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GE IS215ACLEH1C IS215ACLEH1CA Application Control Layer Module

short description:

Item no: GE IS215ACLEH1C IS215ACLEH1CA

brand: GE

price: $2000

Delivery time: In Stock

Payment: T/T

shipping port: xiamen


Product Detail

Product Tags

Description

Manufacture GE
Model IS215ACLEH1C
Ordering information IS215ACLEH1C
Catalog Mark VI
Description GE IS215ACLEH1C Application Control Layer Module
Origin United States (US)
HS Code 85389091
Dimension 16cm*16cm*12cm
Weight 0.8kg

Details

GE IS215ACLEH1C Application Control Layer Module Description

The IS215ACLEH1C is an Application Control Layer Module designed and manufactured by General Electric (GE), as part of the Mark VI series, used in GE Speedtronic Gas Turbine Control Systems.

This module plays a critical role in the control and operation of industrial turbines, particularly in ensuring efficient, safe, and coordinated turbine operation.

The Application Control Layer Module (ACLE) is a key component in GE's turbine control architecture, responsible for managing control logic, safety protocols, diagnostics, and facilitating communication between various system components.

Key Features and Functions of the IS215ACLEH1C:

  1. Turbine Control Logic:
    The IS215ACLEH1C module implements and manages the turbine's control logic. It oversees the regulation of critical operational parameters such as speed, load, and temperature. The module dynamically adjusts these parameters to optimize turbine performance, ensuring that the turbine operates at peak efficiency while maintaining system stability and reliability.
  2. Safety Protocols:
    Ensuring safe operation is one of the primary functions of the Application Control Layer Module. The IS215ACLEH1C module is designed to enforce safety measures to protect the turbine and surrounding equipment. This includes monitoring for potential hazards and initiating emergency shutdown procedures when necessary. In the event of abnormal operating conditions, the module implements fault detection protocols and triggers appropriate responses to safeguard the turbine and minimize damage.
  3. Communication Interfaces:
    The IS215ACLEH1C provides robust communication interfaces that enable seamless interaction between various subsystems of the turbine control system. It facilitates communication between the turbine's sensors, actuators, and other control modules, ensuring real-time data exchange. This enables coordinated control, accurate monitoring, and efficient operation of the turbine. The module also interfaces with other system components, allowing for integrated operation in both simple and redundant control architectures.
  4. Fault Detection and Diagnostics:
    The IS215ACLEH1C continuously monitors the turbine system for any faults or anomalies. If a fault is detected, the module activates diagnostic tools to analyze the issue and identify the root cause. This proactive approach to fault detection allows for rapid troubleshooting and resolution, reducing downtime and improving the overall reliability of the turbine. The diagnostic capabilities also enable maintenance teams to quickly pinpoint problems, streamlining repairs and minimizing the risk of more severe failures.
  5. System Integration and Scalability:
    The IS215ACLEH1C module is designed for easy integration into larger turbine control systems. It is capable of being used in simplex, dual, or TMR (Triple Modular Redundant) configurations, allowing for flexible and scalable system designs. This flexibility is critical for applications ranging from smaller power plants to large-scale industrial operations requiring high levels of reliability and performance.

Conclusion

The GE IS215ACLEH1C Application Control Layer Module is an essential component of the GE Speedtronic Gas Turbine Control System.

By managing critical turbine control logic, enforcing safety protocols, facilitating communication across system components, and providing comprehensive fault detection and diagnostic capabilities, the module ensures the safe, efficient, and reliable operation of gas turbines.

Its flexibility and scalability allow it to be used in a wide range of industrial applications, making it a key part of modern turbine control systems. The IS215ACLEH1C helps optimize turbine performance, reduce downtime, and enhance overall system reliability.


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