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Fig. 1:Basic electrical diagram of a transistor +V CC V IN V OUT Emitter Base Collector.

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Presentation on theme: "Fig. 1:Basic electrical diagram of a transistor +V CC V IN V OUT Emitter Base Collector."— Presentation transcript:

1 Fig. 1:Basic electrical diagram of a transistor +V CC V IN V OUT Emitter Base Collector

2 VCC+ IN OUT GND Fig. 2:Basic hydraulic diagram of a water-transistor (side-view of cutaway) O-rings piston return spring piston

3 VCC+ IN OUT GND Fig. 4:WT in Logical Zero position

4 VCC+ IN OUT GND Fig. 5:WT starting to change its position from Zero to One

5 VCC+ IN OUT GND Fig. 7:WT in Logical One position

6 VCC+ IN OUT GND Fig. 8:WT returning to Logical Zero position

7 VCC+ IN VCC+ IN OUT Fig. 9:Conceptual OR-gate built with two WTs (in this case, 1 + 0 = 1)

8 IN Fig. 13:More realistic (and much more complicated and ugly) possible design for an OR-gate built with four WTs (in this case, 1 + 0 = 1) IN OUT VCC+

9 IN Fig. 10:AND-gate built with two WTs (In this case, 1 + 0 = 0) OUT

10 Fig. 12:Some manufacturing suggestions for WT D G C A B E F M N J H I K L Side view of individual WT Front view of "rack" of WT housings machined out of a block of Delrin


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