Abstract:
Booting an operating system that includes a secure preboot environment that performs integrity checks against security threats. A computer system boots to a preboot environment, which performs integrity checks and other anti-malware operations. Once the preboot environment finishes, the system reboots into a regular environment. The preboot environment can reside on a secure portion of a flash memory, with a computer system booting therefrom; or the preboot environment can reside securely in the computer system. The preboot environment includes integrity checks for a regular environment, and anti-malware programming. Once the preboot environment is done, the computer system reboots into a regular environment, such as from the flash memory or on the computer system. The integrity checks confirm that files in the regular environment are unchanged or uninfected. The integrity checks include determining the accuracy of a trusted system configuration on the computer system, such as using a TPM.
Abstract:
Embodiments of the present disclosure provide a unique and novel archiving system that includes two or more network storage systems, each network storage system including removable hard disk drives embedded in removable disk cartridges, referred to simply as removable disk drives. The removable disk drives allow for expandability and replacement such that the archiving system need not be duplicated to add new or more storage capacity. In embodiments, the archiving system accesses, writes, reads, or performs functions on data from one network storage system to another remote network storage system.
Abstract:
Aspects of the invention generally relate to a portable storage device having a memory and a plurality of connectors. The portable storage device can include a first connector for connecting to a first remote device, such as a smartphone or tablet. The portable storage device can receive digital data from the remote device, or can transfer digital data to the remote device. The portable storage device can include a second connector for connecting to an external device, such as a computer. Similarly, the second connector can enable the two-way transfer of digital data between the external device and the portable storage device. The portable storage device can include a third connector for connecting to a second remote device to enable the two-way transfer of digital data between the portable storage device and the second remote device. The portable storage device can facilitate data transfer between remote and external devices.
Abstract:
The present disclosure relates to an audio player and speaker system, and particularly, to a wireless audio player and speaker system. More particularly, the present disclosure relates to a semi-permanent, wireless boombox-style audio player, for playing audio from an external audio source.
Abstract:
A method and apparatus are disclosed wherein a portable memory storage device is provided for interfacing with a communications port of the computer system. During operating system start up of the operating system of the computer, fields relating to security of the operating system are prompted for. The portable memory store retrieves from memory therein data for populating said fields and provides same to the computer system mimicking a data entry device other than a portable memory store.
Abstract:
A system for data storage including a removable memory element having a data storage device, and a docking station in communication with a host device and configured for receiving the removable memory cartridge so as to put the host system in communication with the data storage device.
Abstract:
According to the disclosure, a unique and novel archiving system that provides one or more application layer partitions to archive data is disclosed. Embodiments include an active archive including a fixed storage. The active archive can create application layer partitions that associate the application layer partitions with portions of the fixed storage. Each application layer partition, in embodiments, has a separate set of controls that allow for customized storage of different data within a single archiving system. Further, embodiments of methods for ensuring storage capacity in the active archive and the application layer partitions within the active archive is also disclosed.
Abstract:
According to the disclosure, embodiments of archival storage system are disclosed. The archival storage system includes two or more removable disk drives that provide random access and are readily expandable. One or more application servers can store archival data to the one or more removable disk drives. Further, the archival storage system provides intelligent archiving by adapting storage requirements to the type of data being archived by the application servers. Methods for storing archival data are also provided that store archival information in removable disk drives.
Abstract:
According to the disclosure, a unique and novel archiving system that provides one or more application layer partitions to archive data is disclosed. Embodiments include an active archive including a fixed storage. The active archive can create application layer partitions that associate the application layer partitions with portions of the fixed storage. Each application layer partition, in embodiments, has a separate set of controls that allow for customized storage of different data within a single archiving system. Further, embodiments of methods for ensuring storage capacity in the active archive and the application layer partitions within the active archive is also disclosed.
Abstract:
An assembly comprises a plurality of laterally spaced front blocks, a magnetic post coupling each of the front blocks to a common back bar, and a common front bar magnetically coupled to the back bar. A write gap spacer is positioned between the front bar and each of the plurality of front blocks, and a write gap element comprising write gaps couples the front bar to each front block across the write gap spacer. A coil is configured to generate magnetic flux in each magnetic post, and the front blocks are configured to direct the magnetic flux across the write gaps.