G06F1/182

Storage processor and storage system
11467635 · 2022-10-11 · ·

Embodiments of the present disclosure relate to storage processor and storage system. A storage processor comprises a housing provided with a cover and a main power supply input, which, for example, connects an external power source to supply power to the storage processor. A battery is disposed within the housing and configured to continue supplying power to the storage processor in response to the main power supply input being cut off. A protection device is disposed within the housing and configured to disable the battery to supply power to the storage processor in response to determining that the cover is opened.

METHODS AND APPARATUS TO COOL ELECTRONIC DEVICES
20220322569 · 2022-10-06 ·

Apparatus, systems, and methods are disclosed for cooling an electronic device. An example electronic device includes a chassis, a first fan including a first outlet and a second outlet, and a second fan having a third outlet and a fourth outlet. In the example electronic device, the first fan is to exhaust air through the first outlet and the second fan is to exhaust air through the third outlet to create a positive pressure in the chassis. The first fan is to exhaust air through the second outlet to an exterior of the chassis, and the second fan is to exhaust air through the fourth outlet to an exterior of the chassis.

Image display device

An image display device includes a display panel which displays an image, a back cover disposed along the back surface of the display panel, a circuit substrate which is disposed on the back surface of the back cover and which is for driving the display of the image on the display panel, and a FPC which connects the circuit substrate and the display panel. The back cover has a recess recessed inward from the edge of the back cover in a plan view. The FPC is disposed so as to pass through the recess.

Computer isolation housing

A modular mounting for a computer motherboard. An outer cabinet is designed to provide a protective enclosure for electrical components, and designed to permit throughhole drilling to facilitate mounting on a wall while avoiding disturbance of contents to be mounted within the outer cabinet. A subpanel plate is designed to detachably and securely attach a computer motherboard and cage assembly, and designed to removably mount the motherboard and cage assembly within the outer cabinet as a modular component, mounting of the motherboard and cage assembly being independent of power supply and nonvolatile storage. An inner cage is designed to protectably mount and enclose a computer motherboard and heat sink, and mount to the subpanel plate. A multipole switch may have a set of contacts for each conductor of a network cable entering the outer cabinet, one throw of the switch connecting all conductors of the cable, another throw of the switch disconnecting all contacts of the cable.

Portable blockchain mining systems and methods of use
11659682 · 2023-05-23 · ·

Portable blockchain mining systems and methods of use are discussed here. Systems include a portable building; a plurality of blockchain mining processors mounted within, or a plurality of blockchain mining processor mounts located within, an interior of the portable building; an air inlet defined in the portable building; and an air outlet defined in the portable building. Air outlets may be above the air inlet and oriented to direct exhaust air in an upward direction out of the portable building. A cooling fan may be connected to convey air through the air inlet, across the plurality of blockchain mining processors and out the air outlet. The cooling fan may simultaneously cool a genset and processors 72. Compact, stackable mining modules are discussed.

In Vitro Neural Implant Tester with Hardware-in-the-Loop Simulation

Accelerated testing apparatuses for implants are described, as well as methods for accelerated testing implants. The accelerated testing apparatus includes a cabinet having multiple bays and a vessel insertable and removable from any of the multiple bays. The vessel includes a watertight basin, a radio-frequency (RF) transparent lid configured to mate with the basin, and a plurality of fixtures within the vessel. Each fixture is adapted to anchor a device-under-test while submersed within the vessel. The accelerated testing apparatus also includes a reservoir disposed within the cabinet, a heater connected with the reservoir, a pump configured to circulate liquid between the reservoir and the vessel, an antenna within the cabinet for communication with the device-under-test, and at least one computer server operatively connected with the antenna.

System and method for optical state determination

A data processing device includes an internal volume that is electromagnetic interference (EMI) isolated and an optical state detector. The optical state detector obtains electromagnetic radiation from the internal volume while the internal volume is EMI isolated and makes a determination that a device disposed in the internal volume has an optical state associated with the electromagnetic radiation.

Desktop electronic device

An internal component and external interface arrangement for a cylindrical compact computing system is described that includes at least a structural heat sink having triangular shape disposed within a cylindrical volume defined by a cylindrical housing. A computing engine having a generally triangular shape is described having internal components that include a graphics processing unit (GPU) board, a central processing unit (CPU) board, an input/output (I/O) interface board, an interconnect board, and a power supply unit (PSU).

Housing Structures and Input-Output Devices For Electronic Devices
20230205271 · 2023-06-29 ·

An electronic device may have input-output devices such as sensors, displays, wireless circuitry, and other electronic components mounted within a housing. The housing may have opposing front and rear walls. A display may be formed on a front side of the device and may be overlapped by a front housing wall such as a glass layer. Sensors and other components may be formed on a rear side of the device and may be overlapped by a rear housing wall. The rear housing wall may have a glass portion or other transparent structure through which projectors project images onto nearby surfaces and through which image sensors and other optical sensors receive light. The housing may be supported by a stand. An electrical component in the stand may interact with an electronic device on the stand. Wireless circuitry in an external item may wirelessly couple to wireless circuitry within the housing.

Compute device housing with layers of electromagnetic interference shields, and devices and systems for the same

In some embodiments an apparatus includes a housing that defines an interior. The apparatus includes a first circuit board that has multiple integrated circuits (ICs). The first circuit board is disposed within the interior of the housing. The apparatus includes a second circuit board that has multiple ICs. The second circuit board is also disposed within the interior of the housing. The apparatus further includes a first electromagnetic interference (EMI) shield disposed about an IC from the multiple ICs of the first circuit board and not disposed about remaining ICs from the multiple ICs of the first circuit board. The apparatus further includes a second EMI shield disposed about the first circuit board and not the second circuit board. The apparatus further includes a third EMI shield disposed about the first circuit board and the second circuit board.