الوصف
The GE DS2020BRCBG2A Brake Control Assembly is an electronic circuit board module designed to provide precise control over the dynamic braking system in large-scale industrial drives and General Electric’s Speedtronic Mark V Turbine Control Systems.
It is a critical component for safe and efficient operation in applications that require rapid and controlled deceleration of high-inertia machinery.
⚙️ Key Function and Application
The DS2020BRCBG2A module is categorized under the DS2020 Mark V Series of GE Drive Control Systems. Its primary functions include:
- Dynamic Braking Control: It manages the dynamic braking process, which involves converting the kinetic energy of the rotating machinery (like a turbine or motor) into thermal energy, which is safely dissipated.
- Deceleration Management: It responds quickly to braking commands from the main control unit, ensuring the equipment decelerates at a controlled rate to prevent undue stress on mechanical components.
- Protection: It provides a necessary braking and speed control capability for the turbine system, which helps ensure the turbine remains stable and prevents the motors from being overworked.
⚡ Technical Specifications (General)
As a modular component, the DS2020BRCBG2A has specific electrical ratings to handle the power required for industrial braking systems.
| Specification | Details |
| Manufacturer | General Electric (GE Industrial Systems) |
| Series | Mark V (DS2020 Family) |
| Product Type | Brake Control Module / Assembly |
| Input Voltage Rating | Typically 460 VAC |
| Output Voltage Rating | Typically 414 VDC |
| Current Rating | Typically 12.5 Amps |
| Functional Revision | The final ‘A’ in the part number (G2A) indicates an A-rated functional revision. |
| Status | This is a legacy product, and units are typically available today as surplus, rebuilt, or repaired components. |
The module’s acronym, BRCB (Brake Control), and the initial digits, DS2020, identify it as a special-assembly printed circuit board (PCB) within the Mark V system.
The GE DS2020BRCBG2A Brake Control Assembly is an electronic circuit board module designed to provide precise control over the dynamic braking system in large-scale industrial drives and General Electric’s Speedtronic Mark V Turbine Control Systems.
It is a critical component for safe and efficient operation in applications that require rapid and controlled deceleration of high-inertia machinery.
⚙️ Key Function and Application
The DS2020BRCBG2A module is categorized under the DS2020 Mark V Series of GE Drive Control Systems. Its primary functions include:
- Dynamic Braking Control: It manages the dynamic braking process, which involves converting the kinetic energy of the rotating machinery (like a turbine or motor) into thermal energy, which is safely dissipated.
- Deceleration Management: It responds quickly to braking commands from the main control unit, ensuring the equipment decelerates at a controlled rate to prevent undue stress on mechanical components.
- Protection: It provides a necessary braking and speed control capability for the turbine system, which helps ensure the turbine remains stable and prevents the motors from being overworked.
⚡ Technical Specifications (General)
As a modular component, the DS2020BRCBG2A has specific electrical ratings to handle the power required for industrial braking systems.
| Specification | Details |
| Manufacturer | General Electric (GE Industrial Systems) |
| Series | Mark V (DS2020 Family) |
| Product Type | Brake Control Module / Assembly |
| Input Voltage Rating | Typically 460 VAC |
| Output Voltage Rating | Typically 414 VDC |
| Current Rating | Typically 12.5 Amps |
| Functional Revision | The final ‘A’ in the part number (G2A) indicates an A-rated functional revision. |
| Status | This is a legacy product, and units are typically available today as surplus, rebuilt, or repaired components. |
The module’s acronym, BRCB (Brake Control), and the initial digits, DS2020, identify it as a special-assembly printed circuit board (PCB) within the Mark V system.




+86 15340683922
+86 15340683922