Abstract:
A white-light LED module is disclosed. The white-light LED module includes a substrate, and a red-light LED chip string, a blue-light LED chip string, and a green-light LED chip string arranged on the substrate. The red-light LED chip string, the blue-light LED chip string, and the green-light LED chip string are connected in parallel. A number of blue LED chips within the blue-light LED chip string equals to the number of green LED chips within the green-light LED chip string. The number of red LED chips within the red-light LED chip string is as double as the number of blue LED chips and the green LED chips. In this way, the light mixture performance of the red, green and blue LED chips may be enhanced.
Abstract:
A glass cover board structure comprises a top cover and a bottom plate, wherein, the top cover comprises a top plate and a plurality of side wall plates used in surrounding the top plate, the side wall plates at least comprise end surfaces, the bottom plate comprises a contacting area, and the end surfaces are adhesive to the contacting area. In the present invention, design a traditional planar glass cover board into a concave-shape glass cover board, remove assembling gaps to a rear cover of an electronic product when assembling the rear cover, and assemble the gaps at an invisible area after processing printing art to the glass cover board to achieve objects of raising appearing of electronic product.
Abstract:
The disclosure is related to a display module comprising a display panel and a cover. The display panel includes a black baffle frame defining a display region on the display panel. The cover is disposed on the display panel, and a side portion of the cover is on the black baffle frame. The display module further includes a visible region extension member disposed between the side portion of the cover and the black baffle frame. The disclosure further discloses a display device having the display module. In the disclosure, a bright region is formed on the black baffle frame at the periphery of the display region, and the bright region and the display region connect with each other as a whole to form an integrated screen such that viewers visually feel that the border of the display device is narrowed and the visible region of the screen is extended.
Abstract:
The present disclosure relates to a backlight module, including a backlight frame and a light guide plate placed inside the backlight frame, wherein a light-emitting element is provided at the inner side of a side wall of the backlight frame, a first reflective sheet is provided at a lower location under the light guide plate along the vertical direction, and a second reflective sheet is provided at a lower location under the light-emitting element along the vertical direction, the second reflective sheet being extended towards the inside of the backlight frame to a lower location under the light guide plate along the vertical direction. Through providing the second reflective sheet located under the light-emitting element and extending to a lower location under the light guide plate, the light scattered out under the light-emitting element can be guided into the light guide plate, thus effectively enhancing the efficiency of incident light guided into the light guide plate from the light-emitting element.
Abstract:
The present invention provides a liquid crystal display device, which includes a backlight module, a mold frame arranged on the backlight module, a liquid crystal display panel arranged on the mold frame, a front enclosure made of a plastic material and arranged on the liquid crystal display panel, and a conductor piece mounted on the front enclosure. The backlight module includes a backplane made of a conductive materiel, a backlight source mounted in the backplane, and an optic film assembly received in the backplane. The conductor piece includes a first conductive section to which a second conductive section is connected. The first conductive section is arranged between the front enclosure and the liquid crystal display panel to engage the liquid crystal display panel. A bolt is received through the second conductive section of the conductor piece, the front enclosure, and the mold frame to engage and fix to the backplane.
Abstract:
The present invention discloses a plastic frame, a backlight module and a liquid crystal display device. The plastic frame comprising a support portion for supporting the liquid crystal panel, and having a first side surface disposed adjacent to the liquid crystal panel and provided with multiple first concave structures; and a second side surface disposed away from the liquid crystal panel and opposite to the first side surface. Through the above way, the present invention can reduce the heat transmitted to the liquid crystal panel and reduce the risk of display problem of the liquid crystal panel produced by over temperature so as to improve the display quality of the liquid crystal display device.
Abstract:
The disclosure is related to a light guide plate having a light-emitting surface, wherein a plurality of V-shaped grooves is formed on the light-emitting surface; each of the V-shaped grooves extends along a curved path. The V-shaped grooves of the light guide plate extend along the curved path to avoid the light guide plate from collecting light in a single direction. The interference fringes of the light guide plate are reduced, thereby improving the uniformity of light emission of the light guide plate.
Abstract:
The present invention provides a heat radiation of the liquid crystal module, which located around the LED source of the liquid crystal module, wherein the heat radiation comprising a plurality of radiating fins which located at the side walls of the LED source and the backlight panel. The radiating fins can be molded by bending, which can be adhered together on the side wall of the backlight panel. With adding the layer of the radiating fins, the radiating fins bonding and adhering to the back of the backlight panel, the radiating area is increasing and the heat radiation efficiency of the liquid crystal module improving in the limiting space of the liquid crystal module. The problem is resolved that lacking of the heat radiating area in the present liquid crystal module.
Abstract:
A touch display device including a display module and a cover arranged above the display module is disclosed. The cover includes a plate body and a side plate extending from lateral ends of the plate body toward the display module. The side plate of the cover is bonded with the display module. A vacuum is formed between the cover and the display module. The side plate is formed in a rim of the plate body of the cover. The lateral surfaces of the side plate are bonded with the lateral surfaces of the display module to form the vacuum between the cover and the display module. As such, it is not needed to use the transparent optical glue between the cover and the display module. The display module is prevented from being damaged when the touch display device needs rework or repair, which contributes to the rework or repair.
Abstract:
Disclosed is a dial plate of an intelligent wristwatch, which includes a body, a first screen, a second screen, and a third screen. The first screen is rotatably connected to the body by a first rotary axle. The second screen is rotatably connected to the body by a second rotary axle. The third screen is rotatably connected to the body by a third rotary axle. The second rotary axle and the third rotary axle are opposite to and parallel to each other. The first rotary axle is perpendicular to the second rotary axle. Vertical distances of the first rotary axle, the second rotary axle, and the third rotary axle from the body are reduced in sequence so that the first screen, the second screen, and the third screen are allowed to overlap each other on the body. Also disclosed is an intelligent wristwatch having an expandable display screen.