The invention relates to compact data storage devices.
A wide variety of data storage media exist for transferring data from one device to another device. The data storage media may allow users to easily transport data between various devices, computers, and locations. Compact data storage media are particularly desirable for individual users, and are commonly used for the storage and transport of information. A compact data storage medium includes one or more storage elements that store the information within the medium. A connector may be formed on the data storage medium to allow electrical access to the storage elements within the data storage medium so that information can be stored in the storage elements or accessed from the storage elements via electrical signals.
One of the most popular types of storage elements used in compact data storage media is a flash memory drive. A flash memory drive includes an internal, high-speed solid-state memory capable of persistently storing data without the application of power. A flash memory drive is compact, easy to use, and has no moving parts. Another very popular type of storage element is a micro hard disk drive. Micro hard disk drives are generally miniature versions of conventional hard drives, and include a rotating magnetic hard disk and a transducer head to read and write data to the disk. Cost and performance tradeoffs generally exist between flash memory drives and micro hard drives, although both types of storage elements are generally acceptable for use in compact data storage media. Moreover, many other types of storage elements may also be used in compact data storage devices, such as electrically-erasable-programmable-read-only-memory (EEPROM), non-volatile random-access-memory (NVRAM), and other non-volatile or volatile memory types, such as synchronous dynamic random-access-memory (SDRAM), with battery backup.
Some compact data storage media include a specialized connector for coupling directly to a host computer. For example, a host connector may allow the data storage medium to be coupled directly to a host computer interface of a host computer, such as a Universal Serial Bus (USB) interface, in order to allow data transfer between the storage devices of the host computer and the storage elements of the data storage medium. The use of host connectors on compact data storage media can eliminate the need for specialized readers or specialized media drives designed solely for the data storage media.
Examples of host connectors that may be used for compact data storage media include a personal computer memory card international association (PCMCIA) connector including a 16 bit standard PC Card interface and a 32 bit standard CardBus interface, a Universal Serial Bus (USB) connector, a Universal Serial Bus 2 (USB2) connector, an IEEE 1394 FireWire connector, a Small Computer System Interface (SCSI) connector, an Advance Technology Attachment (ATA) connector, a serial ATA connector, an Integrated Device Electronic (IDE) connector, an Enhanced Integrated Device Electronic (EIDE) connector, a Peripheral Component Interconnect (PCI) connector, a PCI Express connector and a conventional serial or parallel interface connector.
In general, the invention is directed to a data storage device that includes a host connector to facilitate attachment of the data storage device to a host computer so that the host computer can access one or more storage elements within the device. The host connector, for example, may comprise a Universal Serial Bus (USB) connector that can be inserted into a USB port of the host computer. In accordance with the invention, the data storage device includes a flexible member to mechanically and electrically couple the host connector of the device to a housing that holds the storage elements. Moreover, the housing may comprise a receptacle for insertion of the host connector when the data storage device is not coupled to a host computer. The flexible member may define a length and a flexibility sufficient to allow the host connector to be inserted into the receptacle in the housing. When the host connector is inserted into the housing, the data storage device defines a loop, which allows the device to be attached to various items or articles when the device is not in use.
In one embodiment, the invention is directed to a data storage device comprising a housing formed with a receptacle; one or more storage elements within the housing; a controller within the housing to control access to the one or more storage elements; a host connector to facilitate attachment of the data storage device to a host computer so that the host computer can access the one or more storage elements, the host connector defining a size relative to the host connector such that the host connector can fit into the receptacle in the housing; a flexible member to mechanically couple the host connector to the housing, wherein the flexible member defines a length and a flexibility such that the host connector can be inserted into the receptacle in the housing, wherein the flexible member extends from a top surface of the housing and the receptacle is formed in the top surface such that the data storage device defines a padlock-like form factor; and a locking mechanism to lock the host connector into the receptacle upon insertion of the host connector into the receptacle.
In another embodiment, the invention is directed to a data storage device comprising a housing formed with a receptacle; one or more storage elements within the housing; a host connector to facilitate attachment of the data storage device to a host computer so that the host computer can access the one or more storage elements, the host connector defining a size relative to the host connector such that the host connector can fit into the receptacle in the housing; and a flexible member to mechanically couple the host connector to the housing, wherein the flexible member defines a length and a flexibility sufficient to allow the host connector to be inserted into the receptacle in the housing.
The invention may be capable of providing one or more advantages. For example, the invention may define a compact data storage device having a very useful form factor that can be worn or attached to articles when not in use. In some embodiments, the device assumes a padlock-like form factor when the host connector is inserted into the receptacle. In other embodiments, the device assumes a loop-shape when the host connector is inserted into the receptacle and may be worn as a bracelet or necklace. Numerous other advantageous features are also described below, including locking mechanisms to secure the host connector within the receptacle of the housing of the device, light emitting diodes for illumination of the device, guides to ensure proper placement of the host connector within the receptacle of the housing, spring elements to provide spring loaded biasing of the host connector locked within the receptacle, and many other useful features.
The details of one or more embodiments of the invention are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the invention will be apparent from the description and drawings, and from the claims.
The invention is directed to a data storage device that includes a host connector to facilitate attachment of the data storage device to a host computer so that the host computer can access one or more storage elements within the device. The data storage device includes a flexible member to mechanically and electrically couple the host connector of the device to a housing that holds the storage elements. The housing may comprise a receptacle for insertion of the host connector when the device is not coupled to a host computer. The flexible member may define a length and a flexibility sufficient to allow the host connector to be inserted into the receptacle in the housing. In some embodiments, the device assumes a padlock-like form factor when the host connector is inserted into the receptacle. In other embodiments, the device assumes a loop-shape when the host connector is inserted into the receptacle and may be worn as a bracelet or necklace.
Housing 12 defines a receptacle 18 sized to correspond to host connector 14. In particular, host connector 14 mates with receptacle 18 when host connector is not in use and not coupled to a host computer. In this manner, receptacle 18 defines a convenient docking location of host connector 14 when not in use to protect host connector 14 from damage. In general, host connector 14 and receptacle 18 are sized such that host connector 14 can fit into the receptacle 18.
As noted above, flexible member 16 mechanically and electrically couples host connector 14 to housing 12. Flexible member 16 defines a length and a flexibility sufficient to allow host connector 14 to be inserted into receptacle 18 in housing 12. When host connector 14 is inserted in receptacle 18, data storage device 10 assumes a padlock-like form factor. This design is highly advantageous as it allows for easy attachment of device 10 to various articles or items.
A locking mechanism 22 can secure host connector 14 within receptacle 18 upon insertion. Locking mechanism 22 may be located on a top surface of housing 12 between receptacle 18 and a mechanical junction of flexible member 16 and housing 12. This is a useful location for locking mechanism 22 to avoid accidental actuation and accidental unlocking by a user. Other locations of locking mechanism 22, however, might alternatively be used. Locking mechanism 22 may comprise a spring-loaded element that latches into a small depression formed in flexible member 16 upon insertion of host connector 14 into receptacle 18. The small depression in flexible member 16 is shown as item 28 in
Host connector 14 may comprise a Universal Serial Bus (USB) connector that can be inserted into a USB port of the host computer, or may comprise a wide variety of other connector types. In any case, host connector 14 defines a size relative to receptacle 18 that allows host connector 14 to fit into receptacle 18. By way of example, host connector 14 may conform to one of the following standards: a personal computer memory card international association (PCMCIA) standard, a PC Card standard, a CardBus standard, a Universal Serial Bus (USB) standard, a Universal Serial Bus 2 (USB2) standard, an IEEE 1394 FireWire standard, a Small Computer System Interface (SCSI) standard, an Advance Technology Attachment (ATA) standard, a serial ATA standard, a Peripheral Component Interconnect (PCI) standard, and a PCI Express standard.
Housing 12 may comprise any of a wide variety of materials. In the illustrated example, housing 12 comprises a molded plastic interior with an aluminum cover for aesthetic purposes and added rigidity.
Circuit board 40 is housed within housing 12 (not shown in
Controller 50 is also shown in
Spring element 54 is used to bias against host connector 14 when host connector 14 is inserted and locked within receptacle 18 formed in housing 12. In this manner, when locking mechanism 22 is actuated to release host connector 14 from receptacle 18, spring element 54 forces host connector 14 out of receptacle 18. Spring element 54 also provides a biasing resistance force during insertion of host connector 14 into receptacle 18.
If desired, a light emitting diode (LED) 41 or other semiconductor light source may also be provided an circuit board 40. In that case, light emitting diode 41 maybe used to illuminate a portion of housing 12. For example, the portion of housing 12 surrounding locking mechanism 22 may comprise a translucent or partially translucent material that can be illuminated by light emitting diode 41 to provide a desirable lighting effect around locking mechanism 22. Alternatively, the entirety of housing 12 may comprise a translucent or partially translucent material that can be illuminated by a light guide. In yet another example, flexible member 16 may be made of translucent or partially translucent material that will glow with the use of light emitting diode 41 and/or a light guide.
A flexible member 96 extends between housing 92 to mechanically and electrically couple host connector 94 to housing 92. Accordingly, flexible member 96 defines a length and a flexibility sufficient to allow host connector 94 to be inserted into the receptacle in housing 92. Portion 99 of data storage device 90 may define a size and shape similar to housing 92. In the embodiment of
Moreover, in some embodiments, the internal electronics including the data storage elements may be separated into portion 99 and housing 92. Since these respective portions of data storage device 90 are electrically coupled via flexible member 96, the electronics can be housed in either side or distributed between the sides. This may also allow the device to be more compact.
As yet another possible feature for the data storage devices described herein, the receptacle formed in the housing to receive the host connector may be active or passive. In other words, the receptacle in the housing (e.g., receptacle 18 if housing 12 of device 10) may be an electrically inactive docking port, or may be an electrical port that can interface with host connectors of other devices.
Referring to
The data storage device 10 may also be equipped with a security mechanism which provides that flexible member 16 is locked into housing 12 unless the user has the combination to disengage the flexible member from the housing. This feature would preferably be present on housing 12 and could take the form of a combination lock or biometric mechanism, such as a fingerprint scanner.
Various embodiments of the invention have been described. Nevertheless, various modifications may be made without departing from the scope of the invention. These and other embodiments are within the scope of the following claims.
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