193X803BGG03  GE  Module cards in stock

193X803BGG03 GE Module cards in stock

Brand: GE                 Model number:193X803BGG03 

Colour:new                  Warranty: 12IAV70B1A 

Lead Time:3-day working day   Country of origin: USA

Price: Please contact us         Product weight:0.12kg

hipping Port: Xiamen, China

Payment: Bank of Chicago, Bank of Singapore

Express cooperation: fedex, DHL, UPS and your express account 

193X803BGG03  GE  Module cards in stock

193X-803BEG03  GE  Module cards in stock

The following are required to use the features introduced in the most recent CPU release:

Subject Minimum Version Required

Programmer Version 

Requirements

PME 8.50 SIM 2 or later.

Supports the HART Pass 

Through Feature

HART-capable RX3i Analog I/O modules can communicate HART data via this CPU to 

compatible asset management tools. Refer to the PACSystems HART Pass Through User 

Manual, GFK-2929 for more details.

The following RX3i analog modules support HART:

IC695ALG626

IC695ALG6283

IC695ALG728

If used for HART Pass Through, the supporting RX3i PROFINET Controller (PNC001) and 

PROFINET Scanner (PNS001 or CEP001) must also contain HART-compatible firmware: 

IC695PNC001 Firmware Release 2.20

IC695PNS001 Firmware Release 2.30

IC695CEP001 Firmware Release 2.30.

C Toolkit Compatibility The C Toolkit for PACSystems is distributed with Proficy Machine Edition Logic Developer. 

Updates can be downloaded from http://www.ge-ip.com/support.

C Toolkit Release 5.50, distributed with Machine Edition Logic Developer 5.9 or later, is 

required for use with the CRU320.

Note: C blocks that were built using C Toolkit versions earlier than 5.00 Build 16C1 must be 

recompiled using a newer toolkit version for use with CPU firmware release 5.00 or 

higher.

Note: The Series 90 Toolkit (IC641SWP709/719) is not compatible with PACSystems.

RS-485 Port Compatibility When the CPU is first powered on, the RS-485 port (COM 2) powers up with the transmitter 

enabled. The transmitter is placed into a high-impedance state once the CPU OK LED is 

illuminated. Since that takes a finite amount of time, this could be an issue if the COM 2 port is 

being used in multi-drop communications, and other devices share the same cable via wiredOR connections. If one of those devices is actively communicating when the CPU is powered 

up, there is a potential for those communications to be disrupted until the CPU puts the 

RS-485 port into high-impedance state.

Low Battery Detection For the low battery detection circuit to function properly, a Smart Battery must be used.

For details, refer to the PACSystems RX3i and RX7i Battery and Energy Pack Manual, GFK-2741

Rx3i Backplane Hardware 

Revision

For the CRU320 CPU, one of the following backplane hardware revisions MUST be used:

IC695CHS012-BAMP

IC695CHS016-BAMP

IC695CHS012CA-BAMP

IC695CHS016CA-BAMP

or

IC695CHS012-CA (or later)

IC695CHS016-CA (or later)

IC695CHS012CA-CA (or later)

IC695CHS016CA-CA (or later)

Motion Module not supported 

by Redundancy CPU

The CRU320 does not support the PMM335 PACMotion Multi-Axis Motion Controller.

Backplanes, power supplies 

and I/O modules

For lists of compatible backplanes, power supplies and I/O modules, refer to the PACSystems 

RX3i System Manual, GFK-2314F or later.

Series 90-30 Expansion Rack 

Compatibility

Series 90-30 expansion racks, both local and remote, are supported by the PACSystems RX3i 

System. PACSystems RX3i CPUs must be located in an RXi Universal Backplane. They do not 

operate in a Series 90-30 Rack. 

Series 90-30 Main Rack 

Compatibility

Series 90-30 Main Racks cannot be used in a PACSystems RX3i system. 

Series 90-30 CPUs do not operate in PACSystems RX3i Racks.



GE    DS3800DMEC1B1B    

GE    DS3800DMEC1C1C    

GE    DS3800DMEC1D1D    

GE    DS3800DMPC    

GE    DS3800DMPC1E1C    

GE    DS3800DMPC1F1E    

GE    DS3800DMPK1B1B    

GE    DS3800DMPK1E1D    

GE    DS3800DOAA    

GE    DS3800DPLA1B1A    

GE    DS3800DPSS1B1B    

GE    DS3800DPSS1C1C    

GE    DS3800DPZA1D1D    

GE    DS3800DSHA1A1A    

GE    DS3800DSHA1A1B    

GE    DS3800DSQD1A1A    

GE    DS3800DSWA    

GE    DS3800DXRA    

GE    DS3800DXRA1C1C    

GE    DS3800DXRC    

GE    DS3800DXRC1    

GE    DS3800HACA    

GE    DS3800HACA1A1A    

GE    DS3800HACB    

GE    DS3800HADA    

GE    DS3800HADA1A1A    

GE    DS3800HADA1B1B    

GE    DS3800HAFA1B1D    

GE    DS3800HAFA-1D1E    

GE    DS3800HAIA1D1B    

GE    DS3800HAIA1E1D    

GE    DS3800HAIA1EID    

GE    DS3800HAIC1A1A    

GE    DS3800HAIC1A1A 6BA00C    

GE    DS3800HAIC1A1A6BA00C    

GE    DS3800HAIC1E1C    

GE    DS3800HARA1B1C    

GE    DS3800HCIB    

GE    DS3800HCIB1B    

GE    DS3800HCIB1B1C    

GE    DS3800HCID    

GE    DS3800HCM1A1B    

GE    DS3800HCMA1E1G    

GE    DS3800HCMB    

GE    DS3800HCMB1C1C    

GE    DS3800HCMC    

GE    DS3800HCMC1A1B    

GE    DS3800HCMC-1A1B    

GE    DS3800HCVA1H1G    

GE    DS3800HCVA1J1G    

GE    DS3800HDDD    

GE    DS3800HDID1A1A    

GE    DS3800HDRA    

GE    DS3800HDRA1B    

GE    DS3800HDRA1B1B    

GE    DS3800HDRC1A1A    

GE    DS3800HFPB1F1E    

GE    DS3800HFPC    

GE    DS3800HFPC1L1H    

GE    DS3800HFPE1D1C    

GE    DS3800HFPG1C1B    

GE    DS3800HFPG1D1B    

GE    DS3800HFPG1D1C    

GE    DS3800HFPG1D1D    

GE    DS3800HFPG1E1E    

GE    DS3800HFXA1F1D    

GE    DS3800HFXB    

GE    DS3800HFXB1G1C    

GE    DS3800HFXB1R1H    

GE    DS3800HFXC    

GE    DS3800HFXD    




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