Description
Model | IS200DSPXH1DBC |
Brand | GE |
Type | Digital Signal Processor Module |
Processor | 32-bit Floating-Point, 150 MIPS |
Input Channels | Up to 64 (Configurable) |
Signal Types | Analog (4-20mA, 0-10V), Digital |
Operating Voltage | 24V DC ±10% |
Power Consumption | 15W Max |
Operating Temperature | 0°C to +60°C (+32°F to +140°F) |
Mounting | DIN Rail or Backplane Mount |
Dimensions | 125mm x 85mm x 30mm (L x W x H) |
Weight | 350g |
Communication | Ethernet, Modbus TCP/IP |
Certifications | UL 508, CE, ATEX |
IS200DSPXH1DBC
The GE IS200DSPXH1DBC is a high-performance digital signal processor module designed as a core component within GE’s Mark VIe and Mark VI control systems. More than just a data processing unit, it functions as the intelligent signal analyzer that handles complex control algorithms, real-time data conversion, and system diagnostics. This module integrates seamlessly into GE’s industrial automation architecture, working in tandem with I/O modules, operator interfaces, and safety systems to create a cohesive control environment.
IS200DSPXH1DBC
What makes the GE IS200DSPXH1DBC invaluable for system integrators and plant engineers is its ability to process multiple signal types simultaneously while maintaining low latency—essential for applications where timing critical control actions directly impact operational efficiency and safety.
IS200DSPXH1DBC
Main features and advantages:
The GE IS200DSPXH1DBC delivers exceptional performance through its advanced 32-bit floating-point processor, capable of executing 150 million instructions per second (MIPS) to handle complex control algorithms with ease. This processing power enables it to manage up to 64 simultaneous input channels, converting analog signals (4-20mA, 0-10V) and digital inputs into processed data for control system decision-making. Its specialized signal conditioning circuitry minimizes noise interference, ensuring accurate data capture even in electrically noisy industrial environments common in manufacturing and power generation facilities.
Hardware-wise, the GE IS200DSPXH1DBC features a ruggedized design with conformal coating on circuit boards, protecting against dust, moisture, and vibration. It supports hot-swap functionality, allowing for module replacement without system shutdown—a critical feature for maintaining continuous operation in mission-critical applications. The module’s compatibility with standard industrial communication protocols ensures seamless integration with both GE and third-party control components, providing flexibility in system design and upgrades.
Application fields:
In the complex world of industrial automation, where split-second decisions can determine operational efficiency and system safety, reliable signal processing is the backbone of modern control systems. Power plants regulating turbine performance, oil refineries managing complex distillation processes, and manufacturing facilities optimizing production lines all depend on components that can process vast amounts of real-time data with pinpoint accuracy. The GE IS200DSPXH1DBC emerges as a critical solution in these high-stakes environments, designed to handle the rigorous demands of industrial signal processing where precision and reliability are non-negotiable.
In power generation, the GE IS200DSPXH1DBC processes sensor data from turbine vibration monitors, converting raw signals into actionable insights that prevent catastrophic equipment failure. In chemical processing plants, it analyzes flow rate and pressure readings to maintain optimal reaction conditions, ensuring product quality and safety compliance. Used in industrial automation across heavy industries, the GE IS200DSPXH1DBC serves as the computational engine that bridges field devices and control systems, turning analog and digital inputs into the precise control signals needed to keep critical operations running smoothly, even under variable load conditions.
Related products:
IS200IOCNH1A – I/O control module that interfaces directly with the GE IS200DSPXH1DBC to expand input/output capacity.
IS200TRLYH1B – Relay output module controlled by processed signals from the GE IS200DSPXH1DBC for actuator control.
IS200AEAH1B – Analog input module that provides sensor data to the GE IS200DSPXH1DBC for processing.
IS200CPUH1B – Central processing unit that works in tandem with the GE IS200DSPXH1DBC in Mark VIe systems.
IS200PWRH1A – Power supply module that delivers stable 24V DC to the GE IS200DSPXH1DBC and associated components.
IS200DSPCH1A – Companion signal processor module that extends the GE IS200DSPXH1DBC’s processing capabilities in large systems.
IS200HMIH1A – HMI interface module that displays processed data from the GE IS200DSPXH1DBC for operator monitoring.
Installation and maintenance:
Before installing the GE IS200DSPXH1DBC, verify that the control cabinet environment meets the module’s operating temperature and humidity specifications. Ensure proper backplane alignment if using rack mounting, with at least 50mm clearance on all sides for adequate airflow and heat dissipation. Check that the power supply can deliver stable 24V DC within the ±10% tolerance range to prevent voltage fluctuations that could affect processing accuracy. For wiring, use shielded twisted-pair cables for analog signals, connecting shields to a dedicated ground bus to minimize electromagnetic interference. Always power down the control rack before inserting or removing the module, even though hot-swap is supported, to prevent transient voltage spikes.
For maintenance, schedule quarterly visual inspections to check for loose connections or signs of overheating, such as discolored components. Use GE’s Proficy Machine Edition software monthly to run diagnostic checks on the GE IS200DSPXH1DBC, verifying signal processing accuracy and communication integrity. Firmware updates should be performed during scheduled maintenance windows, with configuration backups stored securely beforehand. Monitor processor load through system diagnostics—sustained loads above 80% indicate potential need for optimization or additional processing modules.
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