Abstract:
The present invention relates to an LED lighting structure, which includes a plurality of lighting units arranged and mounted to a base. Each lighting unit includes a seat, which has a surface to which a plurality of heat dissipation fins is mounted and an opposite surface to which a circuit board is attached. The circuit board includes a plurality of light-emitting diodes. The lighting units are arranged to allow the light-emitting diodes to face outward. In this way, all the light can be projected outward or toward a direction where lighting is desired so that no light would be wasted and the lighting efficiency and the convenience of use are improved.
Abstract:
A testing method includes: providing a camera under test and a planar light source having a first mark, wherein the camera includes a voice coil motor (VCM) and a lens module is fixed on the VCM by glue, the VCM moves the lens module, the VCM includes an elastic tab for limiting and restoring the movement of the lens module;taking an image of a light source using the camera during the movement of the VCM; displaying the image having the first mark; determining if the first mark tilts using a detector; displaying a first message indicating that the tab is not stuck by glue when the detector determines the first mark does not tilt; and displaying a second message indicating that the tab is stuck by glue when the detector determines the first mark tilts.
Abstract:
An output buffer includes a first output transistor, a first switch, a second switch and a third switch. The first output transistor is connected to a first operational voltage for outputting the first operational voltage as the data signal. The first switch is connected to a bulk of the first output transistor for receiving an enable signal. The second switch is connected to the first switch and a second operational voltage for receiving the enable signal, wherein the second operational voltage is lower than the first operational voltage. The third switch includes a first terminal connected to the bulk of the first output transistor, a control terminal connected to the first switch, and a second terminal connected to the first operational voltage.
Abstract:
A dual directional sliding hinge is mounted in a portable device with a cover, a first base and a second base and has a main panel, a first sliding unit, a second sliding unit. The main panel is attached to the cover. The first sliding unit is attached to the first base. The second sliding unit is attached to the second base. When the first and second sliding units slide at the closing position, the cover and the first and second bases are folded to have a smallest volume. Since the first and second sliding units have different sliding distances when sliding to different directions, the functioning units on the first and second bases are revealed alternatively. Therefore, the user can decide to use different functioning units as desired.
Abstract:
The invention is related to an optical lens, a light-emitting diode optical component and a light-emitting diode illumination lamp. The optical lens formed as a semi-spherical shape includes an uplifting spherical surface and a bottom surface corresponding to the spherical surface, and the bottom surface includes an inward space concave to the spherical surface and formed with a free surface corresponding to the spherical surface. The free surface is axially-symmetrical formed as rotational molding with respect to an axis connected from the focus to a center point of the spherical surface, to form the free surface with a similar Gaussian distribution curve provided on a section vertically cut from the spherical surface to the bottom surface. A light-emitting diode is disposed below the focus of the optical lens. The special outline structure of the optical lens can provide a uniform luminance distribution on an illuminating area.
Abstract:
Embodiments of the invention describe an electro-magnetic interference (EMI) shield cover disposed over a wafer level camera module. Said camera module includes substrate having a plurality of imaging pixels, an imaging lens unit disposed on a top side the substrate and a plurality of conductive connectors disposed a bottom side of the substrate, wherein at least one of the conductive connectors comprises a ground connector. The substrate further includes a thru-silicon via (TSV) accessible on the top-side of the substrate and communicatively coupled to the ground connector. The EMI shield is communicatively coupled to the TSV, and thus coupled to the ground connection of the digital camera module.
Abstract:
A memory and method for charging a word line thereof are disclosed. The memory includes a first word line driver, a first word line and a first switch. The first word line driver is connected to a first operational voltage for receiving a first control signal. The first word line comprises a start terminal connected to an output terminal of the first word line driver. The first switch is connected to a second operational voltage and an end terminal of the first word line. The second operational voltage is not smaller than the first operational voltage. When the first word line driver is controlled by the first control signal to start charging up the first word line, the first switch is simultaneously turned on to provide another charging path for the first word line until the first word line is charged to the first operational voltage.
Abstract:
A novel electroporation device for the delivery of vaccines that is both effective in generating a protective immune response and tolerable delivery to a subject (or near painless); and also methods of using same device to vaccinate a subject against a variety of infectious diseases and types of cancer in a near painless.
Abstract:
A display panel driving device and a driving method thereof are provided. The display panel driving device includes a host and a driving chip, in which the driving chip includes a store unit and a driving module. The host switches sources of image data received by the driving module according to content of the image data, so as to determine whether the driving module receives the image data from the store unit or not.
Abstract:
An electric motorcycle is provided with a battery; an electric motor; a speed regulation control electrically interconnecting the electric motor and the battery; a padded seat including a bracket and a space defined under the seat; and a safety switch including a housing threadedly secured to the bracket from below, a support tube disposed on a central portion of the housing and partially disposed in the bracket, a cup-shaped spring-activated member slidably put on the support tube and engaging the seat, two laterally extending contacts formed on the spring-activated member, a first contact member disposed under one laterally extending contact and having one end electrically connected to the electric motor, a second contact member disposed under the other laterally extending contact and having one end electrically connected to the speed regulation control, and two receptacles disposed in the housing for anchoring the first and second contact members therein.