-54-
Since we’ve made up other digital circuits by
combining NAND gates, it makes sense that we can
make XOR gates as well. We can, as this circuit will
show you.
Set the switch to B before you complete this circuit.
After you finish the wiring, connect terminals 13 and
14. Press the key – does anything happen to LED
1? Now release the key and set the switch to A.
What does LED 1 do? Leave the switch at A and
press the key. What happens to LED 1 now?
The output is 1 as long as the inputs are different. If
both inputs are the same – either 0 or 1 – the output
of the XOR gate is 0.
Put on your thinking cap and follow each 0 or 1 input
through the circuit until you reach the output. It
might help if you mark 0 or 1 on the schematic at the
input and output of each NAND gate.
Notes:
EXPERIMENT #38: TTL “EXCLUSIVE OR” GATE
Wiring Sequence:
o
13-49-131-137
o
14-119
o
31-61
o
72-62-33-133-121
o
71-50-53-138
o
57-51-132
o
54-52-56
o
55-59
o
58-60
o
13-14 (POWER)
Schematic
Содержание EP-130
Страница 11: ... 11 I ENTERTAINMENT CIRCUITS ...
Страница 26: ... 26 II BASIC SEMICONDUCTOR AND COMPONENTS CIRCUITS ...
Страница 36: ... 36 III LED DIGITAL DISPLAY CIRCUITS ...
Страница 41: ... 41 IV A TOUR THROUGH DIGITAL CIRCUITS ...
Страница 49: ... 49 V MORE ADVENTURES WITH DIGITAL CIRCUITS ...
Страница 64: ... 64 VI THE WORLD OF TRANSISTOR TRANSISTOR LOGIC ...
Страница 77: ... 77 VII APPLICATION CIRCUITS BASED ON THE OSCILLATOR ...
Страница 88: ... 88 VIII BASIC OPERATIONAL AMPLIFIER CIRCUITS ...
Страница 116: ... 116 IX MORE ADVENTURES WITH OPERATIONAL AMPLIFIERS ...
Страница 129: ... 129 X COMMUNICATION CIRCUITS ...
Страница 136: ... 136 XI TESTING AND MEASURING CIRCUITS ...