GE UCSB-CSLA Copper Module 151X1235BC01SA01
$ 41,340
151X1235BC01SA01
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Combines UCSB stand-alone controller and CSLA link adapter
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Part of GE EX2100e Speedtronic excitation system
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QNX Neutrino real-time operating system
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Panel-mounted with Ethernet-based IONet I/O communication
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Supports IEC 61508 certified safety control (SIL 2 & SIL 3)
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No single point of input failure – ideal for critical operations
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Internal Flash memory – reliable storage for control logic
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Designed for generator excitation and SIS control applications
GE UCSB-CSLA Copper Module 151X1235BC01SA01
The GE 151X1235BC01SA01 module is a combination of a UCSB (Universal Controller Stand Alone) and a CSLA (Compact Serial Link Adapter) board, designed for EX2100e excitation systems. This controller module is engineered as part of GE’s Speedtronic product line and supports advanced turbine control and safety functionalities. Unlike traditional backplane-based controllers, the UCSB-CSLA module does not host direct I/O but instead utilizes dedicated Ethernet-based IONet interfaces for data exchange, making the architecture more resilient and scalable.
Operating on the QNX Neutrino real-time OS, the UCSB-CSLA module provides high-speed, high-reliability control suited for industrial environments. Its internal flash memory ensures secure data handling, and its architecture is built to eliminate any single point of failure—ensuring uninterrupted input access even during maintenance. The UCSB Safety Controller variant is certified to support SIL 2 and SIL 3 functional safety loops under IEC 61508, making it suitable for critical safety instrumented systems (SIS) applications.
The 151X1235BC01SA01 is typically mounted in a control panel and is designed for integration within the EX2100e system for generator excitation, delivering dependable performance in complex control scenarios.
Specifications
Specification | Details |
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Part Number | 151X1235BC01SA01 |
Manufacturer | General Electric |
Product Type | UCSB-CSLA Copper Module |
Series | EX2100e Speedtronic |
Operating System | QNX Neutrino (Real-Time, Multitasking) |
Architecture | Stand-alone controller with IONet-based I/O |
Memory | Internal Flash |
Functionality | Control, Safety Loop Integration (SIL 2/3 capable) |
Mounting | Panel-mounted |
I/O Network | Dedicated Ethernet-based IONet |
Safety Certification | IEC 61508 SIL 2 and SIL 3 compliant (for safety variants) |
Application | Generator excitation and safety-critical control |
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