
The AND Logic Gate Needs To Be Corrected As Well
The AND logic gate needs to be corrected as well (transistor logic circuit redesign) for all the pieces to come together with only two logic gates.
Then testing to see how many topologies can be implemented using the two operator set (AND, EI).
The set may include the single channel inverting buffer if needed. Applying the logic will reveal what logic structures can be produced.
Graphing the truth tables for the AND and OR operators as they are designed would reveal an unbalanced operation through the properties of their logic.
Designers of the original architecture implemented NAND and XOR to balance the operation of digital logic circuits.
What we now have is a core set of two balanced logic gates. The new set can include the old core as the special cases. Operations who's truth tables display 3 true, 1 false or 3 false, 1 true, both are unbalanced or biased.
3 - 1 is easier to implement than 2 - 2 balanced operation from a circuit design perspective. Balanced is less evident. It can be done with two transistors, the long logic gate chains we see in textbooks are due to the 3 - 1 core set IMHO.
A core set of lopsided logic gates since the inception of computing ..they went to THE MOON on this?? ..I once met a scientist who said he crossed his fingers while the astronauts were in space ..I understand why.
Someone used four lopsided logic gates to make a logical 360 then achieve the balanced result. For humanity's sake I wish the previous statement would have been an exaggeration
It took fifteen minutes or less to draw the balanced logic gate on a newspaper sipping java. I hope we have not been implementing everything the hard way because...
..it was too hard to take fifteen extra minutes to design a circuit where two switches can be on yet the light is off. As well as a circuit where both switches are off yet the light is on.
How does the device I type on function? ..each important operation consists of four 3 -1 lopsided operations ..some of which have not yet been identified as containing other logic themselves ..which is why they are lopsided to begin with.
Four unbalanced truth tables were used to achieve a pseudo-correct balanced output. All of our computers behave this loopy way? ..this is very uncanny, like someone changed the dimension out from under me.
Says here Konrad Zuse designed and built the Z1 computer in Germany 1938. It was the first computing machine to implement boolean logic.
The bug is slightly older than I thought, when we implemented the technology we did not think to test the logic using mathematics ..then we used the computers to solve our science problems. We even made it back from the moon on flawed but functional logic gates.
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