Abstract:
A hard disk assembly includes a first and a second hard disk, and a hard disk connecting mechanism for holding the first and the second hard disks. The first and second hard disks both each have a composite receptacle. The hard disk connecting mechanism includes a frame for mounting the first and the second hard disks and a composite connector detachably positioned in the frame. The composite connector includes a base, a first composite plug engaged with the composite receptacle of the first hard disk and a second composite plug engaged with the composite receptacle of the second hard disk. The frame defines a sliding slot. The base form a sliding protrusion slidably received in the sliding slot to slidably position the composite connector in the frame.
Abstract:
A hard disk mounting device for fixing two hard disks with fixing members includes a pedestal, and two latching members. The pedestal includes a bottom plate, and two side plates extending from the bottom plate. Each side plate includes a first mounting portion and two second mounting portions extending from opposite ends of the first mounting portion. Each first mounting portion includes a first receiving portion. Each second mounting portion defines two latching grooves to receive corresponding fixing members of the hard disks. Each latching member includes a first engaging portion to resist against a corresponding hard disk, and two first latching portions protruding from opposite ends of the first engaging portion. One latching portion includes a first fixing portion received in the first receiving portion and a second receiving portion, the other latching portion includes a second fixing portion received in the second receiving portion.
Abstract:
A mounting mechanism for assembling a storage device includes a pair of parallel brackets and a latching member. Each of the brackets defines a sliding slot and a latching hole therein. A space is defined between the brackets for receiving the storage device. The latching member includes a resisting portion for abutting the storage device and a pair of latching portions formed at opposite ends of the resisting portion. Each of the latching portions includes a hook engaged in the latching hole of the bracket.
Abstract:
A circuit board includes a substrate and a supporting frame fixed to, and supporting, the substrate. The supporting frame includes a main body, a pressing supporting portion, two pulling supporting portions and two fixing portions. The main body includes a first arm and a second arm connected to the first arm. The pressing supporting portion extends downwards from a junction of the first arm and the second arm for counterbalancing a downward force applied upon the substrate. The pulling supporting portions respectively extend downwards from distal ends of the first arm and second arm for counterbalancing an upward force applied upon the substrate. The two fixing portions are respectively formed on the first arm and second arm. Each of the fixing portions is located between the pressing supporting portion and one corresponding pulling supporting portion and is closer to the corresponding pulling supporting portion.
Abstract:
A fastener for mounting an electronic device in a computer includes a cap, a sleeve, a spring, and a mounting post. The cap is mounted to the sleeve. The sleeve defines a receiving aperture and a passage hole therein. The mounting post includes a torsion portion and a wedge portion at opposite ends thereof. The wedge portion is provided with an angled surface. A blocking ring is formed between the torsion portion and the wedge portion. The torsion portion extends into the cap. The spring is disposed around the torsion portion. The spring and the blocking ring are received in the receiving aperture of the sleeve, and the wedge portion extends out of the sleeve from the passage hole. The torsion portion rotates commensurately when the cap is rotated to adjust an orientation of the angled surface of the wedge portion.
Abstract:
A mounting mechanism for assembling a storage device includes a fixing member, a rotary member rotatably connected to the fixing member, and a pair of brackets extending from the fixing member. A resisting face is formed at a lateral side of the rotary member for engaging with the storage device. The pair of brackets are parallel to each other. A space is defined between the brackets for accommodating the storage device. A sliding groove is defined in each of the brackets. The sliding groove includes a split and an opening intercommunicating the split and on a side. The opening is closer to the fixing member relative to the split.
Abstract:
An assembly includes a fan and a heat sink for detachably fixing the fan. The fan includes a pair of first and a pair of second sidewalls, with two pair of rims respectively extending from the first and second sidewalls. Ends of the rims of the first sidewalls, which are directed toward and are adjacent to a same one of the second sidewalls, each have a latch flange. Ends of the rims of the second sidewalls, which are directed toward and are adjacent to a same one of the first sidewalls, each have a latch flange. The heat sink includes a channel for slidably receiving one pair of rims of the first or second sidewalls, a blocking member disposed at one end of the channel to block a corresponding sidewall of the fan, and a latch member disposed at the other end of the channel to latch the corresponding latch flanges.
Abstract:
A receptacle connector includes a main body and a cover. The main body includes a bottom wall, a front wall, a rear wall, a first side wall, and a second side wall cooperatively defining a receiving space for receiving an electronic element. The cover a connecting portion, a latching portion, and a cover body. The connecting portion is pivotably connected to the rear wall of the main body. The latching portion is latchable with the front wall of the main body. The cover body is located between the connecting portion and the latching portion. The cover body includes a resisting portion bending towards the bottom wall, the resisting portion has a flat bottom surface facing towards the bottom wall. The flat bottom surface is substantially parallel to the bottom wall while the latching portion latching with the front wall of the main body.
Abstract:
A test apparatus includes a printed circuit board, a chip carrier socket, and a display circuit. The chip carrier socket includes a space to receive a chip including a plurality of pins, a plurality of contact terminals, and a grounded ground portion. The display circuit includes a power supply and a plurality of light-emitting elements. When the chip is received in the space, the ground portion contacts a middle portion of each pin. When a pin of the chip is normal, a distal end of the normal pin contacts a corresponding contact terminal to connect a corresponding light-emitting element to the ground portion, causing the light-emitting element to light up. When a pin of the chip is askew, a distal end of the askew pin cannot contact a corresponding contact terminal, the corresponding light-emitting element will not light up.
Abstract:
A keyboard assembly includes a main keyboard and a numeric keyboard. The main keyboard includes a first connector formed on a first end surface and a second connector formed on a second end surface. The numeric keyboard includes a third connector formed on a first side surface and a fourth connector form on a second side surface. When the numeric keyboard is located at the first end surface of the main keyboard, the fourth connector is connected to the first connector. When the numeric keyboard is located at the second end surface of the main keyboard, the third connector is connector is connected to the second connector.