All-symbol MSD (modified signed-digit) fast adder
A full-symbol, adder technology, used in non-contact manufacturing equipment for calculations, calculations using the number system, etc., can solve problems such as the inability to fully cover ternary optical computers
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Embodiment 1
[0056] see Figure 4 , this full-symbol MSD fast adder is characterized in that: a full-symbol input converter (1) is respectively connected to a sub-converter C (2) through four optical paths of optical path 00, optical path 10, optical path 01, and optical path 11. The sub-converter A(3), one sub-converter V(4) and one sub-converter D(5); the electric signal u i , v i connected to the control terminal of the full-sign input converter (1), the electrical signal u i , v i is the input signal of the circuit; the output terminals of the sub-converter C(2), sub-converter A(3), sub-converter V(4) and sub-converter D(5) output the final result.
Embodiment 2
[0058] This embodiment is basically the same as Embodiment 1, and the special features are as follows:
[0059] see figure 2 —— Figure 8 , the full-symbol input converter (1) has four optical paths, each optical path is according to the polarizer (V 1 、H 1 、H 2 , V 7 ), liquid crystal (LC 1 —LC 4 ), polarizer (V 2 , V 4 、H 3 、H 4 ), liquid crystal (LC 5 —LC 8 ), polarizer (V 3 , V 5 , V 6 , V 8 ) from left to right in order to form close to each other, the ordinary light source is placed at the left end of the leftmost polarizer, and the output of the rightmost polarizer is used as the input of the next stage; u i , v i Represents the electrical signal generated according to different combination values of the high bits of the operand, u i Loaded to the left column of liquid crystal (LC 1 —LC 4 ) of the control terminal, v i Loaded to the right column of liquid crystal (LC 5 —LC 8) control terminal. The four optical paths from top to bottom are resp...
Embodiment 3
[0064] This full-symbol MSD fast adder includes devices: non-rotating liquid crystal, polarizer, photosensitive sensor, inverter, half-mirror, mirror, optical path and circuit.
[0065] see figure 1 — Figure 8 , the figure uses a transparent wide arrow to indicate the propagation path of light (referred to as the light path), and the direction of the arrow is the direction of light propagation; the reflector is used to change the direction of light propagation, which is represented by a slash with a sawtooth marked F in the figure; The half-mirror can reflect part of the light reaching the half-mirror, and transmit the other part, that is, shunt the light, which is represented by a non-serrated oblique line marked BF in the figure; It has the functions of shielding and transmission, which can make one of longitudinal light and transverse light pass through, and one kind of shielding is represented by a rhombus with H or V in the figure, and a transverse rhombus with H repres...
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