Abstract:
The protruding tail of the fin on the upper side of the heat sink is formed as a cone, hence the blowing-in airflow follows the lead to the bottom resulting in better performance of ejection.There is a tooling hole on the side plate of the underside in the heat sink for the convenience of separating the adjacency heat sinks and separators in suitable space.There is also a corresponding retaining hole above the separator. This will force the two rivets pass through the fixed body in order. The thin cone heat sink could increase the space of the separators and double the area of the heat radiation, help the airflow absorb the heat following the surrounding air and simultaneously increase the heat ejection performance so as to achieve the main usages for the industry of cooling down the chip rapidly.
Abstract:
This invention is the structure of a safety plug that is used to switch power in sequence easily and is composed of main body, upper housing, copper strip, flexible conductive strip, a non-conductive switch-gear with a curved block on its lateral side; a conductive curve strip embedded on the same axis of the said switch-gear so that they can rotate simultaneously; and two wires with long- and short-end are compressed tightly on the copper strip and on the wires of the joint point of the flexible conductive strip, respectively. The structure is designed so that when the switch-gear rotates in 360 degrees, the curved block will rotate simultaneously. Two corresponding curved blocks are used to control the rotation in order to connect the curve strip to the front and back conductive strips. There is a gap on the bottom of the curved blocks in order to increase the flexibility factor of the conductive strip's forward and reverse performance. Consequently, this invention is invented for easy power switch in sequence, so as to prevent the loosing plug by eliminating the frequent plug and unplug actions, and the danger of electric shock.
Abstract:
A convenient replacement composite power saving environmental bulb structure to replace the traditional bulb by diodes allowing easy replacement of the bulb and color change as desired adapting to the environment of the living space comprised of two semi-spherical casings, a caulking groove is provided inside of each semi-spherical casing to snap onto the keyboard and longitudinally arranged retaining rings are provided on external surface of each said semi-spherical casing and a matching hole is bored in each ring for fast insertion in position by the terminal plate sleeve plugged on the keyboard; a tapered channel track by both sides of the matching hole permits the terminal plate to easily slide into the keyboard so that both pins of the diode are directly connected to the sleeve of the terminal plate together with the keyboard, both semi-spherical casings and the voltage variation plate into an integrated assembly in parallel for giving excellent conduction.
Abstract:
The present invention relates to an improved glued light core for a light-emitting diode (LED), which provides an optical lamp body integrally formed on an upper end of an LED lead frame. In particular, the optical lamp body is designed as a glued structure with minimal epoxy, to simplify a complicated packaging operation in a conventional manufacturing process, to directly fasten a crystal cup, a crystal cell and a conductive gold wire to the upper end of the lead frame by the epoxy, and to provide illumination comparable to that of general light core. Additionally, a light-emitting housing is made of polychloroprene or plastic resin which is able to be applied or injected outside the glued light core, such that a light source inside the glued light core emits light beams through the light-emitting housing to form collection or stray lights of a special light source with multiple variations. Thus, the manufacturing process and multiple applications of the LED can be greatly simplified.
Abstract:
The present invention relates to a two-section light rack and in particular to one in which the light rack bracket adopts the combined structure whereby the upper section and lower section are made of different materials, the main improvements being: the lower section of the light rack of the general LED bracket is bent in the reverse direction for embedding, clamping and positioning of the upper end of the other conducting pin and insulating resin is used to seal the I body at the bottom of the lamp body to form the light stud. As the conducting pin is made of red copper and bronze of good conductivity, the use of copper at the bracket at the top may be avoided and it may be replaced by iron plated copper and iron plated silver so as to reduce the consumption of precious metal.
Abstract:
The present invention relates to an intermittent cyclic permanent illuminating LED lamp, comprising a radiating substrate, a plurality of chips, a plurality of conducting wires, 4 insulating pieces, 4 sets of positive and negative conducting pieces, 2 fluorescent layers and transparent adhesive tape, wherein 2 insulating pieces are bonded to the front side and back side of the radiating substrate, the insulating pieces are available for bonding of the 4 sets of positive and negative conducting pieces, and the plurality of conducting wires on the front side and back side of the radiating substrate are provided for serial connection with the plurality of chips and the positive pole and negative pole on the two sides to offer the intermittent switching cyclic permanent lighting effect or achieve the industrial application of multi-serial connection all illuminating and multi-color light selection and control effect.
Abstract:
The present invention relates to a new LED bracket structure and in particular to a bracket that adopts the structure in which the upper section and lower section are made of different materials, the main improvements including: the bottom of the bracket is provided with a groove for embedding and fixing of a conductive pin, the bracket may be made of other conductive materials such as iron plated with silver, and the conductive pin may be made of red brass and bronze of good conductive performance so as to reduce the consumption of copper in this structure and the consumption of precious metal copper significantly.
Abstract:
The present invention relates to a multi-chip cup semi-conductor lamp, comprising a silicon lamp cover, lamp housing, conducting plates, insulators, chip-cup lamp seat, chips, and conducting wires. The improvement including the chip-cut lamp seat is provided with a plurality of chip cups so that a single large power chip can be inserted as a plurality of small power chips of equal power, and the insulators, conducting plates, lamp housing, and silicon lamp cover are integrated in turn to create chip lighting sources of equally high power to achieve the effects of low temperature, low power consumption, and long service life.
Abstract:
The present invention relates to a radiating cold light polymer lamp structure, comprising radiating caps, plates, stop pieces, conducting wires, I-shaped frame plates, positioning brackets and light-emitting devices, wherein the I-shaped frame plate is provided for the light-emitting devices arranged in sequence, a hole is provided on each of the two ends of the conducting plates for the semi-holes of the stop pieces to fit the conducting wires for positioning so that the light emitting chips achieve stable conductivity and the chip cup screw transfers the heat of the chips directly to diffuse heat via the radiating cap to diffuse the heat and reduce the temperature rapidly and extend the service life.
Abstract:
The present invention provides a radiating semi-conductor light, wherein a lower light housing is enveloped in the head of the chip cup screw for arrangement of two conductive plates, upper light housing, chip and conductive wires, the upper light housing is provided for silicone filling and light cover fixing to protect the chip and allow a radiating nut to thread through the bottom of the chip cup screw for locking and positioning, the heat of the chip on the chip cup can transfer to the radiating nut below for effective and rapid industrial use of radiation