By Anton Bakker (auth.), J. H. Huijsing, Michiel Steyaert, Arthur van Roermund (eds.)
Analog Circuit Design comprises the contribution of 18 specialists from the thirteenth overseas Workshop on Advances in Analog Circuit layout. it's quantity thirteen within the profitable sequence of Analog Circuit Design.
It offers 18 very good overviews of analog circuit layout in: Sensor and Actuator Interfaces, built-in High-Voltage Electronics and gear administration, and Low-Power and High-Resolution ADC’s.
Analog Circuit Design is a vital reference resource for analog circuits designers and researchers wishing to maintain abreast with the newest advancements within the box. the educational insurance additionally makes it appropriate to be used in a sophisticated layout course.
Read Online or Download Analog Circuit Design: Sensor and Actuator Interface Electronics, Integrated High-Voltage Electronics and Power Management, Low-Power and High-Resolution ADC’s PDF
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Extra info for Analog Circuit Design: Sensor and Actuator Interface Electronics, Integrated High-Voltage Electronics and Power Management, Low-Power and High-Resolution ADC’s
MOS switches will therefore draw current from Cl and C 2, causing the stored voltage to change (especially at high temperatures). Again, making gm2 differential helps to reduce this error because the discharge of Cl and C 2 will be similar (assuming Cl and C 2 are matched and the MOS switches are matched). By comparison, a single-ended implementation of gm2 will be far more sensitive to MOS switch leakage. If the total error introduced at the input of gm2 is V t" the input-referred offset of the autozeroed amplifier will change by: (9) Adding this error term to equation (8) gives the input-referred offset during phase 2 as: (10) Re-writing equation (10) will give a clearer picture of the trade-off between gml and gm2: (11) is the dominant contributor to V OSAZ if gml/gm2 is too large.
In Section 3, different circuit implementations of the key building blocks will be given. Section 4 contains the conc1usions. 2. 1. Sensor Interface and Fabrication Technology An early decision to be made in the process of designing a multi-sensor system is the choice between a monolithic solution, in which the sensors and the interface circuitry are both fabricated on the same substrate, and a hybrid solution, in which the sensors and circuitry are fabricated on separate substrates and often use different technologies.
The switched capacitor L~-modulator in Fig. 10). Fig. 10 shows a circuit implementation of this amplifier, and summarizes its performance. Av 90 dB GBW 30 MHz thermal Noise 10nVhJHz 1/t corner trequency 30 kHz Fig. 10: Schematic oJ the operational transconductance amplijier Jor a Jully differential switched-capacitor amplijier A single-stage folded-cascode amplifier provides high DC gain and is able to drive the capacitive load. The second differential input stage can be avoided by using switched-capacitor techniques for the common-mode feedback (CMFB).
Analog Circuit Design: Sensor and Actuator Interface Electronics, Integrated High-Voltage Electronics and Power Management, Low-Power and High-Resolution ADC’s by Anton Bakker (auth.), J. H. Huijsing, Michiel Steyaert, Arthur van Roermund (eds.)