Write LADDER and IL programme for below application? The objective of application 1 is to continuously divert components down one of two chutes. Figure 1 illustrates the application. The requirement is for 10 components to be directed down chute A and 20 components down chute B for packaging purposes. A solenoid-driven flap is used to direct components down either chute A or chute B. When the solenoid is energized components are routed down path B. When the solenoid is de-energized, the flap (via a spring return mechanism) positions itself so that the components are routed down chute A. The photoelectric switch is used to count components travelling along the conveyor.
Write LADDER and IL programme for below application? The objective of application 1 is to continuously divert components down one of two chutes. Figure 1 illustrates the application. The requirement is for 10 components to be directed down chute A and 20 components down chute B for packaging purposes. A solenoid-driven flap is used to direct components down either chute A or chute B. When the solenoid is energized components are routed down path B. When the solenoid is de-energized, the flap (via a spring return mechanism) positions itself so that the components are routed down chute A. The photoelectric switch is used to count components travelling along the conveyor.
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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01. Write LADDER and IL programme for below application?
The objective of application 1 is to continuously divert components down one of two chutes. Figure 1 illustrates the application. The requirement is for 10 components to be directed down chute A and 20 components down chute B for packaging purposes. A solenoid-driven flap is used to direct components down either chute A or chute B. When the solenoid is energized components are routed down path B. When the solenoid is de-energized, the flap (via a spring return
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