DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink
DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink
DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink
    DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink
DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink

DS3828BH5AR | General Electric Mark IV Cell Stack Assembly with Integrated Heat Sink

Part #: DS3828BH5AR Manufactured by: General Electric
Regular price
$1,909.00
Sale price
$1,909.00
Regular price
4 in Stock
Condition: New-Surplus Original Box
Shipping calculated at checkout.
Product Overview
The DS3828BH5AR is a Cell Stack Assembly with an attached heat sink, manufactured by General Electric. Designed for integr...  Read more
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Warranty for Product #: DS3828BH5AR
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Original Manufacturer's Warranty Not Covered, This Product is SURPLUS.

Product Description P/N: DS3828BH5AR

Description / Specifications

Description 

The General Electric DS3828BH5AR is a cell stack assembly with an integrated heat sink designed for Mark IV turbine control systems. This component supports thermal regulation and electrical stability within gas and steam turbine control architectures. The DS3828BH5AR is engineered to maintain reliable operation under continuous industrial load conditions.

 

 

Technical Specifications 

Condition New/Never Used Surplus
Brand General Electric
Category Cell Stack Assembly with Heat Sink
Part Number DS3828BH5AR
Subcategory Cell Stack Assembly
Product Type Cell stack assembly with integrated heat sink
System Compatibility GE Mark IV control system
Application Gas and steam turbine control
Cooling Method Passive heat dissipation via heat sink
System Architecture Triple-modular-redundant (TMR)
Mounting Integration Installed within Mark IV control structure
Primary Function Thermal regulation and electrical support

 

 

Information About DS3828BH5AR

The DS3828BH5AR is a General Electric cell stack assembly developed for the Mark IV turbine control system family. It is constructed as a combined electrical cell stack with a permanently attached heat sink to manage heat dissipation during operation. The assembly is fully compatible with Mark IV systems utilizing triple-modular-redundant (TMR) controller architectures. Typical usage includes gas and steam turbine control environments where thermal stability and continuous system availability are required, with passive heat transfer used as the primary cooling method.

Key Features:

  • Mark IV System Compatibility: Designed specifically for GE Mark IV turbine control platforms.
  • Integrated Heat Sink: Enhances thermal dissipation by increasing effective surface area.
  • Cell Stack Assembly Design: Supports electrical regulation within turbine control systems.
  • Passive Cooling Method: No active cooling components required for heat management.
  • Industrial-Grade Construction: Built for continuous-duty power generation environments.
  • TMR System Support: Suitable for triple-modular-redundant control architectures.

The DS3828BH5AR delivers the reliability and precision required for thermal management and electrical stability in turbine control systems.

IQElectro is not an authorized distributor.
IQElectro LLC (IQElectro) is NOT an Authorized Distributor or in any way affiliated with Rockwell Automation, Siemens, or any other Manufacturers. IQElectro is NOT an Authorized Dealer of this product. The product may be of older version, date codes, or design than that available from authorized dealers. As IQElectro is not an authorized dealer of this product, the Original Manufacturer's Warranty and Support DO NOT apply. IQElectro sells SURPLUS only and DOES NOT SELL SOFTWARE or FIRMWARE licenses For more detailed information, please refer to the full version of our disclaimer policy Disclaimer Policy.
Description / Specifications

Description 

The General Electric DS3828BH5AR is a cell stack assembly with an integrated heat sink designed for Mark IV turbine control systems. This component supports thermal regulation and electrical stability within gas and steam turbine control architectures. The DS3828BH5AR is engineered to maintain reliable operation under continuous industrial load conditions.

 

 

Technical Specifications 

Condition New/Never Used Surplus
Brand General Electric
Category Cell Stack Assembly with Heat Sink
Part Number DS3828BH5AR
Subcategory Cell Stack Assembly
Product Type Cell stack assembly with integrated heat sink
System Compatibility GE Mark IV control system
Application Gas and steam turbine control
Cooling Method Passive heat dissipation via heat sink
System Architecture Triple-modular-redundant (TMR)
Mounting Integration Installed within Mark IV control structure
Primary Function Thermal regulation and electrical support

 

 

Information About DS3828BH5AR

The DS3828BH5AR is a General Electric cell stack assembly developed for the Mark IV turbine control system family. It is constructed as a combined electrical cell stack with a permanently attached heat sink to manage heat dissipation during operation. The assembly is fully compatible with Mark IV systems utilizing triple-modular-redundant (TMR) controller architectures. Typical usage includes gas and steam turbine control environments where thermal stability and continuous system availability are required, with passive heat transfer used as the primary cooling method.

Key Features:

  • Mark IV System Compatibility: Designed specifically for GE Mark IV turbine control platforms.
  • Integrated Heat Sink: Enhances thermal dissipation by increasing effective surface area.
  • Cell Stack Assembly Design: Supports electrical regulation within turbine control systems.
  • Passive Cooling Method: No active cooling components required for heat management.
  • Industrial-Grade Construction: Built for continuous-duty power generation environments.
  • TMR System Support: Suitable for triple-modular-redundant control architectures.

The DS3828BH5AR delivers the reliability and precision required for thermal management and electrical stability in turbine control systems.

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