Daftar Komponen :http://news.chivindo.com/73/stereo-encoder.html
R1 = R5 = 10K
R2 = R6 = 220K R2 = R6 = 220K
R3 = R4 = R9 = 47K R3 = R4 = R9 = 47k
R7 = R8 = 4.7K R7 = R8 = 4.7K
R10 = 68K R10 = 68K
R11 = R12 = 27K R11 = R12 = 27K
R13 = 2.2K variable R13 = 2.2k variabel
R14 = 20K liniar R14 = 20K liniar
C1 = C2 = 1nF C1 = C2 = 1nF
C3 = C4 = C11 = 100nF C3 = C4 = C11 = 100nF
C5 = C10 = 10nF C5 = C10 = 10nF
C6 = 470pF C6 = 470pF
C7 = 100pF C7 = 100pF
C8 = 68pF C8 = 68pF
C9 = 10uF C9 = 10uF
L = 6.8mH L = 6.8mH
IC1 = 4066 IC1 = 4.066
IC2 = 4013 IC2 = 4.013
IC3 = 4047 IC3 = 4.047
IC4 = 741 IC4 = 741
Basic PLC Ladder Programming Examples 23 Basic PLC Ladder Programming Training Examples for Beginners. Hi friends, here we are starting unique a series of Free Training on PLC Ladder Programming & tutorials. These PLC Ladder Programs are important to learn basics of Ladder programs. Example 7: Sequential control If we serially connect the normally closed contact of Y2 in example 5 to the circuit of Y1 as an AND condition for Y1 (as the diagram in the left hand side), the circuit can not only make Y1 as the condition for Y2, but also allow the stop of Y1 after Y2 is enabled. Therefore, we can make Y1 and Y2 execute exactly the sequential control Example 8: Oscillating circuit The ladder diagram above is a very simple one. When the program starts to scan the normally closed contact Y1, Y1 will be closed because coil Y1 is Off. When the program then scan to coil Y1 and make it On, the output will be 1. When the program scans to the normally closed contact Y1 again in the n...
Comments
Post a Comment