Gyudong Kim
Seoul National University
62 Papers
498 Citations
Gyudong Kim is an academic researcher from Seoul National University. The author has contributed to research in topics: CMOS & Signal. The author has an hindex of 20, co-authored 62 publications. Previous affiliations of Gyudong Kim include University of California, Los Angeles & Chonnam National University.
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Papers
Exponential curvature-compensated BiCMOS bandgap references
TL;DR: An exponential curvature compensation technique for bandgap references (BGR's) which exploits the temperature characteristics of the current gain /spl beta/ of a bipolar transistor is described in this article.
164
An experimental high-density DRAM cell with a built-in gain stage
TL;DR: In this article, a new high-density DRAM cell concept is proposed and experimentally demonstrated, composed of two transistors and one capacitor, generates a large bit line signal with a small cell capacitance during the read cycle.
152
Patent
Cable with circuitry for asserting stored cable data or other information to an external device or user
Ook Kim,Eric Lee,Gyudong Kim,Zeehoon Jang,Baegin Sung,Nam-Hoon Kim,Gijung Ahn,Seung Ho Hwang +7 more
- 10 Jun 2004
TL;DR: A cable including circuitry for asserting information to a user or external device and a system including such a cable can include conductors, a memory storing cable data, and circuitry configured to respond to a request received on at least one of the conductors by accessing at least some of the cable data as discussed by the authors.
126
A low-voltage, low-power CMOS delay element
TL;DR: In this paper, a low-voltage, low-power CMOS delay element is proposed based on a CMOS thyristor concept, the delay value of the proposed element can be varied over a wide range by a control current.
123
A digital-to-analog converter based on differential-quad switching
TL;DR: In this paper, a high-conversion-rate high-resolution oversampling digital-to-analog converter (DAC) for direct digital modulation is addressed, and a new type of switching scheme, called differential-quad switching, is presented.
98