A wideband CMOS low noise amplifier employing noise and IM2 distortion cancellation for a digital TV tuner D Im, I Nam, HT Kim, K Lee IEEE Journal of Solid-State Circuits 44 (3), 686-698, 2009 | 178 | 2009 |
In Vivo Silicon-Based Flexible Radio Frequency Integrated Circuits Monolithically Encapsulated with Biocompatible Liquid Crystal Polymers GT Hwang, D Im, SE Lee, J Lee, M Koo, SY Park, S Kim, K Yang, SJ Kim, ... Acs Nano 7 (5), 4545-4553, 2013 | 125 | 2013 |
A CMOS active feedback balun-LNA with high IIP2 for wideband digital TV receivers D Im, I Nam, K Lee IEEE Transactions on Microwave Theory and Techniques 58 (12), 3566-3579, 2010 | 106 | 2010 |
A highly linear 1 GHz 1.3 dB NF CMOS low-noise amplifier with complementary transconductance linearization BK Kim, D Im, J Choi, K Lee IEEE Journal of Solid-State Circuits 49 (6), 1286-1302, 2014 | 75 | 2014 |
A low power broadband differential low noise amplifier employing noise and IM3 distortion cancellation for mobile broadcast receivers D Im, I Nam, K Lee IEEE Microwave and wireless components letters 20 (10), 566-568, 2010 | 41 | 2010 |
A CMOS resistive feedback differential low-noise amplifier with enhanced loop gain for digital TV tuner applications D Im, HT Kim, K Lee IEEE transactions on microwave theory and techniques 57 (11), 2633-2642, 2009 | 41 | 2009 |
A highly linear wideband CMOS low-noise amplifier based on current amplification for digital TV tuner applications SS Song, DG Im, HT Kim, K Lee IEEE Microwave and Wireless Components Letters 18 (2), 118-120, 2008 | 37 | 2008 |
A wide-band CMOS variable-gain low noise amplifier for multi-standard terrestrial and cable TV tuner DG Im, SS Song, HT Kim, K Lee 2007 IEEE Radio Frequency Integrated Circuits (RFIC) Symposium, 621-624, 2007 | 34 | 2007 |
A broadband CMOS RF front-end for universal tuners supporting multi-standard terrestrial and cable broadcasts D Im, H Kim, K Lee IEEE journal of solid-state circuits 47 (2), 392-406, 2011 | 33 | 2011 |
Tuner DG Im, JY Lee, HS Lee, HT Kim, KR Lee US Patent 8,103,233, 2012 | 32 | 2012 |
A +9-dBm Output P1db Active Feedback CMOS Wideband LNA for SAW-Less Receivers D Im IEEE Transactions on Circuits and Systems II: Express Briefs 60 (7), 377-381, 2013 | 30 | 2013 |
A stacked-FET linear SOI CMOS cellular antenna switch with an extremely low-power biasing strategy D Im, BK Kim, DK Im, K Lee IEEE Transactions on Microwave Theory and Techniques 63 (6), 1964-1977, 2015 | 28 | 2015 |
A CMOS active feedback wideband single-to-differential LNA using inductive shunt-peaking for saw-less SDR receivers D Im, I Nam, JY Choi, BK Kim, K Lee 2010 IEEE Asian Solid-State Circuits Conference, 1-4, 2010 | 26 | 2010 |
A high IIP2 broadband CMOS low-noise amplifier with a dual-loop feedback D Im, IY Lee IEEE Transactions on Microwave Theory and Techniques 64 (7), 2068-2079, 2016 | 24 | 2016 |
3.7 A fully integrated TV tuner front-end with 3.1 dB NF,>+ 31dBm OIP3,> 83dB HRR3/5 and> 68dB HRR7 IY Lee, SS Lee, D Im, S Kim, J Choi, SG Lee, J Ko 2014 IEEE International Solid-State Circuits Conference Digest of Technical …, 2014 | 24 | 2014 |
A broadband PVT-insensitive all-nMOS noise-canceling balun-LNA for subgigahertz wireless communication applications D Kim, S Jang, J Lee, D Im IEEE Microwave and Wireless Components Letters 31 (2), 165-168, 2020 | 23 | 2020 |
A 50–450 MHz Tunable RF Biquad Filter Based on a Wideband Source Follower With > 26 dBm IIP, +12 dBm P, and 15 dB Noise Figure IY Lee, D Im, J Ko, SG Lee IEEE journal of solid-state circuits 50 (10), 2294-2305, 2015 | 23 | 2015 |
A wideband digital TV receiver front-end with noise and distortion cancellation D Im, I Nam IEEE Transactions on Circuits and Systems I: Regular Papers 61 (2), 562-572, 2013 | 21 | 2013 |
A reconfigurable balun-LNA and tunable filter with frequency-optimized harmonic rejection for sub-GHz and 2.4 GHz IoT receivers D Kim, D Im IEEE Transactions on Circuits and Systems I: Regular Papers 69 (8), 3164-3176, 2022 | 18 | 2022 |
Highly linear silicon-on-insulator CMOS digitally programmable capacitor array for tunable antenna matching circuits D Im, K Lee IEEE Microwave and Wireless Components Letters 23 (12), 665-667, 2013 | 18 | 2013 |