Abstract:
A toolless hot-swappable storage module system includes a base plate for mounting within a computer enclosure and a toolless hot-swappable storage module. The storage module includes a sled that is removably coupled to the base plate. The storage module further includes a printed circuit board (PCB) that is disposed on the sled. The PCB includes a plurality of storage media connectors, a PCB signal and power connectors. The storage module also includes a support frame disposed on the PCB. The support frame includes a plurality of support members that are disposed perpendicular to the PCB. Each support member has a first edge and a second edge and includes a plurality of dividers disposed in parallel rows. The support frame also includes a sidewall that is disposed across the first edge of the support members.
Abstract:
Computing components housed in a chassis interacts with a bidirectional slide rail system. The bidirectional slide rail system allows the computing components to be maneuvered in two directions—it may be pulled out about halfway to the front of the cabinet and/or pulled out halfway out of the back of the cabinet. This allows for easier access to components of the storage server and allows such components to be serviced from the top of the chassis.
Abstract:
A system for cooling multiple in-line CPUs in a confined enclosure is provided. In an embodiment, the system may include a front CPU and a front heat sink that may be coupled to the front CPU. The front heat sink may have a plurality of fins and a corresponding fin pitch. The system may further include a rear CPU disposed in line with the front CPU and a rear heat sink coupled to the rear CPU. The rear heat sink may have a plurality of fins and a corresponding fin pitch. The fin pitch of the rear heat sink may be higher than the fin pitch of the front heat sink. In another embodiment, the front and rear heat sinks may be coupled together by one or more heat pipes.
Abstract:
High pressure fans are mounted in the middle of an enclosure to create a low pressure zone and a high pressure zone within the enclosure. The high pressure fans pull air through high density sets of hard disk drives in the back of an enclosure and push air through high density disk drives in the front of the enclosure. Being positioned in the middle of an enclosure allows the high pressure fans to mix hot air pulled through the low pressure zone with cool air existing on the other side of the fans. The fans then push the cool mixed air through the next set of hard drives, forming a high pressure zone and allowing the air to exit at the front of the enclosure.