Ho-Chun
Ho Chun Jung, Iksan-Si KR
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20110218588 | IMPLANTABLE CORTICAL ELECTRICAL STIMULATION APPRATUS HAVING WIRELESS POWER SUPPLY CONTROL FUNCTION - An implantable cortical electrical stimulation device having wireless power control function comprises: an electrical stimulation device ( | 09-08-2011 |
Ho Chun Lee, Paju-Si KR
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20140168584 | LIQUID CRYSTAL DISPLAY DEVICE - Disclosed is a liquid crystal display (LCD) device which is capable of improving a user's visual perception characteristics by decreasing a reflectance difference of external light between an active area and a peripheral area, wherein the LCD device includes a first substrate having an active area and a peripheral area; a second substrate confronting the first substrate; a liquid crystal layer between the first and second substrates; a light shielding layer in the active area and the peripheral area of the first substrate; and first, second and third color filters respectively formed in individual pixels of the active area, wherein the first color filter is formed between the first substrate and the light shielding layer in the active area and the peripheral area. | 06-19-2014 |
Ho Chun Lee, Goyang-Si KR
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20160131938 | Display With Blue Pigment Layer Under Black Matrix - A liquid crystal display has a color filter layer and a thin-film transistor layer surrounding a layer of liquid crystal material. The display may have an active area with an array of display pixels. An inactive area may surround the active area. A black mask structure may be formed in the inactive area. A black matrix having a grid shape with rectangular openings may be formed in the active area. Red, green, and blue color filter elements may be formed in the rectangular openings. The black matrix may have a first layer that is formed from a grid of blue photoresist on a color filter substrate and a second layer that is formed from an aligned grid of black photoresist. In the inactive area, the black mask structure may be formed from a blue layer of photoresist covered with a black layer of photoresist. | 05-12-2016 |
Ho-Chun Chiang, Zhubei City TW
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20150043440 | WIRELESS COMMUNICATIONS DEVICES SUPPORTING WIFI AND LTE COMMUNICATIONS AND METHODS FOR TRANSMISSION CONTROL THEREOF - A mobile communications device supporting operation on a first wireless technology and a second wireless technology with a wireless module and a controller module is provided. The wireless module performs wireless transceiving to and from a first base station of a first wireless technology and a second base station of a second wireless technology. The controller module transmits a control message prior to the starting of a uplink transmission period of the first wireless technology via the wireless module to occupy the uplink transmission period of the first wireless technology so as to allow transmission of signals of the second wireless technology during the uplink transmission period of the first wireless technology, wherein the first wireless technology is a long term evolution (LTE) technology and the second wireless technology is a WiFi technology. | 02-12-2015 |
Ho-Chun Lee, Bade City TW
Patent application number | Description | Published |
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20090096563 | INDUCTANCE - An inductance is provided. The inductance includes a metal core, a coil and a soft-magnetic colloid element. The coil is wound around the metal core. The soft-magnetic colloid element surrounds the coil. | 04-16-2009 |
20090096564 | TRANSFORMER - A transformer is provided. The transformer includes at least a high voltage coil, at least a low voltage coil and a soft-magnetic colloid element. The soft-magnetic colloid element is disposed between the high voltage coil and the low voltage coil. | 04-16-2009 |
Ho-Chun Liou, Hsinchu City TW
Patent application number | Description | Published |
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20150349045 | INTEGRATED CIRCUIT AND METHOD OF FABRICATING THE SAME - An integrated circuit and a method of fabricating the integrated circuit are provided. In various embodiments, the integrated circuit includes a substrate and a polysilicon resistor. The polysilicon resistor is disposed on the substrate. The polysilicon resistor has at least one positive TCR portion and at least one negative TCR portion. The positive TCR portion is adjacent to the negative TCR portion, and the positive TCR portion is in direct contact with the negative TCR portion. | 12-03-2015 |