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Indosaw Engineering – Gunt
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Fluid Machinery Lab Equipment
Fluid Mechanics – Hydraulics
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Instrumentation and Process Control Lab Equipment
Advanced process control
IA 120
Principles of industrial sensors
Familiarisation with key sensors: mode of operation and application
IA 130
PLC module
Self-contained PLC module for basic exercises; also suitable for IA 210 and RT 800
IA 210
PLC application: materials handling process
Basic system of automation: transporting and sorting workpieces
RT 350
Operation of industrial controllers
Simulation of controlled systems; digital controller with freely selectable parameters
RT 380
Optimization of control loops
Tuning the controller to the controlled system; software simulation of the most common controlled systems
RT 674
Flow/level control demonstration unit
Experimental introduction to control engineering using an example of a control led system for flow rate, level and level via flow rate (cascade control)
RT 700
Training system: fundamentals of hydraulics
Complete training system providing an experimental introduction to the fundamentals of hydraulics
RT 770
Training system: pneumatics, electro-pneumatics and PLC
Complete training system providing an experimental introduction to the fundamentals of pneumatics and electro-pneumatics, also with PLC
RT 578
Control of four variables from process engineering
Practical control of level, flow rate, pressure and temperature
RT 681
Multivariable control: vacuum degassing
Model of “degassing of fluids”: coupled level and pressure control in one vacuum tank
RT 682
Multivariable control: stirred tank
Heated stirrer tank with heat recovery as model: coupled level and temperature control
Fundamentals of process control
RT 010
Training system: level control, HSI
Fundamentals of control engineering using the example of a level control system with integral behaviour
RT 020
Training system: flow control, HSI
Fundamentals of control engineering using the example of a rapid flow control system
RT 030
Training system: pressure control, HSI
Fundamentals of control engineering using the example of a pressure control system with first order lag
RT 040
Training system: temperature control, HSI
Fundamentals of control engineering using the example of a temperature control system with dead time
RT 050
Training system: speed control, HSI
Fundamentals of control engineering using the example of a speed control system with first order lag
RT 060
Training system: position control, HSI
Fundamentals of control engineering using the example of a position control system with integral behaviour
Measuring methods
IA 110
Calibrating a pressure sensor
Test-pressure generated with dead-weight piston manometer
WL 201
Fundamentals of humidity measurement
Climatic chamber with adjustable humidity; comparison of four measuring methods
WL 202
Fundamentals of temperature measurement
Experimental introduction to temperature measurement: methods, areas of application, characteristics
WL 203
Fundamentals of pressure measurement
Measurement of positive and negative pressure with different measuring devices
WL 204
Vapour pressure of water – Marcet boiler
Fundamentals of control engineering using the example of a pressure control system with first order lag
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