Ming-Tien
Ming-Tien Chang, Xinbei City TW
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20120231712 | METHOD OF MAKING A GRINDING DISK AND A GRINDING DISK - The invention relates to a method of making a grinding disk, comprising the steps of: providing a cap; providing an abrasive part; placing the cap on the abrasive part to form an assembly; holding the assembly and injecting a molding material into a space between the cap and the abrasive part and into the abrasive part to bond the cap and the abrasive part. A grinding disk made by the method is also disclosed. | 09-13-2012 |
Ming-Tien Chang, Fen-Yuan Hsiang TW
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20110197572 | SMART EXHAUST GAS FLOW CONTROL APPARATUS - A smart exhaust gas flow control apparatus comprises at least a control unit, a solenoid valve, a vacuum auxiliary storage tank, a valve located on an auxiliary exhaust pipe, a sensor set and an operation interface. The control unit receives control commands from the operation interface to control opening and closing of the valve to select an exhaust gas path according to requirements to discharge exhaust gas, thus can avert traffic jam caused by too slow of vehicle speed and can adjust exhaust gas flow amount according to different road conditions. | 08-18-2011 |
Ming-Tien Chien, Kaohsiung City TW
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20150362156 | MODULAR LED EXPLOSION-PROOF LAMP - A modular LED explosion-proof lamp usable in any environment includes a body, a wiring box assembly, an illumination unit and a positioning assembly. The body includes a first coupling port, a second coupling port and a third coupling port. The wiring box assembly is connected to the first coupling port, or the second coupling port or the third coupling port. The illumination unit is connected to the first coupling port, or the second coupling port or the third coupling port. The positioning assembly is connected to the first coupling port, or the second coupling port or the third coupling port. Hence the wiring box assembly, the illumination unit or the positioning assembly can be selectively connected to the first coupling port, or the second coupling port or the third coupling port. Thus the modular LED explosion-proof lamp can be assembled in a plurality of implementation fashions. | 12-17-2015 |
Ming-Tien Chien, Kaohsiung TW
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20150285480 | LED EXPLOSION-PROOF LAMP - An LED explosion-proof lamp comprises a holding module, an electric control module, a heat dissipating module, a light emitting module, a covering module and an explosion-proof module. The holding module includes a body and a housing space formed inside the body with an opening. The body includes at least one bracing arm extended from the outer surface thereof horizontally or inclined against the body. The bracing arm has a coupling portion to couple with another LED explosion-proof lamp or for anchoring. The explosion-proof module is disposed in the coupling portion. The invention thus formed can be assembled and installed easily, and coupled in series with other LED explosion-proof lamps at various angles, hence can make the lamp set be configured in greater diversity and versatility. | 10-08-2015 |
20150308672 | EXPLOSION-PROOF LAMP CABLE GLAND - An explosion-proof lamp cable gland is disposed in a channel of a coupling portion of an explosion-proof lamp for a cable to pass through, and includes a first explosion-proof member disposed at one end of the channel remote from an opening of the coupling portion and a compact member disposed at another end of the channel close to the opening of the coupling portion to connect to the first explosion-proof member. The explosion-proof lamp cable gland of the invention thus formed is simpler in structure and smaller in size, and can achieve explosion-proof effect as a conventional connector that is bulkier in size. Thus not only the cost is lower, but serial connection among the explosion-proof lamps also can be accomplished easily to make application versatile. | 10-29-2015 |
Ming-Tien Lin, Hsinchu TW
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20090051639 | Method and device for reducing voltage stress at bootstrap point in electronic circuits - A discharging device is used to reduce the voltage level at a bootstrap point in an electronic circuit such as a shift register circuit. In such a circuit, a first transistor in a conducting state receives an input pulse and conveys it to the gate terminal of a second transistor, causing the second transistor to be in a conducting state. This gate terminal is known as a bootstrap point. After receiving the input pulse, an output pulse is produced at one drain/source terminal of the second transistor. During the time period of the output pulse, the first transistor is in a non-conducting state and the voltage level at the bootstrap point is high, imposing a stress upon the first transistor. A discharging circuit consisting of at least one transistor is coupled to the bootstrap point in order to reduce the voltage level at the output pulse period. | 02-26-2009 |
20090284483 | Display Device and Method Having Sensing Function - A display device and method having a sensing function is described. The device includes a liquid crystal display (LCD) panel and plural sense lines. The LCD panel includes a plurality of data lines and a plurality of gate lines. Each of the data lines is connected electrically to a plurality of left pixels and a plurality of right pixels. The sense line is disposed between each two adjacent data lines, and each of the sense lines is configured to be parallel to the data lines and perpendicular to the gate lines. The sense lines are used to transmit touch signals. | 11-19-2009 |
20100067646 | SHIFT REGISTER WITH EMBEDDED BIDIRECTIONAL SCANNING FUNCTION - A shift register comprises a plurality of stages, {S | 03-18-2010 |
Ming-Tien Lin, Tu-Cheng TW
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20130048349 | TRANSPARENT CONDUCTIVE FILM AND TOUCH PANEL USING THE SAME - A transparent conductive film includes at least one continuous transparent conductive layer and a number of transparent conductive stripes spaced from each other and extending substantially along a low impedance direction. The transparent conductive stripes are disposed on and electrically contact a surface of the at least one transparent conductive layer. A resistivity of the transparent conductive film in the low impedance direction is less than the resistivity in any other direction. A touch panel includes the transparent conductive film. | 02-28-2013 |
20130048353 | TRANSPARENT CONDUCTIVE FILM AND TOUCH PANEL USING THE SAME - A transparent conductive film a number of first transparent conductive stripes and a number of transparent conductive stripes electrically connected with each other. The first conductive stripes are spaced from each other and extend substantially along a first direction, and the second transparent conductive stripes are spaced from each other and extend substantially along a second direction. The plurality of second transparent conductive stripes are disposed between and electrically connected to adjacent first transparent conductive stripes. The first transparent conductive stripes and the second conductive stripes are arranged in patterns such that the transparent conductive film has an anisotropic impedance. One of the first direction and the second direction is a low impedance direction. A resistivity of the transparent conductive film in the low impedance direction is smaller than the resistivity of the transparent conductive film in any other direction. | 02-28-2013 |
20130048354 | TRANSPARENT CONDUCTIVE FILM AND TOUCH PANEL USING THE SAME - A transparent conductive film includes a number of first transparent conductive stripes extending along a first direction and a number of second transparent conductive stripes extending along a second direction and intersecting the number of first transparent conductive stripes. The first conductive stripes are spaced from each other and extend substantially along a first direction. The second transparent conductive stripes are spaced from each other and extend substantially along a second direction. The first transparent conductive stripes are electrically connected with the second transparent conductive stripes. The first transparent conductive stripes and the second conductive stripes are arranged in patterns such that the transparent conductive film has an anisotropic impedance. The first direction is a low impedance direction. A resistivity of the transparent conductive film in the low impedance direction is smaller than the resistivity of the transparent conductive film in the second direction and any other direction. | 02-28-2013 |
Ming-Tien Lin, Taoyuan County TW
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20140027260 | ELECTRONIC APPARATUS, TOUCH COVER AND FABRICATING METHOD THEREOF - A touch cover including a substrate, a sensing circuit and a grounding circuit is provided. The substrate has an inner plane and an inner side surface extending from the inner plane. The inner plane and the inner side surface are not coplanar. The sensing circuit is disposed on the inner plane. At least a portion of the grounding circuit is disposed on the inner side surface. An electronic apparatus with the touch cover and a fabricating method of the touch cover are also provided. | 01-30-2014 |
20140092625 | DISPLAY MODULE AND HANDHELD ELECTRONIC DEVICE - A display module is provided. The display module includes a frame, a light guide plate, a light source device, a display panel and an optical film. The light guide plate is accommodated within the frame. The light guide plate has a recess. The light source device is disposed between the frame and the light guide plate. The display panel is disposed on the recess and attached to the light guide plate to seal the recess. The optical film is located within the recess. A handheld electronic device having said display module is also provided. | 04-03-2014 |
20140104185 | TOUCH DISPLAY DEVICE AND HANDHELD ELECTRONIC DEVICE - A touch display device includes a display panel and a touch panel. The touch panel includes a first flexible substrate and a sensing circuit. The first flexible substrate includes a body disposed on the display panel and an extension portion located outside the display panel, in which the extension portion is connected to the body and adapted to bend relatively to the body. The sensing circuit includes a plurality of first connection lines disposed on the first flexible substrate. In addition, the disclosure also discloses a handheld electronic device with the above-mentioned touch display device. | 04-17-2014 |
20140111910 | HANDHELD ELECTRONIC DEVICE AND METHOD FOR ASSEMBLING DISPLAY PANEL THEREOF - A handheld electronic device includes a body, a transparent cover, and a display panel. The body has a display opening. The transparent cover is disposed on the display opening. The transparent cover includes a first surface facing outside of the body and a second surface opposite to the first surface, and the second surface includes a curved surface. A curvature radius of the first surface is different from a curvature radius of the second surface. The display panel bends along the second surface and is attached to the second surface. Moreover, a method for assembling the display panel of the handheld electronic device is provided. | 04-24-2014 |
20140168947 | DISPLAY MODULE AND ELECTRONIC DEVICE - A display module includes a display panel, a first polarized plate, a second polarized plate, a backlight module, a frame and an adhesive tape. The display panel has a first surface and a second surface opposite to the first surface. The first polarized plate is disposed on the first surface, in which the first end of the first polarized plate extends beyond the display panel. The second polarized plate is disposed on the second surface. The backlight module is disposed under the second polarized plate. The frame surrounds the display panel and carries the backlight module. The adhesive tape is adhered to the first end of the first polarized plate and a side surface of the frame. In addition, an electronic device with the above-mentioned display module is also disclosed. | 06-19-2014 |
20150015769 | HANDHELD ELECTRONIC APPARATUS AND IMAGE CAPTURING APPARATUS AND FOCUSING METHOD THEREOF - A handheld electronic apparatus, an image capturing apparatus and focusing method thereof are provided. The image capturing apparatus includes a main image capturer, an auxiliary image capturer and a controller. The main image capturer performs an image capturing operation on a target object according to a detection focusing distance. The auxiliary image capturer is disposed adjacent to the main image capturer. The auxiliary image capturer performs a plurality of focusing operations on the target object according to a plurality of focusing distances, and generates a plurality of image contrast values. The controller controls the main image capturer and the auxiliary image capturer. The controller selects one of the focusing distances to be the detection focusing distance according to the image contrast values. | 01-15-2015 |
20150022716 | IMAGE PROCESSING DEVICE AND METHOD FOR CONTROLLING THE SAME - An image processing apparatus includes a camera module, first and second pixel extraction interfaces, an image processing module, and a focus controller. The camera module includes a lens, a sensor aligned with the lens along a direction, and a focus actuator connected to the lens. The first and the second pixel extraction interfaces are connected to the sensor to acquire a first image at a first frame rate and a second image at a second frame rate, respectively; the second frame rate is greater than the first frame rate. The image processing module determines depth information according to the second image, receives the first image and outputs a corresponding image file. The focus controller is connected between the image processing module and the focus actuator to drive the focus actuator according to the depth information and to adjust a relative distance between the sensor and the lens. | 01-22-2015 |
Ming-Tien Lin, Hsinchu City TW
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20110310032 | PIXEL ARRAY AND DISPLAY PANEL HAVING THE SAME - A pixel array including a plurality of scan lines and a plurality of data lines disposed crossing the scan lines to define a plurality of sub-pixel regions; at least a controlling structure, disposed in one of the sub-pixel regions and electrically connected to one of the scan lines and data lines; a plurality of sensing signal lines disposed parallel with the data lines and crossing the scan lines to define a plurality of regions having at least one first sub-region and second sub-region; at least one sensing-signal readout device disposed in the first sub-region and electrically connected with one of the scan lines and sensing signal lines; and at least one first sensing pad disposed in the second sub-region and electrically connected to the sensing-signal readout device in the second sub-region. The numbers of the sensing-signal readout devices electrically connected to the respective scan lines are the same. | 12-22-2011 |
Ming-Tien Lin, Hsin-Chu TW
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20100059758 | PIXEL STRUCTURE OF A DISPLAY PANEL - A tri-gate pixel structure includes three sub-pixel regions, three gate lines, a data line, three thin film transistors (TFTs), three pixel electrodes, and a common line. The gate lines are disposed along a first direction, and the data line is disposed along a second direction. The TFTs are disposed in the sub-pixel regions respectively, wherein each TFT has a gate electrode electrically connected to a corresponding gate line, a source electrode electrically connected to the data line, and a drain electrode. The three pixel electrodes are disposed in the three sub-pixel regions respectively, and each pixel electrode is electrically connected to the drain electrode of one TFT respectively. The common line crosses the gate lines and partially overlaps the three gate lines, and the common line and the three pixel electrodes are partially overlapped to respectively form three storage capacitors. | 03-11-2010 |
Ming-Tien Lin, Taipei County TW
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20090128756 | LIQUID CRYSTAL DISPLAY PANEL AND METHOD OF FABRICATING THE SAME - A liquid crystal display panel having a display area comprises a first substrate, a second substrate, a sealant, a liquid crystal layer, and a light-shielding layer. The sealant is disposed between the first substrate and the second substrate. The liquid crystal layer is disposed in a space defined by the first substrate, the second substrate and the sealant. The light shielding layer is disposed on a first outer surface of the first substrate or a second outer surface of the second substrate, wherein the light shielding layer and the display area are not overlapped. In addition, the liquid crystal display panel further comprises a protection layer. Since the protection layer encapsulates the light-shielding layer, out-diffusion of dye within the light-shielding layer is effectively prevented. | 05-21-2009 |
Ming-Tien Lin, Nantou City TW
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20110224626 | SAFETY NEEDLE CAP - A safety needle cap has a body and at least one holding segment. The body is tubular and has a closed end, an open end, a chamber and a bending segment. The chamber is defined in the body between the closed end and the open end to contain a needle. The bending segment is formed on an external surface of the body to make the body bendable. The at least one holding segment is formed on the body and each of the at least one holding segment has an extending stem and a pulling tab. The extending stem is formed on the body and has a free end opposite to the body and connected to the pulling tab. In use, the extending stem can prevent a tip of the needle from injuring a hand of a user when the needle is removed from or replaced in the body of the safety needle cap. | 09-15-2011 |
Ming-Tien Tsai, Taichiu TW
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20090263008 | Method For Recognizing Dice Dots - A method recognizing dice dots comprises the steps: projecting at least one dice with a plurality of different angle light sources; capturing a plurality of images of the dice according to the projecting times of the light sources on the dice; and recognizing dice dots based on the images through calculation methods. When recognized results obtained through the calculation methods are judged same by the recognizing module the dice dots are confirmed and accepted. If the recognized results done through the calculation methods are different, the dice is rolled anew. | 10-22-2009 |
20090264186 | Apparatus For Recognizing Dice Dots - An apparatus for recognizing dice dots includes a dice cup to hold at least one dice, and a light source module and a capturing module located in the dice cup. The light source module generates a plurality of light sources to project to the dice. The capturing module captures images of the dice a number of times according to the light sources projection times to generate a plurality of image information. The image information are sent to a recognizing module which stores a plurality of calculation methods to recognize dice dots according to the image information. When recognized results obtained through the calculation methods are judged same by the recognizing module the dice dots are confirmed and accepted. If the recognized results done through the calculation methods are different, the dice is rolled anew. | 10-22-2009 |