General Electric DS215TCCAG1BZZ01A Common Analog I/O Board
Sale!The GE DS215TCCAG1BZZ01A is a common analog I/O board designed for Mark V turbine control systems. It features eight analog input channels with 12/16-bit resolution and 1500V isolation. This module reliably manages 4-20 mA, RTD, and thermocouple signals to ensure high-precision turbine monitoring and performance.
99 in stock
The GE DS215TCCAG1BZZ01A serves as a central analog input/output module for Mark V turbine control systems. This board conditions complex analog signals to ensure accurate turbine monitoring. It manages standard 4-20 mA current loops, thermocouple inputs, and RTD temperature sensors. Additionally, the module captures shaft voltage and current data for diagnostic analysis. These processed signals flow to the main processor for real-time turbine management.
Technical Performance and Connectivity
The board features eight dedicated analog input channels. It provides high-precision data handling through 12-bit or 16-bit resolution. Furthermore, the unit requires a 24V DC supply for stable operation. Integrated 1500V isolation guards against electrical interference in harsh industrial environments. Communication occurs via the RS-485 protocol, which guarantees consistent data transfer speeds.
System integrators can easily connect this board to terminal boards like CTBA, TBQA, or TBCA. Physical connectivity includes data bus ports, power distribution terminals, and signal I/O headers. Users configure specific operational modes—such as RS-232 control or factory testing—via onboard hardware jumpers.
Technical Specifications
| Feature | Specification |
| Manufacturer | General Electric (GE) |
| System Series | Mark V |
| Model Number | DS215TCCAG1BZZ01A |
| Module Type | Common Analog I/O Board |
| Input Channels | 8 Channels |
| Resolution | 12-bit / 16-bit |
| Protocol | RS-485 |
| Isolation | 1500V |
| Dimensions | 280 x 214 x 25 mm |
| Weight | 0.6 kg |
Industrial Reliability and Maintenance
The robust design of the DS215TCCAG1BZZ01A supports long-term stability in power generation facilities. Its construction resists the physical stress typical of large-scale turbine environments. Precise signal conditioning reduces system-wide latency during critical control cycles. Consequently, this module remains an essential component for maintaining turbine efficiency. Regular inspection of the hardware jumpers ensures that the board operates within specified parameters. This module effectively bridges the gap between field sensors and the turbine control system.
| Weight | 0.6 kg |
|---|---|
| Country of Origin | USA |
| Dimension | 28 x 21.4 x 2.5 cm |











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