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IS215ACLEH1B GE Application Control Layer Module
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IS215ACLEH1B GE Application Control Layer Module

IS215ACLEH1B  General Electric Application Control Layer Module
U.S.$42930.00
U.S.$32930.00
U.S.$31283.50
U.S.$30624.90
Weight:8.990KG
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(Inventory: 3)
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Description
IS215ACLEH1B  General Electric Application Control Layer Module

Product description

P/N: IS215ACLEH1B

Description/Specification The IS215ACLEH1B model is a part of the EX2100e series, and its function is equivalent to the application control layer module. It is a microprocessor-based controller, which is mainly used for network communication tasks, such as ISBus and Ethernet. After installation, the board occupies two and a half slots in the EX2100 exciter board rack or innovative series drives, and is located in the control cabinet. Technical Specification Model IS215ACLEH1B Function Abbreviation/Abbreviation ACLE Series EX2100 Excitation Controller Group and Function Revision H1B Potential Added Component PROM Hardware Function led, CPU and PCI Controller Software Function Basic Input/Output System Cache Level 2, 128 KB weight 1 lb 4 oz shipping size 18 x 12 x 12 inches Information about IS215ACLEH1B is a part of EX2100 excitation controller series, aiming at optimizing the efficiency and reliability of power generation system. The module acts as a central processing unit (CPU) board, providing basic control and monitoring functions, which is very important for managing the excitation system in a large-scale industrial environment. The motherboard is equipped with a powerful CPU integrated with PCI controller to ensure high-speed data transmission between the motherboard and other system components. This integration is very important for the excitation system to quickly respond to the change of operating conditions, thus maintaining the stability and performance of the generator. The motherboard is also equipped with led indicator light, which can be used as a visual indicator of the system status, making it easy to monitor the system performance and quickly identify any problems.

A key hardware feature of IS215ACLEH1B is its 128 KB secondary cache, which can improve the processing speed of CPU by storing frequently accessed data. This kind of cache plays a vital role in improving the overall system efficiency, especially in applications that need real-time processing. On the software side, IS215ACLEH1B includes a basic input/output system (BIOS), which acts as the basic software layer for initializing hardware components and managing data flow between the operating system and hardware. BIOS ensures that all system components are correctly identified and configured during startup, and provides a stable operating platform for excitation controller. IS215ACLEH1B also offers the possibility of integrating a programmable read-only memory (PROM) chip, which can be used to store firmware or other key data that must be kept even when the system is powered off. This flexibility allows the evaluation board to be customized to meet specific work requirements, making it a universal solution for various industrial applications. Physically, the IS215ACLEH1B is compact and sturdy, weighing 1 pound and 4 ounces. Its lightweight structure simplifies the operation during installation and maintenance, and its size of 18 x 12 x 12 inches enables it to be comfortably installed in a standard industrial housing. IS215ACLEH1B combines advanced hardware and software functions, providing reliable and high-performance components for EX2100 excitation controller series. Its robust design and the option of integrating additional components such as PROM chips ensure that it can meet the specific needs of different industrial environments. Whether deployed in power plants or other large-scale industrial environments, the board can provide consistent performance, which is helpful to improve the overall stability and efficiency of the excitation control system. In a word, IS215ACLEH1B is a powerful multifunctional CPU board, which plays a vital role in the series of EX2100 excitation controllers. Its advanced processing capacity, flexible configuration options and reliable performance make it an ideal choice for applications where accuracy and stability are crucial. The board has the characteristics of led for system status indication, two-level cache for improving processing speed and PROM integration potential, aiming at meeting the demanding requirements of modern power generation systems.

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