Brand: GE Description: Power Feedback Board Condition: Brand New Certificate:COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 15 Payment Term: T/T Shipping Port: ShenZhen GE DS200TCQCG1BGF is equipped with advanced dedicated circuits, high-performance processors and rich communication ports, supporting industry-standard data exchange protocols, and is used for precise measurement and control of parameters.
Manufacture |
GE |
Model Number |
DS200TCQCG1BGF |
Ordering Number |
DS200TCQCG1BGF |
Catalog |
Mark V |
Country Of Origin |
USA |
HS CODE |
85389091 |
Dimension |
15cm*8.25cm*4.15cm |
Packing Dimension |
17cm*10cm*7cm |
Weight |
0.9kg |
Operating Parameters
Input Voltage: 48 VDC±5%.
Operating Temperature: -30°C - 80°C.
Processing Speed:800 MIPS.
Memory Capacity: 512 MB of RAM, 2 GB of flash memory.
Communication Protocols: Supports Ethernet (10/100/1000Base-T), RS-232, RS-485, and CAN bus. Input Channels: 20 analog input channels
Output Channels: Comprises 10 analog output channels and 20 digital output channels.
MTBF (Mean Time Between Failures): over 60,000 hours.
Product Features
Precise signal conditioning: The GE DS200TCQCG1BGF uses advanced dedicated circuits for signal conditioning. It can receive a variety of input signals, whether from temperature sensors, pressure sensors or other sensing devices. Through a series of precise amplification, filtering and conversion processes, the raw signal is converted into a standardized format suitable for further processing. This ensures that subsequent control actions are based on accurate and reliable data.
Efficient data processing: Equipped with a high-performance processor, it can quickly process complex computing tasks. It executes algorithms designed to analyze regulation signals and make real-time decisions. For example, in the control system of a power plant, it can calculate the optimal fuel injection rate within milliseconds based on the current turbine speed, temperature and load conditions.
Powerful communication interface: The GE DS200TCQCG1BGF has multiple communication ports that support industry-standard protocols. It can communicate over Ethernet, allowing seamless integration into large network control systems. In addition, it also has serial communication options such as RS-232 and RS-485, which can be used to connect legacy equipment or in scenarios where shorter-distance wired connections are preferred. This communication versatility enables it to exchange data with a wide range of other devices, from programmable logic controllers (PLCs) to supervisory control and data acquisition (SCADA) systems.
Fault tolerance and redundancy: With redundant mechanisms, DS200TCQCG1BGF can continue to operate even in the event of partial failures. For example, if one of the internal power supplies fails, a backup circuit can take over to ensure uninterrupted operation. This fault tolerance is essential in critical infrastructure applications, such as in air traffic control systems or nuclear power plants, where any downtime can have catastrophic consequences.
Installation
Rack mounting: DS200TCQCG1BGF can be installed in a standard 19-inch equipment rack. The provided mounting brackets and screws are designed to fit precisely into the rack slots. This mounting method is often used in data centers and control rooms, where multiple devices need to be organized and easily accessible.
Panel mounting: For applications that require direct access and visual indication, panel mounting can be used. The front panel of the GE DS200TCQCG1BGF is equipped with status LEDs, connectors and control buttons. Mounting brackets and gaskets are provided to ensure proper sealing and secure installation into the control panel.
DIN rail mounting: In industrial environments with modular installation requirements, it can be mounted on a DIN rail. The device has a clip that snaps into the DIN rail for quick and easy installation and removal.
Troubleshooting
Signal anomalies: If input or output signals deviate from expected values, first check the sensor connections. Make sure the sensor is wired correctly and powered properly. Use a multimeter to measure the signal strength at the sensor terminals. If the sensor is functioning properly, check the signal conditioning circuit for possible faults, such as a burned capacitor or faulty resistor.
Communication failures: When communication with other devices fails, first check the cable connections. Check for loose or damaged cables, especially at the communication ports. Verify network settings, including IP address, sub-net mask, and communication protocol, to ensure compatibility with the connected system. If the problem persists, try restarting the device and related network devices.
Overheating issues: If DS200TCQCG1BGF is overheating, check the operating environment temperature. Ensure adequate ventilation around the device. Clear any obstructions that may block the heat dissipation path. If the heat sink is covered with dust or debris, clean it carefully. In extreme cases, consider adding an external cooling fan or moving the device to a cooler area.
Memory errors: If memory-related problems occur, such as slow performance or data corruption, try restarting the device to clear any temporary faults. If the problem persists, check the available memory space. Delete any unnecessary data or programs that may be clogging up memory.
Application range
Aerospace Industry: In aircraft manufacturing and maintenance, the GE DS200TCQCG1BGF is used to control and monitor environmental control systems. It ensures that cabin temperature, pressure, and air quality are maintained at optimal levels. During flight testing, it records and analyzes large amounts of data related to these parameters, helping engineers fine-tune aircraft systems for maximum comfort and safety.
Telecommunications: In cell tower base stations, the GE DS200TCQCG1BGF manages power distribution and cooling systems. It monitors the temperature of equipment racks to prevent overheating and adjusts the power supply to different components based on load requirements. This helps optimize energy consumption and extend the life of expensive telecommunications equipment.
Water treatment plants: It accurately measures water quality parameters such as pH, chlorine content and turbidity during the control of chemical dosing, helping to adjust the amount of chemicals added and purify the water.