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Flow Process Training System

Key Features:

  • Demonstrates automatic control of flow using proportional, proportional plus integral, and proportional, integral plus derivative (PID) control
  • Uses industry-standard parts to make it ideal for industrial, vocational and academic training
  • Demonstrates operation, calibration and tuning of controllers, transmitters, converters and valves
  • Compact, mobile and fully self-contained
  • Connects to the TE3300/02 Pressure Process and TE3300/04 Level Process Training Systems for cascade control
  • Connects to the TE3300/06 Computer Control System for distributed control
  • Safe, practical and realistic

. Level Measurement Range ANT IN: -36 dBm to +20 dBm in auto-tune mode. Frequency Measurement Accuracy: +/- 1 Hz plus timebase accuracy. Power Measurement Accuracy: +/- 5% of reading +/- 0.01 mW for temperature range of 25 +/- 10 degrees C TDMA Analyzer Specifications (8920B Option 500 or 800). Frequency Range: 824 MHz to 894 MHz.

Description:

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  • The Flow Process Training System is a compact and mobile unit for a wide range of experiments in flow control. It gives students a greater understanding of the stability of simple control systems.
  • The main parts of the Flow Process Training System are:
    • Industrial controller with auto-tune feature
    • Two-channel chart recorder
    • A gap-type (rotameter) fl ow meter
    • Fixed orifi ce and pressure transmitter
    • Pneumatic control valve
    • Three-speed pump
    • Reservoir
  • To carry out experiments, students fill the reservoir with clean water and prime the system. They then set the controller to regulate the flow of the water using a pneumatic valve. The gap-type flow meter gives a visual indication of flow. The fixed orifice and pressure transmitter give feedback to the controller. For a realistic experience, the equipment has industrial-standard instrumentation and parts.
  • The apparatus includes two gate valves. One valve controls the fl ow at the output (drain) and the other acts as a flow-bypass valve. A chart recorder shows and logs the changes of the process variable (level) and the controller output.

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Learning Outcomes:

  • Proportional, integral and derivative control
  • Setting up and demonstrating automatic control
  • The principles of loop control and the calibration and tuning of controllers, transmitters, converters and valves
  • Calibration of an orifice flow meter with a differential pressure transmitter
  • Quadratic flow laws and square root extraction
  • Cascade control of pressure and flow, and level and fl ow (when used with the TE3300/02 and TE3300/04)
  • Distributed control (when used with the TE3300/06 Computer Control System)

Specifications

Electrical supply:

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  • Single-phase 230 V at 0.3 A or 110 V at 0.6 A, 50/60 Hz (determined by order)

Dimensions and weight:

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  • 700 mm x 800 mm x 1750 and 120 kg
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For details see the catalog below: