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Noah Zamdmer
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2010 – 2019
- 2018
- [j6]Scott R. Stiffler, Ravikumar Ramachandran, W. Kirklen Henson, Noah Zamdmer, Kevin McStay, Giuseppe La Rosa, Kevin M. Boyd, Sungjae Lee, Claude Ortolland, Paul C. Parries:
Process technology for IBM 14-nm processor designs featuring silicon-on-insulator FinFETs. IBM J. Res. Dev. 62(2/3): 11:1-11:7 (2018)
2000 – 2009
- 2004
- [j5]Neric H. W. Fong, Jonghae Kim, Jean-Olivier Plouchart, Noah Zamdmer, Duixian Liu, Lawrence F. Wagner, Calvin Plett, Garry Tarr:
A low-voltage 40-GHz complementary VCO with 15% frequency tuning range in SOI CMOS technology. IEEE J. Solid State Circuits 39(5): 841-846 (2004) - [j4]Jean-Olivier Plouchart, Jonghae Kim, Noah Zamdmer, Liang-Hung Lu, Melanie Sherony, Yue Tan, Robert A. Groves, Robert Trzcinski, Mohamed Talbi, Asit Ray, Lawrence F. Wagner:
A 4-91-GHz traveling-wave amplifier in a standard 0.12-μm SOI CMOS microprocessor technology. IEEE J. Solid State Circuits 39(9): 1455-1461 (2004) - [c7]Jonghae Kim, Jean-Olivier Plouchart, Noah Zamdmer:
Design and manufacturability aspect of SOI CMOS RFICs. CICC 2004: 541-548 - 2003
- [j3]Jean-Olivier Plouchart, Noah Zamdmer, Jonghae Kim, Melanie Sherony, Yue Tan, Asit Ray, Mohamed Talbi, Lawrence F. Wagner, Kun Wu, Naftali E. Lustig, Shreesh Narasimha, Patricia O'Neil, Nghia Phan, Michael Rohn, James Strom, David M. Friend, Stephen V. Kosonocky, Daniel R. Knebel, Suhwan Kim, Keith A. Jenkins, Michel M. Rivier:
Application of an SOI 0.12-µm CMOS technology to SoCs with low-power and high-frequency circuits. IBM J. Res. Dev. 47(5-6): 611-630 (2003) - [j2]Yu Cao, Robert A. Groves, Xuejue Huang, Noah Zamdmer, Jean-Olivier Plouchart, Richard A. Wachnik, Tsu-Jae King, Chenming Hu:
Frequency-independent equivalent-circuit model for on-chip spiral inductors. IEEE J. Solid State Circuits 38(3): 419-426 (2003) - [j1]Neric H. W. Fong, Jean-Olivier Plouchart, Noah Zamdmer, Duixian Liu, Lawrence F. Wagner, Calvin Plett, N. Garry Tarr:
Design of wide-band CMOS VCO for multiband wireless LAN applications. IEEE J. Solid State Circuits 38(8): 1333-1342 (2003) - [c6]Jean-Olivier Plouchart, Jonghae Kim, Noah Zamdmer, Liang-Hung Lu, Melanie Sherony, Yue Tan, Robert A. Groves, Robert Trzcinski, Mohamed Talbi, Asit Ray, Lawrence F. Wagner:
A 4-91 GHz distributed amplifier in a standard 0.12 μm SOI CMOS microprocessor technology. CICC 2003: 159-162 - [c5]Jean-Olivier Plouchart, Jonghae Kim, Noah Zamdmer, Melanie Sherony, Yue Tan, Meeyoung Yoon, Mohamed Talbi, Asit Ray, Lawrence F. Wagner:
A 31 GHz CML ring VCO with 5.4 ps delay in a 0.12-μm SOI CMOS technology. ESSCIRC 2003: 357-360 - [c4]Jonghae Kim, Jean-Olivier Plouchart, Noah Zamdmer, Melanie Sherony, Yue Tan, Meeyoung Yoon, Robert Trzcinski, Mohamed Talbi, John Safran, Asit Ray, Lawrence F. Wagner:
A power-optimized widely-tunable 5-GHz monolithic VCO in a digital SOI CMOS technology on high resistivity substrate. ISLPED 2003: 434-439 - [c3]Jean-Olivier Plouchart, Jonghae Kim, Hector Recoules, Noah Zamdmer, Yue Tan, Melanie Sherony, Asit Ray, Lawrence F. Wagner:
A 0.123 mW 7.25 GHz static frequency divider by 8 in a 120-nm SOI technology. ISLPED 2003: 440-442 - 2002
- [c2]Yu Cao, Robert A. Groves, Noah Zamdmer, Jean-Olivier Plouchart, Richard A. Wachnik, Xuejue Huang, Tsu-Jae King, Chenming Hu:
Frequency-independent equivalent circuit model for on-chip spiral inductors. CICC 2002: 217-220 - [c1]Neric H. W. Fong, Jean-Olivier Plouchart, Noah Zamdmer, Duixian Liu, Lawrence F. Wagner, Calvin Plett, Gerry Tarr:
A low-voltage multi-GHz VCO with 58% tuning range in SOI CMOS. CICC 2002: 423-426
1990 – 1999
- 1999
- [b1]Noah Zamdmer:
The design and testing of integrated circuits for submillimeter-wave spectroscopy. Massachusetts Institute of Technology, Cambridge, MA, USA, 1999
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