Yongchao
Yongchao He, Shenzhen CN
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20100253189 | HORIZONTAL SUBRACK AND COMMUNICATION CABINET - A horizontal subrack includes a ventilation box, a fan box and a board area. The ventilation box is located on the top and/or at the bottom of the board area, and includes an air partition plate, an air inlet, and a first air outlet; the air partition plate is set inside the ventilation box, and divides the ventilation box into an air-in chamber and an air-out chamber; the fan box is installed in the air-in chamber, and a fan is installed on the fan box; the air inlet is set on the front wall of the ventilation box; and the first air outlet is set on the rear wall of the ventilation box. The board area includes board slots, an air-in duct and an air-out duct. The air-in duct is located on one side of the board slots, and the air-out duct is located on the other side of the board slots. The air-in duct is linked to the air-in chamber, and the air-out duct is linked to the air-out chamber. The horizontal subrack extends the trail between the fan box and the board area, improves the evenness of the air volume distributed to the slots of the horizontal subrack, and overcomes the bottleneck of enhancing the heat dissipation capability of the horizontal subrack. | 10-07-2010 |
20120120600 | HORIZONTAL SUBRACK AND COMMUNICATION CABINET - A horizontal subrack includes a ventilation box, a fan box and a board area. The ventilation box is located on the top and/or at the bottom of the board area, and includes an air partition plate, an air inlet, and a first air outlet; the air partition plate is set inside the ventilation box, and divides the ventilation box into an air-in chamber and an air-out chamber; the fan box is installed in the air-in chamber, and a fan is installed on the fan box; the air inlet is set on the front wall of the ventilation box; and the first air outlet is set on the rear wall of the ventilation box. The board area includes board slots, an air-in duct and an air-out duct. | 05-17-2012 |
Yongchao Ji, Shanghai CN
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20160073500 | Decoupling Capacitive Arrangement to Manage Power Integrity - Various implementations disclosed herein include arrangements that reduce parasitic inductance associated with a discrete decoupling capacitor by using a three-terminal capacitor and a staggered array of power supply and ground connections. In some implementations, a capacitive decoupling arrangement includes a substrate, an array of electrical vias of first and second types, and a capacitive arrangement on one side of the substrate coupled to the array of electrical vias. The array of electrical vias includes a first type of vias and a second type of vias. The capacitive arrangement is coupled between two respective vias of the first type of vias and two respective vias of the second type of vias on the first planar surface of the substrate. The capacitive arrangement includes a plurality of capacitive elements electrically arranged in parallel between the two respective vias of the first type of vias and the two respective vias of the second type of vias. | 03-10-2016 |
Yongchao Li, Oak Ridge, TN US
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20100196983 | Transformation of gram positive bacteria by sonoporation - The present invention provides a sonoporation-based method that can be universally applied for delivery of compounds into Gram positive bacteria. Gram positive bacteria which can be transformed by sonoporation include, for example, | 08-05-2010 |
Yongchao Ma, Shanghai CN
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20140234600 | COMPOSITE LAMINATE HAVING IMPROVED IMPACT STRENGTH AND THE USE THEREOF - A composite laminate having improved impact strength, which comprises: a multilayer carbon fiber fabric, wherein said carbon fiber fabric may be a bidirectional weave or a unidirectional weave; a multilayer nonwoven mat, wherein said nonwoven mat is made of para-aramid; and cured epoxy resin, wherein said cured epoxy resin is made of the epoxy resin system designed for impregnation that immersed in the carbon fiber fabric layer and at least one layer of the nonwoven mat is sandwiched between two layers of carbon fiber fabric layer and both outer surface layers of the composite laminate are carbon fiber fabric layer. | 08-21-2014 |
Yongchao Zhang, Beijing CN
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20150046801 | Document Editing Synchronization - Document editing synchronization techniques are described. In one or more implementations, one or more inputs are received via a user interface to edit a first portion of a first document, the first portion of the first document corresponding to a first portion of a second document. Responsive to receipt of an input to begin editing of a second portion of the first document, correspondence in the user interface of the second portion of the first document is indicated to a second portion of the second document automatically and without user intervention. | 02-12-2015 |
20150193140 | Push-Pull Type Gestures - Techniques for push-pull type gestures are described. In one or more embodiments, a push gesture away from a cursor object that is displayed by a display device is recognized. An assisted location object is then displayed to assist a user in repositioning the cursor object based on the push gesture. In implementations, a prompt gesture is recognized effective to cause a prompt object having one or more options to be displayed. The options that are displayed are selectable to initiate a function that is operable using the cursor object. In addition, a motion select gesture that selects one of the options is recognized effective to replace the prompt object and initiate a function corresponding to the selected option. | 07-09-2015 |
Yongchao Zhao, Beijing CN
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20090018025 | Testing Method of Nucleic Acid Binding Protein Based on Biochip - A testing method of nucleic acid binding protein based on biochip, comprises the following steps: 1. puts a plurality of groups solution including nucleic acid captured probes into biological sample including a plurality of nucleic acid binding protein to be test, and thus forming nucleic acid captured probe-nucleic acid binding protein complexes; such nucleic acid captured probe includes at least a segment of binding sequence which can bind with aimed nucleic acid binding protein; 2. separates such nucleic acid captured probe-nucleic acid binding protein complexes, then recoveries nucleic acid captured probes; 3. hybridizes the nucleic acid captured probes according to step 2 with a plurality of single strand blotting probes on biochip substrate; the sequence of such blotting probe compensates with such nucleic acid captured probe or one of its strand; 4. detects the result of hybridization. | 01-15-2009 |