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 system for inputting information includes a computer with a safety input program, and a mouse connected to the computer. The safety input program includes an interface popup module, a signal control module, and a character output module. The interface popup module is configured for popping up an input interface after the safety input program is activated. The input interface includes a character display box and a character input box. The signal control module is configured for processing signals inputted in the character display box by the mouse, to select desired characters from the character display box, and to input the selected characters into the character input box. The character output module is configured for outputting characters input and displayed in the character input box to an input window of an application interface.
Abstract:
A blower assembly for dissipating heat from a printed circuit board (PCB), the blower assembly includes a bracket and a fan. The bracket includes a sidewall defining an inlet and a lateral wall defining a fixing slot to receive one end of the PCB, the lateral wall also defines an outlet adjacent the fixing slot. The fan is installed in the bracket and exposed through the inlet to suck air, configured for expelling air from the inlet to the outlet to cool the PCB.
Abstract:
A fan mounting assembly includes a fan, a supporting device, two fixing devices, and two magnetic units. The fan includes a frame having two spaced walls, and at least two spaced fixing holes are defined in each of the walls. The fixing devices are oppositely mounted to the supporting device and sandwich the fan therebetween. Each of the fixing devices includes a fixing plate and two fixing arms perpendicular to the fixing plate. The fixing arms of the fixing devices are made of ferromagnetic material and align with the fixing holes of the fan respectively. Each of the magnetic units includes two magnets. Each magnet of the magnetic units engages in a corresponding one of the at least two fixing holes of a corresponding wall of the fan and attracts a corresponding fixing arm, to make the fixing arms clamp the fan.
Abstract:
A heat dissipating device includes a bracket, a heat dissipater and a circuit board. The bracket includes a bracket and a cover. The bracket includes an inside wall, an outside wall, a pair of sidewalls extending perpendicularly from opposite ends of the outside wall and opposite ends of the inside wall, and a bottom wall perpendicularly positioned between the sidewalls and connected to the inside wall. The cover is attached to the bracket. The heat dissipater is attached to the bottom wall and receiving in the cover. The circuit board is configured to supply power for the heat dissipater and attached to the bracket. The circuit board is capable of connecting with a power interface of the electrical device to power the heat dissipaters.
Abstract:
A server enclosure includes an enclosure body, hard disk drives (HDDs), and heat dissipating devices. The enclosure body includes HDD receiving spaces. The HDD receiving spaces are positioned at one end portion of the enclosure body. Each of the receiving spaces receives one of the heat dissipating device or one of the HDDs.
Abstract:
An electronic equipment includes a chassis, and a heat dissipating device. The chassis includes a sidewall defining an opening therein. The heat dissipating device includes a plate fixed to the sidewall of the chassis, and a plurality of parallel fins perpendicularly projecting from one side of the plate. The fins are exposed out of the chassis from the opening. Each two of the fins defines a channel therebetween, and the plate defines a plurality of vents therein communicating with each of the channels.