Patent classifications
H05K5/0286
COMPUTING CENTRE MODULE AND METHOD
A computing center module (151), comprising: a plurality of containers (102), each container (102) having a plurality of side walls (102s) that are substantially (e.g. on 3 sides) fully openable with two fixed walls (102z) behind them on the two short ends having standardized feed interfaces (412) for all media and containing at least one entrance door (712t), thus leaving the container (102) unchanged; a computing device (104) within the container (102), the computing device (104) having a plurality of processors (104p); an improved reliability power supply infrastructure (106) within the container (102) for supplying electrical power to the computing device (104); wherein the power supply infrastructure of each container (102) of the computing center module (151) or the entire container (102) is individually pre-certified with respect to a reliability of the computing device (104).
Electronic assembly
An electronic assembly including a disk drive mount, a circuit board, a first tray and an expansion card. The disk drive mount has an accommodation space. The circuit board is fixed to the disk drive mount. The first tray is removably mounted in the disk drive mount and located in the accommodation space. The expansion card is fixed in the first tray and electrically connected to the circuit board.
Electronic device for hot plugging detection
An electronic device is provided. The electronic device includes a board, a first latch mechanism, and an expansion card. A controller is disposed on the board. The first latch mechanism is disposed on the board. The first latch mechanism is electrically connected to the controller. The expansion card is plugged in the first latch mechanism and disposed over the board. The expansion card is electrically connected to the controller through the first latch mechanism. The controller determines a connecting condition of the first latch mechanism according to a connecting signal provided by the expansion card.
STORAGE DEVICE CARRIERS
An example system includes a portable storage device carrier to receive a plurality of drive trays. Each of the plurality of drive trays receives a storage device. The example system further includes a dock assembly to receive the portable storage device carrier. The dock assembly includes a circuit assembly to electrically couple the storage devices to a computing device.
ADJUSTABLE BAFFLE FOR SUPPORTING EXPANSION CARD IN AN INFORMATION HANDLING SYSTEM
A riser of an information handling system having an adjustable baffle that blocks air flowing through the riser from by-passing components of an expansion card, such as a PCIe card, installed in the riser. The baffle directs the flowing air across components of the expansion card to lower the operating temperature of the expansion card by convection. In some embodiments, part of the baffle is coupled to an angled slot of the riser body and another part of the baffle is coupled to a card holder so that movement of the card holder automatically adjusts the position of the baffle to direct otherwise by-passing air toward the components of the installed expansion card.
PIN CONFIGURATION FOR DEVICE-TO-DEVICE CONNECTION
Examples described herein relate to a system that includes: a first device comprising a motherboard; a second device comprising a dual in-line memory module (DIMM); and an arrangement of a signal pin and ground pin pair coupled to the motherboard and DIMM wherein portions of the signal pin and ground pin pair are proximate each other.
HEAT EXCHANGE ASSEMBLY FOR A PLUGGABLE MODULE
A pluggable module includes a housing having a top wall including an opening above a module cavity. The pluggable module includes a heat exchange assembly separate and discrete from the housing extending into the module cavity through the opening. The heat exchange assembly includes a thermal bridge having an upper thermal interface and a lower thermal interface. The thermal bridge includes a plurality of interleaved plates arranged in a plate stack with the plates being movable relative to each other in the plate stack. The lower thermal interface is in thermal communication with the electrical component to dissipate heat from the electrical component. The thermal bridge extends through the opening with the upper thermal interface exposed from above for dissipating heat from the heat exchange assembly.
HEAT SINK ASSEMBLY FOR AN ELECTRICAL CONNECTOR ASSEMBLY
A receptacle assembly includes a heat sink assembly for a receptacle cage for dissipating heat from a pluggable module plugged into the receptacle cage. The heat sink assembly includes fin plates and spacer plates arranged in a plate stack independently movable for engaging and conforming to the pluggable module. Each spacer plate includes a thermal interface at a bottom of the spacer plate engaging the pluggable module. Each fin plate includes a thermal interface at a bottom of the fin plate engaging the pluggable module. The fin plates include branched fin plates and unbranched fin plates. Each of the unbranched fin plates are planar between the bottom and the distal end thereof. Each of the branched fin plates are non-planar and include at least one bend between the bottom and the distal end thereof.
SURFACE TREATMENT FOR METALLIC COMPONENTS
A component for an electronic device can include a metal injection molded (MIM) metallic body that at least partially defines an exterior surface. The metallic body can have an average porosity less than 1% in a first region that extends from the external surface to a depth of at least 100 microns below the external surface, and an average porosity greater than 1% in a second region adjacent to the first region.
Portable Monitor and Peripherals Hub System
There is provided a portable screen and hub system, which incorporates the flexibility to install and interchange different types of functional apparatuses, such as a portable monitor, video-camera, microphone, speakers, sensors, characters/figurines, advertising slot and activation buttons among other peripherals. This present invention can interact mechanically, electronically, visually or orally with the user or third parties and be used in different applications. Internal and external structures house additional and/or extended electronic board and connectors which manage, interface and/or detect the signals obtained from the functional apparatuses and/or characters installed on the hub, and receive and/or send signals to an external device, such as a computer, computer monitor, smartphone, tablets, external memory and other apparatuses.