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1.
Digitally Controlled Microwave Power Amplifier Design Techniques for Wireless Communications
by Diddi, Varish, Ph.D.  University of California, San Diego. 2017: 153 pages; 10289301.
2.
Design Considerations for Nano-Electromechanical Relay Circuits
by Spencer, Matthew Edmund, Ph.D.  University of California, Berkeley. 2015: 102 pages; 3733438.
3.
Ultra-Low Power RFIC for Space/Medical/Mobile Applications
by Yasami, Saeid, Ph.D.  University of Louisiana at Lafayette. 2015: 114 pages; 10003754.
4.
A Hybrid CMOS Image Sensor with Energy Harvesting Capability
by Pour, Golsa Moayeri, Ph.D.  Purdue University. 2015: 139 pages; 3734524.
5.
Design techniques for ultra-low-voltage and ultra-low-power pipelined ADCs
by Shen, Junhua, Ph.D.  Columbia University. 2010: 157 pages; 3420870.
6.
Improvement of a propagation delay model for CMOS digital logic circuits
by Stamness, Rodger Lawrence, M.S.  San Jose State University. 2010: 100 pages; 1477363.
7.
Single-chip integration of a three-dimensional imaging system
by Philipp, Ralf M., Ph.D.  The Johns Hopkins University. 2008: 227 pages; 3339884.
8.
On-chip demonstration of carbon nanotube interconnects
by Close, Gael F., Ph.D.  Stanford University. 2008: 134 pages; 3313812.
9.
Design of Front End Circuits for a Low Power Ultra Wide Band Receiver
by Shaker, Mohamed, Ph.D.  University of Louisiana at Lafayette. 2015: 85 pages; 3714137.
10.
A 100 MHz 6th Order Continuous Time Band-Pass Sigma Delta Modulator with Active Inductor Resonators
by Dobson, Kevin, Ph.D.  The George Washington University. 2016: 115 pages; 10085732.
11.
Millimeter-wave CMOS power amplifiers design
by Bohsali, Mounir Youssef, Ph.D.  University of California, Berkeley. 2008: 165 pages; 3353454.
12.
Duty-Cycle Based Physical Unclonable Functions (PUFs) for Hardware Security Applications
by Azhar, Mahmood Javed, Ph.D.  University of South Florida. 2018: 100 pages; 10980455.
13.
Efficient Power Amplifiers for Millimeter-Wave Beamformers
by Sarkar, Anirban, Ph.D.  North Carolina State University. 2016: 162 pages; 10583288.
15.
Design of Multi-Gb/s Multi-Coefficient Mixed-Signal Equalizers
by Thakkar, Chintan S., Ph.D.  University of California, Berkeley. 2012: 127 pages; 3686464.
16.
Demonstrating the role of multiple memory mechanisms in learning patterns using neuromorphic circuits
by Barzegarjalali, Saeid, Ph.D.  University of Southern California. 2016: 141 pages; 10242347.
17.
Auxiliary Roles in STT-MRAM Memory
by Das, Jayita, Ph.D.  University of South Florida. 2014: 122 pages; 3666526.
18.
Energy and data conversion circuits for low power sensory systems
by Ghosh, Suvradip, Ph.D.  University of Missouri - Kansas City. 2013: 201 pages; 3610195.
19.
20.
Collective Pulse Dynamics: A New Timing Circuit Strategy
by Dalakoti, Aditya, Ph.D.  University of California, Santa Barbara. 2018: 138 pages; 10932913.
21.
Design and Evaluation of Circuits and Architectures Based on Beyond-CMOS Device Technologies
by Palit, Indranil, Ph.D.  University of Notre Dame. 2017: 131 pages; 13836459.
22.
90nm CMOS direct-conversion transmitter design for WCDMA
by Yang, Xuemin, Ph.D.  North Carolina State University. 2009: 169 pages; 3360624.
23.
Current-mode CMOS hybrid image sensor
by Benyhesan, Mohammad Kassim, M.S.  University of Missouri - Kansas City. 2013: 91 pages; 1540634.
24.
Reset noise suppression in CMOS image sensor using charge control technique
by Syamsundar, Nitya, M.S.  The University of Texas at San Antonio. 2012: 79 pages; 1531653.
26.
Research and design on phase-locked loop and equalizer for wireline communications
by You, Yang, Ph.D.  Southern Methodist University. 2015: 170 pages; 3702841.
27.
Design considerations for high-speed backplane transceivers with digital adaptive equalizers
by Chung, Hayun Cecillia, Ph.D.  Harvard University. 2009: 125 pages; 3385565.
28.
New tests and test methodologies for scan cell internal faults
by Yang, Fan, Ph.D.  The University of Iowa. 2009: 155 pages; 3390232.
29.
Design of digital-centric polar modulation transmitters for high-data-rate communications
by Syllaios, Ioannis Loukas, Ph.D.  The University of Texas at Dallas. 2010: 126 pages; 3415466.
30.
Designing Framework for the Computer Aided Design of Silicon Carbide JFET Circuits in BLEO Environments
by Naidugari, Venkata Vinay, M.S.  The University of Mississippi. 2017: 104 pages; 10280107.
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