IP Library › Granted Patent US 12,387,093
Granted Patent B2
US 12,387,093 · App. 18/429,937 · Granted Aug 12, 2025

Semiconductor device and electronic device

Inventor: Yoshiyuki Kurokawa (Sagamihara, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
G06N3/063G06N3/065G11C11/24G11C11/54G11C27/005
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Quick Facts
Patent No.
US 12,387,093
App. No.
18/429,937
Granted
Aug 12, 2025
Kind
B2
Abstract

A neuron circuit can switch between two functions: as an input neuron circuit, and as a hidden neuron circuit. An error circuit can switch between two functions: as a hidden error circuit, and as an output neuron circuit. A switching circuit is configured to be capable of changing the connections between the neuron circuit, a synapse circuit, and the error circuit. The synapse circuit includes an analog memory that stores data that corresponds to the connection strength between the input neuron circuit and the hidden neuron circuit or between the hidden neuron circuit and the output neuron circuit, a writing circuit that changes the data in the analog memory, and a weighting circuit that weights an input signal in reaction to the data of the analog memory and outputs the weighted output signal. The analog memory includes a transistor comprising an oxide semiconductor with extremely low off-state current.

Claims (49)

1. A module comprising:

a first circuit;

a second circuit; and

a third circuit,

wherein the first circuit is configured:

to amplify a first signal and to output the amplified first signal to the second circuit; and

to convert the first signal from current to voltage, to amplify the converted first signal, and to output the amplified converted first signal to another module,

wherein the second circuit comprises:

a first multiplier circuit multiplying the amplified first signal and a third signal from the third circuit, for changing data corresponding to a connection strength;

an analog memory configured to store the changed data; and

a second multiplier circuit configured to output a second signal corresponding to the amplified first signal, that the amplified first signal has been weighted in accordance with the changed data,

wherein the third circuit is configured:

to convert the second signal from current to voltage;

to output the converted second signal to an outside; and

to output the third signal to the second circuit, and

wherein the analog memory comprises:

a transistor comprising an oxide semiconductor in a channel formation region; and

a capacitor.

2. The module according to claim 1 , wherein the first circuit is a neuron circuit.

3. The module according to claim 1 , wherein the second circuit is a synapse circuit.

4. The module according to claim 1 , wherein the third circuit is an error circuit.

5. An electronic device comprising the module according to claim 1 , further comprising:

an encoder configured to encode video data,

wherein the video data comprises first video data and second video data, and

wherein the module is configured:

to compare the first video data and the second video data when the first video data and the second video data are input to the module; and

to obtain a motion vector from position of a part of the first video data to position of a part of the second video data when the part of the first video data and the part of the second video data match.

6. A module comprising:

a neuron circuit;

a synapse circuit; and

an error circuit,

wherein the synapse circuit comprises:

a first multiplier circuit multiplying an output signal from the neuron circuit and an output signal from the error circuit, for changing data corresponding to a connection strength;

an analog memory configured to store the changed data; and

a second multiplier circuit configured to output a signal that the output signal from the neuron circuit is weighted in accordance with the changed data, and

wherein the analog memory comprises:

a transistor comprising an oxide semiconductor in a channel formation region; and

a capacitor.

7. The module according to claim 6 ,

wherein the neuron circuit comprises a first selector circuit configured to select whether the neuron circuit is configured as an input neuron circuit or as a hidden neuron circuit,

wherein the neuron circuit is configured to amplify an input signal and output the amplified input signal to the synapse circuit when the neuron circuit functions as the input neuron circuit, and

wherein the neuron circuit is configured:

to convert the input signal from current to voltage;

to amplify the converted input signal; and

to output the amplified converted input signal to another synapse circuit when the neuron circuit is the hidden neuron circuit.

8. The module according to claim 6 ,

wherein the error circuit comprises a second selector circuit configured to select whether the error circuit is configured as an output neuron circuit or as a hidden error circuit,

wherein the error circuit is configured to convert a current output from the synapse circuit to voltage and output the converted voltage to another module when the error circuit is the output neuron circuit, and

wherein the error circuit is configured to multiply a derivative of the converted voltage and a difference signal between an instructor signal based on an error signal outputted from a synapse circuit of a module in a succeeding stage and a reference signal when the error circuit is the hidden error circuit.

Priority Claims (2)
JP 2015-208505 · Oct 23, 2015 · national
JP 2015-228425 · Nov 24, 2015 · national
Continuity (3)
Continuation 17172259 · Feb 10, 2021
Continuation 15296566 · Oct 18, 2016
Related Publication 20240176997A1 · May 30, 2024
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