Q2 (a) As a Mechanical Engineer, you are tasked with updating the control system for a conveyor belt sorting station. To ensure compatibility with the new system, you need to convert the existing PLC ladder diagram Figure Q2 into an instruction list(Mnemonic code) format. OUT3 IN4 IN3 IN2 IN1 INS IN7 IN6 INS * OUT4 IN3 IN10 IN9 OUT3 ** HH INS IN6 HH Figure Q2 Ladder diagram for conveyor belt sorting station
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- I want you to draw a ladder logic diagram of a garage door to control it by PLC. In my case we have different inputs and outputs and all of them gotta be used in the diagram. I can perfectly interpret the diagram so no need to explain it, I will just require you to draw it. INPUTS : open push button ( OPB ) - close push button ( CPB ) - open limit switch ( OLS ) - close limit switch ( CLS ) - obstacle detection sensor ( ODS ) - safety sensor ( SS ) - emergency stop push button ( ESPB ) - reset button ( RB ) OUTPUTS : motor starts ( MS ) - motor stops ( MSTP ) - motor forward ( MF ) - motor reverse ( MR ) - Error display ( ER ) OPERATİNG MODES : automatic mode ( AM ) - manual mode ( MM ) NECESSARY TIMERS : T1 ( delay door movement after obstacle detection ) - T2 ( delay door movement after reversing ) Here is my excercise for today. Please I am requiring a good logic diagram taking into consideration all what was mentioned before. so to sum up, I want you to write a logic ladder diagram…An emergency stop system is to be designed for a certain automatic production machine. A single “start” button is used to turn on the power to the machine at the beginning of the day. In addition, there are two “stop” buttons located at two locations on the machine, either of which can be pressed to immediately turn off power to the machine. Let X1 = start button (normally open), X2 = stop button 1 (normally closed), X3 = stop button 2 (normally closed), and Y = power-to-machine. (a) Construct the truth table for this system. (b) Write the Boolean logic expression for the system. (c) Construct the ladder logic diagram for the system(PID solution with the requirements and simple explanation. Thx) INSTRUCTION: Given three bare processes develop a control system using feedbackand feedforward concept/principle. Your output is a process and instrumentationdiagram (P & ID) using ISA's Instrument Identification and Symbols standards withexplanation. PROCESS 2: The liquid level inside the tank is regulated at a value of 3.0 m on a condition ofcontinuous liquid inflow and outflow. Requirements: Two feedback solutions One feedforward solution
- Which type of control system is used in the given block diagram? Write the definition.33. Press [SHIFT] key and [COORD] key together in the teach pendant allows the robot programmer to (a) activate user-specified user tool frame or user frame (b) select jogging coordinate system (c) record a robot point 34. The FANUC LR Mate 200iC robot is classified as (a) a cylindrical robot (b) a spherical robot (c) an articulate robot1. The precision of CNC system depends on used by the controller to the ... ... define the axis coordinate location. * Number of bits All choices Machine language Worker skills
- Hartley Electronics, Inc., in Nashville, producesshort runs of custom airwave scanners for the defense industry.The owner, Janet Hartley, has asked you to reduce inventory byintroducing a kanban system. After several hours of analysis, youdevelop the following data for scanner connectors used in onework cell. How many kanbans do you need for this connector?Daily demand 1,000 connectorsLead time 2 daysSafety stock 12 dayKanban size 500 connectors(a) Summarize the following G and M code a. G41, G81, 691, G01, GOO b. M08, M30, M01, M06, M03 (b) Document three phases of writing a CNC program in the form of a block diagram. You don't have to write the actual CNC program.In manual leadthrough of robot programming, the manipulator is physically moved through the desired sequence of positions, which are recorded into memory for later execution. T or F
- A pick and Place machine is being used to transfer a box. The arm is extended (out) by energizing a solenoid valve; when the valve is de-energizes, the arm retracts (in). In the same way, a second valve closes the grip (when energized) or opens the grip (when de-energized). Here's a diagram of this "machine": Grip Air Cylinder Grip open Grip Closed Box Arm Air Cylinder Arm In Arm Out The system is really slow... it actually takes 3-4 seconds for the arm to fully extend. An engineer created the below diagram. Start Pressed Time (seconds) Box Falls - 1 -2 -3 - 4 - 5 -6 –7 -8 – 9 – 10 Extend Arm Close Grip Question (finally!). Which statement is completely true regarding this design? It uses the Master Clock scheme. Given this diagram, the arm will probably start to retract before the grip fully closes. O If the arm takes 4 seconds to retract (return), the box will be dropped "mid-flight" It uses the Domino Scheme. Things can't happen in the wrong sequence. It uses the Master Clock…Circuit Problem and Description: Using the given components, design a pneumatic circuit which will correctly and safely operate this machine control application. This is a simple two- cylinder sequence (A and B), as follow; A+ B+ A- B-. This is known as a simple sequence when the order for the cylinder to move out is the same as for cylinder to move back. The start-up signal will be by means of a normally closed 3/2 way valve operated by push button (M1) or normally closed 3/2 way valve operated by switch (M2). Full extension and retraction of each cylinder can be monitored by four normally closed 3/2 way valve operated by roller (M3-M6). Extension and retraction speeds of both cylinders must be adjustable using 2 sets of 2 single-direction flow regulation valves. Materials: Component Description Part # SAI 2026 Double acting cylinder SAI 2015 Normally closed 3/2 way valve operated by push button SAI 2016 Normally closed 3/2 way valve operated by switch SAI 2013 Normally closed 3/2 way…13) Write a program to implement the process illustrated in the figure below. The sequence of operation is to be as follows: • Normally open start and normally closed stop pushbuttons are used to start and stop the process. • When the start button is pressed, solenoid A energizes to start filling the tank. • As the tank fills, the empty level sensor switch closes. • When the tank is full, the full level sensor switch closes. • Solenoid A is de-energized. • The agitate motor starts automatically and runs for 3 min to mix the liquid. 15 • When the agitate motor stops, solenoid B is energized to empty the tank. • When the tank is completely empty, the empty sensor switch opens to de-energize solenoid B • The start button is pressed to repeat the sequence. SOL A Motor Full sensor switch Empty sensor switch +SOL B Start/stop control station