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Ultra-low-voltage frequency synthesi...
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Hung, Chung-Chih.
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Ultra-low-voltage frequency synthesizer and successive-approximation analog-to-digital converter for biomedical applications
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Ultra-low-voltage frequency synthesizer and successive-approximation analog-to-digital converter for biomedical applications/ by Chung-Chih Hung, Shih-Hsing Wang.
作者:
Hung, Chung-Chih.
其他作者:
Wang, Shih-Hsing.
出版者:
Cham :Springer International Publishing : : 2022.,
面頁冊數:
x, 222 p. :ill., digital ;24 cm.
內容註:
1. Introduction to biomedical signals and their applications -- 2. Low-power and low-voltage VLSI Circuit design Techniques for Biomedical Applications -- 3. Introduction of Frequency Synthesizer -- 4. A 0.35-V 240-μW Fast-Lock and Low-Phase-Noise frequency synthesizer for implantable biomedical applications -- 5. Introduction of ADC -- 6. A 0.3V 10b 3MS/s SAR ADC with comparator calibration and kickback noise reduction for biomedical applications -- 7. Summary.
Contained By:
Springer Nature eBook
標題:
Biosensors. -
電子資源:
https://doi.org/10.1007/978-3-030-88845-9
ISBN:
9783030888459
Ultra-low-voltage frequency synthesizer and successive-approximation analog-to-digital converter for biomedical applications
Hung, Chung-Chih.
Ultra-low-voltage frequency synthesizer and successive-approximation analog-to-digital converter for biomedical applications
[electronic resource] /by Chung-Chih Hung, Shih-Hsing Wang. - Cham :Springer International Publishing :2022. - x, 222 p. :ill., digital ;24 cm. - Analog circuits and signal processing,2197-1854. - Analog circuits and signal processing..
1. Introduction to biomedical signals and their applications -- 2. Low-power and low-voltage VLSI Circuit design Techniques for Biomedical Applications -- 3. Introduction of Frequency Synthesizer -- 4. A 0.35-V 240-μW Fast-Lock and Low-Phase-Noise frequency synthesizer for implantable biomedical applications -- 5. Introduction of ADC -- 6. A 0.3V 10b 3MS/s SAR ADC with comparator calibration and kickback noise reduction for biomedical applications -- 7. Summary.
This book introduces the origin of biomedical signals and the operating principles behind them and presents the characteristics of common biomedical signals for subsequent signal measurement and judgment. Since biomedical signals are captured by wearable devices, sensor devices, or implanted devices, these devices are all battery-powered to maintain long working time. We hope to reduce their power consumption to extend service life, especially for implantable devices, because battery replacement can only be done through surgery. Therefore, we must understand how to design low-voltage low-power integrated circuits. Provides necessary background information on biomedical signals and proceeds with design considerations for low supply voltage analog circuits; Describes design techniques for not only frequency synthesizers and ADCs, but also the ultra-low voltage design techniques of these circuits; Demonstrates examples to overcome typical design challenges.
ISBN: 9783030888459
Standard No.: 10.1007/978-3-030-88845-9doiSubjects--Topical Terms:
621001
Biosensors.
LC Class. No.: R857.B54 / H86 2022
Dewey Class. No.: 610.28
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This book introduces the origin of biomedical signals and the operating principles behind them and presents the characteristics of common biomedical signals for subsequent signal measurement and judgment. Since biomedical signals are captured by wearable devices, sensor devices, or implanted devices, these devices are all battery-powered to maintain long working time. We hope to reduce their power consumption to extend service life, especially for implantable devices, because battery replacement can only be done through surgery. Therefore, we must understand how to design low-voltage low-power integrated circuits. Provides necessary background information on biomedical signals and proceeds with design considerations for low supply voltage analog circuits; Describes design techniques for not only frequency synthesizers and ADCs, but also the ultra-low voltage design techniques of these circuits; Demonstrates examples to overcome typical design challenges.
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