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Kyeongsik Nam

Korea Advanced Institute of Science and Technology · Mathematics

About the Lab

Professor Kyeongsik Nam's research lab specializes in low-power, low-noise analog and mixed-signal integrated circuit design for biomedical and microsensor applications. The lab focuses on advanced instrumentation amplifier architectures, including chopper-stabilized and current-feedback topologies, for high-precision signal conditioning in implantable and wearable medical devices. Key research directions include energy-efficient readout circuits for resistive-bridge and electrochemical sensors, as well as innovative noise reduction and offset cancellation techniques for miniaturized sensor systems.

low-noise amplifierssensor readout ICschopper stabilizationbiomedical ICsinstrumentation amplifiers

Research Overview

Papers
46
Total Citations
132
Papers (5y)
30
Primary Field
Mathematics

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
30total
2022
2023
2024
2025
2026
Citations per year (5y)
65total
20222023202420252026

Selected Papers

15
1
Article|20 citations·2022
Low-Noise Resistive Bridge Sensor Analog Front-End Using Chopper-Stabilized Multipath Current Feedback Instrumentation Amplifier and Automatic Offset Cancellation Loop
Mookyoung Yoo, Yongsu Kwon, Hyungseup Kim, Gyuri Choi, Kyeongsik Nam, Hyoungho Ko
SJR Q1IEEE AccessOA

Resistive bridge sensors are used in many application areas to measure changes in physical parameters. To amplify the resistive changes from sensing elements with high precision, various offset contributors in the resistive bridge and amplifiers should be minimized. This study proposes a low-noise resistive bridge sensor analog front-end (AFE) using a chopper-stabilized multipath current feedback instrumentation amplifier (CFIA) and an automatic offset cancellation loop. The proposed circuit exp

Biomedical EngineeringEngineering
2
Article|16 citations·2020
Stochastic differential equations with critical drifts
Kyeongsik Nam
SJR Q1Stochastic Processes and their Applications
FinanceEconomics, Econometrics and Finance
3
Article|14 citations·2021
Current-Reused Current Feedback Instrumentation Amplifier for Low Power Leadless Pacemakers
Gyuri Choi, Donggeun You, Hyunwoo Heo, Hyungseup Kim, Yongsu Kwon, Kyeongsik Nam, Sangmin Lee, Hyoungho Ko
SJR Q1IEEE AccessOA

This paper proposes a cardiac electrogram acquisition and stimulation integrated circuit (IC) for single-chamber leadless pacemaker applications. The proposed IC features self-determining pacing by acquiring an intracardiac electrogram without an external digital signal processor (DSP). A novel current-feedback instrumentation amplifier (CFIA) is proposed to achieve high noise-power efficiency and high input impedance. In this proposed CFIA, the current-reused cascode differential-difference inp

Cardiology and Cardiovascular MedicineMedicine
4
Article|12 citations·2022
Duality for Optimal Couplings in Free Probability
Wilfrid Gangbo, David Jekel, Kyeongsik Nam, Dimitri Shlyakhtenko
SJR Q1Communications in Mathematical PhysicsOA

Abstract We study the free probabilistic analog of optimal couplings for the quadratic cost, where classical probability spaces are replaced by tracial von Neumann algebras, and probability measures on $${\mathbb {R}}^m$$ <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"> <mml:msup> <mml:mrow> <mml:mi>R</mml:mi> </mml:mrow> <mml:mi>m</mml:mi> </mml:msup> </mml:math> are replaced by non-commutative laws of m -tuples. We prove an analog of the Monge–Kantorovich duality which characterizes o

Statistics and ProbabilityMathematics
5
Article|10 citations·2021
A Low-Power, Low-Noise, Resistive-Bridge Microsensor Readout Circuit with Chopper-Stabilized Recycling Folded Cascode Instrumentation Amplifier
Gyuri Choi, Hyunwoo Heo, Donggeun You, Hyungseup Kim, Kyeongsik Nam, Mookyoung Yoo, Sangmin Lee, Hyoungho Ko
SJR Q2Applied SciencesOA

In this paper, a low-power and low-noise readout circuit for resistive-bridge microsensors is presented. The chopper-stabilized, recycling folded cascode current-feedback instrumentation amplifier (IA) is proposed to achieve the low-power, low-noise, and high-input impedance. The chopper-stabilized, recycling folded cascode topology (with a Monticelli-style, class-AB output stage) can enhance the overall noise characteristic, gain, and slew rate. The readout circuit consists of a chopper-stabili

Biomedical EngineeringEngineering
6
Article|9 citations·2021
A Potentiostat Readout Circuit with a Low-Noise and Mismatch-Tolerant Current Mirror Using Chopper Stabilization and Dynamic Element Matching for Electrochemical Sensors
Kyeongsik Nam, Gyuri Choi, Hyungseup Kim, Mookyoung Yoo, Hyoungho Ko
SJR Q2Applied SciencesOA

This paper presents a potentiostat readout circuit with low-noise and mismatch-tolerant current mirror using chopper stabilization and dynamic element matching (DEM) for electrochemical sensors. Current-mode electrochemical sensors are widely used to detect the blood glucose and viruses in the diagnosis of various diseases such as diabetes, hyperlipidemia, and the H5N1 avian influenza virus (AIV). Low-noise and mismatch-tolerant characteristics are essential for sensing applications that require

BioengineeringChemical Engineering
7
Article|9 citations·2023
A low-noise and mismatch-tolerant current-mirror-based potentiostat circuit for glucose monitoring
Kyeongsik Nam, Gyuri Choi, Mookyoung Yoo, Sanggyun Kang, Byeongkwan Jin, Hyeoktae Son, Kyounghwan Kim, Hyoungho Ko
SJR Q3Microelectronics Journal
BioengineeringChemical Engineering
8
Article|8 citations·2021
A Four-Channel Low-Noise Readout IC for Air Flow Measurement Using Hot Wire Anemometer in 0.18 μm CMOS Technology
Kyeongsik Nam, Hyungseup Kim, Yongsu Kwon, Gyuri Choi, Taeyup Kim, Chulhong Kim, Dong‐il Cho, Junghoon Lee, Hyoungho Ko
SJR Q1SensorsOA

Air flow measurements provide significant information required for understanding the characteristics of insect movement. This study proposes a four-channel low-noise readout integrated circuit (IC) in order to measure air flow (air velocity), which can be beneficial to insect biomimetic robot systems that have been studied recently. Instrumentation amplifiers (IAs) with low-noise characteristics in readout ICs are essential because the air flow of an insect’s movement, which is electrically conv

Aerospace EngineeringEngineering
9
Preprint|6 citations·2018
Stochastic Differential Equations with Critical Drifts
Kyeongsik Nam
arXiv (Cornell University)OA

We establish the well-posedness of SDE with the additive noise when a singular drift belongs to the critical spaces. We prove that if the drift belongs to the Orlicz-critical space $L^{q,1}([0,T],L^p_x)$ for $p,q\in (1,\infty)$ satisfying $\frac{2}{q}+\frac{d}{p} =1$, then the corresponding SDE admits a unique strong solution. We also derive the Sobolev regularity of a solution under the Orlicz-critical condition.

FinanceEconomics, Econometrics and Finance
10
Article|5 citations·2022
Large deviations for the largest eigenvalue of Gaussian networks with constant average degree
Shirshendu Ganguly, Kyeongsik Nam
SJR Q1Probability Theory and Related Fields
Statistics and ProbabilityMathematics
11
Article|5 citations·2024
Spectral large deviations of sparse random matrices
Shirshendu Ganguly, Ella Hiesmayr, Kyeongsik Nam
SJR Q1Journal of the London Mathematical Society

Abstract Eigenvalues of Wigner matrices has been a major topic of investigation. A particularly important subclass of such random matrices, useful in many applications, are what are known as sparse or diluted random matrices, where each entry in a Wigner matrix is multiplied by an independent Bernoulli random variable with mean . Alternatively, such a matrix can be viewed as the adjacency matrix of an Erdős–Rényi graph equipped with independent and identically distributed (i.i.d.) edge‐weights.

Statistics and ProbabilityMathematics
12
Article|4 citations·2024
Upper Tail Behavior of the Number of Triangles in Random Graphs with Constant Average Degree
Shirshendu Ganguly, Ella Hiesmayr, Kyeongsik Nam
SJR Q1COMBINATORICA
Discrete Mathematics and CombinatoricsMathematics
13
Article|3 citations·2022
Sub-critical exponential random graphs: concentration of measure and some applications
Shirshendu Ganguly, Kyeongsik Nam
SJR Q1Transactions of the American Mathematical Society

The exponential random graph model (ERGM) is a central object in the study of clustering properties in social networks as well as canonical ensembles in statistical physics. Despite some breakthrough works in the mathematical understanding of ERGM, most notably by Bhamidi, Bresler, and Sly [Ann. Appl. Probab. 21 (2011), pp. 2146–2170] through the analysis of a natural Heat-bath Glauber dynamics, and by Chatterjee and Diaconis [Ann. Statist. 41 (2013), pp. 2428–2461; Eldan [Geom. Funct. Anal. 28

Mathematical PhysicsMathematics
14
Article|3 citations·2022
Low-Noise Potentiostat Readout Circuit with a Chopper Fully Differential Difference Amplifier for Glucose Monitoring
Gyuri Choi, Kyeongsik Nam, Mookyoung Yoo, Sanggyun Kang, Byeongkwan Jin, Kyounghwan Kim, Hyeoktae Son, Hyoungho Ko
SJR Q2Applied SciencesOA

This paper presents a low-noise potentiostat readout circuit with a chopper fully differential difference amplifier (FDDA) for glucose monitoring. Glucose monitoring is necessary for the early diagnosis of diabetes complications and for health management. Ammeter electrochemical sensors are widely used for glucose detection, and in general, a three-electrode structure of a reference electrode (RE), a counter electrode (CE), and a working electrode (WE) is implemented with a potentiostat structur

Biomedical EngineeringEngineering
15
Article|2 citations·2022
Low-noise delta-sigma analog front end with capacitor swapping technique for capacitive microsensors
Kyeongsik Nam, Hyungseup Kim, Gyuri Choi, Mookyoung Yoo, Hyoungho Ko
SJR Q2Measurement and ControlOA

In this paper, low-noise incremental delta–sigma analog front end (AFE) integrated circuit (IC) for capacitive microsensors is presented. A conventional capacitance-to-digital converter (CDC) mainly uses a multi-stage capacitive sensing amplified stage (CSA) and analog-to-digital converters. The multi-stage CSA is not suitable for application in various Internet of things (IoT) devices that require low power because the power consumption of the analog front-end circuit increases in proportion to

Biomedical EngineeringEngineering

Research Areas

Statistics and ProbabilityMathematical PhysicsBiomedical EngineeringFinanceBioengineeringApplied Mathematics

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