Photo AI

6.1 Identify THREE programming methods used in programmable logic controllers (PLCs) - NSC Electrical Technology Electronics - Question 6 - 2016 - Paper 1

Question icon

Question 6

6.1-Identify-THREE-programming-methods-used-in-programmable-logic-controllers-(PLCs)-NSC Electrical Technology Electronics-Question 6-2016-Paper 1.png

6.1 Identify THREE programming methods used in programmable logic controllers (PLCs). 6.2 Name TWO input devices that may be connected to the input stage of a PLC. ... show full transcript

Worked Solution & Example Answer:6.1 Identify THREE programming methods used in programmable logic controllers (PLCs) - NSC Electrical Technology Electronics - Question 6 - 2016 - Paper 1

Step 1

Identify THREE programming methods used in programmable logic controllers (PLCs)

96%

114 rated

Answer

  1. Ladder Logic Programming
  2. Function Block Diagram (FBD) Programming
  3. Structured Text Programming

Step 2

Name TWO input devices that may be connected to the input stage of a PLC

99%

104 rated

Answer

  1. Push Buttons
  2. Proximity Sensors

Step 3

State THREE disadvantages of a hardwired system in comparison with a PLC system

96%

101 rated

Answer

  1. Lack of Flexibility: Hardwired systems are challenging to modify once installed, making them less adaptable to changes in functionality.
  2. Complexity in Maintenance: Troubleshooting and maintenance can be difficult due to the interconnected wiring.
  3. Scalability Issues: Expanding a hardwired system often requires significant rewiring, while PLCs can be easily expanded with additional modules.

Step 4

Explain how low-current devices, such as transistors, may be activated by the output of a PLC

98%

120 rated

Answer

Low-current devices can be activated through relays or directly via transistor outputs. In a PLC, outputs function at low voltages that can control the state of a transistor. When the PLC output is high, it energizes the transistor, allowing current to flow and activating the connected low-current device.

Step 5

Write the simplified Boolean equation for the expression below. Use a four-variable Karnaugh map

97%

117 rated

Answer

Using a Karnaugh map to simplify the expression, we get:

X=AB+ACDX = AB + ACD

Step 6

Simplify the following Boolean equation by using Boolean algebra

97%

121 rated

Answer

Starting with the equation: Q = A B C + A B + A B + A B We can factor out A B:

Q=AB(C+1)Q = A B (C + 1) Since (C + 1) = 1, we simplify to:

Q=ABQ = A B

Step 7

Determine the output at the following points - W

96%

114 rated

Answer

W = A + B

Step 8

Determine the output at the following points - X

99%

104 rated

Answer

X = A + C

Step 9

Determine the output at the following points - Y

96%

101 rated

Answer

Y = A . B

Step 10

Determine the output at the following points - Z

98%

120 rated

Answer

Z = (A + B)(A + C)(A . B)

Step 11

Name the following ladder logic symbols - 6.8.1

97%

117 rated

Answer

Normally Open Contact / Switch

Step 12

Name the following ladder logic symbols - 6.8.2

97%

121 rated

Answer

Normally Closed Contact

Step 13

Name the following ladder logic symbols - 6.8.3

96%

114 rated

Answer

Coil

Step 14

Draw the ladder logic diagram that will execute the same function in a PLC system

99%

104 rated

Answer

The ladder logic diagram will consist of the Start and Stop buttons controlling the coil, along with the MC1 maintaining the latch. The representation can follow typical PLC formats with clear connections.

Step 15

Give ONE example where the circuit in FIGURE 6.2 may be used in an electrical application

96%

101 rated

Answer

This circuit can be used as a motor starter in industrial applications, enabling the control of motor operation through start and stop functions.

Join the NSC students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;