| A | B | C | D | E | F | G | H | I | J | K | L | M | N | O | P | Q | R | S | T | U | V | W | X | Y | |
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1 | First Name | Last Name | Faculty | Project Category | Project title | ||||||||||||||||||||
2 | Lucas | Lahann | Arias | Adaptive Intelligent Sensing Systems | Steps Towards Environmentally Stable Printed Nitrate Sensors. | ||||||||||||||||||||
3 | Julian | Maravilla | Arias | Adaptive Intelligent Sensing Systems | RaSiCo/ Rapid Simulation and Design of Body Conformal Phased Arrays for MRI | ||||||||||||||||||||
4 | Carolyn | Schwendeman | Arias | Adaptive Intelligent Sensing Systems | Ion-Selective Sensors for Interstitial Fluid | ||||||||||||||||||||
5 | Yuhan | Wen | Arias | Adaptive Intelligent Sensing Systems | |||||||||||||||||||||
6 | Philothei | Sahinidis | Arias | Adaptive Intelligent Sensing Systems | Printed Zinc Air Batteries | ||||||||||||||||||||
7 | Carla | Benato | Arias | | First Year | ||||||||||||||||||||
8 | Pham | Kim | Arias | | First Year | ||||||||||||||||||||
9 | Cynthia | Gomez | Arias | | First Year | ||||||||||||||||||||
10 | Yuting | Cai | Arias | | PostDoc | ||||||||||||||||||||
11 | Camille | Jubert | Arias | | PostDoc | ||||||||||||||||||||
12 | Jolene | Huey | Arias | | |||||||||||||||||||||
13 | Naz | Khairallah | Arias/Niknejad | Adaptive Intelligent Sensing Systems | First Year | ||||||||||||||||||||
14 | Wei | Foo | Chien | Adaptive Intelligent Sensing Systems | Dual-Path Noise Elimination (DuNE): A Noise-Cancellation Technique for Aptamer-Based Electrochemical Sensors | ||||||||||||||||||||
15 | Wei-Yu | Lin | Chien | Adaptive Intelligent Sensing Systems | Electronic-Photonic System for Cryogenic Qubits Control and Readout | ||||||||||||||||||||
16 | Justine | Tsai | Chien | Adaptive Intelligent Sensing Systems | Low Noise Electrochemical Aptamer-Based Sensing Device | ||||||||||||||||||||
17 | Wei-Yang | Weng | Chien | | First Year | ||||||||||||||||||||
18 | Hyeong Seok | Oh | Chien | Adaptive Intelligent Sensing Systems | Electronic-Photonic System for Massive-MIMO mm-wave Applications | ||||||||||||||||||||
19 | Sunjin | Choi | Chien | Next-G (Connectivity) | A Scalable Wavelength Arbitration for Microring-based DWDM Transceivers | ||||||||||||||||||||
20 | Yueting (Lily) | Li | Chien | | |||||||||||||||||||||
21 | Yunping | Wang | Chien | | |||||||||||||||||||||
22 | Justin | Doong | Muller | Adaptive Intelligent Sensing Systems | Ear EEG | ||||||||||||||||||||
23 | Elizabeth | Murray | Muller | Adaptive Intelligent Sensing Systems | High Speed Micromirror-Based Spatial Light Modulators | ||||||||||||||||||||
24 | Aviral | Pandey | Muller | Adaptive Intelligent Sensing Systems | Adaptive Frontends for Biosignal Classifiers/SPIRIT: A Seizure Prediction SoC with Unsupervised Online Learning | ||||||||||||||||||||
25 | Chun-Yen | Yao | Muller | Adaptive Intelligent Sensing Systems | ROGUE: Rx On-site Generation Using Electronics | ||||||||||||||||||||
26 | Surin | Gweon | Muller | Adaptive Intelligent Sensing Systems | INSITE 2: An Implantable, Multicolor Fluorescence Microscope-on-a-chip for Monitoring Response to Cancer Immunotherapy | ||||||||||||||||||||
27 | Jade | Pinkenburg | Muller | Adaptive Intelligent Sensing Systems | A High-Speed Ultrasound Transceiver for Miniaturized Biomedical Sensor Nodes | ||||||||||||||||||||
28 | Changuk | Lee | Muller | Adaptive Intelligent Sensing Systems | DustNet: A High-Speed Ultrasound Transceiver for Miniature Biomedical Sensor Nodes | ||||||||||||||||||||
29 | I-Ting | Lin | Muller | Adaptive Intelligent Sensing Systems | Adaptive Frontends for Biosignal Classifiers | ||||||||||||||||||||
30 | Alec | Vercruysse | Muller | | |||||||||||||||||||||
31 | Dhruv | Vaish | Muller | Adaptive Intelligent Sensing Systems | First Year | ||||||||||||||||||||
32 | ALexander | Chou | Muller | Adaptive Intelligent Sensing Systems | The MRDust/ A Wireless Platform With Data Uplink via Dynamic Magnetic Resonance Image Modulation | ||||||||||||||||||||
33 | I-Ting | Lin | Muller | | First Year | ||||||||||||||||||||
34 | Gabrielle | Evans | Muller | | MS | ||||||||||||||||||||
35 | Yuean | Gu | Muller | Adaptive Intelligent Sensing Systems | ROGUE: Rx On-site Generation Using Electronics | ||||||||||||||||||||
36 | Biqi | Zhao | Muller/Lustig | Adaptive Intelligent Sensing Systems | The MRDust: An Implantable Platform with Data Readout via Dynamic MRI | ||||||||||||||||||||
37 | Ali | Ameri | Niknejad | Adaptive Intelligent Sensing Systems | SubTHz Near-Field 2D BioImager | ||||||||||||||||||||
38 | Yikuan | Chen | Niknejad | Adaptive Intelligent Sensing Systems | 140GHz FMCW Radar with RF Leakage Cancellation | ||||||||||||||||||||
39 | Averal | Kendala | Niknejad | Adaptive Intelligent Sensing Systems | BASE: Bio-Implantable Arrayed Sensing Environment | ||||||||||||||||||||
40 | Rahul | Lall | Niknejad | Adaptive Intelligent Sensing Systems | Towards Implantable & Wearable Devices for Personalized Dosimetry in Cancer Radiotherapy | ||||||||||||||||||||
41 | Yu-Chi | Lin | Niknejad | Adaptive Intelligent Sensing Systems | Concurrent Wireless EEG with TMS and MRI | ||||||||||||||||||||
42 | Micah | Roschelle | Niknejad | Adaptive Intelligent Sensing Systems | INSITE 2: An Implantable, Multicolor Fluorescence Microscope-on-a-chip for Monitoring Response to Cancer Immunotherapy | ||||||||||||||||||||
43 | Jongbeom | Baek | Niknejad | Next-G (Connectivity) | Discrete Envelope Tracking for Wideband mm-Wave Power Amplifiers | ||||||||||||||||||||
44 | Hesham | Beshary | Niknejad | Next-G (Connectivity) | Cobra IC: A Wideband 140 GHz 2-D Massive Array | ||||||||||||||||||||
45 | Rohit | Braganza | Niknejad | Next-G (Connectivity) | Load Modulated Balanced Amplifier (LMBA) & PAs | ||||||||||||||||||||
46 | Jose | Guajardo | Niknejad | Next-G (Connectivity) | Digital Beamforming with Interference Cancellation for mm-Wave MU-MIMO | ||||||||||||||||||||
47 | Rami | Hijab | Niknejad | Next-G (Connectivity) | Efficient PAs for 200GHz Arrays | ||||||||||||||||||||
48 | Yahia | Ibrahim | Niknejad | Next-G (Connectivity) | Constant Load High Efficiency PA for 90GHz Transmitters | ||||||||||||||||||||
49 | Awani | Khodkumbhe | Niknejad | Next-G (Connectivity) | Concurrent Receiver for Interference Mitigation in Wideband Systems | ||||||||||||||||||||
50 | Kunmo | Kim | Niknejad | Next-G (Connectivity) | Advanced Non-Linear ISI Equalizers for ADC-Based High Speed SerDes Rx | ||||||||||||||||||||
51 | Saleh | Hassanzadehyamchi | Niknejad | Next-G (Connectivity) | Stack mm-Wave High Power Amplifiers in Silicon | ||||||||||||||||||||
52 | Mohamed | Elgamal | Niknejad | | |||||||||||||||||||||
53 | Haley | Dave | Niknejad | | First Year | ||||||||||||||||||||
54 | Masoud | Masoumizadeh | Niknejad | | First Year | ||||||||||||||||||||
55 | Sarika | Madhvapthy | Niknejad/Chien | Adaptive Intelligent Sensing Systems | Electronic-Photonic Ultrasound Receiver Array | ||||||||||||||||||||
56 | Andre | Green | Nikolic | | First Year | ||||||||||||||||||||
57 | Vadim | Nikiforov | Nikolic | Adaptive Intelligent Sensing Systems | RoSE: A Hardware-Software Co-Simulation Infrastructure Enabling Pre-Silicon Full-Stack Robotics SoC Evaluation | ||||||||||||||||||||
58 | Felicia | Guo | Nikolic | Design Methodology | ML Techniques for Analog Circuit Synthesis | ||||||||||||||||||||
59 | Ken | Ho | Nikolic | Design Methodology | Development of An Open-Source LPDDR4X Memory System | ||||||||||||||||||||
60 | Vighnesh | Iyer | Nikolic | Design Methodology | SimCommand: A High-Performance RTL Testbench API | ||||||||||||||||||||
61 | Seah | Kim | Nikolic | Design Methodology | AuRORA: Virtual Accelerator Interface for Scalable Integration | ||||||||||||||||||||
62 | Nayiri | Krzysztofowicz | Nikolic | Design Methodology | Fast and Transferrable post-RTL Power Estimation | ||||||||||||||||||||
63 | Rahul | Kumar | Nikolic | Design Methodology | Analog design automation, open-source SRAM compilers, chiplet-to-chiplet parallel links | ||||||||||||||||||||
64 | Bob | Zhou | Nikolic | Next-G (Connectivity) | 80 Gbps NRZ SERDES TRX for Dense D2D links | ||||||||||||||||||||
65 | Josh | Kang | Nikolic | | Learned Formal Proof Strengthening for Efficient Hardware Verification | ||||||||||||||||||||
66 | Animesh | Agrawal | Nikolic | | |||||||||||||||||||||
67 | Junsun | Choi | Nikolic | | RPC Integration with Hyperscale Accelerators | ||||||||||||||||||||
68 | Charles | Hong | Nikolic | | |||||||||||||||||||||
69 | Gupta | Raghav | Nikolic | | |||||||||||||||||||||
70 | Di | Wang | Nikolic | Design Methodology | Subsampling digital PLL implementation for chiplet interconnects | ||||||||||||||||||||
71 | Schwarz | Ella | Nikolic | | |||||||||||||||||||||
72 | Rohan | Kumar | Nikolic | Design Methodology | Analog design automation, open-source SRAM compilers, chiplet-to-chiplet parallel links | ||||||||||||||||||||
73 | Yufeng | Chi | Nikolic/Shao | Adaptive Intelligent Sensing Systems | LeggedPerf: A benckmarking and profiling framework that combines hardware and software, enabling full-stack, closed-loop evaluation of the performance of robotics computing platforms. | ||||||||||||||||||||
74 | Youbin | Kim | Rabaey | Adaptive Intelligent Sensing Systems | The Hyper-dimensional Processing Unit | ||||||||||||||||||||
75 | Mohamed | Ibrahim | Rabaey | Adaptive Intelligent Sensing Systems | HPU: The Hyperdimensional Processing Unit | ||||||||||||||||||||
76 | Minh | Nguyen | Shao | | First Year | ||||||||||||||||||||
77 | Richard | Yan | Shao | | First Year | ||||||||||||||||||||
78 | Chengyi | Zhang | Shao | | First Year | ||||||||||||||||||||
79 | Tianru | Wei | Shao | Adaptive Intelligent Sensing Systems | Saturn DSP | ||||||||||||||||||||
80 | Vikram | Jain | Shao | Design Methodology | Heterogeneous Integration with chiplets | ||||||||||||||||||||
81 | Kevin | Anderson | Shao | | |||||||||||||||||||||
82 | Prashanth | Ganesh | Shao | | |||||||||||||||||||||
83 | Huai-Che (Roger) | Hsiao | Shao | | |||||||||||||||||||||
84 | Hansong | Kim | Shao | | |||||||||||||||||||||
85 | Hooper | Coleman | Shao | | |||||||||||||||||||||
86 | Joonho | Whangbo | Shao | | |||||||||||||||||||||
87 | Avinash | Nandakumar | Shao | | |||||||||||||||||||||
88 | Dong | Shengjun | Shao | | |||||||||||||||||||||
89 | Anderson | Erik | Stojanovic | Next-G (Connectivity) | MEMS Optical Switch "SuperSwitch" Controller | ||||||||||||||||||||
90 | Antroy | Chowdhury | Stojanovic | Next-G (Connectivity) | Co-Packaged Optics for Datacenter Networks | ||||||||||||||||||||
91 | Wahid | Rahman | Stojanovic | Next-G (Connectivity) | Co-Packaged Optics for Datacenter Networks | ||||||||||||||||||||
92 | Yukio | Miyasaka | Wawrzynek | Design Methodology | Logic Synthesis | ||||||||||||||||||||
93 | Arya | Reais-Parsi | Wawrzynek | Design Methodology | Open-Source Silicon Compiler for Reduced Complexity Reconfigurable Fabrics | ||||||||||||||||||||
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