Description
- Product Model: IS215ISBBH2A
- Manufacturer: GE
- System Platform: GE Mark VIe DCS
- Voltage: 24V DC (Nominal)
- Current: 1A (Nominal)
- Power Consumption: 3W
- Signal Type: Digital I/O with isolation
- I/O Channels: 16 Digital Inputs / 16 Digital Outputs
- Signal Isolation: 1500V DC channel-to-channel isolation
- Input Voltage Range: 12V to 28V DC (compatible with various field devices)
- Output Voltage Range: 12V to 28V DC
- Operating Temperature: -20°C to 70°C
- MTBF: 200,000 hours
- Environmental Rating: IP20 (suitable for indoor industrial environments)
- Redundancy: Supports redundant configurations for high availability and fault tolerance
- Certifications: CE, UL, ATEX (for hazardous environments)
- Signal Resolution: 16-bit
- Response Accuracy: ±0.1%
- Mounting Type: Rack-mounted for integration into a DCS frame
Technical Architecture & Functional Positioning
Architecture Analysis
The IS215ISBBH2A is a signal isolation and conditioning module that acts as an interface between the digital input/output signals of field devices and the Mark VIe DCS. It is primarily used to protect the control system from high voltages, spikes, and noise in the electrical environment by providing robust isolation between the system’s control hardware and the field-level I/O signals.
Core Technology:
- Signal Isolation: With 1500V DC isolation between channels, the module ensures that noise, spikes, or faults on the field I/O lines do not affect the control system. This protection is critical in high-power industrial environments where such disturbances can lead to data corruption or equipment failure.
- Signal Conditioning: The module also provides necessary signal conditioning, ensuring that the signals transmitted to the control system are clean and accurate, which is essential for reliable control operations in critical applications.
Engineering Value:
The IS215ISBBH2A significantly enhances the signal integrity and system reliability in harsh industrial environments. By isolating the system from electrical disturbances, it helps prevent control system malfunctions, which could otherwise result in costly downtime. The module is designed for high-performance applications where uptime and data accuracy are critical, such as in oil and gas, power generation, and chemical processing.
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