Search Results - "Tanzil, A."

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  1. 1

    Measuring Global Surgical Disparities: A Survey of Surgical and Anesthesia Infrastructure in Bangladesh by LeBrun, Drake G., Dhar, Debashish, Sarkar, Md. Imran H., Imran, T. M. Tanzil A., Kazi, Sayadat N., McQueen, K. A. Kelly

    Published in World journal of surgery (2013)
    “…Background Surgically treatable diseases weigh heavily on the lives of people in resource-poor countries. Though global surgical disparities are increasingly…”
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    Journal Article
  2. 2

    An Ultra-Low-Cost High-Performance Bluetooth SoC in 0.11- \mu} CMOS by Tan, Sam Chun-Geik, Fei Song, Renliang Zheng, Jiqing Cui, Guoqin Yao, Litian Tang, Yuejin Yang, Dandan Guo, Tanzil, A., Junmin Cao, Ming Kong, KianTiong Wong, Soong Lin Chew, Chee-Lee Heng, Shanaa, O., Guang-Kaai Dehng

    Published in IEEE journal of solid-state circuits (01-11-2012)
    “…A highly integrated ultra-low-cost high-performance Bluetooth 3.0+EDR SoC is implemented in 0.11-μm digital CMOS technology. The transceiver has an integrated…”
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    Journal Article
  3. 3

    High power-supply rejection low drop-out regulator by Dasgupta, U., Tanzil, A.

    “…An off-chip load driving low drop-out regulator with high power-supply rejection is proposed in this paper. The 1.2-V regulator uses adaptive frequency…”
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    Conference Proceeding
  4. 4

    A receiver for WCDMA/EDGE mobile phones with inductorless front-end in 65nm CMOS by Beffa, F, Tze Yee Sin, Tanzil, A, Ivory, D, Tenbroek, B, Strange, J, Ali-Ahmad, W

    “…The spectrum allocated for the operation of cellular services is country dependent and fragmented in several frequency bands. Mobile phones, to be usable…”
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    Conference Proceeding
  5. 5

    A stereo earphone driver with volume control in 65-nm CMOS technology by Tanzil, A., Dasgupta, U.

    “…A 16-¿ earpiece driver design with a built-in volume control for use in mobile phones or other portable devices is described. The fabrication was done with UMC…”
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    Conference Proceeding
  6. 6

    An ultra-low-cost Bluetooth SOC in 0.11-μm CMOS by Tan, Sam Chun-Geik, Fei Song, Renliang Zheng, Jiqing Cui, Guoqin Yao, Litian Tang, Yuejin Yang, Guo, D., Tanzil, A., Junmin Cao, Ming Kong, Kiantiong Wong, Chee-Lee Heng, Shanaa, O., Dehng, G. K.

    “…A highly-integrated, ultra-low-cost Bluetooth SOC implemented in 0.11μm digital CMOS technology is disclosed. To reduce BOM count and cost, an integrated balun…”
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    Conference Proceeding