ICS TRIPLEX T8310

¥2,036.00

Uses

 

  1. Industrial Automation
    In manufacturing plants, the ICS TRIPLEX T8310 can be used as a central control unit for complex production lines. It can receive data from various sensors, process the information, and send control signals to actuators to ensure the smooth operation of the production process.
  2. Power Generation and Distribution
    In power plants and substations, it can monitor electrical parameters such as voltage, current, and power factor through analog inputs. It can then control circuit breakers and other equipment via digital outputs to maintain the stability and reliability of the power grid.
  3. Oil and Gas Industry
    In oil refineries and gas processing plants, the T8310 can be used to monitor and control various processes, such as temperature and pressure control in reactors, and the operation of pumps and compressors.

Weight and Dimensions

 

  1. Weight
    The ICS TRIPLEX T8310 weighs approximately 2 – 3 kg, which is relatively light considering its functionality.
  2. Dimensions
    It has a compact design with dimensions around 200mm (length) x 180mm (width) x 80mm (height). This allows it to be easily installed in standard control cabinets or on DIN rails.
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Description

Parameter Specifications

 

  1. Power Supply
    The ICS TRIPLEX T8310 typically operates on a 24V DC power supply. It has a power consumption of around 10 – 15W, designed for energy – efficient operation in industrial settings.
  2. Processor and Memory
    • It is equipped with a high – performance processor that enables fast and reliable data processing. The exact clock speed may vary, but it is capable of handling complex control algorithms in real – time.
    • In terms of memory, it has sufficient Random – Access Memory (RAM) for data storage during operation, usually in the range of 128 – 256 MB. There is also non – volatile memory, such as flash memory, with a capacity of 32 – 64 MB for storing the operating system, application programs, and configuration data.
  3. Input/Output Channels
    • Digital Inputs: It offers 32 digital input channels. These inputs can interface with a variety of digital sensors, including proximity sensors, limit switches, and photoelectric sensors. The input voltage range is typically 18 – 30V DC.
    • Digital Outputs: There are 16 digital output channels. Each output channel can handle a resistive load of up to 2A and an inductive load of up to 1A, suitable for controlling relays, solenoid valves, and small – sized motors.
    • Analog Inputs: There are 8 analog input channels. These channels can accept signals in the range of 0 – 10V or 4 – 20mA, which are common in industrial sensor applications for measuring parameters like temperature, pressure, and flow rate.
    • Analog Outputs: There are 4 analog output channels, capable of providing signals in the range of 0 – 10V or 4 – 20mA for controlling actuators such as valves or variable – speed drives.
  4. Communication Interface
    The T8310 supports multiple communication interfaces. It has Ethernet ports for high – speed network communication, allowing it to connect to other devices in an industrial network. It also supports communication protocols such as Modbus TCP/RTU and Profibus – DP, enabling seamless integration with a wide range of industrial equipment.

Uses

 

  1. Industrial Automation
    In manufacturing plants, the ICS TRIPLEX T8310 can be used as a central control unit for complex production lines. It can receive data from various sensors, process the information, and send control signals to actuators to ensure the smooth operation of the production process.
  2. Power Generation and Distribution
    In power plants and substations, it can monitor electrical parameters such as voltage, current, and power factor through analog inputs. It can then control circuit breakers and other equipment via digital outputs to maintain the stability and reliability of the power grid.
  3. Oil and Gas Industry
    In oil refineries and gas processing plants, the T8310 can be used to monitor and control various processes, such as temperature and pressure control in reactors, and the operation of pumps and compressors.

Weight and Dimensions

 

  1. Weight
    The ICS TRIPLEX T8310 weighs approximately 2 – 3 kg, which is relatively light considering its functionality.
  2. Dimensions
    It has a compact design with dimensions around 200mm (length) x 180mm (width) x 80mm (height). This allows it to be easily installed in standard control cabinets or on DIN rails.

Characteristics

 

  1. High – Performance and Reliability
    With its powerful processor and redundant design features, the T8310 can provide high – performance control and reliable operation in critical industrial applications.
  2. Flexible Configuration
    It offers flexible configuration options, allowing users to customize input/output settings, communication protocols, and control algorithms according to specific application requirements.
  3. Diagnostic Capabilities
    The T8310 is equipped with built – in diagnostic functions that can detect faults in the I/O channels, communication interfaces, and power supply. This helps in quick troubleshooting and minimizing system downtime.

Stability and Reliability

 

  1. Robust Design
    It has a durable housing and high – quality electronic components, enabling it to withstand harsh industrial environments, including high levels of vibration, dust, and temperature variations.
  2. Redundancy and Fault Tolerance
    The T8310 often incorporates redundant components and fault – tolerance mechanisms. In case of a single – point failure, the system can continue to operate without significant disruption, ensuring high – availability in critical applications.
  3. Long – Term Testing
    The module has undergone extensive long – term testing under various operating conditions to ensure its stability and reliability over an extended service life.

Actual Cases

 

  1. Automotive Manufacturing Plant
    In an automotive manufacturing plant, the ICS TRIPLEX T8310 was used to control a robotic welding line. It received data from sensors on the robots and the workpieces, and sent control signals to adjust the movement and welding parameters of the robots. This improved the welding quality and production efficiency.
  2. Power Plant Boiler Control
    In a power plant, the T8310 was installed to control the boiler system. It monitored the temperature, pressure, and fuel flow through analog and digital inputs. Based on this data, it adjusted the operation of the burners and other equipment via analog and digital outputs, ensuring the safe and efficient operation of the boiler.