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- W2560119496 abstract "This paper describes a number of computing elements whose accuracy is considerably higher than that of comparable analog devices and whose speed of operation is considerably faster than that of comparable digital circuits. These elements employ both analog and digital computing techniques. The input and output signals of these hybrid computing devices are presented by two quantities, the most significant part by a parallel binary number and the least significant part by an analog voltage.The hybrid multiplier consists of a relatively simple digital multiplier, three D/A converters, a very simple analog multiplier, and a summing and comparison circuit. An accuracy of 1 part in 104 and a bandwidth of 1KC is possible with a relatively simple circuit. The accuracy can be expanded theoretically as high as desired at the cost of additional equipment.The hybrid integrator consists of an accumulating register, a variable amplitude sawtooth generator, a simple analog integrator and a summing and comparison circuit. Its dynamic range and accuracy are limited only by the number of digits used in the R-register.The hybrid function generator consists of a diode decoding matrix, a diode translation matrix, two D/A converters and a summing and comparison circuit. A repeatability of 1 part in 104 and a bandwidth of 1KC is easily possible.There are no A/D converters, no external storage means, no timing circuits (except clock frequency for integrator), no controls to adjust, and no temperature-sensitive circuits in a system using these hybrid computing elements." @default.
- W2560119496 created "2016-12-16" @default.
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- W2560119496 date "1899-12-30" @default.
- W2560119496 modified "2023-09-25" @default.
- W2560119496 title "Combined Analog-Digital Computing Elements" @default.
- W2560119496 doi "https://doi.org/10.1109/afips.1961.21" @default.
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