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Dalei

Dalei Song, Qingdao CN

Patent application numberDescriptionPublished
20150354956METHOD FOR THE MEASUREMENT OF TURBULENCE BY USING RECIPROCATING OCEAN MICROSTRUCTURE PROFILER - The method for the measurement of turbulence by using reciprocating ocean microstructure profiler includes the following procedures: 1) system startup; 2) detection of the profile data of ocean dynamic environment information: a. temperature detection; b. shear detection; c. depth detection; and d. current and temperature & conductivity detection; e. gesture sensing; 3) control of ascending and descending operations of the profiler: a. uprising control; b. redirection operation; and c. sinking control; and 4) sleep mode. The method doesn't consume labor several times and the equipment is capable of providing long-time continuous profile measurement at a fixed area along a steel cable; and the entire system can ascend and descend steadily after hydrodynamic optimized layout, eliminating the measurement errors contributable to water flow fluctuation during detection, thus obtaining accurate ocean microstructure observation in vertical with higher precision.12-10-2015
20150354957RECIPROCATING OCEAN MICROSTRUCTURE PROFILER - A reciprocating ocean microstructure profiler includes a first profiler subunit, a second profiler subunit and a central stand. The first profiler subunit is provided with the first buoyancy drive part and the first observation part; and the second profiler subunit is provided with the second buoyancy drive part and the second observation part. Both the first and second buoyancy drive parts are installed with a floating compartment, a drive compartment and a pressure housing each. A top oil bladder is provided in the floating compartment and a bottom oil bladder in the pressure housing. A drive pump assembly and a solenoid valve are installed in the drive compartment. The first and second observation parts are electrically connected to a controller each and each controller is electrically connected to a drive pump assembly and a solenoid valve.12-10-2015

Dalei Wang, Shanghai CN

Patent application numberDescriptionPublished
20120198409Two-Chip Co-Design And Co-Optimization In Three-Dimensional Integrated Circuit Net Assignment - A method of generating optimized input/output (IO) pair and inter-chip connection combinations for two chips is described. In this method, first and second designs for two chips can be specified. Then inter-chip signals based on the first and second designs can be specified. IO pairs for the first and second chips can be determined based on the inter-chip signals. At this point, electrical contacts between micro-bumps (MBs) of the first and second chips can be formed. Inter-chip paths with through-silicon-vias (TSVs) and MBs of the first and second chips can also be formed. At this point, the costs of assigning the IO pairs to the inter-chip paths can be determined. A cost matrix can be built based on these costs. A bipartite matching algorithm can be applied to the cost matrix to determine the optimized IO pair and inter-chip path combinations.08-02-2012

Dalei Wu, Cambridge, MA US

Patent application numberDescriptionPublished
20150179044Wireless Communication Systems for Underground Pipe Inspection - Wireless communication system for underground pipeline inspection. The system includes a plurality of sensor nodes moved by robots within the pipeline and each sensor node includes a radio transceiver. A plurality of spaced apart, above ground relay nodes are deployed along the pipeline, each relay node including a radio transceiver for communication with the sensor nodes. A remote monitoring center is provided in communication with the relay nodes, whereby a leak detected by a sensor node is communicated to the remote monitoring center. Each sensor node may further include a microcontroller, an accelerometer and a timer.06-25-2015

Dalei Zhang, Kunshan City CN

Patent application numberDescriptionPublished
20160104446SOURCE DRIVING CIRCUIT AND LCD DEVICE - The present invention provides a source driving circuit and an LCD device. The source driving circuit includes output channels, and each output channel includes a first switch element, a second switch element, a first output end, and a second output end. The first switch element and the second switch element are respectively connected to the first output end and the second output end. When the first switch element is turned on, the output channel outputs a display signal, and when the second switch element is turned on, the output channel provides recycled charges which are generated when the display signal is changed from a positive voltage to a negative voltage. The source driving circuit can recycle charges to make the most of charges generated when the display signals change from positive voltages to negative voltages and reduce power consumption of the LCD device.04-14-2016
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