Abstract:
A container having a top cover and a bottom cover is provided, which includes a canopy disposed on the bottom cover to form therewith a space to accommodate an article. A plurality of locators is disposed on a surface of the bottom cover so that when the bottom cover is tightly combined with the top cover, the locators are clipped between the bottom cover and the top cover to orient the canopy in a fixed position.
Abstract:
A waterproof panel comprises a front wall, a back wall, a front baffle assembly and a back baffle. A cavity is defined between the front wall and the back wall, the front baffle assembly and the back baffle are received in the cavity. The front wall defines a first hole array and a second hole array, the back wall defines a third hole array in same height with the second hole array. The front baffle assembly fixed on one side of the second hole array near the third hole array comprises a main baffle. The back baffle fixed on one side of the third hole array near the second hole array is on one side of the main baffle near the second hole array. The back wall comprises a plurality of protruding strips, which can rebound water entering through the third hole array back.
Abstract:
A multiple switch device for controlling and linking a plurality of switches (600) disposed on a circuit board (500) comprises an operation button (110), a shaft (120), and at least one fixing base (130). The operation button comprises a handle (112) and a rod (114) fixed to the handle. The shaft comprises a connecting plate (122) disposed at an end of the shaft, and a plurality of protruding plates (124) disposed on the shaft. The rod is engaged with the connecting plate to securely connect the shaft and the operation button. Each of the protruding plates aligns with a corresponding switch. The fixing base supports the shaft on a circuit board.
Abstract:
An electronic device includes an enclosure and a fixing member. The enclosure includes a bottom wall configured with a plurality of positioning posts perpendicularly protruding from an outer surface of the bottom wall. Each of the positioning posts includes a hook and a base connecting between the hook and the bottom wall. The fixing member attached to the bottom wall includes a positioning portion. The positioning portion defines an engaging hole engageable with the positioning posts and a plurality of positioning teeth configured on edges of the positioning portion and engageable with the base. The enclosure can be positioned at different angles relative to the fixing member due to friction between the positioning teeth of the positioning portion and the base as well as tight attachment of the hook to the positioning portion.
Abstract:
An electronic device (10) includes a case (20), a circuit board (30) received in the case, a front panel (40) including a first groove (42), a gasket (50) including a hook (54), and a pair of fixing posts (60) for securing the gasket on the front panel. The front panel is mounted to the circuit board. The hook is received in the first groove. Each fixing post is received in respective ends of the first groove.
Abstract:
An electronic device includes an enclosure and a locking assembly. The enclosure defines an accommodating hole and includes a bottom wall defining a pair of receiving portions. Centers of the pair of receiving portions define an imaginary line. The accommodating hole is configured on a perpendicular bisector of the imaginary line. The locking assembly includes a guiding part, a pair of sliding portions, and a control portion. The guiding part and the bottom wall cooperatively define a receiving space receiving the sliding portions. Each of the sliding portions includes a securing portion, a blocking portion and a groove closing to the blocking portion. One end of the control portion passes through the accommodating hole, and the other end is received in the receiving space. The control portion defines a pair of guiding grooves symmetrical about and inclined to the perpendicular bisector and used to engage with the securing portions.
Abstract:
A semiconductor container molded from a plastic material containing silver that absorb sulfide to prevent crystal formation on masks/wafers carried in the enclosed storage space inside the semiconductor container during a photolithographic process under the radiation of a deep-ultraviolet light source. In an alternate form of the invention, the inside wall of the semiconductor container is coated with a layer of silver to absorb sulfide. In another alternate form of the present invention, blocks of silver are fixedly provided inside the semiconductor container to absorb sulfide in the enclosed storage space.