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Titlebook: Design of Low-Voltage, Low-Power Operational Amplifier Cells; Ron Hogervorst,Johan H. Huijsing Book 1996 Springer Science+Business Media D

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书目名称Design of Low-Voltage, Low-Power Operational Amplifier Cells
编辑Ron Hogervorst,Johan H. Huijsing
视频video
丛书名称The Springer International Series in Engineering and Computer Science
图书封面Titlebook: Design of Low-Voltage, Low-Power Operational Amplifier Cells;  Ron Hogervorst,Johan H. Huijsing Book 1996 Springer Science+Business Media D
描述.Design of Low-Voltage, Low-Power CMOS Operational AmplifierCells. describes the theory and design of the circuit elements thatare required to realize a low-voltage, low-power operationalamplifier. These elements include constant-gm rail-to-rail inputstages, class-AB rail-to-rail output stages and frequency compensationmethods. Several examples of each of these circuit elements areinvestigated. Furthermore, the book illustrates several siliconrealizations, giving their measurement results. .The text focuses on compact low-voltage low-power operationalamplifiers with good performance. Six simple high-performance class-ABamplifiers are realized using a very compact topology making themparticularly suitable for use as VLSI library cells. All of thedesigns can use a supply voltage as low as 3V. One of the amplifierdesigns dissipates only 50µW with a unity gain frequency of 1.5MHz. A second set of amplifiers run on a supply voltage slightly above1V. The amplifiers combine a low power consumption with a gain of 120dB. In addition, the design of three fully differential operationalamplifiers is addressed. ..Design of Low-Voltage, Low-Power CMOS Operational AmplifierCells. is intended for
出版日期Book 1996
关键词CMOS; VLSI; analog; analog design; circuit
版次1
doihttps://doi.org/10.1007/978-1-4757-2489-9
isbn_softcover978-1-4419-5165-6
isbn_ebook978-1-4757-2489-9Series ISSN 0893-3405
issn_series 0893-3405
copyrightSpringer Science+Business Media Dordrecht 1996
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0893-3405 to realize a low-voltage, low-power operationalamplifier. These elements include constant-gm rail-to-rail inputstages, class-AB rail-to-rail output stages and frequency compensationmethods. Several examples of each of these circuit elements areinvestigated. Furthermore, the book illustrates several
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Subtask 2: Establishing a Semantic Hierarchyt five stacked gate-source voltages. Therefore, in order to be able to categorize the different circuit topologies, a classification of low-voltage in terms of gate-source voltages and saturation voltages will be given in section 2.2. This classification will be used throughout this book.
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Low-Voltage Analog Design Considerations,t five stacked gate-source voltages. Therefore, in order to be able to categorize the different circuit topologies, a classification of low-voltage in terms of gate-source voltages and saturation voltages will be given in section 2.2. This classification will be used throughout this book.
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Output Stages,s have to be connected in a common-source configuration. An efficient use of the supply current requires a high ratio between the maximum signal current that can be delivered to a load, and the quiescent current of the output stage. To accomplish this, the output transistors have to be class-AB biased.
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Book 1996 a low-voltage, low-power operationalamplifier. These elements include constant-gm rail-to-rail inputstages, class-AB rail-to-rail output stages and frequency compensationmethods. Several examples of each of these circuit elements areinvestigated. Furthermore, the book illustrates several siliconrea
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Input Stages,y respond to small differential signals. Hence, an application has to be designed such that the common-mode input voltage stays within the common-mode input range. Other important specifications of the input stage are the input referred noise, offset and the common-mode rejection ratio.
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