Patents by Inventor Lee-Ching Kuo
Lee-Ching Kuo has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11921543Abstract: A system and method of docking an information handling system to an intelligent wireless fan dock comprising a docking sensor to detect a docking event, a wireless module to establish a wireless link of the intelligent wireless fan dock with the docked information handling system upon detection of a docking event and to receive a dynamic fan speed request command to adjust extended fan cooling airflow from fan dock control system operating at the docked information handling system, where the fan dock control system has determined that the docked information handling system and the intelligent wireless fan dock pairing enables an increased performance mode and altered power draw limitations for the docked information handling system relative to the information handling system in an undocked state, and increasing the extended fan cooling airflow of a cooling fan based on the dynamic fan speed request command from the docked information handling system.Type: GrantFiled: April 28, 2022Date of Patent: March 5, 2024Assignee: Dell Products, LPInventors: Lee-Ching Kuo, Hong Ling Chen, Hou Chun Wang, En-Yu Jen, Chen-Yu Lin
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Publication number: 20230350455Abstract: A system and method of docking an information handling system to an intelligent wireless fan dock comprising a docking sensor to detect a docking event, a wireless module to establish a wireless link of the intelligent wireless fan dock with the docked information handling system upon detection of a docking event and to receive a dynamic fan speed request command to adjust extended fan cooling airflow from fan dock control system operating at the docked information handling system, where the fan dock control system has determined that the docked information handling system and the intelligent wireless fan dock pairing enables an increased performance mode and altered power draw limitations for the docked information handling system relative to the information handling system in an undocked state, and increasing the extended fan cooling airflow of a cooling fan based on the dynamic fan speed request command from the docked information handling system.Type: ApplicationFiled: April 28, 2022Publication date: November 2, 2023Applicant: Dell Products, LPInventors: Lee-Ching Kuo, Hong Ling Chen, Hou Chun Wang, En-Yu Jen, Chen-Yu Lin
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Publication number: 20230350259Abstract: An information handling system may include a processor, a memory device, a power management unit (PMU), and a camera formed into a chassis of the information handling system. The camera may include a lens and an electronic image capture component, and an electrochromic glass shutter formed over the lens, the electrochromic glass shutter operatively coupled to a circuit switch to receive a voltage to change the opacity of the electrochromic glass shutter, the circuit switch operatively coupled to and controlled by an embedded controller.Type: ApplicationFiled: April 29, 2022Publication date: November 2, 2023Applicant: Dell Products, LPInventors: Hong Ling Chen, Hou Chun Wang, En-Yu Jen, Chen-Yu Lin, Lee-Ching Kuo, Shao Che Huang
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Publication number: 20040123802Abstract: A method for making p-type transparent conductive films and the corresponding system are disclosed. A laser beam is used as the evaporation source of a target, so that the target containing a group-III element vaporizes and forms a coating on a substrate. At the same time, a gas to be mingled into the coating is made into plasma to increase its activity. The gas contains a group-V element. The particles in the target have reactions with the plasma so that the coating thus formed contain both group-III and group-V elements, with the concentration of the group-V element higher than that of group-III element. This achieves the goal of making a p-type transparent conductive film.Type: ApplicationFiled: April 9, 2003Publication date: July 1, 2004Inventors: Chorng-Jye Huang, Shih-Cheng Lin, Cheng-Ting Chen, Lee-Ching Kuo
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Patent number: 6692985Abstract: A solar cell substrate with thin film polysilicon. The solar cell substrate includes a substrate; a transparent conductive layer, formed on the substrate; a thermal isolation layer having inlaid conductive layers, formed on the transparent conductive layer; and a polysilicon layer, formed on the thermal isolation layer.Type: GrantFiled: June 7, 2002Date of Patent: February 17, 2004Assignee: Industrial Technology Research InstituteInventors: Chorng-Jye Huang, Lee Ching Kuo, Jyi Tyan Yeh, Chien Sheng Huang, Leo C. K. Liau, Shih-Chen Lin, Cheng-Ting Chen, Feng-Cheng Jeng
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Publication number: 20020185171Abstract: A solar cell substrate with thin film polysilicon. The solar cell substrate includes a substrate; a transparent conductive layer, formed on the substrate; a thermal isolation layer having inlaid conductive layers, formed on the transparent conductive layer; and a polysilicon layer, formed on the thermal isolation layer.Type: ApplicationFiled: June 7, 2002Publication date: December 12, 2002Inventors: Chorng-Jye Huang, Lee-Ching Kuo, Jyi-Tyan Yeh, Chien-Sheng Huang, Leo C.K. Liau, Shih-Chen Lin, Cheng-Ting Chen, Feng-Cheng Jeng
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Publication number: 20020064081Abstract: A device for accessing a ROM unit with groups of module information of memory modules saved therein. This invention saves plural groups of memory module information in a ROM unit, and applies a selecting circuit to indicate a memory module information to be loaded out. In an embodiment, the selecting circuit has a voltage divider circuit driven by the WP Pin of an IC, and a comparer or a converter to connect with the voltage divider circuit so as to produce a selecting signal, and then uses a decoder to transfer the selecting signal into a address number which will be used to read the selected memory module information from the ROM unit. In another embodiment, the selecting circuit has a plurality of fuses which are connected with plural output-pins of an IC, and multiplexers to optionally disconnect some fuses of the fuse circuit so as to generate kinds of different selecting signals. The selecting signals will then be decoded to locate the required memory module information from the ROM unit.Type: ApplicationFiled: November 29, 2000Publication date: May 30, 2002Applicant: TwinMOS Technologies Inc.Inventors: Denny Tzeng, Lan Chih-Hung, Lee Ching-Kuo
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Patent number: 6396767Abstract: A device for accessing a ROM unit with groups of module information of memory modules saved therein. This invention saves plural groups of memory module information in a ROM unit, and applies a selecting circuit to indicate a memory module information to be loaded out. In an embodiment, the selecting circuit has a voltage divider circuit driven by the WP Pin of an IC, and a comparer or a converter to connect with the voltage divider circuit so as to produce a selecting signal, and then uses a decoder to transfer the selecting signal into a address number which will be used to read the selected memory module information from the ROM unit. In another embodiment, the selecting circuit has a plurality of fuses which are connected with plural output-pins of an IC, and multiplexers to optionally disconnect some fuses of the fuse circuit so as to generate kinds of different selecting signals. The selecting signals will then be decoded to locate the required memory module information from the ROM unit.Type: GrantFiled: November 29, 2000Date of Patent: May 28, 2002Assignee: TwinMOS Technologies, Inc.Inventors: Denny Tzeng, Lan Chih-Hung, Lee Ching-Kuo
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Patent number: 6291762Abstract: The present invention discloses a dust-proof and weather resistant photovoltaic module, including (a) a front substrate of light transmittable safety glass plate, wherein a photo-catalyst composition is applied to the safety glass plate; (b) a back substrate of weather resistant polyester polymer; and (c) a photosensitizer including electrical circuit copper foils and polymeric enclosing material (EVA) which is located between the front substrate and the back substrate. The method for fabricating a front substrate of a photovoltaic module includes applying a photo-catalyst composition onto a safety glass plate; evaporating the photo-catalyst composition to a gel; and seating the gel to Rutile titanium dioxide. The photo-catalyst composition includes a metal oxide, an acid regent and a surfactant.Type: GrantFiled: December 8, 1999Date of Patent: September 18, 2001Assignee: Industrial Technology Research InstituteInventors: Yih-Song Jan, Jong-Min Liu, Chih-Chiang Chen, Lee-Ching Kuo
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Patent number: 6277667Abstract: This invention discloses a novel method for fabricating solar cells. Using the existing screen-printing, masking or photolithography techniques, a P-type or N-type diffusion source is coated on the sites of an N-type or P-type silicon wafer desired for forming electrodes. Then, a low dose P-type or N-type diffusion source is in situ diffused into the N-type or P-type silicon wafer together with the P-type or N-type diffusion source coated on the N-type or P-type silicon wafer in the furnace. Thereafter, a P−/P+ or N−/N+ diffusion region is formed within the N-type or P-type silicon wafer. Finally, electrodes aligned to the P+ or N+ diffusion region are formed by means of screen-printing. Then, a solar cell with high photocurrent and low series resistance can be obtained.Type: GrantFiled: September 7, 1999Date of Patent: August 21, 2001Assignee: Industrial Technology Research InstituteInventors: Chorng-Jye Huang, Cheng-Ting Chen, Chien-sheng Huang, Lee-Ching Kuo
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Patent number: 5789263Abstract: An amorphous silicon color detector comprising a structure composed of a transparent conductive oxide film (TCO) layer/an a-Si:H layer/a metal layer, of which the a-Si:H layer is an amorphous silicone layer having a thickness greater than 1 .mu.m, and the metal layer is made of a metals selected from the metal group consisting of Cr, Au, Pd, Al, Pt, Mo, Ag or Ti. A depletion region of the color detector is re-arranged in position and in content thereof according to the absorbencies to different color lights in different bias voltages to achieve the purpose of detecting different color light. An amorphous silicone color image sensor comprises a plurality of the color detectors arranged in linear array incorporated with a scanning device, a processor and an A/D converter to process the signals obtained from scanning. The amorphous silicone color image sensor is especially used in a scanning machine or a fax machine. A manufacture process of the amorphous silicon color detector is also disclosed.Type: GrantFiled: June 7, 1995Date of Patent: August 4, 1998Assignee: Industrial Technology Research InstituteInventors: Lee-Ching Kuo, Ming-Hann Tzeng, Yean-Kuen Fang
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Patent number: 5714772Abstract: A method of manufacturing a light converter with an LED and an amorphous-silicon pin heterojunction diode includes steps of a) preparing an LED structure on one side of a substrate as a light-emitting unit; b) forming a buffer layer on the other side of the substrate; and c) depositing a pin (positive type/intrinsic type/negative type) diode on the buffer layer as a light-absorbing unit this blue/red light converter, and the value of rise time obtained under 1 k.OMEGA. is 112.5 .mu.sec. The present invention desirably lower the cost, simplify the preparation process, and avoids degrading features of a light converting unit by over-heating during the process of preparing the pin diode.Type: GrantFiled: July 31, 1996Date of Patent: February 3, 1998Assignee: National Science CouncilInventors: Yean-Kuen Fang, Kuen-Hsien Lee, Yaw-Jou Yang, Lee-Ching Kuo
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Patent number: 5693745Abstract: The present method provides a method for preparing the PI varnish which has the steps of: 1) preparing a mixed solution of 60-100% by weight aprotic solvent, and 0-40% by weight aromatic solvent; 2) adding into the mixed solution in a mole ratio of 1:9 two aromatic diamines; and 3) further adding in the mixed solution in a mole ratio of 1:5 two aromatic dianhydrides. Such PI has a suitable thermal expansion coefficient and characteristics different form those of the PI currently in use.Type: GrantFiled: February 8, 1996Date of Patent: December 2, 1997Assignee: Industrial Technology Research InstituteInventors: Lee-Ching Kuo, Jinn-Shing King, Wen-Yueh Hsu, Yu-Tai Tsai
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Patent number: 5604136Abstract: A method of manufacturing a light converter with an LED and an amorphous-silicon pin heterojunction diode includes steps of a) preparing an LED structure on one side of a substrate as a light-emitting unit; b) forming a buffer layer on the other side of the substrate; and c) depositing a pin (positive type/intrinsic type/negative type) diode on the buffer layer as a light-absorbing unit this blue/red light converter, and the value of rise time obtained under 1 kf.OMEGA. is 112.5 .mu.sec. The present invention desirably lower the cost, simplify the preparation process, and avoids degrading features of a light converting unit by over-heating during the process of preparing the pin diode.Type: GrantFiled: May 26, 1995Date of Patent: February 18, 1997Assignee: National Science CouncilInventors: Yean-Kuen Fang, Kuen-Hsien Lee, Yaw-Jou Yang, Lee-Ching Kuo
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Patent number: 5502595Abstract: A color filter comprising a transparent substrate and two or more multilayer films of amorphous silicon materials deposited on said substrate, each film being different, each layer of said two or more multi-layer films having a thickness less than the wavelength of the visible light and at least three layers of said two or more multi-layer films of amorphous silicon materials in an alternate arrangement wherein the amorphous silicon materials are selected from a-SiOx and a-SiNx is described. A method of preparing the color filter comprising depositing on the substrate by PECVD method two or more multilayer films is also described. The color filters prepared by PECVD method have a more compact texture and a better environmental resistant. The PECVD method for the preparation of the filters is more efficient than conventional methods.Type: GrantFiled: June 3, 1994Date of Patent: March 26, 1996Assignee: Industrial Technology Research InstituteInventors: Lee-Ching Kuo, Fang-Chuan Ho, William Lee, Yean-Kuen Fang
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Patent number: 5449923Abstract: An amorphous silicon color detector comprising a structure composed of a transparent conductive oxide film (TCO) layer/an a-Si:H layer/a metal layer, of which the a-Si:H layer is an amorphous silicone layer having a thickness greater than 1 .mu.m, and the metal layer is made of a metals selected from the metal group consisting of Cr, Au, Pd, Al, Pt, Mo, Ag or Ti. A depletion region of the color-detector is re-arranged in position and in content thereof according to the absorbencies to different color lights in different bias voltages to achieve the purpose of detecting different color light. An amorphous silicone color image sensor comprises a plurality of the color detectors arranged in linear array incorporated with a scanning device, a processor and an A/D converter to process the signals obtained from scanning. The amorphous silicone color image sensor is especially used in a scanning machine or a fax machine. A manufacture process of the amorphous silicon color detector is also disclosed.Type: GrantFiled: March 31, 1992Date of Patent: September 12, 1995Assignee: Industrial Technology Research InstituteInventors: Lee-Ching Kuo, Ming-Hann Tzeng, Yean-Kuen Fang
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Patent number: 5356656Abstract: A method of manufacturing a flexible amorphous silicon solar cell includes the steps of: a) coating a PI varnish on a glass substrate; b) imidizing the PI varnish film; c) vacuum-depositing a metal film on the PI film; d) vacuum-depositing an amorphous silicon film on the metal film; e) vacuum-depositing a transparent conducting film on the amorphous silicon film; and f) separating the PI film from the glass substrate. The method also provides for preparing the PI varnish by the steps of: 1) preparing a mixed solution of 60-100% by weight aprotic solvent, and 0-40% by weight aromatic solvent; 2) adding into the mixed solution in a mole ratio of 1:9 two aromatic diamines; and 3) further adding in the mixed solution in a mole ratio of 1:5 two aromatic dianhydrides.Type: GrantFiled: March 26, 1993Date of Patent: October 18, 1994Assignee: Industrial Technology Research InstituteInventors: Lee-Ching Kuo, Jinn-Shing King, Wen-Yueh Hsu, Yu-Tai Tsai