Abstract:
A CNC tungsten steel cutting machine suitably used to cut a metal material, such as tungsten carbide steel, includes an operational platform, a cutting mechanism, a feeding mechanism, a delivering mechanism, and a control panel. When a metal material to be cut is received in a feeding tray of the feeding mechanism, lifting control rods of the feeding mechanism lift the metal material until the metal material is temporarily positioned. Once the latest metal material is completely cut, the lifting control rods push the next metal material, so that the next metal material moves into the V-shaped guiding groove. Then, the delivering mechanism delivers the metal material forward until the metal material is located at a press location of the V-shaped guiding groove. After this, the metal material is cut by a grinding wheel of the cutting mechanism, and then dropped into a collection device adjacent to the operational platform.
Abstract:
A prism sheet (10) includes a substrate (12) and a plurality of prism structures (14). The substrate includes a plurality of diffusing particles (122) dispersed therein. The prism structures are at a light output side of the substrate. The diffusing particles can diffuse light beams traveling through the substrate. This configuration performs the same function as that of a diffusing sheet of a conventional backlight module. The prism structures can gather light beams to improve a brightness of a backlight module (6) incorporating the prism sheet. Thus, the backlight module can provide bright and uniform light at a low cost and while having a reduced thickness.
Abstract:
An exemplary backlight module (1) includes a light guide plate (10) and at least one point illuminator (12). The light guide plate includes a first side surface (102), and a protrusion (14) outwardly extending from the first side surface. The protrusion includes at least one second side surface (144) oblique to the first side surface. The at least one point illuminator is adjacent to the least one second side surface.
Abstract:
A prism sheet (10) includes a substrate (12) and a plurality of prism structures (14). The substrate includes a plurality of diffusing particles (122) dispersed therein. The prism structures are at a light output side of the substrate. The diffusing particles can diffuse light beams traveling through the substrate. This configuration performs the same function as that of a diffusing sheet of a conventional backlight module. The prism structures can gather light beams to improve a brightness of a backlight module (6) incorporating the prism sheet. Thus, the backlight module can provide bright and uniform light at a low cost and while having a reduced thickness.
Abstract:
An electrode tape, a solar module and methods for manufacturing the same are disclosed. The electrode tape includes an adhesive film and a conductive structure. The adhesive film includes a first adhesive surface and a second adhesive surface which faces an opposite direction to the first adhesive surface. The conductive structure is embedded in the adhesive film with a first contact point exposed on the first adhesive surface and a second contact point exposed on the second adhesive surface. The solar module includes a first solar cell and a second solar cell which are electrically connected with each other through the electrode tape.
Abstract:
A transflective LCD panel has a transmissive region and a reflective region and includes a first substrate, a second substrate opposite to the first substrate, a reflective plate formed on the second substrate and located within the reflective region, and a first liquid crystal layer and a second liquid crystal layer that are filled between the first substrate and the second substrate. The first and second liquid crystal layers correspond to the transmissive and reflective regions, respectively. The second liquid crystal layer is doped with a chiral material. When a voltage is applied, liquid crystal molecules in a middle section of the first liquid crystal layer are substantially arranged in a tilt angle θ, and the liquid crystal molecules of the second liquid crystal layer are tilted by the tilt angle and further twisted.
Abstract:
An exemplary prism sheet includes a base including an upper surface and a plurality of lenses disposed on the upper surface. The upper surface is a wavy surface. A liquid crystal display device using the prism sheet is also provided.
Abstract:
An exemplary backlight module (1) includes a light guide plate (10) and at least one point illuminator (12). The light guide plate includes a first side surface (102), and a protrusion (14) outwardly extending from the first side surface. The protrusion includes at least one second side surface (144) oblique to the first side surface. The at least one point illuminator is adjacent to the least one second side surface.
Abstract:
A diffusion plate (20) includes a substrate (26) and a diffusion layer (22) disposed at a surface of the substrate. The substrate defines a plurality of through holes (28). A portion of light beams from an associated light source is reflected and refracted at walls of the substrate surrounding the through holes, and subsequently is diffused by the diffusion layer to display images. Another portion of the light beams propagates directly to the diffusion layer via the through holes, thereby avoiding partial absorption within the substrate. Thus the overall utilization of light beams is increased. A backlight module includes, for example, a light guide plate having a light incident surface and a light emitting surface, a light source disposed adjacent to the light incident surface, and the above-described diffusion plate disposed adjacent to the light emitting surface.
Abstract:
An LCD module connecting mechanism. An LCD module connecting mechanism for an electronic device comprising an arm disposed in the electronic device and a frame disposed on a side of the LCD module. The arm has a first joining portion disposed on a side thereof. The frame has a second joining portion on a side thereof. The LCD module connects the electronic device by joining the first joining portion and the second joining portion.