Wenzhi
Wenzhi Chen, Beijing CN
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20140283957 | IRON-BASED AMORPHOUS ALLOY BROAD RIBBON AND ITS MANUFACTURING METHOD - The invention belongs to the technical field of rapid solidification of amorphous alloy and concretely relates to an iron-based amorphous alloy broad ribbon, wherein the width is 220-1000 mm, the thickness is 0.02-0.03 mm, the transversal thickness deviation is smaller than +/−0.002 mm, the lamination factor is larger than 0.84, the saturation magnetic-flux density is larger than 1.5 T, the iron loss is smaller than 0.20 W/kg under the conditions that the frequency is 50 Hz and the maximum magnetic-flux density is 1.3 T, and the exciting power is smaller than 0.50 VA/kg. The invention also relates to a manufacturing method of the broad ribbon, and a single-roll quenching method is adopted, wherein the width of a nozzle slot is 0.4-0.7 mm, the transversal width deviation of the nozzle slot is smaller than +/−0.05 mm, the transversal flatness deviation of a cooling roll ( | 09-25-2014 |
Wenzhi Liu, Beijing CN
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20140132611 | SYSTEM AND METHOD FOR DATA TRANSMISSION - The present invention discloses a system and a method for data transmission. The system includes: a plurality of graphics processing units; a global shared memory for storing data transmitted among the plurality of graphics processing units; an arbitration circuit module, which is coupled to each of the plurality of graphics processing units and the global shared memory and configured to arbitrate an access request to the global shared memory from respective graphics processing units to avoid an access conflict among the plurality of graphics processing units. The system and the method for data transmission provided by the present invention enable respective GPUs in the system to transmit data through the global shared memory rather than a PCIE interface, thus saving data transmission bandwidth significantly and further improving a computing speed. | 05-15-2014 |
Wenzhi Qian, Quanzhou CN
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20150114815 | TOUCH PANEL AND METHOD FOR MANUFACTURING THE SAME - The present disclosure provides a touch panel, including a substrate, at least one sensing electrode layer, a wire layer, a first light-shielding layer and a second light-shielding layer. The substrate has a visible region and a non-visible region. The wire layer corresponds to the non-visible region, wherein the wire layer includes signal lines and at least one gap therebetween, the signal lines electrically connect the sensing electrode layer. The first light-shielding layer is disposed within the non-visible region and between the substrate and the wire layer, wherein the first light-shielding layer includes at least one recess and a position of the recess corresponds to a position of the gap. The second light-shielding layer corresponds to the recess, wherein an area covered by the second light-shielding layer is equal to or greater than an aperture of the recess. The present disclosure also provides a method for manufacturing a touch panel. | 04-30-2015 |