Abstract:
A bracket is used for an electronic device into a frame. The frame includes two opposite wall surfaces and at least one pair of guiding rails disposed on the two wall surfaces. The bracket includes a main connection portion, two main elastic arms, and main engaging posts. The main elastic arms respectively extend from two ends of the main connection portion. The two main elastic arms extend towards the same direction with a clamping space defined between the two main elastic arms for accommodating the electronic device. The main engaging posts are respectively disposed on sides of the two main elastic arms facing each other, so that the main engaging posts extend towards the clamping space for engaging lateral surfaces of the electronic device. The two main elastic arms respectively slide along the two guiding rails, so as to fix the electronic device into the frame.
Abstract:
A fastener for securing computer storage devices is revealed. The fastener is arranged at a storage device of computers. The fastener for securing computer storage devices consists of a first fix member, a second fix member and a connection part. The first fix member and the second fix member respectively are disposed on two sides of the storage device. The first fix member as well as the second fix member respectively has at least one first groove and at least one second groove. A first mount member and a second mount member of a housing respectively are mounted into the first groove and the second groove. The storage device is fixed by the first fix member and the second fix member. The storage device is mounted in the housing of computers more stably by the assembling of the first mount member and the second mount member with the first groove and the second groove respectively.
Abstract:
A fastening mechanism includes a main body passing through an opening on a casing rotatably, and a fastening part connected to the main body. A slot is formed on the fastening part for fastening a board of an interface card when the main body rotates to a fastening position relative to the casing. The fastening mechanism further includes a fixing part connected to the main body for engaging with the casing when the main body rotates to the fastening position relative to the casing so as to fix the fastening part and the interface card, and an elastic cantilever connected to the fixing part for providing elastic force to the fixing part so as to engage the fixing part with the casing and for driving the fixing part so as to release engagement between the fixing part and the casing when being pressed downward.
Abstract:
An assembly mechanism includes a case and a fastening structure disposed at a side of the case. The case includes a lower board, a connecting port, a fixing board, and a lateral board. The connecting port and the fixing board are connected to two ends of the lower board respectively. The lateral board is connected to the lower board, the connecting port, and the fixing board. The lateral board is used for containing an electronic device cooperatively with the lower board, the connecting port, and the fixing board. The fastening structure includes a base board and an elastic fixing part. The base board is connected to the connecting port in a rotatable manner. The elastic fixing part is connected to an end of the base board for inserting into a hole of the fixing board when the base board rotates to a first position relative to the connecting port.
Abstract:
A transfer module adapted to an electronic device is provided. The electronic device includes a circuit board and a plurality of storage units. The transfer module includes a transfer plate and a supporting structure. The transfer plate has a plurality of plug portions, and the transfer plate is adapted to be connected to the circuit board. The supporting structure is connected to the transfer plate. The supporting structure is adapted to support the storage units, such that the storage units are plugged to the plug portions respectively and connected to the circuit board through the transfer plate.
Abstract:
An assembly includes an article, and a computer housing including left and right sidewalls cooperatively defining an accommodating space and an opening for communicating the accommodating space with an external environment, and a positioning member provided on one of the sidewalls. Each sidewall includes a slide rail. A package is mounted removably in the accommodating space via the opening, is connected slidably to the slide rails of the sidewalls, and is positioned within the accommodating space through the positioning member. The package includes two interconnected cover parts cooperatively defining a receiving space for receiving the article and a communicating hole for communicating the receiving space with the external environment, and a handgrip to mount removably the package in the accommodating space. Each cover part includes a stop member abutting against the article to prevent escape of the article from the receiving space via the communicating hole.
Abstract:
A fastening mechanism includes a main body passing through an opening on a casing rotatably, and a fastening part connected to the main body. A slot is formed on the fastening part for fastening a board of an interface card when the main body rotates to a fastening position relative to the casing. The fastening mechanism further includes a fixing part connected to the main body for engaging with the casing when the main body rotates to the fastening position relative to the casing so as to fix the fastening part and the interface card, and an elastic cantilever connected to the fixing part for providing elastic force to the fixing part so as to engage the fixing part with the casing and for driving the fixing part so as to release engagement between the fixing part and the casing when being pressed downward.
Abstract:
The present invention discloses an optical disc drive including a pickup head for reading data from a disc; a spindle motor for supporting and rotating the disc; a loading/ejecting apparatus for loading or ejecting the disc; and an emergency ejecting apparatus. The emergency ejecting apparatus includes a slider for connecting the loading/ejecting apparatus, a rack, an elastic component for connecting the slider and the rack and a rotator rotated with the movement of the slider. When a user drives the rotator and the elastic component is elastically deformed, the slider is moved in the optical disc drive to drive the loading/ejecting apparatus to eject the disc.
Abstract:
A modularized server includes a main housing, a first block unit, a second block unit, and a removable module. The main housing has a first inserting groove and a second inserting groove, and the removable module has a guide channel. When the removable module is disposed in the first inserting groove along a sliding direction, the first block unit is located in the guide channel. Moreover, the second block unit blocks the removable module from being installed to the second inserting groove.
Abstract:
The present invention discloses an optical disc drive including a pickup head for reading data from a disc; a spindle motor for supporting and rotating the disc; a loading/ejecting apparatus for loading or ejecting the disc; and an emergency ejecting apparatus. The emergency ejecting apparatus includes a slider for connecting the loading/ejecting apparatus, a rack, an elastic component for connecting the slider and the rack and a rotator rotated with the movement of the slider. When a user drives the rotator and the elastic component is elastically deformed, the slider is moved in the optical disc drive to drive the loading/ejecting apparatus to eject the disc.