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Dive into the research topics where Yeon-Kug Moon is active.

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Featured researches published by Yeon-Kug Moon.


IEEE Transactions on Very Large Scale Integration Systems | 2007

A Low Power Fully CMOS Integrated RF Transceiver IC for Wireless Sensor Networks

Hae-Moon Seo; Yeon-Kug Moon; Yong-Kuk Park; Dongsu Kim; Dong-Sun Kim; Youn-Sung Lee; Kwang-Ho Won; Seong-Dong Kim; Pyung Choi

A fully CMOS integrated RF transceiver for ubiquitous sensor networks in sub-gigahertz industrial, scientific, and medical (ISM)-band applications is implemented and measured. The integrated circuit is fabricated in 0.18-mum CMOS technology and packaged in leadless plastic chip carrier (LPCC) package. The fully monolithic transceiver consists of a receiver, a transmitter, and an RF synthesizer with on-chip voltage-controlled oscillator. The chip fully complies with the IEEE 802.15.4 wireless personal area network in sub-gigahertz mode. The cascaded noise figure of the overall receiver is 9.5 dB and the overall transmitter achieves less than 6.3% error vector magnitude for 40 kb/s mode. The chip uses 1.8-V power supply and the power consumption is 25 mW for reception mode and 29 mW for transmission mode


asia-pacific conference on communications | 2005

A Fully CMOS Integrated RF Transceiver for Ubiquitous Networks in Sub-GHz ISM-band

Hae-Moon Seo; Yeon-Kug Moon; Yong-Kuk Park; Sang-Shin Lee; Tae-Ho Hwang; Byoung-Gwan Min; Kwang-Ho Won; Myung-Hyun Yoon; Jun-Jae Yoo; Seong-Dong Kim

A fully CMOS integrated radio frequency (RF) transceiver for wireless sensor networks in sub-GHz ISM-band applications is implemented and measured. The IC is fabricated in 0.18-mum CMOS technology and packaged in LPCC package. The fully monolithic transceiver consists of a receiver, a transmitter and a RF synthesizer with on-chip VCO. The chip fully complies with the IEEE 802.15.4 WPAN standard in sub-GHz mode. The receiver sensitivity is -98 dBm and the transmitter achieves less than 6.3% error vector magnitude (EVM) for 40 kbps mode. The chip uses 1.8 V power supply and the current consumption is 14 mA for reception mode ad 16 mA for transmission mode


IEICE Transactions on Communications | 2007

A Fully Integrated SoC with Digital MAC Processor and Transceiver for Ubiquitous Sensor Network at 868/915 MHz

Dong-Sun Kim; Hae-Moon Seo; Seung-Yerl Lee; Yeon-Kug Moon; Byung-Soo Kim; Tae-Ho Hwang; Duck-Jin Chung

SUMMARY A single-chip ubiquitous sensor network (USN) systemon-a-chip (SoC) for small program memory size and low power has been proposed and integrated in a 0.18-µm CMOS technology. Proposed singlechip USN SoC is mainly consists of radio for 868/915 MHz, analog building block, complete digital baseband physical layer (PHY) and media access control (MAC) functions. The transceiver’s analog building block includes a low-noise amplifier, mixer, channel filter, receiver signal-strength indication, frequency synthesizer, voltage-controlled oscillator, and power amplifier. In addition, digital building block consists of differential binary phase-shift keying (DPSK) modulation, demodulation, carrier frequency offset compensation, auto-gain control, embedded 8-bit microcontroller, and digital MAC function. Digital MAC function supports 128 bit advanced encryption standard (AES), cyclic redundancy check (CRC), intersymbol timing check, MAC frame control, and automatic retransmission. These digital MAC functions reduce the processing power requirements of embedded microcontroller and program memory size by up to 56%. The cascaded noise figure and sensitivity of the overall receiver are 9.5 dB and −99 dBm, respectively. The overall transmitter achieves less than 6.3% error vector magnitude (EVM). The current consumption is 14 mA for reception mode and 16 mA for transmission mode.


ieee silicon nanoelectronics workshop | 2008

A CMOS continuous-time Gm-C filter and programmable gain amplifier for WPAN receivers

Yeon-Kug Moon; Dong-Sun Kim; Tae-Ho Hwang; Yong-Kuk Park; Kwang-Ho Won

This paper describes a low-voltage and low-power channel selection analog front end with continuous-time low pass filters and highly linear programmable-gain amplifier (PGA). The filters were realized as balanced Gm-C biquadratic filters to achieve low current consumption. High linearity and constant wide bandwidth are achieved by using a new transconductance (Gm) cell. The PGA has a voltage gain varying from 0 to 65dB, while maintaining a constant bandwidth. A filter tuning circuit that requires an accurate time base but no external components is presented. With a 1-Vrms differential input and output, the filter achieves -85dB THD and a 78dB signal-to-noise ratio. Both the filter and PGA were implemented in a 0.18mum 1P6M n-well CMOS process. They consume 3.2mW from a 1.8V power supply and occupy an area of 0.19mm2


ITC-CSCC :International Technical Conference on Circuits Systems, Computers and Communications | 2009

A Low Power CMOS Analog Front-End Circuits for Sensor Output

Yeon-Kug Moon; Il-yop Ahn; Jaeho Kim; Kwang-Ho Won


Archive | 2006

Digital intermediate frequency transmitter for wireless communication

Hae-Moon Seo; Yeon-Kug Moon; Young-Kuk Park; Kwang-Ho Won; Seong-Dong Kim


Archive | 2009

FUSING APPARATUS FOR CORRECTING PROCESS VARIATION

Yeon-Kug Moon; Jaeho Kim; Il-Yeup Ahn; Sang-Shin Lee; Min-Hwan Song; Kwang-Ho Won


ITC-CSCC :International Technical Conference on Circuits Systems, Computers and Communications | 2005

Low Power Radio Receiver Specifications of Ubiquitous System for Coexistence with Various Wireless Devices in 2.4GHz ISM-band

Yong-Kuk Park; Hae-Moon Seo; Kwang-Ho Won; Yeon-Kug Moon; Myung-Hyun Yoon; Jun-Jae Yoo; Seong-Dong Kim


international conference on wireless networks | 2007

A Low Power Analog Front End Receiver for Wireless Personal Area Network.

Yeon-Kug Moon; Hae-Moon Seo; Yong-Kuk Park; Kwang-Ho Won; Seong-Dong Kim


ITC-CSCC :International Technical Conference on Circuits Systems, Computers and Communications | 2005

A Low Power Fully CMOS Integrated RF Transceiver for Wireless Sensor Networks in Sub-GHz ISM-band

Hae-Moon Seo; Kwang-Ho Won; Yong-Kuk Park; Yeon-Kug Moon; Myung-Hyun Yoon; Jun-Jae Yoo; Seong-Dong Kim

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Dong-Sun Kim

Kyungpook National University

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Pyung Choi

Kyungpook National University

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Sang-Shin Lee

Hankuk University of Foreign Studies

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