micro‑TDC‑3000 System Unit MX‑DTAB01K2
  • Honeywell Enhanced Micro‑TDC‑3000 System Unit MT11‑520
  • Honeywell STI‑CE Smart Transmitter Interface 51304516‑150
  • Honeywell STI Smart Transmitter Interface 51304516‑100 MC‑PSTX02
  • Honeywell ulse Counter IOP,51304386‑100.MU‑PPIX02
  • Honeywell DO Digital Output IOP‑CE 51304487‑150 CE  version
  • Honeywell DO Digital Output IOP  51304487‑100 MC‑PDOX02
  • Honeywell TDC‑3000 SOE DI IOP,51402625-175 MC‑PDIS12
  • Honeywell TDC‑3000  DI Digital Input IOP‑CE 51304485‑150
  • Honeywell TDC‑3000 DI Digital Input IOP 51304485‑100 MC‑PDIX02
  • Honeywell TDC‑3000 AO Analog Output IOP 51304757‑100 MU‑PAOX02
  • Honeywell TDC‑3000  TC Thermocouple IOP 51304756‑100 MU‑TAMT03
  • Honeywell TDC‑3000   51304755‑100 MU‑TAMR03
  • Honeywell TDC‑3000 LLAI Multiplex AI IOP,51304362‑150
  • Honeywell TDC‑3000  HLAI Analog Input IOP‑CE,51304363‑150
  • Honeywell TDC‑3000  HLAI Analog Input IOP,51304363‑100.4‑20mA
  • Honeywell TDC‑3000  HPM Power Supply,51401731‑100
  • Honeywell TDC‑3000 Standard 1986.HPM High‑Performance PM CPU,51402362‑100
  • Honeywell TDC‑3000 APM Advanced Process Manager CPU,51304459‑100
  • Honeywell TDC‑3000 Standard 1986.PM Process Manager CPU,51304362‑100
  • Honeywell TDC‑3000 NIM Network Interface Module,51304481‑200
  • Honeywell TDC‑3000 NIM Network Interface Module 51304481‑100
  • Honeywell TDC‑3000 BASIC,LCN Terminator Resistor,30732052‑001.Coaxial
  • Honeywell TDC‑3000 BASIC,Hiway Coupler,30753732-001
  • Honeywell TDC‑3000 BASIC,LEPIU Low‑Energy PIU,4DP7APCFA309
  • Honeywell TDC‑3000 BASIC,HLPIU High‑Level PIU,4DP7APCFA106
  • Honeywell TDC‑3000 BASIC,Multifunction Controller(TDC‑2000 DHW),4DP7MFA103
  • Honeywell TDC‑3000 BASIC,Extended Controller(TDC‑2000 DHW),4DP7AXA102
  • Honeywell TDC‑3000 BASIC,Basic Controller(TDC‑2000 DHW),4DP7BBA101
  • Honeywell TDC‑3000 BASIC,XLCNE2 LCN Extender,51305508‑100.Coaxial LCN
  • Honeywell TDC‑3000 BASIC,E‑PLCG PLC Gateway,51400997‑200
  • Honeywell TDC‑3000 BASIC,PLNM Plant Network Module,51401163‑100
  • Honeywell TDC‑3000 BASIC,CG Computer Gateway,80360206‑001
  • Honeywell TDC‑3000 BASIC,HG High‑Speed Gateway,51304526‑100
  • Honeywell TDC‑3000 BASIC,HM History Module,51191596‑200
  • Honeywell TDC‑3000 BASIC,HM History Module,51191596‑100
  • Honeywell TDC‑3000 BASIC,AM Application Module CPU,51401551‑800.K2LCN‑8
  • Honeywell TDC‑3000 BASIC,AM Application Module CPU,51401551‑600.K2LCN‑6
  • Honeywell TDC‑3000 BASIC,AM Application Module CPU,51401551‑400,K2LCN‑4
  • Honeywell TDC‑3000 BASIC,AM Application Module CPU,51401551‑300.K2LCN‑3
  • Honeywell TDC‑3000 BASIC,AM Application Module CPU,51401551‑200,K2LCN‑2
  • Honeywell TDC‑3000 BASIC,US Universal Station CPU,51401288‑200
  • TDC‑3000 BASIC,US Universal Station CPU,51401288‑100
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  • Shinkawa RiverNew Vibration Transducer VK202 Series
  • Shinkawa Electric VM-3E2 Vibration Monitor Module