Patent classifications
G11B33/022
SUPPORT ASSEMBLY
The disclosure provides a support assembly including a tray, a hard disk drive chassis and two engagement components. The hard disk drive chassis is placed on the tray. The hard disk drive chassis includes a bottom part, a first and a second side part. The first and the second side part are connected to two opposite sides of the bottom part and located close to two vertical walls of the tray. The hard disk drive chassis can accommodate a hard disk drive. The elastic engagement components are respectively disposed on the first and the second side part. The hard disk drive chassis is movable between an engaged position and a released position. When the hard disk drive chassis is moved from the released position to the engaged position, the elastic engagement components are respectively pressed by the vertical walls so as to engage with the hard disk drive.
Electronic device that includes a composition that can release and optionally generate a gaseous oxidizing agent component into an interior space of the electronic device, and related subassemblies and methods
The present disclosure relates to electronic devices that include a composition that generates a gaseous oxidizing agent component within the interior gas space of the electronic device. The present disclosure also relates to electronic devices that include a container that includes a gaseous oxidizing agent component in a manner that the gaseous oxidizing component can transfer from the container to the interior gas space of the electronic device. The present disclosure also involves related methods.
ENCLOSURE FOR COUPLING STORAGE DEVICE TO A COMPUTER
A mechanical enclosure provides a mechanism for coupling a storage device to a computer system. The mechanical enclosure can be removably coupled to the computer system and can allow for coupling of the storage device to the computer system without using specialty cables and connectors. The mechanical enclosure can allow the storage device to be coupled to computer system without significantly degrading the speed at which the data stored within the storage device is downloaded onto the computer. The storage device can be inserted into the mechanical enclosure which couples the storage device to the mechanical enclosure. The mechanical enclosure can be inserted into the computer system which similarly couples the computer system to the mechanical enclosure to effectively couple the storage device and the computer system. Once the storage device is effectively coupled to the computer system, the data stored within the storage device can be downloaded onto the computer without the need for specialty cables and connectors.
Disk device
According to one embodiment, a disk device includes a housing including a sidewall, a magnetic disk, a wireless communication device including a first communication antenna, and a first insulating member. The sidewall includes a first through portion. The first insulating member closes the first through portion. The first communication antenna is located in the first through portion, is disposed spaced from the housing, and wirelessly communicates with an outside of the housing.
ELECTRONIC DEVICE THAT INCLUDES A COMPOSITION THAT CAN ACTIVELY GENERATE AND RELEASE A GASEOUS OXIDIZING AGENT COMPONENT INTO AN INTERIOR SPACE OF THE ELECTRONIC DEVICE, AND RELATED SUBASSEMBLIES AND METHODS
The present disclosure relates to electronic devices that include a composition that actively generates a gaseous oxidizing agent component within the interior gas space of the electronic device. The present disclosure also involves related methods.
Video Recorder Power Source
A video recorder battery pack for a firearm includes a housing, a power supply, and a port in the housing. The power supply is disposed within the housing. The port is configured to connect with a video source and is configured to simultaneously receive a video output from the video source and provide power to the video source.
Electronic device that includes a composition that can actively generate and release a gaseous oxidizing agent component into an interior space of the electronic device, and related subassemblies and methods
The present disclosure relates to electronic devices that include a composition that actively generates a gaseous oxidizing agent component within the interior gas space of the electronic device. The present disclosure also relates to electronic devices that include a container that includes a gaseous oxidizing agent component in a manner that the gaseous oxidizing component can transfer from the container to the interior gas space of the electronic device. The present disclosure also involves related methods.
BASE MEMBER AND METHOD OF MANUFACTURING THE SAME, SPINDLE MOTOR, AND HARD DISK DRIVE DEVICE
A base member serving as a part of a housing of a hard disk drive device. The base member includes a base body being a cast product, a machined surface obtained by machining a part of the base body at a side of an interior of the housing, an impregnating agent filled into a casting cavity exposed at the machined surface, and a coating film covering a surface including the machined surface of the base body.
Foldable disc display case
A foldable case having an ultrasonic seal around a record, wherein the case is capable of displaying one or multiple records in a linear arrangement. The foldable disc display case includes a disc case having a first base plate mounted to a disc plate, wherein the disc case includes an ultrasonic seal and can house a vinyl record. An album case, formed by a second base plate mounted to an album plate, is pivotally connected to the disc case via a hinge to form a side-to-side arrangement. The album case can house an album cover. In some embodiments, the album case is designed to receive a double album cover instead of a single album cover to accommodate a thicker, double album cover. A hinge spacer is mounted between the hinge and the base plates to allow the disc case and the album case to be coplanar with one another.
DISK DEVICE
According to one embodiment, a disk device includes a disk-shaped recording medium, a base accommodating the recording medium, the base including a bottom wall, a sidewall on a peripheral portion of the bottom wall, and a rib on a part of an upper surface of the sidewall, a first cover on a part of the upper surface of the sidewall, and a second cover on a first surface of the rib and above the first cover. The rib includes a first region with a first width, a second region with a second width less than the first width, and the first surface with a fixed width around an entire circumference of the rib. The first region and the second region are located corresponding to a side portion of the recording medium.