Ying-Min
Ying-Min Chen, Hsinchu County TW
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20100152868 | MOTION CONTROL SERVO LOOP APPARATUS - A motion control servo loop apparatus, comprising: a feed-forward control module, and a proportional-integral-derivative (PID) control loop and a compensation adder. The feed-forward control module is capable of generating a feed-forward compensation. The PID control loop further comprises: a proportional control module, an integral control module and a derivative control module. The proportional control module is capable of generating a proportional compensation. The derivative control module is capable of generating a derivative compensation. The integral control module uses a digital differential analyzer (DDA) algorithm to perform integration for accumulated errors with respect to each sampling clock at each DDA pulse and thus output an accumulated error, which is then processed to generate an integral compensation. Thereafter, the compensation adder receives the feed-forward compensation, the proportional compensation, the integral compensation and the derivative compensation to calculate a position error compensation for a motor driver. | 06-17-2010 |
Ying-Min Chen, Hsinchu City TW
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20090282177 | APPARATUS AND METHOD FOR SIGNAL TRANSMISSION IN EMBEDDED SYSTEM - An apparatus and a method for signal transmission in an embedded system. The apparatus comprises: a master control chip, embedded in the embedded system and comprising a controller and a plurality of I/O pins; a plurality of slave chips; and a bus having one end coupled to the plurality of I/O pins and the other end coupled to one of the plurality of slave chips; wherein data or signals are bi-directionally transmitted. The method comprises steps of: transmitting a control signal from a master control chip to a slave chip; starting an operation by the slave chip after receiving the control signal; transmitting a data signal and a command signal to the master control chip from the slave chip; processing the data signal according to the command signal by the master control chip; and transmitting another control signal from the master control chip to the slave chip to terminate the operation. | 11-12-2009 |
Ying-Min Chen, Baoshan Township TW
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20120275454 | ASYNCHRONOUS MASTER-SLAVE SERIAL COMMUNICATION SYSTEM, DATA TRANSMISSION METHOD, AND CONTROL MODULE USING THE SAME THEREOF - An asynchronous master-slave serial communication system, a data transmission method, and a control module using the same are disclosed. The asynchronous master-slave serial communication system comprises a master control module and a slave control module. The master control module generates a check code according to an address information and a data information, and generates a data package according to the address information, the data information, the check code and the master clock signal. The slave control module generates a decoding data according to the data package and a slave clock signal, and generates the address information, the data information and the check code according to the decoding data. | 11-01-2012 |
Ying-Min Chen, Chutung TW
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20140143468 | REAL-TIME SAMPLING DEVICE AND METHOD THEREOF - A real-time sampling device for being coupled to a processing unit includes a first register, a second register, a third register, a trigger output element and a timer for outputting an interrupt signal. The first register externally receives and processes a first input signal to produce processed data. The second register retrieves the processed data from the first register upon receiving the interrupt signal, and the processing unit, upon receiving the interrupt signal, retrieves the processed data from the second register and performs calculation thereon to produce a processed data calculation value and temporarily store the processed data calculation value in the third register. The trigger output element outputs the processed data calculation value in the third register in real time upon receiving the interrupt signal. The real-time sampling device an be applied to digital control systems in order to perform real-time sampling on controlled subjects. | 05-22-2014 |
Ying-Min Liao, Chiayi County TW
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20090315531 | REFERENCE BUFFER CIRCUITS - A reference buffer circuit provides a reference voltage at an output node and comprises a closed-loop branch comprising an amplifier and first and second MOS transistors and an open-loop branch comprising a third MOS transistor. A positive input terminal of the amplifier receives an input voltage. A gate of the first MOS transistor is coupled to the output terminal of the amplifier, and a source is coupled to a negative input terminal of the amplifier. A gate of the second MOS transistor is coupled to the drain of the first MOS transistor, a source is coupled to a first voltage source, and a drain is coupled to the source of the first MOS transistor. A gate of the third MOS transistor is coupled to the output terminal of the amplifier, and a source is coupled to the output node. | 12-24-2009 |
Ying-Min Wang, Shanghai CN
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20090028103 | Multi-Carrier Hsdpa Channel Establishing Method and the Multi-Carrier Downlink Packet Data Transmitting Method - A method for establishing a multi-carrier HSDPA channel and method for transmitting multi-carrier downlink packet data are provided. The method for establishing a multi-carrier HSDPA channel includes: A. determining number of HSDPA channel resources of a cell; B. selecting N carriers in the cell according to the number of channel resources determined in step A, wherein the N carriers form the HSDPA channel resources; C. allocating the HSDPA channel resources to be HS-DSCHs, uplink and downlink control channels; D. allocating, by a network, an HS-DSCH to be used by a user terminal, one or more HS-SCCHs and one or more mate HS-SICHs to be monitored by the user terminal, when the user terminal initiates an HSDPA request and the request is allowed. The method may be applied to multi-carrier downlink packet data transmission, to enhance peak transmission rate of user packets, optimize the resources, thereby improving system throughput. | 01-29-2009 |