Ger
Chih-Chan Ger, Tu-Cheng TW
Patent application number | Description | Published |
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20080246420 | LIGHT SOURCE DRIVING DEVICE - A light source driving device is for driving a plurality of light sources of a light source module ( | 10-09-2008 |
20080252226 | LIGHT SOURCE DRIVING DEVICE - A light source driving device includes a power stage circuit, a first transformer circuit, a second transformer circuit, and a feedback control circuit. The power stage circuit converts a received signal to an alternating current (AC) signal, which includes a synchronizing switching bridge arm, a first bridge arm, and a second bridge arm. The synchronizing switching bridge arm has a Soft-Switching function, and forms a first full-bridge circuit with the first bridge arm and forms a second full-bridge circuit with the second bridge arm. The first transformer circuit is connected to the first full-bridge circuit, for converting the AC signal. The second transformer circuit is connected to the second full-bridge circuit, for converting the AC signal. The feedback control circuit is connected between the light source module and the power stage circuit, for controlling output of the power stage circuit. | 10-16-2008 |
20090015171 | BACKLIGHT SYSTEM - The backlight system comprises a light source module, a control circuit board, a current-balancing circuit board, and a plurality of high voltage lines. The light source module comprises a plurality of light sources. The control circuit board is configured with a control circuit for converting a received signal to a high voltage signal to drive the light source module. The current-balancing circuit board is configured with a four-layered structure and copper foils within the four-layered structure form a plurality of capacitors so as to balance current flowing through the light sources. The plurality of high voltage lines connect the control circuit board to the current-balancing circuit board. | 01-15-2009 |
20090295763 | DISPLAY DRIVING CIRCUIT - A display driving circuit includes a temperature compensation adjustment circuit, a control circuit, a full bridge circuit, and a transformation circuit. The temperature compensation adjustment circuit provides a current signal for the control circuit. The value of the current signal changes along with environment temperature changes. The control circuit controls the full bridge circuit based on the current signal. An output voltage signal of the full bridge circuit decreases as the current signal increases, and when the environment temperature decreases. The transformation circuit amplifies the output voltage signal of the full bridge circuit to drive a display. | 12-03-2009 |
20100109569 | TRANSFORMER WITH ADJUSTABLE LEAKAGE INDUCTANCE AND DRIVING DEVICE USING THE SAME - A transformer with adjustable leakage inductance includes a first bobbin, a first winding, and a second winding. The first bobbin includes a first region and a second region. The second winding includes a first coil portion and a second coil portion. One of the first winding and the first coil portion of the second winding is wound around the first region of the first bobbin, and the other of the first winding and the first coil portion of the second winding is wound outside of the one wound around the first region of the first bobbin. The second coil portion of the second winding is wound around the second region of the first bobbin. | 05-06-2010 |
Guang-Shyang Ger, Longtan Township TW
Patent application number | Description | Published |
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20090014114 | Method for manufacturing composite container with different opening sizes - The present invention relates to a method for manufacturing a composite container with different opening sizes, which is accomplished by winding with fibers impregnated with resin. First, fibers impregnated with resin are wound on a first substrate for winding a first container, wherein first openings are positioned at both ends of the first container. Then, cut the first container into two shells with a first opening each, and slip one of the shells on a second substrate. Next, fibers impregnated with resin is used for winding the second substrate and the shell such that the fibers impregnated with resin wound on the second substrate and the shell are combined to form a second container, where both ends of the second container are the first opening and a second opening with different opening sizes. Thereby, filament winding can be applied for manufacturing containers with different opening sizes on both ends, and the technique of manufacturing and performance of containers are enhanced. | 01-15-2009 |
Jia-Shyan Ger, Taoyuan County TW
Patent application number | Description | Published |
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20130230815 | SYSTEM FOR SUBSTANCE SEPARATION AND ENERGY RECOVERY BY THERMAL TREATMENT - A system for substance separation and energy recovery by thermal treatment is disclosed. The system includes a thermal treatment reactor, a circulation piping, a heat exchanger, a discharge pipeline, a latent heat recovering device, a gasifier, and a combustion furnace. The substance is fed into the thermal treatment reactor for heating the treated substance so as to produces a gaseous substance by evaporation or pyrolysis. The treated substance is separated into the gaseous substance circulating between the heat exchanger and the thermal treatment reactor and a residual substance being fed into the thermal treatment reactor. The increased gaseous substance, during the circulation process, is fed into a latent heat recovery device, wherein the gaseous substance exchanges heat with a cold fluid and condenses to release latent heat, forming a liquid condensed substance and a non-condensed substance. | 09-05-2013 |
Paul Gerard Ger US
Patent application number | Description | Published |
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20150299167 | Regioselective N-2 Arylation of Indazoles - A novel process is provided for the efficient preparation of an asymmetric compound of structural formula I: | 10-22-2015 |
Shanyu Ger, Naperville, IL US
Patent application number | Description | Published |
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20090245477 | SYSTEMS AND METHODS FOR PROVIDING EMERGENCY CONTACT SERVICES - An emergency contact platform provides emergency contact services where usual communications have been disrupted. The emergency contact platform may include a server to receive registration information including a phone number associated with a phone when communication using the phone is impracticable. The server may also be configured to receive an information request identifying the phone number. The emergency contact platform may also include a database to store the received registration information. The server may be also configured to perform a lookup in the database based on the phone number and provide a result of the lookup based on the received information request. | 10-01-2009 |
20100322388 | CALL MANAGEMENT - A system may include a destination device that receives information about a caller via a first outgoing leg and exchanges content with the caller via the first outgoing leg. The system may further include a network device that receives an incoming call from the caller, establishes the first outgoing leg, connects the incoming call to the first outgoing leg so the content can be exchanged, monitors the first outgoing leg, selectively establishes a second outgoing leg in response to the monitoring, and connects the incoming call to the second outgoing leg. | 12-23-2010 |
Tzong Rong Ger, Taichung County TW
Patent application number | Description | Published |
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20100305666 | INDUCTION DEVICE FOR PHOTODYNAMIC THERAPY AND DIAGNOSIS - An induction device for photodynamic therapy and diagnosis is used in a living body, and for activating a photochemical reaction of a photosensitive agent in the living body. The induction device comprises a transmitter, and a light irradiator implanted in the living body. The transmitter is used for emitting a radio signal to penetrate a superficial layer of the living body. When the light irradiator receives the radio signal, the light irradiator emits light by the driving signal, such that the photosensitive agent undergoes a photochemical reaction. | 12-02-2010 |