Low power oscillator

Oscillators – Combined with particular output coupling network

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331 46, 331 57, 331 75, 331108C, 331182, 331185, 327333, 327534, 327537, H03B 524, H03K 5003

Patent

active

054832055

ABSTRACT:
An oscillator circuit (150) is designed with a reference circuit (102), responsive to a first voltage, for producing a second voltage. An oscillator (108), responsive to the second voltage, produces a first output signal having a magnitude less than a magnitude of the first voltage. A level translator (114), responsive to the first output signal, produces a second output signal having a magnitude greater than the magnitude of the first output signal. Since the oscillator produces the first output signal with a magnitude less than the magnitude of the first voltage, power consumption is reduced with respect to an oscillator operating at the first voltage. The magnitude of the first output signal is increased by the level translator to a desired magnitude of the second output signal.

REFERENCES:
patent: 3916430 (1975-10-01), Heuner et al.
patent: 4336466 (1982-06-01), Sud et al.
patent: 5304859 (1994-04-01), Arimoto
patent: 5315166 (1994-05-01), Arimoto
Takashima et al, "Low Power On-Chip Supply Voltage Conversion Scheme", IEEE 1992 Symposium on VLSI Circuits Digest of Technical Papers, Jun. 2, 1992; pp. 114-115.
Takashima et al, "Low-Power On-Chip Supply Voltage Conversion Scheme for Ultrahigh-Density DRAMs", IEEE Journal of Solid-State Circuits, vol. 28, No. 4, Apr. 1993; pp. 504-508.
Hiraki et al, "Data-Dependent Logic Swing Internal Bus Architecture for Ultra-Low Power LSis" IEEE 1994 Symposium on VLSI Circuits Digest of Technical Papers; Jun. 1994; pp. 29-30.
Yasuho, Hideo; "Part 1", 1994 Nikkei Microdevices; Jul. 1994; pp. 32-34.
Itoh, Motoyasu; "Part 2"; 1994 Nikkei Microdevices; Jul. 1994; pp. 35-38.

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