Myung-Woon
Myung-Woon Choi, Gyeonggi-Do KR
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20110023783 | MULTIPLE NOZZLE EVAPORATOR FOR VACUUM THERMAL EVAPORATION - Disclosed is a multiple nozzle evaporator in which a material to be evaporated in the evaporator can be deposited on a substrate with an improved efficiency of use of the material, thereby forming a large-area uniform thin film. The evaporator includes a rectangular post-shaped crucible with an open top face; and a nozzle having a body portion having a rectangular post-like shape with a height smaller than that of the crucible and assembled to an upper portion of the crucible, and a plurality of evaporation tubes penetrating through the body portion between top and bottom faces of the body portion. The evaporation tubes are divided into four groups of which evaporation tubes are inclined toward respective four corners of a top face of the nozzle unit. An evaporated material spouts toward peripheral areas of a substrate due to the inclined evaporation tubes, thereby improving the uniformity of a thin film to be deposited and the efficiency of use of the evaporated material, and preventing condensation of the evaporated material at a spouting portion. | 02-03-2011 |
Myung-Woon Hwang, Seongnam City KR
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20100134087 | LOW NOISE REFERENCE CIRCUIT OF IMPROVING FREQUENCY VARIATION OF RING OSCILLATOR - A low noise reference voltage circuit without using an amplifier inside is capable of transforming a current I | 06-03-2010 |
20110063013 | MIXER CIRCUIT - The present invention discloses a mixer circuit for mixing two input signals by source-coupled MOS transistors and outputting a mixed result. A duty cycle controlling MOS transistor is connected to a source of each source-coupled MOS transistor in series. A duty cycle controlling pulse is applied to a gate of the duty cycle controlling MOS transistor. The duty cycle controlling pulse has a phase shift of −90 degrees with respect to a controlling pulse applied to the gate of the source-coupled MOS transistor connected with the duty cycle controlling MOS transistor in series. An AND-combination of the duty cycles of the two controlling pulses applied to the gates of the two MOS transistors connected in series can be controlled at 25%. Comparing to the conventional mixer circuit having a switch control duty cycle of 50%, the present invention achieves the effects of increasing the gain and reducing the noise figure. | 03-17-2011 |
20110103518 | DC OFFSET SUPPRESSION CIRCUIT FOR A COMPLEX FILTER - The present invention relates to a direct current (DC) offset suppression circuit to suppress DC offsets occurring when a communication circuit where a complex filter is adopted performs self-mixing. The DC offset is suppressed by a DC feedback circuit adopted by a filter which is substituted for a complex filter in the communication circuit. But, the DC offset cannot be suppressed when a complex filter is used in the communication circuit. It is because phase changes of the complex filter cause output signal fed back to the input of the complex filter to generate phase differences. The present invention includes a phase compensation unit and a DC feedback unit. The phase compensation unit compensates a change in frequency between input and output of the complex filter for phase compensation. The DC feedback unit inverses and feeds back the compensated phase to an input of the complex filter. | 05-05-2011 |
Myung-Woon Hwang, Seoul City KR
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20090209220 | RECEIVER HAVING LOW POWER CONSUMPTION AND METHOD THEREOF - The present invention provides a receiver having low power consumption and method thereof. The receiver with low power consumption adjusts the gain based on the automatic gain control information. The receiver acquires the signal peaks both after and before a channel selection filter and further analyzes the wanted signal and interference signal with respect to the signal peaks. The receiver determines the magnitude of the wanted signal and determines whether the interference signal exists. The receiver provides the signals with optimal current correspondingly in order to effectively decrease the power consumption of the receiver. | 08-20-2009 |
20090209221 | RECEIVER WITH LOW POWER CONSUMPTION - The present invention provides a receiver with low power consumption. The receiver with low power consumption adjusts the gain of the programmable gain amplifier based on the automatic gain controller and further optimizes the gain bandwidth product by current-adjusting unit. The current-adjusting unit thus adjusts the current provided for the programmable gain amplifier, e.g. operational amplifier. Therefore, the gain bandwidth product of the programmable gain amplifier is optimized and the power consumption of the receiver is effectively decreased. | 08-20-2009 |
Myung-Woon Lee, Seoul KR
Patent application number | Description | Published |
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20090167985 | Optical Plate, Method of Manufacturing the Same and Liquid Crystal Having the Same - An optical plate having improved light scattering power, a method of manufacturing the same and a liquid crystal display having the same. An optical plate includes a base material layer, and a lens portion having a plurality of unit lenses formed on one surface of the base material layer, each of the unit lenses having a convex shape, wherein a diffusion portion is formed in each of the unit lenses. The amount and cost of the light diffusing agent can be reduced, light transmittance can be improved, light uniformity can be enhanced without occurrence of bright lines, and intensity of light to be viewed is improved, thereby enhancing luminance | 07-02-2009 |
20090168421 | BACKLIGHTING ASSEMBLY FOR USE IN SLIM FLAT PANEL DISPLAY AND DISPLAY DEVICE HAVING SAME - A backlight assembly includes a plurality of lamps, a multi-plate diffusion member, optical sheets and a receiving container. The lamps have a rod shape extended in a first direction, and are arranged along a second direction that is substantially perpendicular to the first direction. The diffusion member is disposed above the lamps and has at least two optical plates. Each of the optical plates includes a plurality of optical patterns on a surface facing away from the lamps. The optical patterns are extended in the first direction and aligned along the second direction. The optical sheets are disposed above the diffusion member to improve optical characteristics of passed through light. The receiving container includes a reflective bottom plate and a sidewall formed on an edge of the bottom plate to receive the lamps, the diffusion member and the optical sheets. | 07-02-2009 |
20100124043 | Diffusion Plate and Display Apparatus Having the Same - Disclosed are a diffusion plate and a display apparatus having the same. The diffusion plate includes a base and a plurality of convex portions. The base includes a front surface and a rear surface. Each convex portion has a crescent of an ellipse formed on a front surface of the base while extending in one direction. The display apparatus includes a display panel, a light source, and the diffusion plate. | 05-20-2010 |
20100321923 | Diffusion Plate and Display Apparatus Having the Same - A diffusion plate includes a base having a top surface and a bottom surface and a plurality of parallel convex ridges integrally formed on the top surface of the base while extending in one direction. Each convex ridge has a cross section shaped as a portion of an ellipse. The display apparatus includes a display panel, a light source and the diffusion plate. | 12-23-2010 |
20110267841 | DISPLAY APPARATUS - Disclosed is a display apparatus. The display apparatus includes a light guide plate, a light source section, a light guide member, and a display panel. The light guide plate has a light incident surface and a light exit surface connected to the light incident surface. The light source section faces the light incident surface and has a plurality of light sources to output the light. The light guide member has a plate-like shape with first and second surfaces facing each other, in which the first surface contacts the light source section, and the second surface contacts the light incident surface, and guides light to the light guide plate. The display panel receives light output through the light exit surface to display an image. | 11-03-2011 |