Design (Using FluidSim) and construct the pneumatic circuits that satisfies the conditions stated below. Use ONLY the av

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answerhappygod
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Design (Using FluidSim) and construct the pneumatic circuits that satisfies the conditions stated below. Use ONLY the av

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Design (Using FluidSim) and construct the pneumatic circuits
that satisfies the conditions stated below.
Use ONLY the available components
listed.
• Single Acting Cylinder
• Magnetic Proximity Sensor
• Double Acting Cylinder
• Pressure Sensor
• One-way flow control valve
• Inductive Proximity Sensor
• Pushbutton Module
• Capacitive Proximity Sensor
• Relay Module
• Optical Proximity Sensor
• Relay Module w/ Time Delay
• 3/2-way solenoid valve w/ spring return, normally-closed
• Change-Over Switch w/ roller • 5/2-way solenoid impulse
valve
• 5/2-way solenoid valve w/ spring return
- Maintain 4 bars operating pressure in all problems
− Always use a Magnetic Proximity Sensor to indicate the
position of cylinders (min or max stroke only)
− Always provide the State Diagram profile of each cylinder
− Circuit operation must be repeatable
Design Using Fluidsim And Construct The Pneumatic Circuits That Satisfies The Conditions Stated Below Use Only The Av 1
Design Using Fluidsim And Construct The Pneumatic Circuits That Satisfies The Conditions Stated Below Use Only The Av 1 (139.04 KiB) Viewed 25 times
NEED HELP, A PICTURE/SCREENSHOT WOULD DO. THANKS
3. Rods are to be placed inside the precast metal boxes in an assembly. The process should have the option to be done manually and automatically, use a selector switch to select the mode of operation. For manual operation, each cylinder will extend by pressing a push button associated with it. Only one cylinder should be extended at a time. As for the automatic operation, provide one pushbutton to start a continuous cycle and another pushbutton to stop. Use state diagram is shown below for automatic operation. Provide indicator lamps for the operating modes. Note: Cylinder A (1A), Cylinder B (2A), Cylinder C (3A). 1A o 1A 2A Cylinder A Cylinder B Cylinder C 1 2 3 3A 4 5 6
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