Abstract:
A mounting apparatus includes a bracket and two shafts. The bracket includes a fixing plate defining a number of horizontally arranged vents, for mounting a number of fans to the rear side of the fixing plate, with each vent aligning with one of the fans. The shafts are respectively and horizontally mounted to a top and a middle of a front side of the bracket. A number of shield plates are rotatably connected to the shafts. The shield plates hang vertically under the corresponding shafts by gravity. Each of the vents is covered by two vertically aligned shield plates upon a condition that the gravity of the two shield plates are not overcome by airflows passing through the vents.
Abstract:
A lane jumper for transmitting at least one lane from a first interface to a second interface is disclosed. The at least one lane is connected with the first interface. The first interface defines a first pin group and a second pin group, and the second interface defines a third pin group connected with the second pin group. The lane jumper includes a fourth pin group and a fifth pin group, wherein the fourth pin group and the fifth pin group of the lane jumper are configured for being respectively connected with the first pin group and the second pin group. The at least one lane is transmitted from the first interface to the second interface sequentially through the first pin group, the fourth pin group, the fifth pin group, the second pin group, and the third pin group.
Abstract:
A server cabinet includes a rack and a server unit installed in the rack. The server unit includes a receiving portion extending rearward from a rear wall of the server unit adjacent to a sidewall of the server unit, a motherboard with a first connector, and a cable with a second connector. The motherboard is received in the server unit. The first connector is received in the receiving portion. The receiving portion defines a through hole adjacent to the sidewall. The second connector of the cable extends through the through hole, to be connected to the first connector of the motherboard.
Abstract:
A fastening device for a hard disk drive (HDD) includes a bottom plate and two fastening members. Two protrusions protrude from the bottom plate. A positioning portion is fastened to the bottom plate. The positioning portion includes an operation tab. A block protrudes from the operation tab. Each fastening member includes a sidewall, and a top wall and a bottom wall extending from top and bottom sides of the sidewall. The top walls are fastened to a bottom of the HDD. Each bottom wall defines an engaging hole. The engaging hole includes a first hole and two second holes communicating with the first hole. When the HDD is being fastened, the HDD is slid to allow each protrusion to enter one of the second holes, and to allow the block to block a corresponding side of the HDD.
Abstract:
A server rack includes a rack, a first electronic device, a second electronic device, and an air block plate. The first electronic device is mounted in the front of the rack and arranged close to a left side of the rack. An opening is defined between the first electronic device and a right side of the rack. The second electronic device is mounted in the rear of the rack and arranged on a same level with the first electronic device. The air block plate is slantingly connected between the first electronic device and the second electronic device. A first end of the air block plate is connected to a right end of the first electronic device, and a second end of the air block plate opposite to the first end is connected to a left end of the second electronic device.
Abstract:
A measurement device includes a first connector unit, a measurement wire, and a second connector unit. The first connector unit includes a first dummy connector and a wire part. The wire part includes an inserting portion. A number of insert holes is defined in the first connector. The inserting portion of the wire part is selectively inserted in one of the insert holes of the connector. The measurement wire is graduated. A first end of the measurement wire is connected to the first connector body, and a second end of the measurement wire is movably connected to the second connector unit, with the measurement wire stretched out straight between the first and second connector units.
Abstract:
A mounting apparatus includes a bracket and two shafts. The bracket includes a fixing plate defining a number of horizontally arranged vents, for mounting a number of fans to the rear side of the fixing plate, with each vent aligning with one of the fans. The shafts are respectively and horizontally mounted to a top and a middle of a front side of the bracket. A number of shield plates are rotatably connected to the shafts. The shield plates hang vertically under the corresponding shafts by gravity. Each of the vents is covered by two vertically aligned shield plates upon a condition that the gravity of the two shield plates are not overcome by airflows passing through the vents.
Abstract:
A mounting device for mounting a fan having two opposite boards includes a base board and two fixing members. The base board forms two rods. Each fixing member includes a connecting portion and two tabs perpendicularly extending up from the connecting portion. The connecting portion defines a fixing hole in which a corresponding rod engages. Four fasteners respectively extend through the tabs and then engage in the opposite boards of the fan, to fix the fixing members to the boards of the fan, respectively. A resilient member is mounted to a bottom of each fixing member for absorbing vibrations of the fan.
Abstract:
A server cabinet includes a housing, a switch, and two fastening members. The housing includes two posts. The switch includes two opposite sidewalls. Each fastening member includes a fastening plate with a first end of the fastening plate fastened to a corresponding post, a connection plate slantingly extending from the fastening plate, and two mounting plates respectively extending from a second end of the fastening plate and a distal end of the connection plate and perpendicular to the fastening plate. The mounting plates of each fastening member are fastened to a corresponding sidewall.
Abstract:
A memory module holder includes a base, two latching elements, and a frame. A slot is defined in the base. The two latching elements are rotatably attached to opposite ends of the base. The frame includes a beam portion and two latching portions. The two latching portions are positioned at opposite ends of the beam portion. The latching portions are retained by the latching elements. A receiving space is defined by the frame and the base to receive the memory module when the memory module holder is in a first state. The slot is covered by the beam portion when the memory module holder is in a second state.