Nam-Seog Kim

Orcid: 0000-0002-1039-5945

Affiliations:
  • Chungbuk National University, Department of Information and Communication Engineering, School of Electrical and Computer Engineering, Korea
  • Qualcomm Inc., San Diego, CA, USA (2014-2019)
  • University of California Berkeley, CA, USA (PhD 2014)
  • Samsung Electronics, Yongin, Korea ( 1999-2007)


According to our database1, Nam-Seog Kim authored at least 14 papers between 2008 and 2024.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

Legend:

Book 
In proceedings 
Article 
PhD thesis 
Dataset
Other 

Links

Online presence:

On csauthors.net:

Bibliography

2024
An ADPLL-Based GFSK Modulator with Two-Point Modulation for IoT Applications.
Sensors, August, 2024

A 2.4 GHz Wide-Range CMOS Current-Mode Class-D PA with HD2 Suppression for Internet of Things Applications.
Sensors, March, 2024

A Compact Model for Interface-Type Self-Rectifying Resistive Memory With Experiment Verification.
IEEE Access, 2024

2022
A 10-Bit, 600 MS/s Multi-Mode Direct-Sampling DAC-Based Transmitter.
IEEE Access, 2022

2021
A Spurious and Oscillator Pulling Free CMOS Quadrature LO-Generator for Cellular NB-IoT.
IEEE Trans. Very Large Scale Integr. Syst., 2021

2018
A Dual-Resolution Wavelet-Based Energy Detection Spectrum Sensing for UWB-Based Cognitive Radios.
IEEE Trans. Circuits Syst. I Regul. Pap., 2018

A 0.46-2.1 GHz Spurious and Oscillator-Pulling Free LO Generator for Cellular NB-IoT Transmitter with 23 dBm Integrated PAs in 28nm CMOS.
Proceedings of the IEEE Asian Solid-State Circuits Conference, 2018

2017
A 14-nm 0.14-ps<sub>rms</sub> Fractional-N Digital PLL With a 0.2-ps Resolution ADC-Assisted Coarse/Fine-Conversion Chopping TDC and TDC Nonlinearity Calibration.
IEEE J. Solid State Circuits, 2017

24.8 A 14nm fractional-N digital PLL with 0.14psrms jitter and -78dBc fractional spur for cellular RFICs.
Proceedings of the 2017 IEEE International Solid-State Circuits Conference, 2017

2016
A High Data-Rate Energy-Efficient Triple-Channel UWB-Based Cognitive Radio.
IEEE J. Solid State Circuits, 2016

2015
A 1Gb/s energy efficient triple-channel UWB-based cognitive radio.
Proceedings of the Symposium on VLSI Circuits, 2015

A 3.1-10.6GHz wavelet-based dual-resolution spectrum sensing with harmonic rejection mixers.
Proceedings of the ESSCIRC Conference 2015, 2015

2014
An Energy-Efficient Triple-Channel UWB-based Cognitive Radio.
PhD thesis, 2014

2008
Multi-mode sub-Nyquist rate digital-to-analog conversion for direct waveform synthesis.
Proceedings of the IEEE Workshop on Signal Processing Systems, 2008


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