pa:(Wei-Hsu Chang)
Zero-crossing detection circuit and commutation device using the zero-crossing detection circuit
US13232086
[Wei-Hsu Chang, Pei-Cheng Huang, Hao-Yu Chang, Yen-Shin Lai, Kuo-Chung Lee, Jo-Yu Wang, Yu-Kuang Wu, Chih-Chang Chen, Shiue-Shr Jiang, Jen-Hung Chi]
TW New Taipei
A zero-crossing detection circuit and a commutation device using the zero-crossing detection circuit are provided. The zero-crossing detection circuit is adapted into a three-phase brushless DC (direct current) motor with first to third coils. One terminal of each of the first to third coils is electrically coupled together with each other. The detection circuit comprises a first selection circuit, a second selection circuit and a comparator. The first selection circuit and the second selection circuit are both electrically coupled to another terminals of the first to third coils, to obtain first to third terminal voltages, and output one of the first to third terminal voltages according to a selection signal. The comparator is configured for comparing an output of the first selection circuit and an output of the second selection circuit, to output a comparing result.
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Method and apparatus for dynamically adjusting a dead time of brushless direct current motor during a phase change
US13570973
[Haó-Yu Chang, Pei-Cheng Huang, Wei-Hsu Chang, Kuo-Chung Lee]
TW New Taipei
A method and apparatus for dynamically adjusting a dead time of a BLDC motor during a phase change detect the winding current of the BLDC motor during the dead time, and terminate the dead time when the winding current is detected to be substantially or close to zero. Thus, the method and apparatus can optimize the dead time and switch the BLDC motor between two phases at a zero-current point, without reducing the maximum rotation speed of the BLDC motor.
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Switching controller circuit and method for controlling flyback power converter
US16879692
[Wei-Hsu Chang, Ta-Yung Yang, Yu-Chang Chen, Chao-Chi Chen, Chuh-Ching Li, Li-Di Lo, Hao-Wen Chung]
TW Zhubei
A switching controller circuit for controlling a flyback power converter includes: a power transformer, a primary side controller circuit and a secondary side controller circuit. The power transformer is coupled between the input voltage and the output voltage in an isolated manner. The primary side controller circuit controls a primary side switch of the flyback power converter. The secondary side controller circuit generates a synchronous rectification (SR) signal, to control an SR switch of the flyback power converter. The SR signal includes an SR pulse and a soft switching (SS) pulse. The SR pulse controls the SR switch to be ON for an SR period, to achieve synchronous rectification at the secondary side. The SS pulse controls the SR switch to be ON for an SS period, to achieve soft switching of the primary side switch.
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Expression system for producing recombinant human erythropoietin, method for purifying secreted human erythropoietin and uses thereof
US09206826
[Li-Wei Hsu, Su-Chen Chang]
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The present invention provides an expression system for producing recombinant human erythropoietin (rhEPO) exhibiting biological activity and immunochemical properties of the native human erythropoietin (hEPO). Also provided is an improved method for purifying rhEPO from culture medium by two-step column chromatography.
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Imaging Lens and Electronic Apparatus Having the Same
US13617632
[Kuo-Wen Chang, Poche Lee, Sheng-Wei Hsu]
TW Taichung
An imaging lens includes first, second, third, fourth, and fifth lens elements arranged from an object side to an image side in the given order. The first, second, and third lens elements have positive, negative, and negative refractive powers, respectively. The third lens element has an image-side surface having a convex portion in a vicinity of a periphery of the third lens element. The fourth lens element has a concave object-side surface. The fifth lens element has an object-side surface that has a convex portion in a vicinity of an optical axis of the imaging lens, and an image-side surface that has a concave portion in a vicinity of the optical axis and a convex portion in a vicinity of a periphery of the fifth lens element.
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Method for making Mg-based intermetallic compound
US11953821
[Sheng-Long Lee, Jing-Chie Lin, Che-Wei Hsu, Cheng-Yu Chou, Yin-Chun Cheng, Chia-Wang Weng, Chien-Chang Chiang, Chien-Wei Chen]
TW Jhongli City
A method for making Mg(magnesium)-based intermetallic compound uses a thermal process during a melting process to produce largely the Mg-based intermetallic compound. The vapor pressure of Mg is high, thereby Mg is prone to be vaporized from a melt and a wrought solid alloy in the melting process of high temperature, for purifying the wrought Mg-based intermetallic compound. The method may simplify the process and devices for making the Mg-based intermetallic compound, and produce efficiently a larger of high purity Mg-based intermetallic compound.
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Switching mode power supply and method for determining a compensation factor thereof
US11892994
[Wei-Hsu Chang]
TW Hsinchu City
A switching mode power supply is configured to have two modes, a normal mode and a measure mode. To determine a compensation factor to compensate the switching mode power supply in the normal mode, the switching mode power supply is switched to the measure mode to measure a frequency response of the switching mode power supply, by which the switching mode power supply is accurately compensated and optimized.
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Optical proximity correction convergence control
US13368919
[Cheng-Cheng Kuo, Ching-Che Tsai, Tzu-Chun Lo, Chih-Wei Hsu, Hua-Tai Lin, Tsai-Sheng Gau, Wen-Chun Huang, Chih-Shiang Chou, Hsin-Chang Lee, Kuei Shun Chen]
TW Baoshan Township, Hsinchu County
A method of optical proximity correction (OPC) convergence control that includes providing a lithography system having a photomask and an illuminator. The method further includes performing an exposure by the illuminator on the photomask. Also, the method includes optimizing an optical illuminator setting for the lithography system with a defined gate pitch in a first direction in a first template. Additionally, the method includes determining OPC correctors to converge the OPC results with a target edge placement error (EPE) to produce a first OPC setting for the first template. The first OPC setting targets a relatively small EPE and mask error enhancement factor (MEEF)of the defined gate pitch in the first template. In addition, the method includes checking the first OPC setting for a relatively small EPE, MEEF and DOM consistency with the first template of the defined gate pitch in a second, adjacent template.
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Motor controller having multi-functional pin and control method thereof
US13847440
[Yu-Kuang Wu, Wei-Hsu Chang]
TW Zhubei
The present invention provides a motor controller having one or more multi-functional pins. The motor controller includes a plurality of pins but does not include a dedicated pin for transmitting a clock signal and a dedicated pin for transmitting a motor specification database setting signal, wherein the clock signal and the motor specification database setting signal are for setting motor specification data. The clock signal and the motor specification database setting signal are transmitted through two of the plural pins which are multi-functional function pins shared by other functions in a normal operation mode. In a motor specification database setting mode, these multi-functional function pins are used for transmitting the clock signal and the motor specification database setting signal. In the normal operation mode, these multi-functional function pins are used for other functions.
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Method for manufacturing circuit board for semiconductor package
US11543679
[Ming Chang, E-Tung Chou, Che-Wei Hsu, Tzu-Sheng Tseng]
TW Hsin-chu
A method for manufacturing a circuit board for a semiconductor package is proposed. The method includes providing a circuit board having a circuit layer formed on at least one surface thereof, wherein the circuit board is defined with at least one predetermined area, the circuit layer includes a plurality of electrically conductive pads and conductive wires for electroplating and being connected with the electrically conductive pads, the conductive wires are formed within the predetermined area, and a metal protecting layer formed to cover the electrically conductive pads and the conductive wires; removing the portion of the metal protecting layer and the conductive wires covered by the portion of the metal protecting layer to electrically disconnect the electrically conductive pads from the conductive wires; and removing the predetermined area to form a through hole in the circuit board. Thus, formation of burrs in the metal protecting layer can be prevented after formation of the through hole.
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