Charge injection circuit having impedance conversion means

Electrical transmission or interconnection systems – Nonlinear reactor systems – Parametrons

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307584, 307311, 328 2, 250332, 357 24, 377 57, H03K 17687, H03K 342, G01J 500, H01L 2500

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active

050935895

ABSTRACT:
A charge injection circuit for injecting a charge to a signal processing circuit has a photo-voltaic element for generating a photocurrent when an infrared light is received, a field effect transistor used for injecting the charge to the signal processing circuit, and an impedance conversion circuit for feeding back an output of the field effect transistor to a substrate potential of the photo-voltaic element. The impedance conversion circuit has a gain which is greater than zero and less than or equal to one.

REFERENCES:
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patent: 3621283 (1971-11-01), Teer
patent: 3742830 (1973-07-01), Matsuzaki et al.
patent: 3808435 (1974-04-01), Bate et al.
patent: 4072863 (1978-02-01), Roundy
patent: 4142207 (1979-02-01), McCormack et al.
patent: 4338515 (1982-07-01), Herbst et al.
patent: 4379232 (1983-04-01), Hopper
patent: 4675887 (1987-06-01), Akiyama et al.
Kubo et al., "Feedback Direct Injection Current Readout for Infrared Charge-Couple Devices", Infrared Technology XV, SPIE vol. 1157, pp. xi, 329-337, 1989.
Nathan Bluzer et al., "Current Readout of Infrared Detectors", Optical Engineering, vol. 26, No. 3, pp. 241-248, Mar. 1987.

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