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Showing results 1 to 6 of 6

  • Lee, Se Hwan
  • Choi, Yoonsung
  • Kim, Geunha
  • Baik, Seungyeob
  • Seol, Tae Ryoung
  • Jang, Homin
  • Lee, Doyoung
  • Je, Minkyu
  • Choi, Ji-Woong
  • George, Arup Kocheethra
  • et al
  • 2022-02-23
  • Lee, Se Hwan. (2022-02-23). A 0.7V 17fJ/step-FOMW 178.1dB-FOMSNDR 10kHz-BW 560mVPP True-ExG Biopotential Acquisition System with Parasitic-Insensitive 421MΩ Input Impedance in 0.18μm CMOS. International Solid-State Circuits Conference, 336–338. doi: 10.1109/ISSCC42614.2022.9731114
  • IEEE Solid-State Circuits Society
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  • 2023-02-22
  • Seol, Tae Ryoung. (2023-02-22). A 1V 136.6dB-DR 4kHz-BW ΔΣ Current-to-Digital Converter with a Truncation-Noise-Shaped Baseline-Servo-Loop in 0.18μm CMOS. International Solid-State Circuits Conference, 482–484. doi: 10.1109/ISSCC42615.2023.10067537
  • IEEE Solid-State Circuits Society
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  • 2023-02-22
  • Kim, Geunha. (2023-02-22). A 1V-Supply 1.85VPP-Input-Range 1kHz-BW 181.9dB-FOMDR179.4dB-FOMSNDR2nd-Order Noise-Shaping SAR-ADC with Enhanced Input Impedance in 0.18μm CMOS. International Solid-State Circuits Conference, 484–486. doi: 10.1109/ISSCC42615.2023.10067844
  • IEEE Solid-State Circuits Society
  • View : 244
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  • Baik, Seungyeob
  • Seol, Tae Ryoung
  • Lee, Sehwan
  • Kim, Geunha
  • Cho, SeongHwan
  • George, Arup Kocheethra
  • Lee, Junghyup
  • 2022-06-15
  • Baik, Seungyeob. (2022-06-15). A 2.54μJ∙ppm2-FOMS Supply- and Temperature-Independent Time-Locked ΔΣ Capacitance-to-Digital Converter in 0.18-μm CMOS. IEEE Symposium on VLSI Technology and Circuits (VLSI Technology and Circuits 2022), 114–115. doi: 10.1109/VLSITechnologyandCir46769.2022.9830524
  • IEEE Electron Devices Society, IEEE Solid-State Circuits Society, Japan Society of Applied Physics
  • View : 115
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  • 2018-10
  • Baik, Seungyeob. (2018-10). An Ultra-low-power Fully-differential ASK Demodulator with 12.5 pJ/bit FOM for Implantable Biomedical Applications. doi: 10.5573/JSTS.2018.18.5.626
  • Institute of Electronics Engineers of Korea
  • View : 737
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The overexpression of TDP-43 in astrocytes causes neurodegeneration via a PTP1B-mediated inflammatory response

  • Lee, Shinrye
  • Kim, Seyeon
  • Kang, Ha-Young
  • Lim, Hye Ryeong
  • Baik, Seungyeob
  • Jo, Myungjin
  • Jeon, Yu-Mi
  • Kim, Sang Ryong
  • Kim, Kiyoung
  • Ha, Chang Man
  • et al
  • 2020-10
  • Lee, Shinrye. (2020-10). The overexpression of TDP-43 in astrocytes causes neurodegeneration via a PTP1B-mediated inflammatory response. doi: 10.1186/s12974-020-01963-6
  • BioMed Central Ltd
  • View : 533
  • Download : 85
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