Search Results - "Inac, Ozgur"

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  1. 1

    45-nm CMOS SOI Technology Characterization for Millimeter-Wave Applications by Inac, Ozgur, Uzunkol, Mehmet, Rebeiz, Gabriel M.

    “…This paper presents an in-depth study of a 45-nm CMOS silicon-on-insulator (SOI) technology. Several transistor test cells are characterized and the effect of…”
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    Journal Article
  2. 2

    A High-Linearity 76-85-GHz 16-Element 8-Transmit/8-Receive Phased-Array Chip With High Isolation and Flip-Chip Packaging by Bon-Hyun Ku, Inac, Ozgur, Chang, Michael, Hyun-Ho Yang, Rebeiz, Gabriel M.

    “…An SiGe transmit-receive phased-array chip has been developed for automotive radar applications at 76-84 GHz. The chip is based on an all-RF beamforming…”
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    Journal Article
  3. 3
  4. 4

    A 90-100-GHz Phased-Array Transmit/Receive Silicon RFIC Module With Built-In Self-Test by Inac, Ozgur, Golcuk, Fatih, Kanar, Tumay, Rebeiz, Gabriel M.

    “…This paper presents the first built-in self-test system (BIST) for W-band transmit-receive phased-array modules. Low-loss high-isolation switches are attached…”
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    Journal Article
  5. 5

    A 76-84-GHz 16-Element Phased-Array Receiver With a Chip-Level Built-In Self-Test System by Sang Young Kim, Inac, Ozgur, Choul-Young Kim, Donghyup Shin, Rebeiz, Gabriel M.

    “…This paper presents a 16-element phased-array receiver for 76-84-GHz applications with built-in self-test (BIST) capabilities. The chip contains an…”
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    Journal Article
  6. 6

    A Phased Array RFIC With Built-In Self-Test Capabilities by Inac, O., Donghyup Shin, Rebeiz, G. M.

    “…An X-Band phased-array RF integrated circuit with built-in self-test (BIST) capabilities is presented. The BIST is accomplished using a miniature capacitive…”
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    Journal Article
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    A 77-81-GHz 16-Element Phased-Array Receiver With [Formula Omitted] Beam Scanning for Advanced Automotive Radars by Ku, Bon-Hyun, Schmalenberg, Paul, Inac, Ozgur, Gurbuz, Ozan Dogan, Lee, Jae Seung, Shiozaki, Koji, Rebeiz, Gabriel M

    “…A 16-element phased-array receiver has been developed for advanced W-band automotive radars. The phased-array receiver is based on a single SiGe chip with RF…”
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    Journal Article
  9. 9

    A 108-114 GHz 4 \,\times\,4 Wafer-Scale Phased Array Transmitter With High-Efficiency On-Chip Antennas by Woorim Shin, Bon-Hyun Ku, Inac, Ozgur, Yu-Chin Ou, Rebeiz, Gabriel M.

    Published in IEEE journal of solid-state circuits (01-09-2013)
    “…This paper presents a W-band wafer-scale phased- array transmitter with high-efficiency on-chip antennas. The 4 × 4 array is based on an RF beamforming…”
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    Journal Article
  10. 10
  11. 11

    A 77-81-GHz 16-Element Phased-Array Receiver With \pm }^ Beam Scanning for Advanced Automotive Radars by Bon-Hyun Ku, Schmalenberg, Paul, Inac, Ozgur, Gurbuz, Ozan Dogan, Jae Seung Lee, Shiozaki, Koji, Rebeiz, Gabriel M.

    “…A 16-element phased-array receiver has been developed for advanced W-band automotive radars. The phased-array receiver is based on a single SiGe chip with RF…”
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    Journal Article
  12. 12

    75-85 GHz flip-chip phased array RFIC with simultaneous 8-transmit and 8-receive paths for automotive radar applications by Bon-Hyun Ku, Inac, Ozgur, Chang, Michael, Rebeiz, Gabriel M.

    “…This paper presents the first simultaneous 8-transmit and 8-receive paths 75-85 GHz phased array RFIC for FMCW automotive radars. The receive path has two…”
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    Conference Proceeding
  13. 13

    Built-In Self-Test Circuits for Silicon Phased Array Applications by Inac, Ozgur

    Published 01-01-2013
    “…The thesis presents built-in self-test circuits for phased array applications, and the characterization of a 45 nm CMOS SOI technology for millimeter-wave…”
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    Dissertation
  14. 14

    Millimeter-wave large-scale phased-arrays for 5G systems by Rebeiz, Gabriel M., Sang-Young Kim, Inac, Ozgur, Woorim Shin, Gurbuz, Ozan, Yu-Chin Ou, Golcuk, Fatih, Kanar, Tumay, Bon-Hyun Ku

    “…This talk will present our latest work on silicon RFICs for phased-array applications with emphasis on very large chips with built-in-self-test capabilities…”
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    Conference Proceeding
  15. 15

    A 76-84 GHz 16-element phased array receiver with a chip-level built-in-self-test system by Sang Young Kim, Inac, O., Choul-Young Kim, Rebeiz, G. M.

    “…A 16-element phased array receiver with built-in-self test (BIST) is demonstrated at 76-84 GHz. The BIST technique employs a miniature capacitive coupler…”
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    Conference Proceeding
  16. 16

    Millimeter-Wave and THz Circuits in 45-nm SOI CMOS by Inac, Ozgur, Cetinoneri, Berke, Uzunkol, Mehmet, Atesal, Yusuf A., Rebeiz, Gabriel M.

    “…This paper presents low-noise amplifiers (LNA) at 45-95 GHz, a frequency doubler at 180 GHz, active and passive mixers at 130-180 GHz fabricated in 45-nm…”
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    Conference Proceeding
  17. 17

    Double-balanced 130-180 GHz passive and balanced 145-165 GHz active mixers in 45 nm CMOS by Inac, O., Fung, A., Rebeiz, G. M.

    “…This paper presents wideband passive and active mixers in the 100-200 GHz range. The mixers are built using a 45nm CMOS SOI process with an ft of 220 GHz when…”
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    Conference Proceeding
  18. 18

    Wafer-Scale Millimeter-Wave Phased-Array RFICs by Rebeiz, Gabriel M., Shin, Woorim, Golcuk, Faith, Inac, Ozgur, Zihir, Samet, Gurbuz, Ozan, Edwards, Jennifer, Kanar, Tumay

    “…Presents a summary of the millimeter-wave wafer-scale phased array work at UCSD. This concept can drastically reduce the cost of millimeter-wave phased arrays…”
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    Conference Proceeding
  19. 19

    A 16-element 77-81-GHz phased array for automotive radars with ±50° beam-scanning capabilities by Bon-Hyun Ku, Schmalenberg, Paul, Sang Young Kim, Choul-Young Kim, Inac, Ozgur, Jae Seung Lee, Shiozaki, Koji, Rebeiz, Gabriel M.

    “…This paper presents the first 16-element 77-81 GHz phased array receiver for automotive radars. The silicon phased array chip is packaged using very low-cost…”
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    Conference Proceeding
  20. 20

    A Phased Array RFIC with Built-In Self-Test Using an Integrated Vector Signal Analyzer by Inac, O., Donghyup Shin, Rebeiz, G. M.

    “…An X-band phased-array RF integrated circuit with built-in self-test (BIST) capabilities is presented. The BIST is accomplished using a miniature capacitive…”
    Get full text
    Conference Proceeding