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Dive into the research topics where Bhavesh G. Bhakta is active.

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Featured researches published by Bhavesh G. Bhakta.


IEEE Journal of Solid-state Circuits | 2005

A 6.25-Gb/s binary transceiver in 0.13-/spl mu/m CMOS for serial data transmission across high loss legacy backplane channels

Robert Floyd Payne; Paul E. Landman; Bhavesh G. Bhakta; Srinath Ramaswamy; Song Wu; John Powers; M.U. Erdogan; Ah-Lyan Yee; Richard Gu; Lin Wu; Yiqun Xie; B. Parthasarathy; Keith Brouse; W. Mohammed; Keerthi Heragu; V. Gupta; L. Dyson; Wai Lee

A transceiver capable of 6.25-Gb/s data transmission across legacy communications equipment backplanes is described. To achieve a bit error rate (BER) <10/sup -15/, transmit and receive equalization that can compensate up to 20 dB of channel loss is employed to remove intersymbol interference (ISI) resulting from finite channel bandwidth and reflections. The transmit feed-forward equalizer (FFE) uses a four-tap symbol-spaced programmable finite impulse response (FIR) filter followed by a 4-bit digital-to-analog converter (DAC) that drives a 50-/spl Omega/ transmission line. The receiver uses a half-baud-rate adaptive decision feedback equalizer (DFE) that cancels the first four symbol-spaced taps of postcursor ISI without use of speculative techniques. Both the transmitter and receiver use an LC-oscillator-based phase-locked loop (PLL) to provide low jitter clocks. Techniques to minimize the complexity of the FIR and DFE implementations are described. The transceiver is designed to be integrated in a standard ASIC flow in a 0.13-/spl mu/m digital CMOS technology. System measurements indicate the ability to transmit and recover data eyes that have been fully closed due to crosstalk and signal loss.


international solid-state circuits conference | 2005

A 6.25Gb/s binary adaptive DFE with first post-cursor tap cancellation for serial backplane communications

Robert Floyd Payne; Bhavesh G. Bhakta; Srinath Ramaswamy; Song Wu; John Powers; Paul E. Landman; Ulvi Erdogan; Ah-Lyan Yee; Richard Gu; Lin Wu; Yiqun Xie; B. Parthasarathy; Keith Brouse; W. Mohammed; Keerthi Heragu; V. Gupta; L. Dyson; Wai Lee

A 6.25 Gb/s serial receiver with a 4-tap adaptive DFE is implemented in a 0.13 /spl mu/m 7LM CMOS process. Direct cancellation of the first post-cursor ISI is achieved, enabling recovery of a data eye fully closed from channel losses and crosstalk. A BER<10/sup -15/ is measured over legacy backplane channels.


Archive | 2004

Circuit and method for evaluating the performance of an adaptive decision feedback equalizer-based serializer deserializer and serdes incorporating the same

Robert Floyd Payne; Bhavesh G. Bhakta


Archive | 2004

High speed decision feedback equalizer

Bhavesh G. Bhakta; Sridhar Ramaswamy; Robert Floyd Payne; Song Wu


international solid-state circuits conference | 2005

A transmit architecture with 4-tap feedforward equalization for 6.25/12.5Gb/s serial backplane communications

Paul E. Landman; Keith Brouse; V. Gupta; Song Wu; Robert Floyd Payne; Ulvi Erdogan; Richard Gu; Ah-Lyan Yee; B. Parthasarathy; Srinath Ramaswamy; Bhavesh G. Bhakta; W. Mohammed; John Powers; Yiqun Xie; Lin Wu; L. Dyson; Keerthi Heragu; Wai Lee


Archive | 2004

High performance sense amplifiers

Robert Floyd Payne; Bhavesh G. Bhakta; Sridhar Ramaswamy; Song Wu


Archive | 2011

ELECTRONIC DEVICE AND METHOD FOR BUFFERING

Oliver Piepenstock; Andreas Bock; Bhavesh G. Bhakta


Archive | 2001

Implementation method of digital phase-locked loop

Bhavesh G. Bhakta; Younggyun Kim


Archive | 2001

Decimated digital phase-locked loop for high-speed implementation

Bhavesh G. Bhakta; Younggyun Kim


Archive | 2009

High performace lvds driver for scalable supply

Bhavesh G. Bhakta; Mark W. Morgan

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