Sheng-Wei
Sheng Wei Chen, Kaohsiung City TW
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20130162214 | CAPACITOR ACTIVE BALANCING DEVICE WITH HIGH-VOLTAGE DIFFERENTIAL AND METHOD THEREOF - A capacitor active balancing device with high-voltage differential and the method thereof are disclosed. A plurality of cells are connected in series for charging an energy storage unit under a high-voltage differential. The energy storage unit discharges cells of lower power to achieve battery balancing. The mechanism helps improve the efficiency of battery balancing. | 06-27-2013 |
20130164572 | BATTERY DEVICE WITH VERIFICATION FUNCTION, ANTI-THEFT METHOD AND PACKAGING METHOD THEREOF - A battery device with a verification function, an anti-theft method and a packaging method thereof are disclosed. By detecting electrical characteristics of a battery, an enabling or disable signal is generated. When the enable signal is generated, a transmission unit is triggered for verification as well as obtaining a verification result. When the verification result fails, the self-discharge rate of the battery is increased. This mechanism helps improving the anti-theft function of the battery. | 06-27-2013 |
20140095090 | RESIDUAL BATTERY CAPACITY ESTIMATION SYSTEM THAT ADDS TWO MUTUALLY PERPENDICULAR COMPONENTS AND THE METHOD THEREOF - A residual battery capacity estimation system that adds two mutually perpendicular components and the method thereof are provided. The mechanism detects the battery voltage, current and temperature as the sensing parameters, and uses the preset electrical characteristic parameters and capacity change to look up a table for the battery dynamic internal resistance component. The mechanism uses the sensing parameters and the Coulomb counting method to calculate the component of the battery Coulomb counting charge. Afterwards, the battery dynamic internal resistance component and the battery Coulomb counting capacity component are then added to calculate the actual residual power of the battery. The mechanism achieves the goal of increasing the accuracy in estimating the battery residual power. | 04-03-2014 |
Sheng Wei Chen, Taichung TW
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20160085836 | SYSTEM FOR ACHIEVING NON-INTERRUPTIVE DATA RECONSTRUCTION - A system for achieving non-interruptive data reconstruction is disclosed. The system includes a source storage, a target storage, a server, a traffic modeling unit and at least one data moving service unit. With the help of traffic modeling unit, a period of time of low access can be estimated. Data reconstruction (copying or moving) can be carried on during the period of time. Thus, non-interruptive data reconstruction can be done. | 03-24-2016 |
Sheng Wei Hsu, Taichung City TW
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20130258164 | MOBILE DEVICE AND OPTICAL IMAGING LENS THEREOF - Present embodiments provide for a mobile device and an optical imaging lens thereof. The optical imaging lens comprises five lens elements positioned in an order from an object side to an image side. Through controlling the convex or concave shape of the surfaces of the lens elements to allow the thickness of the second lens element and the sum of all air gaps between all five lens elements along the optical axis satisfying the relation: 0.2010-03-2013 | |
20140118848 | IMAGING LENS HAVING FIVE LENS ELEMENTS AND ELECTRONIC APPARATUS HAVING THE SAME - An optical imaging lens includes five lens elements. The first lens element has a positive refracting power, and its object-side surface has a convex portion near the optical axis and a concave portion near its periphery. The second lens element has a negative refracting power, and its object-side surface has a convex portion near its periphery. The third lens element has an object-side surface having a concave portion near its periphery and an image-side surface having a convex portion near its periphery. The fourth lens element has an object-side surface having a concave portion near its periphery and an image-side surface having a convex portion near its periphery. The image-side surface of the fifth lens element has a concave portion in a vicinity of the optical axis and a convex portion near its periphery. | 05-01-2014 |
20140118850 | IMAGING LENS HAVING FIVE LENS ELEMENTS AND ELECTRONIC APPARATUS HAVING THE SAME - An optical imaging lens includes, from an object side to an image side, an aperture stop, first, second, third, fourth, and fifth lens elements. The first lens element has a positive refracting power, its object-side surface has a convex portion in a vicinity of an optical axis, and its image-side surface has a concave portion in the vicinity of the optical axis. The second lens element has a negative refracting power, and its image-side surface is concave. The fourth lens element has a convex image-side surface. The object-side surface of the fifth lens element has a convex portion in the vicinity of the optical axis, and the image-side surface of the fifth lens element has a concave portion in the vicinity of the optical axis. | 05-01-2014 |
20140118851 | IMAGING LENS HAVING FIVE LENS ELEMENTS AND ELECTRONIC APPARATUS HAVING THE SAME - An optical imaging lens includes, from an object side to an image side, an aperture stop, first, second, third, fourth, and fifth lens elements. The first lens element has a positive refracting power, and its object-side surface has a convex portion near an optical axis and a convex portion near its periphery. The second lens element has a negative refracting power. The third lens element has a negative refracting power, and its object-side surface has a concave portion near its periphery. The fourth lens element has a positive refracting power, an object-side surface having a concave portion near the optical axis and a concave portion near its periphery, and an image-side surface having a convex portion near the optical axis and a convex portion near its periphery. The image-side surface of the fifth lens element has a concave portion near the optical axis and a convex portion near its periphery. | 05-01-2014 |
20140184873 | OPTICAL IMAGING LENS SET AND ELECTRONIC DEVICE COMPRISING THE SAME - An optical imaging lens set includes: a first lens element with positive refractive power having an image-side surface with a convex part in a vicinity of a circular periphery of the first lens element, a second lens element having an object-side surface with a convex part in a vicinity of a circular periphery of the second lens element, a third lens element having an object-side surface with a concave part in a vicinity of a circular periphery of the third lens element, a fourth lens element having a concave object-side surface, and a plastic fifth lens element having an image-side surface with a concave part in a vicinity of the optical axis. The air gap between the second lens element and the third lens element G | 07-03-2014 |
20140184874 | MOBILE DEVICE AND OPTICAL IMAGING LENS THEREOF - Present embodiments provide for a mobile device and an optical imaging lens thereof. The optical imaging lens comprises five lens elements positioned sequentially from an object side to an image side. Though controlling the convex or concave shape of the surfaces, the refracting power of the lens elements and/or equations between parameters, the optical imaging lens shows better optical characteristics and the total length of the optical imaging lens is shortened. | 07-03-2014 |
20140253796 | Imaging Lens and Electronic Device Having the Same - 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. Through surface designs of the lens elements, the imaging lens has a relatively short overall length while maintaining good optical performance. | 09-11-2014 |
20150036044 | OPTICAL IMAGING LENS AND ELECTRONIC DEVICE COMPRISING THE SAME - An optical imaging lens set includes: a first lens element, an aperture stop, a second lens element, a third lens element, a fourth lens element and a fifth lens element, the first lens element with refractive power having a convex object-side surface and an image-side surface with a concave part in a vicinity of its periphery, the second lens element with refractive power having an object-side surface with a convex part in a vicinity of its periphery, the third lens element with refractive power having an object-side surface with a concave part in a vicinity of its periphery, the fourth lens element with refractive power, the fifth lens element with refractive power having an image-side surface with a concave part in a vicinity of the optical axis. | 02-05-2015 |
20150036045 | Imaging Lens, and Electronic Apparatus Including the Same - An imaging lens includes first to fifth lens elements arranged from an object side to an image side in the given order. Through designs of surfaces of the lens elements and relevant optical parameters, a short system length of the imaging lens may be achieved while maintaining good optical performance. | 02-05-2015 |
20150070785 | IMAGING LENS AND ELECTRONIC APPARATUS HAVING THE SAME - 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. | 03-12-2015 |
20150098010 | OPTICAL IMAGING LENS AND ELECTRONIC DEVICE INCLUDING THE LENS - An imaging optical lens includes, in order from object side to image side, an aperture stop, first, second, third, fourth, and fifth lens elements, each of the five lens elements having an object side surface and an image side surface. The object side surface of the first lens element is convex along an optical axis. The image-side surface of the second lens element concave in the vicinity of an outer circumference. The object side of the fourth lens element is convex in the vicinity of the outer circumference. The image side surface of the fifth lens element is concave in the vicinity of the optical axis and convex in the vicinity of the outer circumference. The first, second, third, fourth, and fifth lens elements have a refractive power. The thicknesses of the first, second, third, fourth, and fifth lens elements and the air gaps between them satisfy specific conditions. | 04-09-2015 |
20150177484 | OPTICAL IMAGING LENS AND ELETRONIC DEVICE COMPRISING THE SAME - An optical imaging lens includes a first, second, third, fourth, fifth and sixth lens element, the first lens element having an image-side surface with a concave part in a vicinity of its periphery, the second lens element having an object-side surface with a convex part in a vicinity of its periphery, the third lens element having an image-side surface with a convex part in a vicinity of its periphery, the fourth lens with positive refractive power, the fifth lens element having an object-side surface with a concave part in a vicinity of its periphery, the sixth lens element having an image-side surface with a convex part in a vicinity of its periphery, wherein the optical imaging lens set does not include any lens element with refractive power other than said first, second, third, fourth, fifth and sixth lens elements. | 06-25-2015 |
20150177485 | CAMERA DEVICE AND OPTICAL IMAGING LENS THEREOF - The present invention provides a camera device and an optical imaging lens thereof. The optical imaging lens comprises six lens elements positioned in an order from an object side to an image side. Through controlling the convex or concave shape of the surfaces of the lens elements, the view angle of the optical imaging lens is efficiently increased to shows better optical characteristics. | 06-25-2015 |
20150212290 | ELECTRONIC DEVICE AND OPTICAL IMAGING LENS THEREOF - Present invention provides an electronic device and an optical imaging lens thereof. The optical imaging lens comprises a first lens element, a second lens element, a third lens element, a fourth lens element and a fifth lens element positioned in an order from an object side to an image side along an optical axis. The first lens element has negative refractive power, the second lens element has a convex portion formed on the object side surface and a concave portion formed on the image side surface, the third lens element has a convex portion formed on the object side surface and the fifth lens element has a convex portion formed on the image side surface. Through controlling the convex or concave shape of the surfaces, designing parameters satisfying an inequality and/or the refracting power of the lens elements, the field of view is broadened, and the better image performance is maintained. | 07-30-2015 |
20150219880 | IMAGING LENS AND ELECTRONIC APPARATUS HAVING THE SAME - An optical imaging lens includes, first, second, third, fourth and fifth lens elements arranged sequentially from an object side to an image side along an optical axis. The first lens element has a positive refractive power and the object-side surface of the first lens element comprises a convex portion in a vicinity of its periphery. The image-side surface of the second lens element comprises a concave portion in a vicinity of the optical axis. The object-side surface of the third lens element comprises a concave portion in a vicinity of its periphery. The image-side surface of the fourth lens element comprises a convex portion in a vicinity of the optical axis. The image-side surface of the fifth lens element comprises a concave portion in a vicinity of the optical axis and for the optical imaging lens as a whole, only the five lens elements have refractive power. | 08-06-2015 |
20150253540 | OPTICAL IMAGING LENS AND ELECTRONIC DEVICE COMPRISING THE SAME - An optical imaging lens includes: a first, second, third, fourth, fifth and sixth lens element, the first lens element with positive refractive power, the second lens element having an object-side surface with a concave part in a vicinity of its periphery and an image-side surface with a concave part in a vicinity of its periphery, the fourth lens element having an image-side surface with a convex part in a vicinity of the optical axis, the fifth lens element having an object-side surface with a convex part in a vicinity of the optical axis and an image-side surface with a concave part in a vicinity of the optical axis, the sixth lens element having an image-side surface with a convex part in a vicinity of its periphery, and the sixth lens element being made of plastic. | 09-10-2015 |
20150253541 | Imaging Lens, and Electronic Apparatus Including the Same - An imaging lens includes first to sixth lens elements arranged from an object side to an image side in the given order. Through designs of surfaces of the lens elements and relevant lens parameters, a short system length of the imaging lens may be achieved while maintaining good optical performance. | 09-10-2015 |
20150338609 | OPTICAL IMAGING LENS AND ELECTRONIC DEVICE COMPRISING THE SAME - An optical imaging lens includes: a first, second, third, fourth, fifth and sixth lens element, the first lens element has an object-side surface with a convex part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery, the second lens element has an image-side surface with a concave part in a vicinity of its periphery, the third lens element has an image-side surface with a convex part in a vicinity of its periphery, the fourth lens has an object-side surface with a concave part in a vicinity of its periphery, the fifth lens element has an object-side surface with a concave part in a vicinity of the optical axis, the sixth lens element has an image-side surface with a concave part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery. | 11-26-2015 |
20150362697 | MOBILE DEVICE AND OPTICAL IMAGING LENS THEREOF - Present embodiments provide for a mobile device and an optical imaging lens thereof. The optical imaging lens comprises six lens elements positioned sequentially from an object side to an image side. Through controlling the convex or concave shape of the surfaces of the lens elements and designing parameters satisfying at least one inequality, the optical imaging lens shows better optical characteristics and the total length of the optical imaging lens is shortened. | 12-17-2015 |
20150362701 | OPTICAL IMAGING LENS AND ELECTRONIC DEVICE COMPRISING THE SAME - An optical imaging lens includes: first through sixth lens elements, the first lens element has a positive refracting power, an object-side surface with a convex part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery, the second lens element has a negative refracting power and an object-side surface with a convex part in a vicinity of its periphery, the third lens element and the fourth lens element each have an image-side surface with a convex part in a vicinity of the optical axis, the fifth lens element has an object-side surface with a convex part in a vicinity of the optical axis, the sixth lens element has an image-side surface with a concave part in a vicinity of the optical axis, and the optical imaging lens set includes no lens element with refractive power other than said first through sixth lens elements. | 12-17-2015 |
Sheng Wei Lin, Fongshan City TW
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20110049691 | SEMICONDUCTOR PACKAGE AND METHOD FOR PACKAGING THE SAME - A semiconductor package includes a chip, a carrier, a bonding wire and a molding compound. The chip includes a pad. The carrier includes a finger and has an upper surface and a lower surface opposite to the upper surface, wherein the upper surface supports the chip. The bonding wire is extended from the finger to the pad for electrically connecting the chip to the carrier, wherein the bonding wire defines a projection portion on the upper surface of the carrier, a straight line is defined to pass through the finger and pad, there is a predetermined angle between the tangent line of the projection portion at the finger and the straight line. The molding compound seals the chip and the bonding wire, and covers the carrier. | 03-03-2011 |
Sheng Wei Ren, Guangdong CN
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20140133840 | METHOD WHICH USES MULTI-MEDIA TO CONFIGURE A MULTI-MEDIA CAPTURING DEVICE - The invention relates to customization of multi-media capturing devices and more particularly a method which uses multi-media to configure a multi-media capturing device. First, running a software application installed in a configuring device to encode configuration information to a configuring image or video or audio in the configuring device on the basis of user input or by automatic detection of the software application or by obtaining information automatically detected by the configured device; outputting to the configured device; finally the configured device decoding the configured image or video or audio and undergoing automatic configuration according to the configuration information. The invention does not require the configured device and the configuring device to have other specialized communication interface devices. It makes use of the indispensable image or audio input-output devices in the two devices to transmit configuration information, thus reducing number of components and production costs of the configured device. | 05-15-2014 |
Sheng Wei Tsai, Taipei City TW
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20130234001 | ORNAMENT HOLDER FOR A CELLPHONE - An ornament holder for a cellphone has a securing member, a connecting member, a cover, an insertion member and a plurality of loops. The cover and the connecting member each has a connector comprising a column, a positioning portion and an engaging portion, and connecting member and the securing member each comprise a concave portion configured to engage with a connector on another of the cover and the connecting member, each concave portion comprising a positioning slot and an engaging slot; the plurality of the loops are used for connecting the securing member, the connecting member and the cover to the insertion member. | 09-12-2013 |
20160076692 | COLLAPSIBLE STAND - A collapsible stand has a first member and a second member. The first member has a containment portion and an engaging portion, a circumference of the containment portion further has a first connecting portion, the second member has an accepting portion and a slot, a circumference of the second member further has a second connecting portion, and the second member engages with the engaging portion of the first member. | 03-17-2016 |
Sheng-Wei Chang, Seatwen Taichung TW
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20130328067 | LED MODULE - An LED module includes a silicone substrate, an LED grain mounted on a face of the silicone substrate, a temperature sensor formed under the LED grain, a luminous sensor formed close to the LED grain and an encapsulation gel enclosing the LED grain, wherein the LED grain, the luminous sensor and the temperature sensor are electrically connected to electrodes for connection to foreign devices. | 12-12-2013 |
Sheng-Wei Chen, Miaoli County TW
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20150077657 | TOUCH DEVICE WITH CURVED SURFACE - A curved touch device is provided in the present invention including a back cover and a touch panel corresponding to the back cover, where at least one edge portion of the touch panel is a curve surface jointing with the one edge of the back cover. | 03-19-2015 |
Sheng-Wei Chen, Jinhu Township TW
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20150293624 | TOUCH PANEL - A touch panel may include a substrate, a touch unit region and a covering layer. The touch unit region includes first electrode and a second electrode isolated from the first electrode. The covering layer covers at least one of the first electrode and the second electrode and has a touch surface. A distance between the touch surface and the first electrode or the second electrode ranges between 0.01 micrometers and 100 micrometers. A mutual capacitance value between the first electrode and the second electrode ranges between 0.1 pF and 10 pF when a touch has not occurred yet. | 10-15-2015 |
20150307732 | SUBSTRATE STRUCTURE, MANUFACTURING METHOD THEREOF, AND METHOD FOR MANUFACTURING AN ELECTRONIC DEVICE - According to embodiments of the disclosure, a substrate structure, a method for manufacturing the substrate structure, and a method for manufacturing an electronic device are disclosed. The substrate structure includes a carrier, a de-bonding layer, and a flexible substrate. The carrier has a top surface. The de-bonding layer contacts the carrier, wherein there is a first adhesion force between the de-bonding layer and the carrier. The de-bonding layer is prepared from a composition, and the composition includes at least one acrylate-based monomer and at least one acrylate-based oligomer, wherein the sum of acrylate group of the acrylate-based monomer and the acrylate-based oligomer is greater than or equal to 3. The flexible substrate covers and contacts the de-bonding layer, wherein there is a second adhesion force between the de-bonding layer and the flexible substrate. The second adhesion force is greater than the first adhesion force. | 10-29-2015 |
Sheng-Wei Chen, Kinmen County TW
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20130334024 | TACTILE FEEDBACK APPARATUS - A tactile feedback apparatus is disclosed. The tactile feedback apparatus includes at least one tactile feedback unit. The feedback tactile sense unit includes at least one feedback electrode, a dielectric layer and at least one reference electrode. A common reference potential is formed by a user's finger and the tactile feedback apparatus using the reference electrode. An electric filed is generated on the user's finger by the dielectric layer and the feedback electrode to provide a tactile feedback. Besides, the tactile feedback apparatus also provides a touch sensing function. | 12-19-2013 |
20140160710 | ENVIRONMENTAL SENSITIVE ELECTRONIC DEVICE PACKAGE AND MANUFACTURING METHOD THEREOF - An environmental sensitive electronic device package including a first substrate, a second substrate, an environmental sensitive electronic device, a side wall barrier structure, a first adhesive, and a second adhesive is provided. The environmental sensitive electronic device is located on the first substrate. The first adhesive is located on the first substrate. The side wall barrier structure is located on the first adhesive, and the side wall barrier structure is adhered to the first substrate through the first adhesive. The second adhesive is located on the side wall barrier structure. The side wall barrier structure is adhered to the second substrate through the second adhesive, and the side wall barrier structure, the first adhesive, and the second adhesive are located between the first substrate and the second substrate. A manufacturing method of an environmental sensitive electronic device package is also provided. | 06-12-2014 |
20150293646 | TOUCH SENSING STRUCTURE - A touch sensing structure including a plastic substrate, a buffer layer, an electrode layer, an insulation unit, and a passivation layer is provided. The buffer layer is disposed on the plastic substrate, and the electrode layer includes a first patterned transparent electrode layer and a second patterned transparent electrode layer. The first patterned transparent electrode layer is disposed on the buffer layer, and the second patterned transparent electrode layer is disposed on the buffer layer. The insulation unit insulates the first patterned transparent electrode layer and the second patterned transparent electrode layer, and the passivation layer is disposed on the electrode layer. Twice a total optical path length of the electrode layer and the passivation layer along a direction substantially parallel to a normal direction of the plastic substrate ranges from 1000 nm to 2500 nm. | 10-15-2015 |
Sheng-Wei Chen, Kaohsiung TW
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20150115892 | CHARGING BALANCING SYSTEM BASED ON BATTERY OPERATING PROCESS AND METHOD THEREOF - A charging balancing system and method thereof based on a battery operating process and are disclosed. This is done by detecting a state of all cells in a detecting battery assembly to generate detection parameters, analyzing the detection parameters to produce an operating process, selecting at least one of residual power estimation methods according to the operating process, so as to calculate a residual power of each cell, and adjusting the charging current and charging time for each cell according to the residual power. As such, the efficiency of charging balancing is promoted. | 04-30-2015 |
Sheng-Wei Chen, Taipei TW
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20080228326 | PARALLEL CONNECTION DEVICE AND POWER SUPPLY DEVICE USING THE SAME - A parallel connection device for a personal computer is provided. The personal computer includes a motherboard, a first power supplier, and a second power supplier. The parallel connection device includes a first power plug, a second power socket, and a third power socket. The first power plug is connected to a first power socket of the motherboard. Through a second power plug, the first power supplier is connected to the second power socket. Through a third power plug, the second power supplier is connected to the third power socket. Therefore, the load of the first and the second power suppliers can be reduced. | 09-18-2008 |
20110143829 | METHOD AND SYSTEM FOR PROPHESYING BEHAVIOR OF ONLINE GAMER, AND COMPUTER PROGRAM PRODUCT THEREOF - A method and a system for prophesying a behavior of an online gamer, and a computer program product thereof are provided. In the present method, a gamer descriptor of a specific gamer of an online game accumulated before a time point is obtained firstly. Then, the gamer descriptor is divided into a plurality of sub-traces according to the time. Thereafter, at least one feature is derived from each of the sub-traces, and all features derived from the sub-traces are used for determining a possibility that the specific gamer quits the online game within a specific time period in the future. | 06-16-2011 |
20110291477 | COMPOSITE POWER SUPPLY - A composite power supply includes a plurality of power cluster lines, at least one USB port and at least one DC port formed on a surface of a casing, and the power cluster lines, the USB port and the DC port are electrically connected to a circuit board and the circuit board includes a plug-and-play circuit electrically connected to the USB port and provided for an electronic device to access electric power through the USB port, so as to waive the inconvenience of booting a computer before using the electric power, and the circuit board includes a DC-DC conversion circuit electrically connected to the DC port, and a knob or a multi-stage switch in the DC-DC conversion circuit is provided for adjusting the output voltage of the power ports to improve the convenience of the application significantly. | 12-01-2011 |
20120013269 | POWER SUPPLY APPARATUS FOR AN LED LAMP - The present invention provides a power supply apparatus for an LED lamp, which mainly uses an isolation transformer to convert a high voltage AC input signal into a low voltage AC signal and thus generate a driving voltage for driving an LED lamp, comprising: a waveform and frequency modulation module disposed on the primary side of the isolation transformer for modulating an input waveform and a frequency f; and a secondary rectifier filter module disposed on the secondary side of the isolation transformer for converting the low voltage AC signal after passing through the isolation transformer into the driving voltage. In this way, the power supply apparatus for an LED lamp utilizes the principle of persistence of vision of human eyes to modulate the waveforms and frequencies of voltages for driving LEDs and can still maintain the normal operation. | 01-19-2012 |
20120013640 | GRAPHICAL REPRESENTATION OF EVENTS - Some general aspects of the invention relate to approaches for generating a graphical representation of scenes related to an event. Information representing an event is first obtained. The information includes, for example, a set of images of physical scenes related to an event, and additional data associated with the images (for example, geo coordinates and audio files). Images are assigned a degree of significance determined from at least the obtained information representing the event. Based on the degree of significance, a set of images is selected for use in the graphical representation, and partitioned into subsets of images each subset to be presented in a respective one of one or more successive presentation units of the graphical representation. In some examples, the graphical representation can be enhanced by introducing textual annotations to the images. A user can then refine the generated graphical representation by modifying the layout and content of the images and annotations | 01-19-2012 |
Sheng-Wei Chen, Hsinchu TW
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20110065233 | Method for fabricating and repairing organic thin film - The present invention relates to a method for fabricating an organic thin film transistor, including: (A) providing a gate electrode; (B) forming a gate insulating layer on the gate electrode; and (C) forming an organic active layer, a source electrode and a drain electrode over the gate insulating layer, and increasing crystallinity of the organic active layer by irradiating the organic active layer. Accordingly, through irradiation, the present invention can efficiently enhance the field effect mobility, and thereby significantly improves the device performance of an organic thin film transistor. Additionally, irradiation mentioned in the present invention also can be used for repairing an organic thin film transistor. | 03-17-2011 |
Sheng-Wei Chiang, Longtan Township TW
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20150238932 | METHOD FOR GRANULATION OF ABSORBENT AND ADSORBENT GRANULES PREPARED BY THE SAME - The present invention relates to a method for granulation of an absorbent and adsorbent granules prepared by the same. The method comprises the steps of blending sodium metasilicate, metakaoline and an inorganic ion exchange material in water to form a slurry; decanting the resulted slurry onto a nylon cloth of 300 to 400 meshes and natural drying at ambient temperature to solidification; then breaking the solidified final product and sieving it by a screen having a mesh size of from 0.2 to 2.5 mm to provide the absorbent granules having excellent absorbability. | 08-27-2015 |
Sheng-Wei Hsu, Central Taiwan Science Park TW
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20160062085 | IMAGING LENS, AND ELECTRONIC APPARATUS INCLUDING THE SAME - An imaging lens includes first to fifth lens elements arranged from an object side to an image side in the given order. Through designs of surfaces of the lens elements and relevant optical parameters, a short system length of the imaging lens may be achieved while maintaining good optical performance. | 03-03-2016 |
Sheng-Wei Lee, Taipei City TW
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20150037694 | PREPARATION METHOD OF ELECTROLYTES FOR SOLID OXIDE FUEL CELLS - The preparation method of electrolytes provided by the present invention includes a first solid oxide powder and a second solid oxide powder, both of which are prepared by using a sol-gel process and a calcination process. Each of the first and second solid oxide powders is a Perovskite-type oxide. After the first and second solid oxide powders are readily mixed, they are compressed into a pellet and then sintered to prepare the afore-mentioned electrolytes for SOFC. It is found in the present invention that by mixing and compressing different solid oxide powders, the solid oxide powder having smaller particle size can fill into the gaps of the other solid oxide powder. After the pellet is sintered, the density of the product is significantly improved. | 02-05-2015 |
20150162634 | PREPARATION METHOD OF ELECTROLYTES FOR SOLID OXIDE FUEL CELLS - The preparation method of electrolytes provided by the present invention involves applications of a first solid oxide powder and a second solid oxide powder, both of which are prepared by using a sol-gel process and a calcination process. Each of the first and second solid oxide powders is a Perovskite-type oxide. After the first and second solid oxide powders are readily mixed, they are compressed into a pellet and then sintered to prepare the afore-mentioned electrolytes for SOFC. It is found in the present invention that by mixing and compressing different solid oxide powders, the solid oxide powder having smaller particle size can fill into the gaps of the other solid oxide powder. After the pellet is sintered, the density of the product is significantly improved. | 06-11-2015 |
20150198556 | SENSING ELECTRODE OF ENZYME-BASED SENSOR AND METHOD FOR MANUFACTURING THE SAME - The present invention relates to a sensing electrode of an enzyme-based sensor, and the enzyme-based sensor comprising the same can be stably stored at room temperature. The sensing electrode comprises: an electrode substrate and an enzyme sensing layer formed thereon, wherein the enzyme sensing layer comprises sequentially laminated layers of: a first carbon material-nano metal layer containing a carbon material and nano-metal particles; an ionic liquid layer comprising an ionic liquid consisting of a cation and an anion; a second carbon material-nano metal layer containing a carbon material and nano-metal particles; and an enzyme layer. The present invention also provides a method for manufacturing the sensing electrode of an enzyme-based sensor. | 07-16-2015 |
20150357548 | METHOD FOR FORMING A THERMOELECTRIC FILM HAVING A MICRO GROOVE - A method for forming a thermoelectric film having a micro groove includes the following steps: A) forming a plurality of parallel sacrificing wires by electrospinning, a diameter of each sacrificing wire being 100-500 nm; B) coating a thermoelectric film having a thickness of 80-200 nm on a part of a surface of each sacrificing wire; and C) removing the sacrificing wires from the thermoelectric films and thus obtaining the thermoelectric films each having the micro groove, a radio side of each thermoelectric film being open to the surroundings. The thermoelectric films finally prepared can have higher size uniformity without the disadvantage of catalyst residual. Further, the thermoelectric films each have a size smaller than the mean free path of phonons in one dimension, and thus the thermoelectric properties of the thermoelectric films can be improved. | 12-10-2015 |
Sheng-Wei Lee, Hsinchu City TW
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20140272178 | MULTI-PLATEN ION IMPLANTER AND METHOD FOR IMPLANTING MULTIPLE SUBSTRATES SIMULTANEOUSLY - An ion implantation apparatus and a method for ion implantation provides for implanting multiple substrates simultaneously. The different substrates are on corresponding platens within an ion implantation chamber or they may be positioned on separate substrate holders on a single oversized platen. The substrates and platen or platens, are translatable with respect to an ion beam, the individual substrates are rotatable and the position of the substrates relative to one another in the ion implantation chamber are movable. By rotating, translating and repositioning substrates during the ion implantation process, the entirety of all substrates are implanted by an ion beam even when the ion beam has a relatively small footprint and a relatively short scan length, compared to the diameters of the substrates undergoing implantation. | 09-18-2014 |
20150162166 | SYSTEM AND METHOD FOR CONTROLLING ION IMPLANTER - A system, a method, and a non-transitory computer readable storage medium for controlling an ion implanter are disclosed herein. The system includes a sample module and a control module. The sample module is configured to generate a summarized value from process data of the ion implanter, and the process data correspond to a control parameter. The control module is configured to tune a control parameter, and the control module performs an ion implantation by releasing tools of the ion implanter in accordance with the control parameter when the summarized value meets a predetermined stability requirement. | 06-11-2015 |
Sheng-Wei Li, Taoyuan County TW
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20130321313 | METHOD, APPARATUS AND COMPUTER PROGRAM PRODUCT FOR CROPPING SCREEN FRAME - A screen frame cropping method, a screen frame cropping apparatus, and a computer program product adapted to an electronic apparatus having a touch screen are provided. In the screen frame cropping method, a frame is displayed on the touch screen, and a first touch and a second touch preformed by a user on the touch screen are detected. When the first touch and the second touch satisfy a predetermined condition, a cropped frame of the frame is stored as an image file. The cropped frame is determined according to at least one first touch position of the first touch and at least one second touch position of the second touch. | 12-05-2013 |
Sheng-Wei Lin, Tu-Cheng TW
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20110069759 | INTERPOLATION METHOD AND VIDEO CODEC DEVICE USING THE SAME - A video codec device to perform interpolations on a reference frame is provided. The video codec device comprises a full pixel register, an interpolation filter array, a half pixel register and a result register. The interpolation filter array performs half interpolations to generate half pixels of the reference frame to the half pixel register. The half pixels stored in the half pixel register are variable for quarter interpolations. When all the half interpolations of the reference frames are finished, the interpolation filter array performs the quarter interpolations utilizing the generated half pixels, and generates quarter pixels of the reference frames to the result register. | 03-24-2011 |
20110110435 | MULTI-STANDARD VIDEO DECODING SYSTEM - A multi-standard video decoding system comprises a memory, a multi-master bridge interface, a peer-to-peer bus, a plurality of processors and a plurality of hardware accelerators. The memory stores bit stream and temporal data produced during decoding flow. The multi-master bridge interface is connected to the memory. At least one of the plurality of processors receives bit streams from the memory via the multi-master bridge interface. Each of the plurality of hardware accelerators receives instructions from one of the plurality of the processors and operates related video decoding flow, and accesses the memory via the multi-master bridge interface. The peer-to-peer bus connects the plurality of processors and the plurality of hardware accelerators. | 05-12-2011 |
Sheng-Wei Lin, Hsinchu City TW
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20100272051 | Method and apparatus of carrier assignment in multi-carrier OFDM systems - In a carrier assignment procedure, a mobile station and its serving base station exchange and negotiate carrier deployment and multi-carrier capability information, and make a well-informed carrier assignment decision based on the negotiation result. The carrier assignment procedure ensures that the assigned secondary carriers are not only supported by both the serving BS and the MS, but are also desirable under additional requirements and considerations. Furthermore, the carrier assignment decision may be updated based on additional considerations such as channel quality measurement and network load condition over the assigned carriers. Such updated assignment decision may be made by the base station in unsolicited manner, or based on a carrier re-assignment request from the mobile station. | 10-28-2010 |
20100272067 | Carrier assignment with mobility support in multi-carrier OFDM systems - Carrier pre-assignment is applied in multi-carrier handover operation to mitigate the impact to the user experience during handover and to achieve various objectives of call admission control in wireless multi-carrier OFDM networks. With carrier pre-assignment, a mobile station communicates its multi-carrier information to a target base station. The target base station pre-assigns secondary carriers to fulfill the requirements of the mobile station. In a first embodiment, a break-before-entry (BBE) multi-carrier handover procedure with carrier pre-assignment is provided. In a second embodiment, an entry-before-break (EBB) multi-carrier handover procedures for both inter-FA and intra-FA with carrier pre-assignment are provided. The multi-carrier handover procedures with carrier pre-assignment may be applied to 2-to-2 or N-to-N carriers handover situation. Because target secondary carriers are pre-assigned before handoff, the mobile station is ready for data transmission over multiple carriers after handover without additional carrier assignment procedure. | 10-28-2010 |
Sheng-Wei Lin, Taoyuan-Hsien TW
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20130128239 | PROJECTING APPARATUS - A projecting apparatus is disclosed, which is disposed within a space defined with first, second and third imaginary planes perpendicular to one another and includes a light source, a prism, a reflecting mirror, and a reflective light valve. The light source emits a light beam propagating along a first optical path parallel with the first and second imaginary planes. The prism is disposed in the first optical path, and refracts the light beam to propagate along a second optical path. The reflecting mirror is disposed in the second optical path, and reflects the light beam to propagate along a third optical path. The reflective light valve is disposed in the third optical path, and has an active plane parallel with the second imaginary plane. Therefore, the light source can be placed horizontally with respect to the reflective light valve to reduce the space occupied by the light source. | 05-23-2013 |
Sheng-Wei Wang, Hsinchu City TW
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20140094606 | RUTHENIUM COMPLEX FOR DYE-SENSITIZED SOLAR CELL - A ruthenium complex for a dye-sensitized solar cell includes a chemical formula represented by Formula (I): | 04-03-2014 |
Sheng-Wei Wang, Yang-Mei TW
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20080291431 | APPARATUS FOR MONITORING OPTICAL OBSTRUCTIONS IN AN OPTICAL SPLIT NETWORK AND METHOD THEREOF - An apparatus and method for monitoring optical fiber obstructions in an optical split network is described. The monitoring apparatus comprises a broadband-monitoring light source module, an optical circulator, an optical spectral analyzer, a high-density multi-wavelength ODTR, a controlling computer, a wavelength division multiplexer, a specific wavelength optical filter, a monitoring-waveband reflector, and an optical channel selector. The monitoring apparatus utilizes the specific wavelength optical filter and the monitoring-waveband reflector to collectively construct an optical split network optical fiber obstruction monitoring apparatus for the passive optical network having multiple split routes by filtering, reflecting, and transmitting coming lights, so as to achieve the purposes of locating the obstructed split routes and obstruction locations at the same time. | 11-27-2008 |
Sheng-Wei Weng, Taichung City TW
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20110067354 | TILE PUSHER FOR FLOOR TILES - A tile pusher includes a base, on which a bar is provided for reciprocation and a driving member is provided for rotation. The bar and the driving member have teeth to be meshed with each other. An exerting member is connected to an end of the bar, and an operating member connected to the driving member to be operated to turn the driving member. User may operate the operating member to move the exerting member toward or backward to press a floor tile on a neighboring floor tile. A lock device is provided on the base to hold the exerting member at a very position that the exerting member may keep pressing the floor tile for a period. In addition, the present invention further provides a reverse exerting member on the base to press the floor tile close to a wall. | 03-24-2011 |
Sheng-Wei Wu, Taipei City TW
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20140104782 | ELECTRONIC DEVICE - An electronic device includes a first body and a second body. The first body includes a first main body and a first magnetic element fixed in the first main body. The second body includes a second main body, a supporting unit, a second magnetic element, and a third magnetic element. The second main body is adapted to hold the first body. The supporting unit is pivoted to the second main body. The second magnetic element is fixed in the second main body. The third magnetic element is slidably configured in the second main body to restrict a rotation of the supporting unit relative to the second main body. When the first body leans against the second main body, the third magnetic element is subject to a magnetic attraction force from the first magnetic element and escapes from the supporting unit, so that the supporting unit supports the first body. | 04-17-2014 |
Sheng-Wei Wu, Hsinchu County TW
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20140286636 | Optical Transceiver Device - An optical transceiver device has an optical transceiver component, an O/E conversion substrate and a switch control substrate. The optical transceiver component is connected to the first, second optical fiber network equipments for the transmission of optical signal, respectively. The O/E conversion substrate is electrically connected to an in-line equipment at a first location for transmission of electrical signal, and may convert the received optical signal into the electrical signal or convert the received electrical signal into the optical signal. The switch control substrate is electrically connected with an optical switching switch and is connected with the in-line equipment at a second location to receive a control signal for the optical switch from the in-line equipment such that the optical switching switch operates at an normal mode or an bypass mode to guarantee normal network communication of the first, second optical network equipment. | 09-25-2014 |
20150093078 | CONNECTOR - A connector is provided, including a connector body, a fastener and an elastomer. The fastener is pivoted on the connector body with a hook end and a press end positioned on both sides thereof, respectively. The two ends of the elastomer contact the connector body and the press end of the fastener, respectively. The connector of the invention may accomplish plugging and unplugging of an electronic equipment in a single hand press way without bracer arrangement by a configuration of the press end, and may maintain an engagement state between the hook end and the electronic equipment with an arrangement of the elastomer. | 04-02-2015 |
Sheng-Wei Yeh, Kuei San TW
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20150275906 | THIN FAN, ELECTRONIC SYSTEM AND MANUFACTURING METHOD OF THIN FAN - A manufacturing method of the thin fan includes the steps of: providing a plastic material containing a plurality of metal particles; processing the plastic material to form a housing; removing a part surface of the housing and forming a layout area and an extended circuit on the housing, wherein one terminal of the extended circuit connects to the layout area; disposing a first signal connecting structure on the housing, wherein the first signal connecting structure connects to the other terminal of the extended circuit; and disposing a metal layer on the layout area and the extended circuit. | 10-01-2015 |