Problem Description When a Car enters the hall, a particular sequence will be followed automatically. The steps are 1) Soaping, 2) Washing, 3) Rinsing, and 4) Drying. Draw this process sequence in PLC using the Ladder Diagram programming language. Label each Rung and Each function must have its address and descrition
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Problem Description When a Car enters the hall, a particular sequence will be followed automatically. The steps are 1) Soaping, 2) Washing, 3) Rinsing, and 4) Drying. Draw this process sequence in PLC using the Ladder Diagram programming language. Label each Rung and Each function must have its address and descrition

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- 8.a. What is the purpose of relay CRE in the roll stand machine?A. Relay CRE is used as an emergency stop relay.B. Relay CRE is used to control an alarm light.C. Relay CRE is used to power the PLC.D. Relay CRE is used to power the input modules. 8.b. Which one of the following statements is true of a disabled contact or coil?A. The disabled element has been automatically disabled due to module failure.B. The disabled element is held false by the PLC.C. A disabled contact or coil is caused by a faulty memory location in the PLC.D. A contact must be in the disabled state before it can be forced ON or OFF.Design, simulate and implement an electropneumatic automation system with PLC for 2 cylinders (A and B), which when pressing the push button S1 performs the following pneumatic sequence: A- B- B+ A+ for 10 seconds. With the push button S2 the sequence can be stopped at any time.Exercise 3: 3-way Switch Below is the control diagram of a 3-way switch with a single lamp output. Draw the ladder diagram program of the circuit and explain the operation. SW. 1 (3-WAY) Explain the operation: 2 Draw the rungs here (Maximum of 2 rungs). CS Scanned with CamScanner 3 SW. 2 (3-WAY) 10 4 $ Exercise 4: Aside from Siemens, list 10 more PLC manufacturers and one model each brand of PLC and programming software used. (Example: Manufacturer: Siemens, Model: S7-400, Programming Software: SIMATIC S7/SIMATIC Manager) LIGHT
- The hardwired level control system shown below in Figure 1a must be replaced by a PLC based system. X124 V DC X2ºv 13 13 11 13 S1 E--- K1-1 S4 K2-1 K2-2 1.a.3 14 SYSTEM ON 14 LOW LEVEL 12 PUMP SYSTEM 14 PUMP 22 N SENSOR START PB 11 11 S2 E--- S5 1.a.4 12 HIGH LEVEL 12 SYSTEM SENSOR STOP PB 11 S3 1.a.4 12 13 K1-2 SYSTEM ON 14 MAX LEVEL SENSOR A1 x1 K1 SYSTEM ON H1 A2 SYSTEM ON BLUE A1 x1 K2 H2 H3 PUMP A2 PUMP RUN x2 GREEN PUMP STOP RED Figure 1a: Water Tank Level Control System a) Using the worksheets 1(a) and 1(b) sketch the PLC inputs and outputs schematic diagrams respectively. (5) b) Write/Sketch a programme using an IEC61131-3 language to implement the previously hardwired logic. (10) c) The water level sensors are replaced by an analogue ultrasonic level transducer. Explain how this transducer would replace the 'low level' and 'high level' sensors. Include what changes will be required to the PLC software. (5) d) It is proposed to replace the push buttons and lamps with a touch…Fill in the blanks: Given the model for position control system, find the value for K1 and K2 so that the peak time is equal to 0.5 s and the %OS is equal to 3%. K1= 93.2070 K2= 0.129 I 446 23a. Complete the following timing diagram. Assume Q 1 and Q3 areinitialized to zero. Be careful when you are copying the timing diagram b.Pattern Detection with FSM: You have been asked to design aMealy machine which can detect a pattern 1X0, Zhere X is a DON¶T CAREcondition. Hence it will produce a 1 for both 110 and 100. Draw the state diagramof the FSM.
- Q 7The following information is given for a 300kW, 600V, long shunt compound DC generat or, shunt field resistance is 75 ohms, armature resistance 0.01, brush resistance is 0.011 ohrms, series field resistance is 0.012 ohms and the divert or resistance of 0.036 ohms.When the machine is delivering full load; a. Draw the circuit diagrarn b. Calculate the voltage and C Power generated by the armat ure.Complete the timing diagram for Q1, Q2, Q3, and Q4 using the circuit and signals shown in Figure 1. Note that Q1, Q3, and Q4 will start at 0 while Q2 starts at 1. Preset and clear are asynchronous.
- Q2) This PLC is being used to start and stop an electric motor, and also to shut it down automatically if any of three “shutdown" conditions occur: Excessive vibration Overcurrent (overload heater contact) High winding temperature Power supply Digital inputs Digital outputs Processor To motor contactor ox oot O YO X1 120 VAC Start Stop Øo x2 のo Y2 N Do x3 Do Y3 L1 O X4 ØL2/N Com Gnd Com Vibration contact Temperature contact Overload contact The status of each shutdown contact is as follows: Vibration contact: closed when okay, opens when vibration becomes excessive Overload contact: closed when okay, opens when overloaded Temperature contact: open when okay, closes when hot Draw a PLC ladder-logic program to start and stop this motor.A motor device is labeled 150 mFd. This device is a A. centrifugal switch.B. stator.C. capacitor. D. rotor.A real-life production facility scenario is given below. In a manufacturing facility, the pilot light comes “ON” when all of the following conditions are met: Both normally open circuit pressure switches must be closed. One of the two normally open limit switches must be closed An emergency stop or reset button to turn the Pilot lamp OFF if needed. Answer the following questions based on the above scenario. Identify and list the inputs and outputs used in this scenario. Draw a relay schematic for this scenario. Draw the ladder logic for the given scenario.

