Po-Fu
Po-Fu Chou, Hsinchu Hsien TW
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20090206172 | MICRO-SPRAY SYSTEM RESONANCE FREQUENCY MODULATION METHOD AND DEVICE - A micro-spray system resonance frequency modulation method and device designed to minimize resonance frequency drift during atomization involves using a resonance frequency modulation unit for modulating resonance frequency and nodes, controlling and calibrating resonance frequency, and performing real-time measurement and correction to prevent operating frequency from drifting beyond a preferred operating frequency range, with a view to increasing spray flow and spray area, minimizing effects of ambient factors, and overcoming drawbacks of prior art. | 08-20-2009 |
Po-Fu Hsu, Kaohsiung City TW
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20140144581 | METHOD FOR MANUFACTURING A MAGNET-CONDUCTIVE DEVICE AND APPARATUS THEREOF - A method for manufacturing magnet-conductive device includes a filling step and an adhering step. The filling step includes providing a glue by a glue dispenser and contacting the glue with a first magnet-conductive plate to make the glue adhered to a lower surface of the first magnet-conductive plate. The adhering step includes making the lower surface of the first magnet-conductive plate face toward a second magnet-conductive plate, making the first magnet-conductive plate and the second magnet-conductive plate stackable from each other and adhering the first magnet-conductive plate and the second magnet-conductive plate via the glue. Eventually, by repeatedly performing the filling step and the adhering step, the desirable stacking quantity is achieved to form a magnet-conductive device. | 05-29-2014 |
Po-Fu Huang, Hsin-Chu TW
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20120242622 | TOUCH MODULE - A touch module includes a panel device, an outer frame, and an optical sensor. The panel device includes an array substrate and a display panel having a touch surface. The array substrate is electrically connected to the display panel. The outer frame is disposed on the panel device. The optical sensor is disposed between the panel device and the outer frame, including a wire, at least one lens, a photosensitive chip, and a reflection mirror. The wire is formed on the array substrate. The lens is disposed between the display panel and the outer frame for guiding light transmitted from the touch surface. The photosensitive chip is electrically connected to one end of the wire. The reflection mirror is disposed above the photosensitive chip for reflecting the light guided by the lens to the photosensitive chip. | 09-27-2012 |
20130106807 | Three-dimensional Image Switching Device and Three-dimensional Image Display Device Thereof | 05-02-2013 |
20130120329 | DISPLAY PANEL - A display panel includes a display area, a non-display area, a plurality of signal pads and a passive covering layer. The non-display area is adjacent to the display area. The signal pads are disposed within the non-display area. The passive covering layer is disposed on the display area and extends to cover at least a portion of the non-display area. The passive covering layer has a first thickness within the display area. The passive covering layer has a second thickness within the non-display area. The first thickness is greater than the second thickness. | 05-16-2013 |
20140104794 | ELECTRONIC ASSEMBLY - An electronic assembly includes a first substrate, at least one first conductive pad and multiple second conductive pads. The first substrate comprises a base layer and at least one conductive circuit layer. The at least one conductive circuit layer is disposed on the base layer. The at least one first conductive pad is disposed on the first substrate. The first conductive pad is electrically insulated from the conductive circuit layer. The first conductive pad includes multiple first holes. The second conductive pads are disposed on the first substrate. The second conductive pads are electrically connected to the conductive circuit layer. | 04-17-2014 |
Po-Fu Wu, Taoyuan County TW
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20150077719 | PROJECTOR - A projector includes an apparatus casing, a light source module, a flow generating device, a sensing module, and a power module. The light source module is disposed inside the apparatus casing and includes a light-emitting part and a lampshade surrounding the light-emitting part. The flow generating device can generate an air flow for dissipating heat by the light source module. The sensing module is disposed in the apparatus casing and includes a thermo-sensitive component disposed near the lampshade and located in a flowing path of the air flow. The power module is disposed in the apparatus casing and electrically connected to the light source module and the sensing module. The power module selectively stops powering the light source module according to an electric parameter of the thermo-sensitive component. Thereby, the invention protects the projector from being overheated by use of the thermo-sensitivity of the thermo-sensitive component. | 03-19-2015 |