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Analog Circuit Design: Sensor and Actuator Interface by Anton Bakker (auth.), J. H. Huijsing, Michiel Steyaert,

By Anton Bakker (auth.), J. H. Huijsing, Michiel Steyaert, Arthur van Roermund (eds.)

Analog Circuit Design includes the contribution of 18 specialists from the thirteenth foreign Workshop on Advances in Analog Circuit layout. it's quantity thirteen within the profitable sequence of Analog Circuit Design.

It presents 18 first-class overviews of analog circuit layout in: Sensor and Actuator Interfaces, built-in High-Voltage Electronics and tool administration, and Low-Power and High-Resolution ADC’s.

Analog Circuit Design is an important reference resource for analog circuits designers and researchers wishing to maintain abreast with the most recent advancements within the box. the academic assurance additionally makes it appropriate to be used in a complicated layout course.

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Extra resources for Analog Circuit Design: Sensor and Actuator Interface Electronics, Integrated High-Voltage Electronics and Power Management, Low-Power and High-Resolution ADC’s

Sample text

C. Enz and G. C. Temes: "Circuit Techniques for Reducing the Effects of Op-Amp Imperfections: Autozeroing, Corre1ated Double Sampling, and Chopper Stabi1ization"; Proceedings of the IEEE, Vol. 84, No. 11, Nov. 1996, pp1584-1614. J-H. Shieh et al: "Measurement and Analysis of Charge Injection in MOS Analog Switches"; IEEE Journal ofSolid-State Circuits, Vol. SC-22, No. 2, April. 1987, pp277-281. G. Wegmann et al: "Charge Injection in Analog MOS Switches"; IEEE Journal of Solid-State Circuits, Vol.

This additional circuitry, together with the memory capacitors needed to store the correction signal, generally gives a die area larger than a chopped amplifier. The strength of chopping is that the low frequency noise is near the thermal noise level. The wealmess is that the pre-chopped offset is modulated to the chopping frequency; this modulated offset can be difficult to remove. One way to remove the modulated offset is to chop at a frequency several orders of magnitude higher than the signal bandwidth, then use simple (first or second order) filtering.

Combination of Different Sensors Multi-sensor systems can be divided into two categories: • Arrays of identical transducers: The main architectural choice for large sensor arrays is between cell-1evel implementations, where each sensor element has its own dedicated circuitry, and block-level implementations, where each cell has only minimal functionality and the major building blocks are multiplexed between the sensor elements. Furthermore, the amount of circuitry can be significantly reduced by choosing an architecture that allows intelligent sharing of resources.

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