Abstract:
An autostereoscopic display includes a display panel, a lenticular lens assembly, a driver, a number of camera modules, and a controller. The lenticular lens assembly includes an array of cylindrical lenses and is rotatably hung above the display panel. The driver is configured for driving the lenticular lens assembly to rotate about an axis that is substantially parallel to the lengthwise direction of the cylindrical lenses. The camera modules are arranged beside the display panel and oriented at different angles. The controller is configured for controlling the camera modules to take images in sequence and controlling the driver to rotate the lenticular lens assembly to an orientation at the same angle as a corresponding camera module when the display panel plays an image taken by the camera module.
Abstract:
A camera module includes a circuit board having a supporting surface, a socket fixed on the supporting surface of the circuit board and defining a receiving space, an image sensor received in the receiving space, and a lens group optically coupled with the image sensor. The receiving space of the socket has an entrance and an internal surface. A block protrusion is formed on the internal surface. The block protrusion includes a first ramp extending from the internal surface to a center portion of the receiving space. The lens group includes a plurality of optical components. A slope parallel to the first ramp is formed on one of the optical components. At least part of the lens group is received in the receiving space and blocked by the block protrusion, with the first ramp resisting against the slope. A method for assembling the camera module is also provided.
Abstract:
An exemplary eyeball of toy includes a transparent chamber, a plurality of electrified balls rotatably received in the chamber and a plurality of annular film electrodes concentrically arranged on the chamber. Each of the electrified balls has a first hemisphere and a second hemisphere. The first hemisphere and the second hemisphere are in different colors. The first hemisphere and the second hemisphere carry opposite electrical charges. The annular film electrodes are substantially arranged on a common plane and face the electrified balls.
Abstract:
An optical fiber connector includes a main body and a cover mechanically coupled to the main body. The main body includes a coupling portion and a light guide portion extending from the coupling portion. The light guide portion includes a light incident surface and a light output surface arranged at opposite sides thereof. The coupling portion includes a first groove formed at a top surface thereof, facing the light incident surface and terminating at opposite sides of the coupling portion, and a plurality of recesses. The cover includes a second groove formed at bottom surface thereof, terminating at opposite sides of the cover, and a plurality of protrusions. The first groove and the second groove cooperatively form a receiving channel for receiving an optical fiber therein and allowing the optical fiber to be optically connected to the light guide portion.
Abstract:
A fingerprint identification apparatus includes at least three light sources, a light guide, a camera module and a processor. The light guide has a top and a bottom surfaces and at least three side surfaces. The top surface serves as a fingerprint contacting surface, each of the side surfaces has a first curved portion, the bottom surface has a second curved portion. Each of the first curved portions is opposite to the respective light sources and configured for converging the light beams emitted from thereof onto the top surface for illuminating a fingerprint thereon. The camera module aligns and cooperates with the second curved portion for capturing and converting an optical image of the fingerprint into electronic image associated with the fingerprint. The processor is configured for receiving and comparing the electronic image associated with the fingerprint with pre-stored electronic images of fingerprints to verify the fingerprint.
Abstract:
A light guide loop includes a number of optical coupling structures and a number of luminaries. Each of the optical coupling structures includes a light incident surface and a reflecting surface. The luminaries are respectively facing the light incident surfaces of the optical coupling for emitting light to the optical coupling structures.
Abstract:
An optical system for a liquid crystal on silicon (LCoS) projector includes a light emitting diode (LED) array, a light guide plate (LGP), and a polarization cube beam splitter (PBS). The LED array emits a beam of light. The LGP and the PBS are arranged along the optical path of the beam of light. The LGP includes an incident surface directly facing the LED array, an emitting surface, and an array of microstructures formed on the emitting surface. The PBS includes a side surface directly facing the emitting surface and an array of collimator lenses formed on the side surface. The microstructures are positioned at a focal surface of the collimator lenses.
Abstract:
A microphone device includes an enclosure, a nontransparent supporter, a light source, an annular-shaped optical sensor, a lens and a vibrating membrane. The enclosure has a bottom portion and a sidewall extending from the bottom portion. An opening is defined in the enclosure and opposite to the bottom portion. A nontransparent supporter is enclosed in the enclosure and positioned on the bottom portion. A passage is defined in the supporter, and has a first aperture and a second aperture at two opposite ends. The first aperture is adjacent to the bottom portion. The light source is positioned on the bottom portion, received in the passage and adjacent to the first aperture. The optical sensor is positioned on the supporter. The lens is received in the optical sensor and positioned on the supporter and covers the second aperture. The vibrating membrane is supported on the sidewall.
Abstract:
An image capturing device includes an adjustment assembly and two camera modules. The adjustment assembly includes a base, a driving member fixed on the base, and two supporting boards. The driving member includes an elastic connecting board having two ends connected to the base, a rigid board fixed to the elastic connecting board facing the base, and a cam rotating unit positioned between the base and the rigid board. The cam rotating unit abuts the rigid board and is rotatable to cause the rigid board to move toward or away from the base. The two supporting boards are attached to the elastic connecting board opposite to the base and spaced apart from each other. The two camera modules are fixed to the two supporting boards respectively.
Abstract:
A portable electronic apparatus includes a main body, a camera device, and a supplementary light device. The camera device and the supplementary light device are fixed on the main body. The supplementary light device includes a light module, a lens module, and a motor. The light module includes a circuit board, a light source, and a heat sink opposite to the light source. The lens module includes a lens barrel and a plurality of lenses received in the lens module. The motor drives the lens module to change the intensity distribution of the light from the light module.