scispace - formally typeset
Search or ask a question
Institution

Samsung

CompanySeoul, South Korea
About: Samsung is a company organization based out in Seoul, South Korea. It is known for research contribution in the topics: Layer (electronics) & Signal. The organization has 134067 authors who have published 163691 publications receiving 2057505 citations. The organization is also known as: Samsung Group & Samsung chaebol.


Papers
More filters
Journal ArticleDOI
Ho Seong Jang1, Won Bin Im1, DC Lee2, Duk Young Jeon1, Shi Surk Kim 
TL;DR: In this paper, a blue light emitting diode (LED) pumped white LED with yellow emitting (YAG:Ce) phosphor using addition of Pr and Tb as a co-activator and host lattice element, respectively.

488 citations

Patent
Sung-Cheon Park1
11 Jul 2012
TL;DR: In this paper, a power generator includes a booster that boosts an input voltage supplied from a power supply unit and that supplies a boosted input voltage to an output terminal, a selector that selects one of the input voltage and a voltage at the output terminal as a selected voltage and supplies the selected voltage as an output voltage.
Abstract: A power generator includes a booster that boosts an input voltage supplied from a power supply unit and that supplies a boosted input voltage to an output terminal, a selector that selects one of the input voltage and a voltage at the output terminal as a selected voltage and supplies the selected voltage as an output voltage, a reference voltage generator that generates a reference voltage based on the output voltage, a comparator that compares a feedback voltage supplied from the booster and the reference voltage with each other, and a controller that controls the booster to output a chosen voltage from the output terminal according to a comparison result of the comparator.

487 citations

Patent
10 Jul 2013
TL;DR: In this paper, an organic light-emitting display device includes a thin film transistor (TFT) including an active layer, a gate electrode, a source electrode, and a drain electrode, the TFT includes at least one of a switching TFT and a driving TFT.
Abstract: An organic light-emitting display device includes a thin film transistor (TFT) including an active layer, a gate electrode, a source electrode, and a drain electrode, the thin film transistor includes at least one of a switching TFT and a driving TFT A pixel electrode is connected to one of the source electrode or the drain electrode An auxiliary electrode is spaced apart from the TFT and the pixel electrode An intermediate layer is disposed on at least a portion of the pixel electrode and on at least a portion of the auxiliary electrode A first electrode is disposed on at least a portion of the intermediate layer and on at least a portion of the auxiliary electrode A second electrode, which directly contacts an upper surface of the auxiliary electrode, is disposed on the first electrode A contact hole exposes at least a portion of the auxiliary electrode

481 citations

Patent
Jae-guyn Lim1, Hyun-wook Ok, Byung-kwan Park, Seong-deok Lee, Joo-young Kang 
14 Apr 2010
TL;DR: In this paper, an image processing apparatus and image processing method capable of providing a high-resolution image for a desired position by use of light field data are provided, where the image processing equipment may determine a position of a portion of light-field data among light- field data corresponding to a scene, generate a refocusing first image by using of the position determined portion of LFD data, determine a high resolution image having a predetermined setting ratio relative to the first image, and generate a synthesized image by synthesizing the highresolution image and the enlarged image of the re-focus first
Abstract: An image processing apparatus and image processing method capable of providing a high-resolution image for a desired position by use of light field data are provided. The image processing apparatus may determine a position of a portion of light field data among light field data corresponding to a scene, according to a desired focusing position, generate a refocusing first image by use of the position determined portion of light field data, generate a high-resolution image having a predetermined setting ratio relative to the refocusing first image, determine a ratio for local synthesis between the high-resolution image and an enlarged image of the refocusing first image by use of a similarity with respect to the position determined portion of light field data, and generate a synthesized image by synthesizing the high-resolution image and the enlarged image of the refocusing first image according to the local synthesis ratio.

478 citations

Journal ArticleDOI
TL;DR: The first stretchable energy-harvesting electronic-skin device capable of differentiating and generating energy from various mechanical stimuli, such as normal pressure, lateral strain, bending, and vibration, is presented.
Abstract: The first stretchable energy-harvesting electronic-skin device capable of differentiating and generating energy from various mechanical stimuli, such as normal pressure, lateral strain, bending, and vibration, is presented. A pressure sensitivity of 0.7 kPa(-1) is achieved in the pressure region <1 kPa with power generation of tens of μW cm(-2) from a gentle finger touch.

477 citations


Authors

Showing all 134111 results

NameH-indexPapersCitations
Yi Cui2201015199725
Hyun-Chul Kim1764076183227
Hannes Jung1592069125069
Yongsun Kim1562588145619
Yu Huang136149289209
Robert W. Heath128104973171
Shuicheng Yan12381066192
Shi Xue Dou122202874031
Young Hee Lee122116861107
Alan L. Yuille11980478054
Yang-Kook Sun11778158912
Sang Yup Lee117100553257
Guoxiu Wang11765446145
Richard G. Baraniuk10777057550
Jef D. Boeke10645652598
Network Information
Related Institutions (5)
KAIST
77.6K papers, 1.8M citations

93% related

Nanyang Technological University
112.8K papers, 3.2M citations

91% related

Georgia Institute of Technology
119K papers, 4.6M citations

91% related

Hong Kong University of Science and Technology
52.4K papers, 1.9M citations

90% related

IBM
253.9K papers, 7.4M citations

90% related

Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20239
202289
20213,060
20205,735
20195,994
20185,885