Abstract:
A hook assembly comprises a body, a securing portion, a hanging portion, a connection portion and a pair of arc-shaped wings. The securing portion and the hanging portion are respectively extending from two opposite sides of the body. The securing portion comprises an extending portion and a hook portion parallel with the body. The extending portion is extending between the body and the hook portion. The connection portion is extending from the body, the wings are respectively extending from two opposite sides of the connection portion. Junction portions between the connection portion and the body and between the wings and the connection portion are cut, and the connection portion and the pair of the wings are respectively folded along corresponding junction portions resulting in the connection portion with the pair of wings together defining a receiving space to receive the body and the securing portion.
Abstract:
A heat-dissipating casing structure includes a base seat, a heat-dissipating module, and a casing. The heat-dissipating module is disposed on the base seat. The heat-dissipating module has a first heat-conducting block and a heat pipe, and one side of the heat pipe connects to the first heat-conducting block. The casing has an installed portion, and the casing is slidably assembled on the base seat for connecting the other side of the heat pipe with the casing via the installed portion. When the casing is slidably assembled on the base seat, the heat pipe is connected with the casing via the installed portion. Hence, the heat-dissipating module is assembled and replaced easily and rapidly. Moreover, the heat from a heat-generating element on the base seat is transmitted to the casing through the heat pipe for increasing heat-dissipating efficiency.
Abstract:
A heat conducting apparatus adopts a design of two oblique slide blocks disposed between and contacted with two objects for conducting heat from one of the two objects to another. The two oblique slide blocks can be adjusted freely according to the different heights of the two objects to conduct the heat produced by a heat generating component to a heat dissipating structure.
Abstract:
A waterproof jacket assembly applied in a communication device is disclosed. The communication device includes an enclosure defining a first through hole for a transmission wire passing through. The waterproof jacket assembly is mounted on the enclosure corresponding to the first through hole, and includes a sleeve, an elastic waterproof element and a cover board. The sleeve defines a receiving cavity in communication with the first through hole. The elastic waterproof element is received in the receiving cavity and helically wrapped around the transmission wire. The transmission wire passes through the cover board and the cover board engages with the sleeve to drive the elastic waterproof element to fill in the receiving cavity.