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Comparator applications

About: Comparator applications is a research topic. Over the lifetime, 2518 publications have been published within this topic receiving 26639 citations.


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Patent
Amir Bashir1
15 Feb 1995
TL;DR: In this article, an address transition detection interface is disclosed for a sensing circuit that determines a state of a memory cell having n possible states, where n is greater than 2, and wherein no decoding logic is required to translate outputs of comparators into binary bits.
Abstract: An address transition detection interface is disclosed for a sensing circuit that determines a state of a memory cell having n possible states, where n is greater than 2, and wherein no decoding logic is required to translate outputs of comparators into binary bits. In the case where n is 4, the sensing circuit includes a first reference corresponding to a first threshold voltage level and a first comparator coupled to the memory cell and to the first reference. The first comparator compares a threshold voltage level of the memory cell to the first reference and provides a first result of the comparison as output. The sensing circuit further includes a second reference corresponding to a second threshold voltage level and a third reference corresponding to a third voltage level. A second comparator has one of its inputs coupled to the memory cell and its second input is selectively coupled to either the second reference or the third reference. A selector circuit selects between the second and third references in response to the first result. The selector circuit couples the second reference to the second comparator if the threshold voltage level of the memory cell is less than the first threshold voltage level. The selector circuit couples the third reference to the second comparator if the threshold voltage level of the memory cell is greater than the first voltage level. A forcing circuit provides the first reference to the second comparator in place of the second and third references for a predetermined period following the output of the first result by the first comparator and prior to the selective coupling to the second comparator by the selector circuit of the second reference or the third reference.

44 citations

Patent
12 Oct 1990
TL;DR: In this paper, a switched-capacitor circuit is described, which performs the functions of a full-wave rectifier and of an integrator and has a single operational amplifier and a comparator.
Abstract: A switched-capacitor circuit is described, which performs the functions of a full-wave rectifier and of an integrator and has a single operational amplifier and a comparator. The circuit is insensitive to the stray capacitances and offsets of the comparator and the operational amplifier. In particular, the input signal is sampled during only one phase of the clock which pilots the operation of the switched-capacitance network.

44 citations

Patent
Keith H. Lofstrom1
15 Apr 1993
TL;DR: In this paper, a fully differential comparator is proposed, which includes a differential signal input, a differential reference input, and a differential output, which can be used in conjunction with a conventional resistor string found in the front end of a flash ADC.
Abstract: A fully differential comparator includes a differential signal input, a differential reference input, and a differential signal output. Identical first and second gain stages are used in the differential comparator that each have a first single-ended input, a second single-ended input, and a differential output. The first single-ended inputs from the first and second gain stages form the differential signal input of the differential comparator. The second single-ended inputs from the first and second gain stages form the differential reference input of the differential comparator. The differential outputs of the first and second gain stages are cross-coupled to form the differential signal output of the differential comparator. The differential comparator can be used in conjunction with a conventional resistor string found in the front end of a flash ADC, but in a novel manner that prevents undesirable loading effects, as well as other problems associated with prior art single-ended comparators.

44 citations

Journal ArticleDOI
TL;DR: A new self-checking comparator with one periodic output that can be used as a two-rail checker or as an equality checker.
Abstract: In this paper we propose a new self-checking comparator with one periodic output. The comparator can be used as a two-rail checker or as an equality checker. Two different input patterns are sufficient to detect all the faults considered.

44 citations

Patent
06 May 2002
TL;DR: In this article, a data comparator using a dynamic reference voltage and an input buffer using the same input buffer is presented, where the output signal is generated by comparing twice the data signal with the sum of the non-inverting signal and the inverting signal.
Abstract: A data comparator using a dynamic reference voltage and an input buffer using the same. The data comparator comprises a comparator circuit for receiving a data signal and a pair of non-inverting/inverting signals, which are periodic and complementary. The output signal is generated by comparing twice the data signal with the sum of the non-inverting signal and the inverting signal. The non-inverting/inverting signals are used as a dynamic reference voltage in the data comparator.

44 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202319
202269
20185
201747
201687
2015100