Neural network employing absolute value calculating synapse

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395 22, 395 23, G06F 1518

Patent

active

053296109

ABSTRACT:
A neural network employing absolute difference calculating synapse cells comprising a pair of floating gate devices coupled in parallel between an internal cell node and column line of the network. The network further includes a switched-capacitor circuit for summing all of the charges generated by all of the synapse cells within a column of the network. The circuit operates in response to a sequence of applied voltage pulses such that each cell generates a charge representing either the input, the weight, or the minimum/maximum of either the weight or the input. The accumulation of these charges represents the sum of the absolute value difference between the input voltages and the stored weights for a single column of the array.

REFERENCES:
patent: 4956564 (1990-09-01), Holler et al.
patent: 4961002 (1990-10-01), Tam et al.
patent: 5040230 (1991-08-01), Takatori et al.
patent: 5083285 (1992-01-01), Shima et al.
patent: 5115492 (1992-05-01), Engeler
patent: 5120996 (1992-06-01), Mead et al.
patent: 5146602 (1992-09-01), Holler et al.
patent: 5167008 (1992-11-01), Engeler

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