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151X1215DC29SA01 Other names:
Gas turbine controller 151X1215DC29SA01
151X1215DC29SA01 gas turbine input/output module
Gas turbine card 151X1215DC29SA01
GE gas turbine spare parts 100MM SCR HS ASSEMBLY 151X1215DC29SA01 are key components for maintaining and repairing GE gas turbines. This component is specifically designed for replacing the 151X1215DC20SA01 component, demonstrating its compatibility and functionality in turbine systems.
The following is a detailed introduction to the component based on the provided source:
key
Part number: 151X1215DC29SA01
Function: Replace component 151X1215DC20SA01 to ensure compatibility and seamless integration within the turbine system.
Assembly type: 100MM SCR HS assembly, highlighting its role in the high-speed generator circuit of turbines.
Made by General Electric: As a genuine component of General Electric, it adheres to the highest quality and performance standards set by the company.
Related
Fuse kit: 151X1215DC30SA05, which supplements components by providing necessary protection against electrical faults.
Drive DSP control card: IS200DSPXH1D, which is crucial for digital signal processing of control drive systems.
Excitation machine synchronization bus: IS200EISBH1A, ensuring synchronization between the excitation machine and the main generator.
Card-Ex2100 main I/O: IS200EMIOH1A, handles the main input/output operations of the turbine control system.-1.jpg)
Ex2100 Select Car: IS200ESELH1A, used for selecting and managing operating parameters of wind turbines.
The Importance of Gas Turbines
Reliability and Efficiency: By using GE genuine parts such as 151X1215DC29SA01, operators can maintain the reliability and efficiency of their gas turbines, minimize downtime, and maximize performance.
Compatibility and Interchangeability: These components are designed to be 100% interchangeable with original parts, ensuring that replacement does not compromise the integrity of the turbine system.
Safety: The normal operation of this component helps ensure the overall safety of the turbine operation. Any malfunction may lead to potential danger, so it is very important to use genuine or compatible alternatives.-1.jpg)
Support for both planned and unplanned maintenance: Whether it’s regular maintenance or emergency repairs during power outages, obtaining these spare parts is crucial for extending the lifespan of the turbine and meeting project deadlines.
All products on this website are special products, and market prices have been fluctuating,
Please refer to the customer service quotation for details, as the product is new and the price is not genuine,
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Detailed Explanation of the Core Features of 151X1215DC29SA01 (GE Gas Turbine Buffer Module Board)
I. Basic Attributes and Functional Positioning
Model Attributes: Belongs to the GE 100MM SCR HS ASSEMBLY (Silicon Controlled Rectifier High-Speed Module) series, an upgraded version of 151X1215DC20SA01, compatible with the original system architecture.
Core Functions:
Signal Buffering and Regulation: Stabilizes signal transmission, reduces distortion and interference, and ensures accurate signal transmission in industrial control systems.
Power Supply Protection: Provides overvoltage and overcurrent protection to prevent power fluctuations from damaging the system and ensure stable equipment operation.
Signal Adaptation: Adjusts input signal levels and characteristics to match downstream equipment requirements, adapting to diverse interfaces such as sensors and actuators.
II. Technical Specifications and Performance Advantages
Electrical Parameters:
Input Voltage Range: 24V DC±5%, supports redundant power supply design (such as SD821/SD822 power modules).
Output Characteristics: Maximum output current 2.5A, supports 4-20mA fixed, 0 to ±10V adjustable, and 0 to ±5 to ±100mA switching modes.
Protection Rating: IP65, adaptable to a wide temperature range of -20°C to 60°C, strong electromagnetic interference resistance.
Physical Design:
Dimensions: 150mm × 85mm × 45mm, weight 0.5kg, aluminum alloy construction, DIN rail mounting, hot-swappable.
Modular Architecture: Compatible with CEX bus extension cables (TK850) and RCU-Link cables (TK851), expandable with remote I/O and third-party devices (such as PROFIBUS DP, Modbus TCP).
III. Application Scenarios and Industry Adaptation
Core Applications:
Gas Turbine Control: As a core component of the excitation system, it ensures generator grid synchronization and stable speed/voltage control, compatible with GE MS3002, MS5000, MS6001, MS7001, and MS9001 series gas turbines.
Industrial Automation: Achieves high-precision position/speed control in CNC machine tools, robots, and packaging machinery, supporting fluid control (hydraulic/pneumatic system valve actuation).
Process Control:
Process control systems in the petrochemical, power, and metallurgical industries, supporting triple modular redundancy (TMR) architecture and compliant with SIL3 safety certification.
Compatible with GE Mark VI/VIe control systems, and can work in conjunction with main trip panels such as IS200TTURH1CFD and IS230TNTRH1C.
IV. Compatibility and Expandability
System Compatibility:
Compatible with GE AC 800M and Mark VI/VIe control systems, supporting industrial protocols such as EtherCAT, Profinet, Modbus TCP, PROFIBUS DP, and FOUNDATION Fieldbus.
Expandable with S800 series remote I/O modules, CI854AK01 (PROFIBUS DP-V1), and CI867K01 (Modbus TCP) communication modules.
Redundancy Design:
Supports dual-CPU hot standby redundancy, with a fault switching time of <50ms. Seamless switching is achieved via the CEX bus, and a backup battery (4943013-6, 3.6V/900mAh lithium battery) is provided.
V. Installation and Maintenance Specifications
Installation Requirements:
DIN rail mounting requires sharing a 35mm × 7.5mm rail with the connecting carrier (NIU), ensuring proper grounding (the rail must have a conductive, unpainted surface).
When installing the power module, the latches must be unlocked, the connectors aligned, and then pressed down until the latches are in place. The input voltage must be stable at 24V DC ±5%.
Maintenance Points:
Daily Inspections: Monthly checks should be performed on power supply voltage stability, CPU load rate (<70%), and communication link packet loss rate (<0.1%). Control programs and configuration files should be backed up regularly.
Troubleshooting: For synchronization failures, check the fiber optic connection status and CPU firmware version consistency; for power supply failures, use a multimeter to test output stability and check grounding connection issues.
Preventive Measures: Configure a UPS power supply to avoid voltage fluctuations, regularly clean the module heatsinks, and implement preventative maintenance plans (such as hardware checks and software updates).
This is the preferred solution. Its adaptability to harsh environments, redundant architecture support, and intelligent maintenance features ensure long-term stable system operation.
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