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General Electric IS210AEPSG1BCB
General Electric IS210AEPSG1BCB
General Electric IS210AEPSG1BCB
General Electric IS210AEPSG1BCB
General Electric IS210AEPSG1BCB
General Electric IS210AEPSG1BCB
· Product image is representative; revision or series may vary. Contact us to request a specific version.

IS210AEPSG1BCB

Conformal Coated Alternative Energy Power Supply
In Stock
Ships by Tuesday, June 9
Fast Shipping Available

Product Information:

Part number IS210AEPSG1BCB refers to the General Electric (GE) Alternative Energy Power Supply (AEPS) board. This printed circuit board was manufactured by GE Energy specifically for the control system of the Mark VIe series wind turbines and is widely used in heavy industrial equipment such as the GE 1.5MW wind turbine.

Its integrated design includes transformers, inductors, high-voltage electrolytic capacitors, multiple fast-blow fuses, and 11 dedicated heat sinks, providing extremely high overload protection and thermal stability in harsh industrial and wind farm electrical environments. This ensures that the control systems of gas turbines, steam turbines, and heavy-duty wind power equipment can be monitored with high availability around the clock in a non-contact manner.

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Technical specifications for IS210AEPSG1BCB

  • Manufacturer:
    General Electric
  • Product Category:
    Gas Turbine Control
  • Spare Part Number:
    IS210AEPSG1B
  • Estimated shipping dimensions:
    15.2 x 20 x 14.8 cm
  • Weight:
    0.54 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Category Series:
    Mark VIe Wind Turbine
  • Product Type:
    Energy Power Supply
  • PCB Coating:
    Conformal Coating
  • Input Voltage:
    12V DC
  • Operating voltage:
    24 V DC
  • Current Capacity:
    210 A
  • Number of channels:
    4 channels
  • Operating temperature:
    -40°C to +70°C
  • Humidity:
    5% to 95% RH (no condensation)
  • Approvals:
    UL, CE, CSA
  • Stock:
    50

Alternative Names

IS210AEPSG1B 1S210AEPSG1BCB IS2I0AEPSGIBCB IS21OAEPSG1BCB IS2I0AEPSGIB IS21OAEPSG1B IS210AEPSG1AFC IS210AEPSG1A IS21OAEPSG1AFC

Information

Overview Manuals Operating principle info System Role & Diagnostics

Features:

  • Conformal Coated Alternative Energy Power Supply
  • AEPS The Functional Acronym meaning Alternative Energy Power Supply
  • Core power regulation, signal distribution, and operational processing within wind turbine controls
As a core hardware component of GE's renowned Speedtronic Mark VI/Mark VIe control system, this device is primarily deployed in the control racks of wind turbines, gas turbines, or steam turbines to manage the power control and low-level signal conditioning of the entire system.

Its main task is to receive industrial mains power and distribute it with high stability, providing a clean and constant operating voltage to the system's core processor and specific input/output (I/O) cards, thereby ensuring the smooth operation of the entire turbine management system.

The IS210AEPSG1BCB GENERAL ELECTRIC Conformal Coated Alternative Energy Power Supply may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
GENERAL ELECTRIC IS210AEPSG1BCB Conformal Coated Alternative Energy Power Supply INFO(manual), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The IS210AEPSG1BCB module primarily relies on buck conversion, intelligent energy distribution algorithms, and closed-loop overcurrent monitoring mechanisms for coordinated operation. When the module's input voltage reaches the circuit board, its integrated converter and inductor-based filter network finely smooth and rectify the front-end power supply, converting it to the DC power required by industrial systems (e.g., supporting a stable 12V DC output with high throughput current).
Its embedded hardware control logic and distributed algorithms dynamically monitor impedance changes in each branch load and automatically fine-tune power distribution within milliseconds via control loops to ensure that core components do not experience voltage drops under sudden high loads.
Simultaneously, its monitoring circuit, composed of an isolation transformer and current transformer, can transmit lossless isolated modulated field-frequency conversion signals or analog voltage/current feedback signals from the instrument to the Mark VIe core controller (e.g., the UCSE module) via the backplane or RS-485 serial bus for logic decision-making. This achieves a complete duty cycle of "power regulation and control - status closed-loop capture - protection interlock reporting".
The AEPS board connects directly to the turbine control network, processes field signals, and feeds back clean DC power to the peripheral submodules. Because it relies on an RS-485 serial data connection, the online diagnostic rack will immediately detect communication link failures or voltage rail drop faults if the performance of components on the board deteriorates (e.g., onboard fuses blow or capacitors age).

Technical notes

The GE IS210AEPSG1BCB is an advanced application-grade power supply board (AE power supply board) designed specifically for Mark VI and Mark VIe wind turbine control and wind power generation control systems, such as the Mark VIe wind power system. This power supply board (AEPS) is a critical power distribution and management module responsible for distributing stable, modulated low-voltage DC power to the control core, various specific input/output (I/O) protection logic, and field sensors, including vibration, shaft voltage, flame, and temperature monitoring sensors.

Ask our team:

  • Why is the IS210AEPSG1BCB considered a core component of high-availability turbine control and protection systems?
    The IS210AEPSG1BCB provides reliable power conversion and distribution capabilities, supporting continuous operation of controllers, communication interfaces, and field I/O modules in the turbine control environment.
  • How does the IS210AEPSG1BCB maintain voltage regulation accuracy during dynamic load fluctuations and transient electrical events?
    The IS210AEPSG1BCB integrates industrial-grade power conditioning circuitry to stabilize output voltage, minimize ripple, and protect connected control equipment from electrical interference.
  • How does the IS210AEPSG1BCB enhance the operational resilience of turbine control applications requiring continuous operation?
    The IS210AEPSG1BCB is designed to provide a stable power output, helping to prevent unexpected interruptions that could affect turbine operation, process stability, or equipment protection functions.
  • Why is the IS210AEPSG1BCB frequently deployed in gas turbine, steam turbine, and auxiliary equipment control systems?
    The IS210AEPSG1BCB is optimized for harsh industrial environments where reliable power conversion and system availability are critical to ensuring operational continuity.
  • What electrical performance parameters should engineers evaluate when validating the IS210AEPSG1BCB?
    Engineers should evaluate the IS210AEPSG1BCB's input voltage compatibility, output regulation stability, efficiency, thermal performance, fault diagnosis, and long-term reliability.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.