Millihertz 5 Mechanical Computer (2022)
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Millihertz 5 Mechanical Computer (2022)
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Re: Millihertz 5 Mechanical Computer (2022)
#21. Spur-gear differential; and,
2. Shishi-odoshi.
Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow.
For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), and use a locking wedge to build a one-way gear out of one of the spur-gear differentials. However, it has the nice property that the logic is made entirely out of a single element: the spur-gear differential.
Similarly, for the shishi-odoshi: you're going to have to do a bit of analysis (drilling a hole in the bottom part of the bamboo ladle), to figure out the in-flow and out-flow to build the basic AND gate, and then balancing out the NOT gate, to build your basic NAND. This is, obviously, very finicky; but, I supposed, that'd be quite a bit of the charm of a Zen computer garden?
Re: Millihertz 5 Mechanical Computer (2022)
#3I've always wanted to build (distinct) mechanical computers out of the following kinds of elements: 1. Spur-gear differential; and, 2. Shishi-odoshi. Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow. For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), a…
I love that idea.
Re: Millihertz 5 Mechanical Computer (2022)
#4Re: Millihertz 5 Mechanical Computer (2022)
#5I've always wanted to build (distinct) mechanical computers out of the following kinds of elements: 1. Spur-gear differential; and, 2. Shishi-odoshi. Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow. For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), a…
Re: Millihertz 5 Mechanical Computer (2022)
#6Also, this 1950s Naval Training film explaining the fundamentals of how mechanical fire control computers work to solve complex problems is excellent. https://www.youtube.com/watch?v=s1i-dnAH9Y4
Re: Millihertz 5 Mechanical Computer (2022)
#7Re: Millihertz 5 Mechanical Computer (2022)
#8I've always wanted to build (distinct) mechanical computers out of the following kinds of elements: 1. Spur-gear differential; and, 2. Shishi-odoshi. Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow. For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), a…
Has any computer been built out of spur-gear differentials? Like maybe some sort of adder circuit, not necessarily a full instruction executing computer. The only uses I could find was what seems to me like the differentials being part of some sort of analogue computer.
I think the last time I looked at this, if I used the cast spur gears available I needed a staged approach to "start" the computer and a 1100 hp motor to run it.
Re: Millihertz 5 Mechanical Computer (2022)
#9I've always wanted to build (distinct) mechanical computers out of the following kinds of elements: 1. Spur-gear differential; and, 2. Shishi-odoshi. Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow. For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), a…
Re: Millihertz 5 Mechanical Computer (2022)
#10I've always wanted to build (distinct) mechanical computers out of the following kinds of elements: 1. Spur-gear differential; and, 2. Shishi-odoshi. Both of these are saturating mechanical devices that can be used to build NAND gates; the latter, I think, would be very pleasing, if exceedingly slow. For the spur-gear differential, you'd need to up-scale the output by a factor of 2 (since the output is half-speed), a…