Abstract:
An example reinforcement structure for protecting a wafer-level camera module includes a top sheet element and a side sheet element. The top sheet element is to be disposed over a top surface of the camera module and includes a first opening for allowing light to pass through to the camera module. The side sheet element is coupled to the top sheet element for securing the reinforcement structure to a printed circuit board (PCB). A second opening in the side sheet element is included to allow an adhesive to be dispensed through the second opening to adhere the reinforcement structure to the camera module.
Abstract:
A multi-stage lens driving device for driving an optical lens so as to perform the functions of zooming and/or focusing comprises: a front cover, a rear cover, a plurality of yokes, a plurality of driving coils, a lens seat, and a plurality of permanent magnets. The front cover is a hollow annular cover having a plurality of recesses formed on an inner periphery thereof and a plurality of holders on an outer periphery thereof. The rear cover can be combined with the front cover, thereby forming a receiving space therebetween. The lens seat is a hollow housing disposed in the receiving space. The yokes are provided in the recesses formed on the inner periphery of the front cover. The permanent magnets are surrounding and embedded in an outer periphery of the lens seat, disposed in correspondence to the yokes and spaced therefrom by a predetermined distance. The driving coils are provided respectively on the holders of the front cover, and correspond respectively to the yokes received in the recesses. When predetermined impulse currents of different directions are applied to the driving coils respectively, polarities of corresponding yokes are reversed, respectively. By virtue of magnetic attraction between the permanent magnets and the yokes, rotation of the lens seat in the receiving space is converted to linear axial translation.
Abstract:
An objective lens actuator is provided. An objective lens holder is movably located on a ferromagnetic yoke with corresponding to inner yokes thereof to hold an objective lens. Tracking coils and focusing coils are respectively located on different two opposite sides of the lens holder and the latter are surrounded with the inner yokes. A magnetic element set is located on the ferromagnetic yoke corresponding to the coils to generate a magnetic field perpendicular to the optical axis of the lens. A suspension wire set is connected to the lens holder and the coils to hang the lens holder and channel current to the coils. A damper holder is located on a ferromagnetic yoke to allow the wire set to pass through. A printed circuit board is located on the damper holder and coupled with the wire set to provide the current to the coils, to drive the lens holder.
Abstract:
A loading and unloading module for optical disk drives includes a track plate, a moving plate, a guiding plate, a guiding arm and three rollers for three-point anchoring to achieve the functions of retrieving a disc, conveying the disc and ejecting the disc to substitute for conventional tray loading type or leaf-actuation loading type designs. The optical module is prevented from being scraped or damaged, and space utilization is improved. It also is adaptable for handling different sizes of discs.
Abstract:
An automatic image replacement and rebuilding system and method thereof which can replace and rebuild the image automatically. The system includes an input module; a processing module; a storage module; and an output module. The input module inputs external image data into the system. The processing module is coupled to the input module to receive the image data, then analyzes the shading value and the direction of the sample object in the image data, and outputs an access signal and an output signal. The storage module coupled to the processing module to receive the access signal, and is stored or read out on a replaced image, and the output module coupled to the processing module to receive the output signal, and outputs the image data. In addition, the automatic image replacement and rebuilding method, which is suitable for a system with a processing module and a storage module, by analyzing the shading value and the direction of the image of the sample object having a white background and dark grid characteristics, so that the image can be replaced and rebuilt.
Abstract:
Embodiments of the invention describe an enclosure for an image capture system that includes an image capture unit and a solid state die to provide focusing capabilities for a lens unit of the image capture unit. The enclosure may electrically couple the solid state die to the image capture unit and/or other system circuitry. The enclosure may further serve as EMI shielding for the image capture system.
Abstract:
A video conversion method for frame rate reduction. Video data comprising at least one I-frame and a plurality of B- and P-frames is provided. The B- and P-frames are converted to P-frames using a first image processing method, thereby leaving the I-frame and a plurality of P-frames. A frame rate reduction operation is implemented based on the converted frames using a second image processing method.
Abstract:
A miniature zoom lens comprises a front housing, a rear housing communicated with the front housing to form a receiving space, a connecting plate for connecting the front housing with the rear housing, a guiding module provided with at least one guiding rod, and a lens module provided with at least one lens assembly. The guiding rod passes through the lens assembly to position the lens assembly with each other in the receiving space. The lens assembly has at least one supporting base formed with at least one lens connecting portion, and at least one lens unit screw-connected to the lens connecting portion. The supporting base has an outer peripheral surface formed with a plurality of permanent magnets while the receiving space of the front and rear housings has an inner peripheral surface mounted with at least one driving coil corresponding to the permanent magnets and spaced apart from each other in a predetermined interval. The driving coil is powered to generate an electromagnetic force interacting with the permanent magnets to actuate the lens assembly to linearly move relative to the guiding rod so that the lens assembly is used as a zoom mechanism for adjusting the focus of the lens unit.
Abstract:
A video conversion method for frame rate reduction. Video data comprising at least one I-frame and a plurality of B- and P-frames is provided. The B- and P-frames are converted to P-frames using a first image processing method, thereby leaving the I-frame and a plurality of P-frames. A frame rate reduction operation is implemented based on the converted frames using a second image processing method.
Abstract:
A loading and unloading module for optical disk drives includes a track plate, a moving plate, a guiding plate, a guiding arm and three rollers for three-point anchoring to achieve the functions of retrieving a disc, conveying the disc and ejecting the disc to substitute for conventional tray loading type or leaf-actuation loading type designs. The optical module is prevented from being scraped or damaged, and space utilization is improved. It also is adaptable for handling different sizes of discs.