Abstract:
A floated-type shielding mechanism including a cover, a shielding sheet, and a flexible conductor is provided. The cover is adapted to be fixed to a circuit board and covers a plurality of input/output (IO) ports of the circuit board. The shielding sheet is movably disposed at the cover and a back plate, and has a plurality of openings respectively corresponding to the IO ports. The flexible conductor deformably protrudes from an inner surface of the shielding sheet and is adapted to contact the IO ports. When the circuit board, the back plate, and the floated-type shielding mechanism are assembled into a case, the IO ports are exposed from a case opening and the flexible conductor is adapted to be deformed by pressing so that the shielding sheet presses against an inner wall surface around the case opening.
Abstract:
A connector cover module adapted to be disposed on a connector on a mother board is provided. The connector cover module includes a cover body and at least one light guide bar. The cover body includes a top surface, a plurality of lateral surfaces, and at least one arm extending from one of the lateral surfaces and bending outward to form an accommodating groove. The light guide bar is disposed beside one of the lateral surfaces, held by the arms, and located in the accommodating groove bent and formed by the arms. A cover body is further provided.
Abstract:
A heat dissipater resilient structure is adapted to be fixed to a connector of a motherboard and for an expansion card heat dissipater to be disposed on. The heat dissipater resilient structure includes a body, an arm and a fixing member. The body is adapted to be fixed to the connector. The arm extends from the body and is bendable between a first position and a second position. The fixing member is located at the body or the arm. The expansion card heat dissipater is adapted to be fixed to the fixing member and lean against the arm to move with the arm. When pressed, the expansion card heat dissipater is adapted to move with the arm from the first position to the second position. When not pressed, the arm moves with the expansion card heat dissipater to return to the first position. A connector module is further provided.
Abstract:
A line concentrator and a connector assembly with the line concentrator are provided. The connector assembly includes a plurality of signal cables and a line concentrator, the line concentrator includes a body and an arm. The body includes a plurality of sidewalls connected to each other and a bottom plate connected to the sidewalls. An accommodating cavity is surrounded by the sidewalls. The bottom plate includes a plurality of holes connected through the accommodating cavity. The arm protrudes from a top of one of the sidewalls of the body and extends along a direction away from the bottom plate. The arm includes a position limiting protrusion.
Abstract:
A remote releasing module includes a bracket, a toggle button, and a moving member. The bracket includes a first end portion and a second end portion away from each other. The toggle button is pivotally connected to the first end portion of the bracket and includes a first driving portion. The moving member is movably disposed on the bracket and extends from a position close to the first end portion to the second end portion. The moving member includes a second driving portion disposed on the first driving portion so as to drive the toggle button to move. A circuit board device including a circuit board body, a connector slot, and the remote releasing module is also provided. The connector slot is disposed on the circuit board body.
Abstract:
A circuit board module includes a circuit board body, a connector, a press button, a bracket, and a linkage. The connector includes a base and a rotating button rotatably disposed on the base. The press button is located away from the connector. The bracket includes a first limiting portion. The linkage is located between the rotating button and the press button and includes a second limiting portion corresponding to the first limiting portion, a first segment, and a second segment linked to the first segment. The first segment extends along a first axis and is linked to the rotating button. The second segment extends along a second axis and is linked to the press button. One of the second limiting portion and the first limiting portion extends along the first axis. The first segment is movably disposed on the bracket along the first axis.
Abstract:
A memory socket protecting cover adapted to be assembled to a memory socket which is adapted for a memory module to insert is provided. The memory module includes a fool-proof concave, and includes a fool-proof member corresponding to the fool-proof concave. The memory socket protecting cover includes two lateral walls and a wear-resistant member. The two lateral walls are adapted to be disposed at two sides of the memory socket. The wear-resistant member is connected to the two lateral walls and adapted to be disposed on the fool-proof member. A width of the wear-resistant member is greater than or equal to a width of the fool-proof member and is smaller than a width of the fool-proof concave. When the memory module is inserted in or pulled from the memory socket, a wall of the memory module besides the fool-proof concave is adapted to contact the wear-resistant member.
Abstract:
A connector cover is adapted to cover a connector and be fixed to a main board. The connector includes a connector top surface having a connector slot, a connector bottom surface and four connector laterals. The connector cover includes a cover top surface, four cover laterals, at least one bending pin and at least one connecting pin.The four cover laterals are adapted to cover the four connector laterals, and two of the cover laterals are connected to the cover top surface. The bending pin extends from the cover lateral and is adapted to be bent to lean against the connector bottom surface. The connecting pin extends from the cover lateral. The connector cover is connected to the main board through the connecting pin. A connector assembly is further provided.
Abstract:
A slat fastening assembly, applicable to a circuit board, includes a slat, at least one first fastening member, a base, and at least one second fastening member. The first fastening member is disposed on the slat. The base is fixed on the circuit board. The second fastening member is disposed on the base. The first fastening member is detachably combined with the second fastening member, so that the slat is detachably combined with the base.
Abstract:
An expansion module, for electrically connecting an interface card to a circuit board, includes an electrical connector and a frame. One side surface of the electrical connector is disposed on the circuit board and an electrical slot is disposed on the other side surface of the electrical connector for one end of the interface card to be inserted therein. The frame includes a main body, a fixing portion, and a securing portion. The fixing portion and the securing portion are integrally extended from the main body. The fixing portion is detachably installed to the circuit board, and the securing portion is for the other end of the interface card to be detachably fixed thereon, so as to arrange the interface card upright on the circuit board and reduce area on the circuit board occupied by the interface card.