Yang, Miaoli
Changming Yang, Miaoli TW
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20100170704 | FABRIC ABLE TO FORM ELECTRONIC ELEMENT - A cloth material that can form an electronic component includes a cloth material layer, which includes at least one crevice; and a conductive area included in the cloth material layer, wherein a shape of the crevice and a shape of the conductive area change with an outside force. A cloth material that can form an electronic component includes two cloth material layers stacked to form a crevice therebetween; and a conductive area located on the two cloth material layers spanning from one side of the crevice to the other side of the crevice, wherein a shape of the crevice and the conductive area changes with an outside force. | 07-08-2010 |
Chang-Ming Yang, Miaoli TW
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20080230363 | Electronic Device and Method of Using the Same - An electronic device which includes a resilient piece, base plate and electronic source. The upper conductor is located on the resilient piece; the base plate is connected to the resilient piece, with a space between the two. The lower conductor is located on the base plate, and there is a crevice between the lower conductor and the upper conductor. The electronic source electrically connected to the upper conductor and the lower conductor. The sensor device is located on the base plate. Utilizing this structure, the electronic device can, based on the user's needs, perform testing of the subject's physiological status or test a specific site that is pressed, be used as assist for medical equipment, exercise equipment or communications facilities. | 09-25-2008 |
20090024004 | Method and Apparatus for Monitoring Body Temperature, Respiration, Heart Sound, Swallowing, and Medical Inquiring - The invention provides a method as well as a device for the monitoring of body temperature, respiration, heart sound, swallowing, and offering medical inquiries. It comprises a sensor, a monitoring device, and medical devices. Installing proper sensors on the user's body and making the users wear necessary medical devices. The sensors attached to the user's body will be sensing the physical conditions and send the data collected to the monitoring device for security and protection. It can also allow the user or the medical personnel conduct two-way inquiries or treatment through displaying device, or the monitoring device can control the medical devices and assist the treatment. Furthermore, the data can be transferred to the medical system in the distant end and the user's data and be updated immediately and reduce errors happened in keying in the data. Doctors will be able to proceed with medical treatment according to the data and prevent abrupt accidents in patients as well as further protecting the security of the user. | 01-22-2009 |
20090112160 | Automatic Feeding/Phlegm Extractor Device - An automatic feeding/sputum suction device, which mainly comprises a feeding syringe or sputum suction device, an air pump, a liquid food replenishing drum or oxygen/water supply device, three-way control valve, feeding duct or sputum suction duct, controller and detector strap, wherein the three-way control valve is connected with liquid food replenishing drum (oxygen/water supply device), feeding syringe (sputum suction device) and feeding duct (sputum suction duct). | 04-30-2009 |
20090149721 | System for Monitoring, Analyzing and Auto-feedback of Health Conditions - The invention provides a system for monitoring, analyzing and auto-feedback of health conditions. The system can analyze the conditions of a user by monitoring the distribution of fat, muscle activities, and changes of poses. The system can further suggest or instructs the user to do suitable exercise and adjust to correct poses or behaviors, to reduce the accumulation of fat and to avoid the withering of muscles. The system can also analyze the psychological conditions to provide better assistance of health. Furthermore, the system includes a sensor, a near-end monitoring center, and a distal-end monitoring center. The sensor can detect the physical and psychological conditions of the user, and transfer related information to the near-end monitoring center, which can monitor, analyze, and display the conditions and either send feedback or provide instructions to the user. Additionally, the user can interact with the distal-end monitoring center via the near-end monitoring center. | 06-11-2009 |
20090216199 | Retained Needle Structure of Non-radial Operating Structure - A retained needle structure of a comprises a syringe needle with one or more fastening portion, a catheter with a cannula having a flexible tube, as well as a syringe cover with an aperture and gliding portion. The syringe needle has an inserting portion which is axially operated by users to enhance safety practice in clinical use. First design is the sliding slot has a deflected slant portion at the distal end. When the fastening portion is at the rear end of sliding slot, the injection needle is already inside of syringe cover. At the same point, body of the syringe needle is deflected laterally from the center of the syringe cover. | 08-27-2009 |
20100296257 | CLOTH COMPRISING SEPARABLE SENSITIVE AREAS - A cloth material with separate conductive areas includes at least one first layer comprising at least one first conductive area; and at least one extension part, which includes at least one accessory and at least one connecting part connected to the accessory, wherein the extension part comprises at least one second conductive area, which corresponds in location to the first conductive area on the first layer, wherein the first conductive area and the second conductive area are inductively coupled, a condition of inductive coupling is adapted to be changed by an outside force. | 11-25-2010 |
20110282164 | SENSING DEVICE - A sensing device comprises a substrate material layer and a plurality of sensors provided on the substrate material layer. The plurality of sensors is electrically connected to form a loop. The loop has two output ends. There is a loop output value between the two output ends. The loop output value varies when the sensors are subjected to an external force. Each sensor has one induction value. The induction value of each sensor is different from each other. A total induction value of any one or more sensors is different from a total induction value of the other one or more sensors. | 11-17-2011 |
20130066168 | METHOD AND SYSTEM FOR GENERATING PHYSIOLOGICAL SIGNALS WITH FABRIC CAPACITIVE SENSORS - A system for generating physiological signals using a cloth capacitive sensor, includes a cloth, at least one conductive area arranged on the cloth, a signal circuit; a capacitive sensor formed between the cloth and a human body; a resistor R, a capacitor C, an inductor L, an operational amplifier, a diode, a Schmitt trigger, CMOS, a transistor, or an IC, connected with the cloth capacitive sensor to form a charge and discharge circuit to change a signal range of frequency, cycle, voltage or current; wherein when a force, pressure, tensile force, torsion or tension is applied between the human body and the cloth, the capacitance changes, the circuit sends a signal, and the system receives the change in capacitance between the conductive cloth and the human body; wherein the change is represented by a frequency, cycle, voltage or current change. | 03-14-2013 |
20140343392 | OBJECT, METHOD, AND SYSTEM FOR DETECTING HEARTBEAT OR WHETHER OR NOT ELECTRODES ARE IN PROPER CONTACT - The invention discloses an object, a method and a system for detecting heartbeat or whether an electrode is in good contact. The heartbeat is detected by arranging multiple textile electrodes on the textile, using ECG equipotential line diagram, considering interference caused of human movement, and designing a separating electrode structure, electrode position, area and lead layout in an innovative manner; the dry electrode or capacitive coupling electrode is selected along with the change of environmental state so as to pick up the ECG signals; the contact between the electrode and the human body can be detected whether it is in a good state or not by measuring the noise, body surface impedance, muscle impedance and the like; in addition, the posture and action of human body can be speculated according to the wave mode and noise of the ECG signals. | 11-20-2014 |
Chih-Wen Yang, Miaoli TW
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20090189670 | LEVEL SHIFTER WITH REDUCED POWER CONSUMPTION AND LOW PROPAGATION DELAY - A level shifter includes a Not gate coupled to a signal input and operable between a first high level and a low level; a first PMOS transistor coupled to a second voltage source and a control end; a first NMOS transistor coupled to the first PMOS transistor, a Not-gate output end and a reference voltage; and a control circuit coupled to the signal input, the Not-gate output end and the second voltage source. When the signal input and the Not-gate output end are at the first high level and the low level, respectively, the first PMOS transistor is turned on so that the signal output is at a second high level; and when the signal input and the Not-gate output end are switched contrarily, the first PMOS transistor is turned off and the signal output is at the low level. | 07-30-2009 |
Chung-Da Yang, Miaoli TW
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20150244045 | BATTERY MODULE - A battery module includes a casing, and a battery assembly, a frequency converting assembly, and a heat dissipation assembly received in the casing. The casing defines a first vent and a second vent. The casing includes a top portion and an opposite bottom portion. The first vent and the second vent are respectively adjacent to the bottom portion and the top portion. The frequency converting assembly is electrically connected to the battery assembly. The heat dissipation assembly includes a fan secured to the casing and facing the second vent. The fan is configured to rotate so as to draw air into the casing via the first vent, cause the air to flow through the battery assembly and the frequency converting assembly, and draw the air out of the casing via the second vent. | 08-27-2015 |
20150244046 | BATTERY MODULE - A battery module includes a casing, and a battery assembly, a frequency converting assembly, and a heat dissipation assembly received in the casing. The heat dissipation assembly includes a heat-conducting unit and a heat-dissipating unit. The heat-dissipating unit includes a first dissipation member independent from the battery assembly and the frequency converting assembly. The battery assembly and the frequency converting assembly are coupled to the first dissipation member via the heat-conducting unit to cause heat generated by the battery assembly and the frequency converting assembly to be conducted to the first dissipation member. | 08-27-2015 |
Chung-Shi Yang, Miaoli TW
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20100248297 | PARTICLES AND MANUFACTURING METHODS THEREOF - Particles and manufacturing methods thereof are provided. The manufacturing method of the particle includes providing a precursor solution containing a precursor dissolved in a solution, and irradiating the precursor solution with a high energy and high flux radiation beam to convert the precursor to nano-particles. Particles with desired dispersion, shape, and size are manufactured without adding a stabilizer or surfactant to the precursor solution. | 09-30-2010 |
20110044900 | METHOD FOR TREATING AND/OR DIAGNOSING TUMOR BY GOLD PARTICLES COATED WITH A POLYMER - A method for treating and/or diagnosing a tumor is provided. The method includes administrating an effective amount of gold particles to a subject in need thereof, and observing the distribution of the gold particles in the subject, wherein the gold particles are coated with a polymer, and the gold particle has a size of about 6.1±1.9 nm. | 02-24-2011 |
Chun-Hsin Yang, Miaoli TW
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20110031898 | DRIVING APPARATUS AND METHOD FOR ADJUSTING DRIVE VOLTAGE - A driving apparatus includes a voltage transforming unit and a detector. The driving apparatus is used for supplying a drive voltage to a load. The voltage transforming unit is used for transforming a direct current (DC) voltage to the drive voltage. The detector is connected to the load for detecting a forward voltage across the load to generate a detecting voltage; wherein the detector compares the detecting voltage with a first reference voltage. If the detecting voltage is smaller than the first reference voltage, the detector generates a first feedback signal; the voltage transforming unit increases the drive voltage according to the first feedback signal, the detecting voltage is defined by subtraction of the forward voltage from the drive voltage. | 02-10-2011 |
20110057575 | DRIVING DEVICE AND ELECTRONIC APPARATUS USING THE SAME - A driving device includes a dimmer, a rectifying-filtering unit, a rectifying-dividing unit, a control unit, and a voltage transforming unit. The dimmer is used for receiving an alternating current (AC) voltage from a power supply, and generating a primary voltage for controlling the brightness of a luminous element. The rectifying-filtering unit is used for rectifying and filtering the primary voltage to generate a secondary voltage. The rectifying-dividing unit is used for rectifying and dividing the primary voltage to generate a detecting voltage. The control unit is used for receiving the secondary voltage, and generating a pulse voltage whose duty cycle is variable with the detecting voltage. The voltage transforming unit is used for transforming the secondary voltage to a driving voltage for driving the luminous element to emit light according to the pulse voltage. A related electronic apparatus is also provided. | 03-10-2011 |
Hsi-Wen Yang, Miaoli TW
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20100215062 | WAVELENGTH OR PULSEWIDTH TUNABLE MODE-LOCKED FIBER LASER SYSTEM - A wavelength-tunable mode-locked fiber laser system is provided and includes an optical cavity. The optical cavity outputs an output laser pulse having an adjustable principal wavelength, and includes a short-wavelength-pass filter, a polarization controller, an optical gain fiber and a fiber. The short-wavelength-pass filter produces an intracavity laser pulse. The fiber has a length, and connects the short-wavelength-pass filter, the polarization controller and the optical gain fiber in series. The optical cavity has an anomalous dispersion range and a net group-velocity dispersion being within the anomalous dispersion range due to the length of the fiber. The optical cavity causes the intracavity laser pulse to propagate therein for providing the output laser pulse, providing a first laser pulse, a second laser pulse and a third laser pulse to the short-wavelength-pass filter, the polarization controller and the optical gain fiber respectively, and adjusting the intracavity laser pulse. | 08-26-2010 |
20100220386 | CLADDING-PUMPED EVANESCENT GAIN OPTICAL FIBER - A cladding-pumped gain optical fiber is provided. The cladding-pumped gain optical fiber includes a core transmitting a signal light; a first cladding covering the core and having an optical-gain dopant; a second cladding covering the first cladding for transmitting a pumping light; and a third cladding covering the second cladding for reflecting the pumping light. | 09-02-2010 |
Tahone Yang, Miaoli TW
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20120043657 | METHOD FOR FABRICATING CONDUCTIVE LINES - Methods for fabricating conductive metal lines of a semiconductor device are described herein. In one embodiment, such a method may comprise depositing a conductive material over a substrate, and depositing a first barrier layer on the conductive layer. Such a method may also comprise patterning a mask on the first barrier layer, the pattern comprising a layout of the conductive lines. Such an exemplary method may also comprise etching the conductive material and the first barrier layer using the patterned mask to form the conductive lines. In addition, a low temperature post-flow may be performed on the structure. The method may also include depositing a dielectric material over and between the patterned conductive lines. | 02-23-2012 |
Tsang-Chiang Yang, Miaoli TW
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20130170181 | LED LAMP - An LED lamp includes a socket and a shallow dish-shaped body detachably connected to the socket. The body includes a rear cover, a transparent front cover, a lamp board, a number of LED light sources, a driving circuit board, and a fixing member. The front cover has a honeycombed pattern including a plurality of cells. The LED light sources are mounted on the lamp board facing an inside of the front cover, and each LED light source is configured to emit a light beam toward the front cover so as to create a light spot in a corresponding cell on the front cover. The driving circuit board is electrically connected to the socket and the lamp board, and is configured for driving the LED light sources to emit light beams. The fixing member is configured for fixing the rear cover, the driving circuit board and the lamp board together. | 07-04-2013 |