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Seung‐Tak Ryu

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Seung-Tak Ryu's research lab specializes in low-power mixed-signal integrated circuit design and energy harvesting systems, with a strong focus on ultra-low-voltage power management, high-speed analog-to-digital conversion (ADC), and advanced energy storage materials. The lab develops innovative architectures for self-starting power converters and energy-efficient ADCs tailored for Internet of Things (IoT) and wearable applications, while also exploring novel 3D nanostructured materials for flexible and high-performance supercapacitors. Their work bridges the gap between microelectronics and nanomaterials, targeting energy autonomy and miniaturization in portable and implantable devices.

low-power electronicsanalog-to-digital conversionenergy harvestingnanomaterialsflexible supercapacitors

Research Overview

Papers
151
Total Citations
3,077
Papers (5y)
33
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
33total
2022
2023
2024
2025
2026
Citations per year (5y)
153total
20222023202420252026

Selected Papers

15
1
Article|282 citations·2016
Fully flexible, lightweight, high performance all-solid-state supercapacitor based on 3-Dimensional-graphene/graphite-paper
Ananthakumar Ramadoss, Ki‐Yong Yoon, Myung‐Jun Kwak, Sun‐I Kim, Seung‐Tak Ryu, Ji‐Hyun Jang
SJR Q1Journal of Power Sources
Electronic, Optical and Magnetic MaterialsMaterials Science
2
Article|250 citations·2012
A 40 mV Transformer-Reuse Self-Startup Boost Converter With MPPT Control for Thermoelectric Energy Harvesting
Jong‐Pil Im, Se‐Won Wang, Seung‐Tak Ryu, Gyu‐Hyeong Cho
SJR Q1IEEE Journal of Solid-State Circuits

This paper presents transformer-based self-starting boost converter architecture with low-power maximum power point tracking (MPPT) control for low-voltage thermoelectric generator applications. The minimum working voltage of the proposed boost converter is 40 mV with oscillation through a positive feedback loop formed by a native MOS and transformer. The oscillation autonomously starts up by thermal noise and V <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1

Mechanical EngineeringEngineering
3
Article|111 citations·2016
Realization of high performance flexible wire supercapacitors based on 3-dimensional NiCo2O4/Ni fibers
Ananthakumar Ramadoss, Kyeong‐Nam Kang, Hyo‐Jin Ahn, Sun‐I Kim, Seung‐Tak Ryu, Ji‐Hyun Jang
SJR Q1Journal of Materials Chemistry AOA

A highly-porous, binder free 3D-NiCo<sub>2</sub>O<sub>4</sub>/Ni nanostructure on the Ni-wire was fabricated for flexible fiber supercapacitors. The fabricated device exhibited enhanced capacitance, high efficiency, good cycling stability, and flexibility.

Electronic, Optical and Magnetic MaterialsMaterials Science
4
Article|104 citations·2011
A 550- W 10-b 40-MS/s SAR ADC With Multistep Addition-Only Digital Error Correction
Sang-Hyun Cho, Chang‐Kyo Lee, Jong-Kee Kwon, Seung‐Tak Ryu
SJR Q1IEEE Journal of Solid-State Circuits

A speed-enhanced 10-b asynchronous SAR ADC with multistep addition-only digital error correction (ADEC) is presented with a straightforward DAC switching algorithm. The capacitor DAC is virtually divided into three sub-DACs for ADEC with negligible hardware overhead. The redundant decision cycles between stages reconfigure the capacitor connection of the DAC. These redundancies guarantee 10-b linearity under 4-b-accurate DAC settling in the MSB decision and the optimally designed ADC enhances th

Biomedical EngineeringEngineering
5
Article|95 citations·2014
A Decision-Error-Tolerant 45 nm CMOS 7b 1 GS/s Nonbinary 2b/Cycle SAR ADC
Hyeok-Ki Hong, Wan Kim, Hyun-Wook Kang, Sun‐Jae Park, Michael Choi, Ho-Jin Park, Seung‐Tak Ryu
SJR Q1IEEE Journal of Solid-State Circuits

A compact decision-error-tolerant 2b/cycle SAR ADC architecture is presented. Two DACs with different designated functions, SIG-DAC and REF-DAC, are implemented to make the structure compact and to eliminate the sampling skew issue. Use of a nonbinary decision scheme with decision redundancies not only increases the ADC speed with a relaxed DAC settling requirement but also makes the performance robust to reference fluctuations and comparator offset variations. The proposed dynamic register and

Biomedical EngineeringEngineering
6
Article|79 citations·2016
A 0.6 V 12 b 10 MS/s Low-Noise Asynchronous SAR-Assisted Time-Interleaved SAR (SATI-SAR) ADC
Wan Kim, Hyeok-Ki Hong, Yi-Ju Roh, Hyun-Wook Kang, Sun-Il Hwang, Dong‐Shin Jo, Dong-Jin Chang, Min-Jae Seo, Seung‐Tak Ryu
SJR Q1IEEE Journal of Solid-State Circuits

This paper presents an asynchronous SAR-assisted time-interleaved SAR (SATI-SAR) ADC as a suitable architecture in a low-supply-voltage condition. Settling-While-Conversion enabled by the Assist-ADC relaxes the DAC settling time requirement and makes it possible to insert a minimized capacitor shuffling logic with no speed penalty. A proposed gain-boosting dynamic pre-amplifier enhances the noise performance of the comparator and a self time-reference generation function is embedded in the pre-a

Biomedical EngineeringEngineering
7
Article|77 citations·2007
A 10-bit 50-MS/s Pipelined ADC With Opamp Current Reuse
Seung‐Tak Ryu, Bang‐Sup Song, K. Bacrania
SJR Q1IEEE Journal of Solid-State Circuits

Power and area saving concepts such as operational amplifier (opamp) bias current reuse and capacitive level shifting are used to lower the analog power of a 10-bit pipelined analog-to-digital converter (ADC) to 220 muW/MHz. Since a dual-input bias current reusing opamp performs as two opamps, the opamp summing nodes can be reset in every clock cycle. By using only N-channel MOS (NMOS) input stages, the capacitive level shifter simplifies the gain-boosting amplifier design and enables fast opamp

Biomedical EngineeringEngineering
8
Article|65 citations·2013
A highly noise-immune touch controller using Filtered-Delta-Integration and a charge-interpolation technique for 10.1-inch capacitive touch-screen panels
Jun-Hyeok Yang, Sang‐Hui Park, Jung-Min Choi, Hyun‐Sik Kim, Changbyung Park, Seung‐Tak Ryu, Gyu‐Hyeong Cho

Capacitive touch-screen panels (TSPs) are widely used in recent high-end mobile products on the basis of their high quality of touch features, as well as superior visibility and durability [1-5]. Capacitive TSPs can be classified into self-capacitance [1,2] or mutual-capacitance [3-5] types, according to the sensing mechanism. Compared with the self-capacitance types, which offer low cost and high scan frequency from the simple line-sensing scheme, the mutual-capacitance types, which read out al

Biomedical EngineeringEngineering
9
Article|64 citations·2013
A 6-b 4.1-GS/s Flash ADC With Time-Domain Latch Interpolation in 90-nm CMOS
Jong‐In Kim, Barosaim Sung, Wan Kim, Seung‐Tak Ryu
SJR Q1IEEE Journal of Solid-State Circuits

A 6-b 4.1-GS/s flash ADC was fabricated using a 90-nm CMOS with a time-domain latch interpolation technique that reduces the number of front-end dynamic comparators by half. The reduced number of comparators lowers power consumption, load capacitance to the T/H circuit, and the overhead of comparator calibration. The measured peak INL and DNL after comparator calibration are 0.74 and 0.49 LSB, respectively. The measured SNDR and SFDR are 31.2 and 38.3 dB, respectively, with a 2.02-GHz input at 4

Biomedical EngineeringEngineering
10
Article|60 citations·2013
An 8.6 ENOB 900MS/s time-interleaved 2b/cycle SAR ADC with a 1b/cycle reconfiguration for resolution enhancement
Hyeok-Ki Hong, Hyun-Wook Kang, Barosaim Sung, Choong-Hoon Lee, Michael Choi, Hojin Park, Seung‐Tak Ryu

By taking advantage of the merits of the low power consumption and hardware simplicity of SAR ADCs, 2b/cycle conversion structures in SAR ADCs have been actively studied in recent years for enhanced conversion rates and excellent FoM [1-3]. However, many error sources in the 2b/cycle SAR ADCs, such as mismatches between DACs and comparators, and the signal-dependent errors from comparators, namely kickback noise and offset, make it difficult to achieve high resolution. To date, pure 2b/cycle str

Biomedical EngineeringEngineering
11
Article|59 citations·2004
A 14-b linear capacitor self-trimming pipelined ADC
Seung‐Tak Ryu, S. Ray, Bang‐Sup Song, Gyu‐Hyeong Cho, K. Bacrania
SJR Q1IEEE Journal of Solid-State Circuits

The capacitor mismatch in a 1.5-b/stage pipelined ADC is background calibrated in the analog domain using a pseudorandom (PN) dithering concept. The reference voltage added/subtracted during the normal operation is used as a dither to PN-modulate the mismatch error so that it can be embedded into the residue and be recovered later by correlating with the same PN sequence. Six MSB stages are simultaneously calibrated using separate zero-forcing feedback loops. The signal-subtracted analog PN corr

Biomedical EngineeringEngineering
12
Article|58 citations·2012
A Precise Decibel-Linear Programmable Gain Amplifier Using a Constant Current-Density Function
Soyoung Kang, Seung‐Tak Ryu, Chulsoon Park
SJR Q1IEEE Transactions on Microwave Theory and Techniques

In this paper, a compensation technique for realizing a precise decibel-linear CMOS programmable gain amplifier (PGA) is described. The proposed PGA, employing an auxiliary pair, not only retains a constant current density but also offers a gain-independent bandwidth (BW). For verification, a compact PGA (0.1 mm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> ) is fabricated using a 0.13-μm CMOS process and measured. The measured gain contro

Biomedical EngineeringEngineering
13
Article|55 citations·2015
A 2.6b/cycle-Architecture-Based 10b 1.7GS/s 15.4mW 4x-Time-Interleaved SAR ADC with a Multistep Hardware-Retirement Technique
Hyeok-Ki Hong, Hyun-Wook Kang, Dong‐Shin Jo, Dong-Suk Lee, Yong-Sang You, Yong-Hee Lee, Ho‐Jin Park, Seung‐Tak Ryu

With the growing interest in time-interleaved (TI) structures, the conversion rates of ADCs have greatly improved, which has inevitably increased power consumption. Despite the advantages of TI structures, power consumption is increased due to the stricter matching requirements between channels; in some cases, >50% of total power is for calibration purposes. Thus, to realize high-speed and high-resolution ADCs with TI structures, it is important to alleviate the calibration burden by choosing a

Biomedical EngineeringEngineering
14
Article|55 citations·2011
A Long Reset-Time Power-On Reset Circuit With Brown-Out Detection Capability
Huy‐Binh Le, Xuan-Dien Do, Sang‐Gug Lee, Seung‐Tak Ryu
SJR Q1IEEE Transactions on Circuits & Systems II Express Briefs

A compact low-power on-chip power-on reset circuit with a brown-out detection capability is presented. With a pico-farad-order on-chip MOS capacitor, a long reset time is achieved. A prototype design implemented in a 0.18-μm CMOS process provides a reset signal with duration of hundreds of milliseconds. The embedded brown-out detection circuit can detect the event, as long as the brown-out duration is longer than the millisecond range. The chip consumes only 1 μA under a 1.8-V supply and occupie

Biomedical EngineeringEngineering
15
Article|53 citations·2016
A Delta-Readout Scheme for Low-Power CMOS Image Sensors With Multi-Column-Parallel SAR ADCs
Hyeon‐June Kim, Sun-Il Hwang, Ji-Wook Kwon, Dong-Hwan Jin, Byoung-Soo Choi, Sanggwon Lee, Jong-Ho Park, Jang‐Kyoo Shin, Seung‐Tak Ryu
SJR Q1IEEE Journal of Solid-State Circuits

This paper presents a power-saving readout scheme for CMOS image sensors (CISs) that utilizes the image properties. The proposed delta-readout (A-readout) scheme reads the signal difference between two pixels located next to each other (Apixel) by utilizing the most significant bits (MSBs) information of the previous pixel. By effectively reducing the dynamic range of the signal, compensated by the A-window checking, the proposed A-readout scheme can reduce the effective number of decision cycle

Electrical and Electronic EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringMaterials ChemistryMechanical EngineeringRenewable Energy, Sustainability and the EnvironmentComputer Vision and Pattern Recognition

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