Abstract:
A dual lens camera includes a main circuit board, two lens modules positioned on the main circuit board, a controller positioned on the main circuit board, a position sensors positioned on each lens module, two tilting mechanisms positioned on the main circuit board, and each tilting mechanism being connected to a corresponding one of the lens modules, and two flexible circuit boards connecting the position sensors to the main circuit board. The controller controls the tilting mechanisms to tilt the lens modules to a position detectable by the position sensors.
Abstract:
An exemplary liquid crystal display apparatus includes a liquid crystal display device and a cameral module. The liquid crystal display device includes a first glass substrate, a second glass substrate parallel to the first glass substrate, and a liquid crystal layer formed between the first glass substrate and the second substrate; and the cameral module includes a lens, and an image sensor, wherein the image sensor is located between the first glass substrate and the second glass substrate, and is separated from the liquid crystal layer, and the lens is located on an opposite side of the first glass substrate to the image sensor, and an optical axis of the lens is aligned with a central normal of the image sensor.
Abstract:
An exemplary touch control device includes a main body, a touch panel configured for generating a signal based on a user's touch instruction, and a display unit configured for displaying an image in response to the signal. The touch panel is adjacent to the main body. Light of the displayed image is viewable by the user without the light passing through the touch panel.
Abstract:
An imaging device includes an image sensing device, a lens array, and a light-channel plate from the image side to the object side of the imaging device. The image sensing device includes a number of image sensors continuously arranged. The lens array includes a number of lenses. The light-channel plate defines a number of light channels. Each lens is received in a corresponding light channel and aligned with a corresponding image sensor. The imaging device also includes a storing device, a distance sensor and an image processor. The storing device stores a predetermined object distance. The distance sensor is configured for sensing a current object distance and controlling the imaging sensors to sense images if determining the current object distance is larger than the predetermined object distance. The image processor is connected with the image sensors and used for combing the images sensed by the image sensors.
Abstract:
An exemplary portable electronic device includes a main body, camera modules, a storage unit for storing images, and an image processing unit. The camera modules are accommodated in the main body and exposed the ambient environment. The camera modules have different focal lengths from each other, and are configured for simultaneously picking up images of an object. The image processing unit is electrically connected with the camera modules. The image processing unit is configured for comparing the modulation transfer function (MTF) values of the images, and transmitting data of the image having the greatest MTF value to the storage unit.
Abstract:
A remote sensing system includes a first light source, a second light source, two image capturing devices and a processing unit. The first light source is configured for emitting infrared light of a first central wavelength. The second light source is configured for emitting infrared light of a second central wavelength. The two image capturing devices is configured for capturing images of the first and second light sources. The image capturing devices each includes an infrared sensitive image sensor and an infrared pass filter having two passbands for respectively allowing the infrared light of the first and second central wavelengths to pass therethrough. The processing unit is configured for analyzing the images captured by the image capturing devices thereby determining positions of the light sources relative to the image capturing devices.
Abstract:
A light guide plate mold is configured for manufacturing a light guide plate having a number of microstructures. The light guide plate mold includes a substrate and a number of heating members. The substrate defines a number of grooves therein. The heating members are respectively received in the grooves. Each heating member has a height less than a depth of the corresponding groove. The grooves and the heating members cooperatively define a number of receiving spaces for forming the microstructures of the light guide plate.
Abstract:
A game console includes a console main body and at least one game controlling device for inputting commands to the console main body. The at least one game controlling device is configured for selectively operating in an assembled mode where the at least one game controlling device is mechanically and communicatively coupled to the console main body, or in a dissembled mode where the at least one game controlling device is detached from the console main body and is communicatively coupled to the console main body.
Abstract:
An exemplary portable electronic device includes a main body and a battery therein. The main body has a wind power generating and charging module mounted therein. The wind power generating and charging module includes a wind turbine generator and a control circuit. The control circuit is configured for controlling the wind generator to charge the battery.
Abstract:
A lens module distortion measuring system configured to measure the distortion of a lens module including: a light source configured to emit light rays; a diffusing panel configured to diffuse the light rays; a substantially opaque shielding plate beneath the diffusing panel, the shielding plate defining a regular matrix of light-passing holes capable of allowing some of the diffused light rays to pass therethrough; an image capturing device configured to capture a image of the shielding plate as viewed through the lens module, the image comprising an array of light spots corresponding to the light-passing holes; and a computing unit electrically connected to the image capturing device and configured to analyze the light spots of the image and thereby determine the distortion of the lens module.