By Fei Yuan
Time-mode circuits, the place info is represented by way of time distinction among electronic occasions, supply a doable and technology-friendly capacity to achieve mixed-mode circuits and platforms in nanometer complementary metal-oxide semiconductor (CMOS) applied sciences. numerous architectures of time-based sign processing and layout ideas of CMOS time-mode circuits have emerged; even if, an in-depth exam of the rules of time-based sign processing and layout concepts of time-mode circuits has now not been available―until now.
CMOS Time-Mode Circuits and structures: basics and Applications is the 1st publication to carry a entire therapy of CMOS time-mode circuits and structures. that includes contributions from best specialists, this authoritative textual content includes a wealthy selection of literature on time-mode circuits and systems.
The ebook starts off by means of providing a serious comparability of voltage-mode, current-mode, and time-mode signaling for mixed-mode sign processing and then:
- Covers the basics of time-mode sign processing, akin to voltage-to-time converters, all-digital phase-locked loops, and frequency synthesizers
- Investigates the functionality features, structure, layout thoughts, and implementation of time-to-digital converters
- Discusses time-mode delta-sigma-based analog-to-digital converters, putting an outstanding emphasis on time-mode quantizers
- Includes an in depth research of ultra-low-power built-in time-mode temperature dimension systems
CMOS Time-Mode Circuits and structures: basics and Applications offers a worthwhile reference for circuit layout engineers, process engineers, graduate scholars, and others trying to grasp this fast-evolving field.
Read Online or Download CMOS Time-Mode Circuits and Systems: Fundamentals and Applications PDF
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Extra info for CMOS Time-Mode Circuits and Systems: Fundamentals and Applications
Hatfield. A high-resolution CMOS time-to-digital converter utilizing a vernier delay line. IEEE Journal of Solid-State Circuits, 35(2):240– 247, February 2000. )>> A. Chan and G. Roberts. A jitter characterization system using a component-invariant vernier delay line. IEEE Transactions on VLSI Systems, 12(1):79–95, January 2004. )>> A. Macpherson, J. Haslett, and L. Belostotski. A 5 GS/s 4-bit time-based single-channel CMOS ADC for radio astronomy. In Proceedings of IEEE Custom Integrated Circuit Conference, San Jose, CA, 2013, pp.
Pekau, A. Yousif, and J. Haslett. A CMOS integrated linear voltage-to-pulse-delaytime converter for time-based analog-to-digital converters. In Proceedings of IEEE International Symposium on Circuits and Systems, Kos, Greece, 2006, pp. 2373–2376. )>>M. Park and M. Perrott. A single-slope 80 Ms/s ADC using two-step time-to-Â�digital conversion. In IEEE International Symposium on Circuits and Systems, Taipai, Taiwan, 2009, pp. 1125–1128. )>>A. Macpherson, K. Townsend, and J. Haslett. A 5GS/s voltage-to-time converter in 90 nm CMOS.
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