Abstract:
A connector panel allowing the use of different connector ports in proximity to each other is disclosed. The connector panel has a first type of connector port, such as an optical connector port. An articulated assembly is located adjacent the first type of connector port, and includes a second type of connector port. The articulated assembly may be swung out from the connector panel, thereby allowing for a connector to be inserted or removed from the second type of connector port without interference from the first type of connector port.
Abstract:
A server rack and its server device are provided. The server device includes a chassis, a motherboard module, a power-supply module, a storage array module, and a plurality of input / output interface elements. The chassis is provided with a containing space, a first opening and a second opening in which the first opening and the second opening are located at two opposite ends of the containing space. The power-supply module and the motherboard module are both disposed in the containing space and are pluggable independently, are both capable of plugging in and out from the chassis via the first opening, and are electrically connected to each other. The input / output interface elements are fixed on the motherboard module, and all of them are disposed at the first opening. The storage array module is disposed in the containing space and is slidable.
Abstract:
Disclosed are a system, method, and computer-readable medium for optimizing a fan control system inside a rack system. In at least one example embodiment, the system can include a rack server with a plurality of chassis each having at least one node, each of the nodes including at least one adjustable air vent and configured for adjusting the at least one adjustable air vent based on an air flow requirement of the node. The system can further include a plurality of fans, where the plurality of fans are configured to operate based on a control signal. The system also can comprise a fan control logic board, wherein the fan control logic board is configured to receive from each node in the plurality of chassis the air flow requirements and based on the plurality of air flow requirements generate and transmit the control signal to the plurality of fans.
Abstract:
An apparatus adapted to house a component oriented in a first direction used for facilitating insertion and removal of the component in a second direction to/from a chassis, the first direction orthogonal to the second direction. The apparatus can be a caddy with an attached pivoting handle. Pivoting the handle in the first direction down towards the caddy causes the hard drive to slide in the second direction to couple with a hard drive coupling on the chassis. In some implementations, the caddy houses a hard drive in a vertical orientation, such that multiple hard drives can be coupled side-by-side to each other. In some implementations, the caddy is removably attached to the chassis. The chassis can comprise a rail, and the handle can comprise a hook. The hook attaches to the rail forming a removable attachment that allows for easy removal and insertion of the caddy.
Abstract:
A fixing bracket is used to fix a plurality of storage devices in a housing. Each of the storage devices has a first sidewall and a second sidewall opposite and respectively having fixing holes. The fixing bracket includes a frame body and two pivotal members. The frame body has an opening and an accommodating space. The frame body includes first fixing pins in the accommodating space. The storage devices can be accommodated in the accommodating space. Each of the first fixing pins is for being inserted into the corresponding fixing hole on the first sidewall. The pivotal members are pivotally connected to the frame body. Each of the pivotal members includes a plurality of second fixing pins. When the pivotal members cover parts of the opening, each of the second fixing pins is for being inserted into the corresponding fixing hole on the second sidewall.
Abstract:
A shock absorber apparatus is provided. The shock absorber apparatus includes an elastic device and at least one mounting device connected to the elastic device. Each mounting device includes two securing elements. Each securing element is configured to secure an opposing portion of a structure. Each mounting device can also include two sliders. Each slider can have at least two surfaces, which are interconnected by an inclined surface facing an opposing slider, and a ground surface. The inclined surface can be slidably connected to one of the at least two securing elements. Each slider can be arranged to move in response to an applied force. The ground surface is configured to slidably connect to an inner wall of a box.
Abstract:
An apparatus comprising at least one extendable hard drive drawer for replacement and maintenance of at least one hard drive. The apparatus comprises a chassis comprising a front side and a rear side, and a first hard drive carrier and a second hard drive carrier housed within the chassis. The first hard drive carrier can be housed at the front side of the chassis, and the second hard drive carrier can be located behind the first hard drive carrier. The first hard drive carrier and the second hard drive carrier can each be adapted to house at least one hard drive. The first hard drive carrier can be adapted to slide from a closed position to a first open position, and from the first open position to a second open position, such that the second hard drive carrier can be accessed in the second open position.
Abstract:
A fixing bracket is used to fix a plurality of storage devices in a housing. Each of the storage devices has a first sidewall and a second sidewall opposite and respectively having fixing holes. The fixing bracket includes a frame body and two pivotal members. The frame body has an opening and an accommodating space. The frame body includes first fixing pins in the accommodating space. The storage devices can be accommodated in the accommodating space. Each of the first fixing pins is for being inserted into the corresponding fixing hole on the first sidewall. The pivotal members are pivotally connected to the frame body. Each of the pivotal members includes a plurality of second fixing pins. When the pivotal members cover parts of the opening, each of the second fixing pins is for being inserted into the corresponding fixing hole on the second sidewall.