Abstract:
A sled is provided to facilitate connection of the electrical components housed therein to a backplane located in a chassis. The sled includes a housing with a front portion and a rear portion connected by a base portion. The base portion includes a plurality of electronic unit modules. The sled also includes a connector laterally slidable with respect to the front portion of the housing. The connector is slidably configured to connect the electronic unit modules to a backplane located in the server rack.
Abstract:
A chassis is provided to improve the airflow over a plurality of disk drives. The chassis includes a housing with a front portion and a rear portion connected by a base portion. The base portion includes a plurality of hard drive slots oriented in a plurality of rows along a leading edge of the base portion. The chassis also includes a fan module configured to pass air from the front position of the housing to the rear position of the house. The plurality of hard drive slots is oriented such that a first portion of the hard drive slots is inclined relative to the leading edge of the base portion.
Abstract:
In some implementations, a hard drive carrier is configured to couple and decouple a hard drive to/from a chassis (e.g., motherboard). The hard drive carrier can receive and house a hard drive in a base securing portion, the base securing portion adapted to slide and tilt in relation to a base of the hard drive carrier. The hard drive carrier can include a pivoting lever comprising a handle that can be used to couple and decouple the hard drive from the motherboard. Using the handle to pivot the lever into an open position causes the hard drive to tilt upwards to decouple from the chassis and facilitate insertion or removal of the hard drive to/from the hard drive carrier. Pivoting the lever into a closed position causes the hard drive to lie flat and couple to the chassis.
Abstract:
A liftable and lockable fan is provided. The fan includes: a housing having a side wall; a tab mounted in the side wall, including an upwardly extending lower portion, an outwardly facing locking projection above the lower portion, and an inwardly facing surface above the outwardly facing locking projection; the tab having a first tab position in which the outwardly facing locking projection extends from the side wall and is configured to engage with an exterior locking surface, and a second tab position in which the outwardly facing locking projection is at least partially retracted into the housing; the housing having a recess above the outwardly facing locking projection; and a top cover rotatably mounted to the housing, including a handle on a first end of the cover, an arm on a second end of the cover.
Abstract:
In some embodiments, a rack system is configured to comprise a removable fan system. The fan system enables thermal management of the rack system. The removable fan system includes a replaceable fan tray that can be assembled in the rack system by engaging a connecting mechanism and connecting a connecting cable. The fan tray is engaged with the connecting mechanism to be securely attached to the rack system. The fan tray is connected to a bus bar to receive power or necessary data to be operated. The fan tray can be disassembled from the rack system while the bus remains active, and enables access to the server or the rack system. The replaceable fan tray enables easy replacement of the fan system and access to the rear side of the rack system.
Abstract:
A hard drive tray device applied in a server is provided. The server includes a housing. The hard drive tray device includes a rail member and a tray. The rail member is disposed at the inner wall of the housing. The tray is slidably engaged with the rail member so as to slide between an expanded position and a closed position relative to the housing. The tray includes a base for carrying two storage devices. The base has a hollow portion. The storage devices are respectively located at two sides of the hollow portion. When the tray slides to the expanded position, one of the storage devices and at least a part of the hollow portion are located outside the housing.
Abstract:
Systems and methods for distributing power within a rack system, including a power distribution unit (“PDU”) and multiple servers, are provided. The internal power cable contains a first or a second power socket at one of its ends. The first power socket can be located on the same side as t the PDU while the second power socket can be located close to a PSU of the PSUs that are located on a different side of the PDU. The first power socket of the internal power cable can be connected to the PDU via a first short power cable. The PSU located on the different side of the PDU can be connected to the PDU via a second short power cable between the second power socket of the internal power cable and a power socket of the PSU, the internal power cable, and the first short power cable.
Abstract:
A server assembly having a housing and a tray mounted in the housing are provided. The tray had a top surface and a front surface, and an open position in which the top surface of the tray is accessible and a closed position in which the top surface of the tray is inaccessible. A first set of chip connections in the top surface can vertically removably receive at least one first storage device. The front surface of the tray can define at least one opening below the top surface configured to horizontally removably receive at least one second storage device. The first set of chip connections electronically couple the at least one first storage device with the server assembly and are inaccessible when the tray is in the closed position, and the openings are accessible regardless of whether the tray is in the open or closed position.
Abstract:
A server assembly including a housing having a slidable tray transitionable between an open configuration and a closed configuration. A plurality of tray bodies disposed in the slidable tray, each of the plurality of tray bodies configured to removably receive at least one component module. The plurality of tray bodies arranged in rows, one behind the other, thereby having an first tray body and a second tray body. The second tray body is transitionable between a loading configuration and stored configuration. The storing configuration, the second tray body is arranged adjacent to the first tray body such that the receiving assembly is inaccessible. The loading configuration, the second tray body is translated relative to the tray and the first tray body such that the receiving assembly is accessible.
Abstract:
An apparatus comprising a wall of a drawer adapted to secure a set of cables at a first end, the set of cables can be housed in a cable housing, the wall coupled to a roller and a flattening appendage. In some implementations, the apparatus can comprise a deck comprising a plate adapted to secure the set of cables at a second end, the plate located at a midpoint of the deck. Alternatively, a drawer is adapted to slide along the deck, a shelf attached to the drawer. The flattening appendage presses down on the first end of the set of cables and the roller presses down on the second end of the set of cables as the drawer is opened and closed such that the set of cables is stored neatly under the drawer.