Yoon, Kyunggi-Do
Dae Joong Yoon, Kyunggi-Do KR
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20100177313 | INSPECTING METHOD USING AN ELECTRO OPTICAL DETECTOR - An inspecting method using an electro-optical detecting device is disclosed. The electro-optical detecting device includes: an upper substrate and a lower substrate; a nematic liquid crystal layer interposed between the upper substrate and the lower substrate; a transparent electrode interposed between the nematic liquid crystal layer and the upper substrate, the transparent electrode connected to a device under test (DUT) via a power supply; a polarizing plate located over the nematic liquid crystal layer; and a reflecting plate located under the nematic liquid crystal layer. A method using the electro-optical detecting device includes applying a voltage between the transparent electrode and the DUT to generate an electric field across the liquid crystal layer; illuminating the detector and capturing an image of the detector using the light reflected from the detector; and determining the DUT has some defects from the image of the detector by an abnormal electric field generated between the transparent electrode and the DUT. | 07-15-2010 |
20100194414 | ELECTRO OPTICAL DETECTOR - An electro-optical detecting device is disclosed. The electro-optical detecting device includes: an upper substrate and a lower substrate; a nematic liquid crystal layer interposed between the upper substrate and the lower substrate; a transparent electrode interposed between the nematic liquid crystal layer and the upper substrate, the transparent electrode connected to a device under test (DUT) via a power supply; a polarizing plate located over the nematic liquid crystal layer; and a reflecting plate located under the nematic liquid crystal layer. A method using the electro-optical detecting device includes applying a voltage between the transparent electrode and the BUT to generate an electric field across the liquid crystal layer; illuminating the detector and capturing an image of the detector using the light reflected from the detector: and determining the DUT has some defects from the image of the detector by an abnormal electric field generated between the transparent electrode and the DUT. | 08-05-2010 |
Hee-Jong Yoon, Kyunggi-Do KR
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20100071399 | EASILY-DRAINABLE DEHUMIDIFIER - An easily-drainable dehumidifier that is designed to automatically or manually drain water stored in a water tank in accordance with a user selection is provided. The easily-drainable dehumidifier includes a case defining an exterior of the dehumidifier and provided with an air inlet and outlet, a dehumidifying unit that is installed in the case to remove moisture from air introduced into the case through the air inlet and discharge the air to an external side through the air outlet, a water tank that stores water generated by dehumidification of the dehumidifying unit and that is provided at a side with a first connecting portion having a first water outlet, a connecting member having a second connecting portion that is detachably connected to the first connecting portion of the water tank and provided with a second water outlet that selectively communicates with the first water outlet, and a drain pump that is connected to the connecting member to drain the water stored in the water tank to an external side. When the water tank is connected to the connecting member, the water stored in the water tank is directed to the connecting member, and when the water tank is separated from the connecting member, the water stored in the water tank is not discharged out of the water tank. | 03-25-2010 |
20110016904 | CONTINUOUS DRAIN-TYPE DEHUMIDIFIER - A dehumidifier for continuously draining water generated by dehumidification to an external side is provided. The continuous drain-type dehumidifier includes a case having an air inlet and outlet, a dehumidifying unit that remove moisture from air introduced through the air inlet and discharges the air through the air outlet, a middle part member having a bottom portion on which water generated by the dehumidifying unit is dropped and provided with a water outlet, and a water leakage preventing unit that is provided on the water outlet to prevent the water from leaking. The water leakage preventing unit includes a drain nipple cap inserted into the water outlet, a drain nipple snap-fitted to the drain nipple cap, and a ring compressed between the drain nipple cap and the drain nipple and close-contacting an outer circumference of the water outlet. | 01-27-2011 |
Jeonghyeok Yoon, Kyunggi-Do KR
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20080234482 | 5,6-Dimethylthieno[2,3-Di] Pyrimidine Derivatives, the Preparation Method Thereof and the Pharmaceutical Composition Comprising the Same for Anti-Virus - Disclosed herein are 5,β-dimethylthieno[2,3-d]pyrimidine derivatives useful as antiviral agents. More particularly, disclosed are 5,β-dimethylthieno[2,3-djpyrimidine derivatives represented by Formula 1, having an excellent inhibitory effect on the proliferation of hepatitis C virus (HCV), pharmaceutically acceptable salts thereof, a preparation method thereof, and a pharmaceutical composition for the prevention and treatment of hepatitis C virus (HCV), containing, as active ingredients, these compounds. The 5,6-dimethylthieno[2,3-d]pyrimidine derivatives represented by Formula 1 have an excellent effect of inhibiting the proliferation of hepatitis C virus and also have low toxicity. Thus, these compounds are available as agents for the prevention and treatment of hepatitis C. | 09-25-2008 |
Sang Heon Yoon, Kyunggi-Do KR
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20100206332 | Method of Controlling Dishwasher - There is provided a method of controlling a dishwasher. The method includes performing a preliminary washing cycle, performing a main washing cycle, and performing a rinsing cycle. Steam is supplied during at least one of the main washing cycle and the rinsing cycle. | 08-19-2010 |
Young Ryong Yoon, Kyunggi-Do KR
Patent application number | Description | Published |
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20100177313 | INSPECTING METHOD USING AN ELECTRO OPTICAL DETECTOR - An inspecting method using an electro-optical detecting device is disclosed. The electro-optical detecting device includes: an upper substrate and a lower substrate; a nematic liquid crystal layer interposed between the upper substrate and the lower substrate; a transparent electrode interposed between the nematic liquid crystal layer and the upper substrate, the transparent electrode connected to a device under test (DUT) via a power supply; a polarizing plate located over the nematic liquid crystal layer; and a reflecting plate located under the nematic liquid crystal layer. A method using the electro-optical detecting device includes applying a voltage between the transparent electrode and the DUT to generate an electric field across the liquid crystal layer; illuminating the detector and capturing an image of the detector using the light reflected from the detector; and determining the DUT has some defects from the image of the detector by an abnormal electric field generated between the transparent electrode and the DUT. | 07-15-2010 |
20100194414 | ELECTRO OPTICAL DETECTOR - An electro-optical detecting device is disclosed. The electro-optical detecting device includes: an upper substrate and a lower substrate; a nematic liquid crystal layer interposed between the upper substrate and the lower substrate; a transparent electrode interposed between the nematic liquid crystal layer and the upper substrate, the transparent electrode connected to a device under test (DUT) via a power supply; a polarizing plate located over the nematic liquid crystal layer; and a reflecting plate located under the nematic liquid crystal layer. A method using the electro-optical detecting device includes applying a voltage between the transparent electrode and the BUT to generate an electric field across the liquid crystal layer; illuminating the detector and capturing an image of the detector using the light reflected from the detector: and determining the DUT has some defects from the image of the detector by an abnormal electric field generated between the transparent electrode and the DUT. | 08-05-2010 |