Browse "School of Electrical Engineering(전기및전자공학부)" by Subject mixer

Showing results 1 to 21 of 21

1
500 GHz CMOS heterodyne imager adopting fourth subharmonic passive mixer

Choi, Kyungsik; Park, Dae-Woong; Utomo, Dzuhri Radityo; Lee, Sang-Gug, MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, v.62, no.2, pp.683 - 687, 2020-02

2
A 0.13 mu m CMOS UWB RF transmitter with an on-chip T/R switch

Kim, CW; Duong, QH; Lee, SS; Lee, Sang-Gug, ETRI JOURNAL, v.30, pp.526 - 534, 2008-08

3
A 1.83 GHz 28.5 dBm CMOS Power Up-Mixer

Paek, Ji-Seon; Hong, Song-Cheol, IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, v.19, no.6, pp.389 - 391, 2009-06

4
A 250-GHz Wideband Direct-Conversion CMOS Receiver Adopting Baseband Equalized Low-Loss Resistive Passive Mixer

Jeon, Hyo-Ryeong; Yun, ByeongHun; Lee, Ho-Keun; Lee, Sang-Gug; Choi, Kyungsik, IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, v.70, no.10, pp.3852 - 3856, 2023-10

5
A 3.1 to 5 GHz CMOS transceiver for DS-UWB systems

Park, Bonghyuk; Lee, Kyung Ai; Hong, Songcheol; Choi, Sangsung, ETRI JOURNAL, v.29, no.4, pp.421 - 429, 2007-08

6
A 60 GHz Current-Reuse LO-Boosting Mixer in 90 nm CMOS

Byeon, Chul-Woo; Lee, Jae-Jin; Song, In-Sang; Park, Chul-Soon, IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, v.22, no.3, pp.135 - 137, 2012-03

7
A CMOS frequency synthesizer block for MB-OFDM UWB systems

Kim, CW; Choi, SS; Lee, Sang-Gug, ETRI JOURNAL, v.29, pp.437 - 444, 2007-08

8
A High Gain Low Noise Mixer With Cross-Coupled Bleeding

Yoon, Dae-Young; Yun, Seok-Ju; Cartwright, Justin; Han, Seok-Kyun; Lee, Sang-Gug, IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, v.21, no.10, pp.568 - 570, 2011-10

9
A High-linearity Wideband Discrete-time Receiver for Software-defined Radio

Nguyen, Hoai Nam; Dissanayake, D. M. A. N. B.; Han, Seok-Kyun; 이상국, JOURNAL OF SEMICONDUCTOR TECHNOLOGY AND SCIENCE, v.18, no.1, pp.29 - 35, 2018-02

10
A K-Band High-Gain Down-Conversion Mixer in 0.18 mu m CMOS Technology

Ahn, Dukju; Kim, Dong-Wook; Hong, Songcheol, IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, v.19, no.4, pp.227 - 229, 2009-04

11
A low-noise, high-gain single-ended input double-balanced mixer

Choi, JY; Lee, Sang-Gug, ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, v.36, pp.263 - 266, 2003-09

12
(A) new CMOS passive mixer with high linearity for low power transceiver = 저전력 송수신기를 위한 높은 선형성을 가지는 CMOS 수동 주파수 혼합기link

Cho, Young-Ho; 조영호; et al, 한국과학기술원, 2001

13
CMOS 0.13㎛ 공정을 이용한 60GHz 대역 수신단의 설계 = Design of 60GHz-band receiver front-end using CMOS 0.13㎛ technologylink

권희동; Gwon, Hui-Dong; et al, 한국과학기술원, 2010

14
CMOS RF amplifier and mixer circuits utilizing complementary characteristics of parallel combined NMOS and PMOS devices

Nam, I; Kim, B; Lee, Kwyro, IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, v.53, pp.1662 - 1671, 2005-05

15
Design and implementation of highly linear and low power CMOS passive mixer for 2.4GHz application = 2.4GHz 응용을 위한 고선형 저전력소모 CMOS 혼합기 설계 및 구현link

Nam, Il-Ku; 남일구; et al, 한국과학기술원, 2001

16
Design of reconfigurable RF front-end for multi-standard receiver using switchable passive networks

Kim, JH; Jang, YK; Yoo, Hyung Joun, ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, v.50, pp.81 - 88, 2007-02

17
Design of RF over-sampling harmonic-suppression mixer = RF 오버샘플링 하모닉 억제 믹서 설계link

Chu, Sang-Hyeok; 추상혁; et al, 한국과학기술원, 2008

18
Frequency-controllable image rejection down CMOS mixer

Phan, Tuan-Anh; Kim, Chang-Wan; Shim, Yun-A; Lee, Sang-Gug, IEICE TRANSACTIONS ON ELECTRONICS, v.E88C, pp.2322 - 2324, 2005-12

19
Highly linear CMOS up-conversion micromixer for ATSC terrestrial/cable digital TV tuner IC = ATSC 지상파 및 케이블 디지털 티브이 튜너 집적회로에 적합한 고선형성 CMOS 주파수 상향 마이크로믹서link

Lim, Young-Wook; 임영욱; et al, 한국과학기술원, 2007

20
Reconfigurable CMOS mixer for multi-standard applications

Jang, YK; Kim, JH; Yoo, Hyung Joun, IEICE TRANSACTIONS ON ELECTRONICS, v.E88C, no.12, pp.2379 - 2381, 2005-12

21
THE DESIGN OF INTEGRATED 0.13-mu m CMOS RECEIVER FOR ULTRA-WIDEBAND SYSTEMS

Park, Bonghyuk; Lee, Kwangchun; Choi, Sangsung; Hong, Songcheol, MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, v.52, no.4, pp.841 - 845, 2010-04

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