This application claims the benefit of Taiwan Utility Model Application Serial No. 102212393 filed on Jul. 2, 2013, the entire disclosure of which is expressly incorporated herein by reference.
Field of the Disclosure
The present disclosure relates generally to an electronic component. More specifically, the present disclosure relates to a flash drive with a snap hook for attaching the drive to objects such as keys, key chains, etc.
Related Art
With the advancement and development of technology and information digitalization, users have become increasingly dependent on electronic devices and the information and files contained therein. One of the most commonly used devices for accessing and carrying digital information is a portable flash drive. Due to the small and compact size of flash drives, they are often designed with a closed key ring on the cover (e.g., shell) of the flash drive to attach the flash drive to an external item for ease of portability and loss prevention. However, such key rings can be inconvenient and difficult to use.
The present disclosure relates to a flash drive with a snap hook for attaching the drive to an object such as a key, key chain, etc. The portable flash drive includes a housing defining a chamber, a memory unit disposed in the chamber of the housing, and a slot hook attached to an end of the housing. The slot hook includes an interior aperture, a blocking end, a pivoting end, and an opening therebetween, and a spring lever having a first arm and second arm of staggered lengths extending parallel from opposite ends of an abutment segment therebetween, the first and second arms attached to the hook at the pivoting end of the hook such that the spring lever is biased to a closed position across the opening.
The foregoing features of the disclosure will be apparent from the following Detailed Description, taken in connection with the accompanying drawings, in which:
The present disclosure relates to a flash drive with a snap hook, as discussed below in connection with
The snap hook 20 includes a hook 30 and a spring lever 40. More specifically, the hook 30 defines an interior aperture 34 and includes a blocking end 31 and a pivoting end 32, with an opening 33 defined therebetween. Further, the hook 30 has a snap protrusion 311 extending from an interior surface of the blocking end 31 of the hook 30.
The spring lever 40 has a first arm 41, a second arm 42, and an abutment segment 43 therebetween, such that the first arm 41 and the second arm 42 are connected by and extend parallel from opposite ends of the abutment segment 43. The spring lever 40 is attached to the hook at pivoting end 32, as described below.
The retaining clip 11 includes a bottom portion 111 and top portion 112 with a back wall segment 113 therebetween, such that the bottom portion 111 and top portion 112 are connected by and extend from opposite ends of the back wall segment 113. A front wall segment 114 extends vertically from the bottom portion 111 at the end opposite the wall segment 113. The memory unit 12 could be frictionally secured between the bottom portion 111 and top portion 112, such that the front wall segment 114 prevents the memory unit 12 from sliding out from between the bottom portion 111 and top portion 112 and out of the housing 13. In this way, the retaining clip 11 holds and secures the memory unit 12 within the housing 13.
The top portion includes engagement recesses 115 at an end of the top portion 112 opposite the back wall segment 113. The engagement protrusions 152 of the connector 15 engage, respectively, the engagement recesses 115 of the retaining clip 11, thereby securing the retaining clip 11 to the connector 15. Thereby, the housing 13 is connected with the retaining clip 11 via the connector 15.
The spring lever 40 of the snap hook 20 includes a first arm 41 and second arm 42 with an abutment segment 43 therebetween. The first arm 41 comprises an upper segment 412, a lower segment 413, and a first end 411 opposite the abutment segment 43. The upper segment 412 and lower segment 413 form a first angle α less than 180 degrees (e.g., 150 degrees). The second arm 42 also comprises an upper segment 422, a lower segment 423, and a first end 421 opposite the abutment segment 43. The upper segment 422 and lower segment 423 form a second angle β less than 180 degrees (e.g., 150 degrees).
The first arm 41 and second arm 42 are of staggered lengths. In other words, the first arm 41 is longer than the second arm 42 (and more specifically, the lower section 413 of the first arm 41 is longer than the lower section 423 of the second arm 42). The first end 411 and second end 422 of the spring lever 40 are connected to the pivoting end 32 by two correspondingly staggered and oppositely extending holes 312 and 313 (see
Due to the distance D between the first end 411 of the first arm 41 (and corresponding hole 312) and the second end 421 of the second arm 42 (and corresponding hole 313), the spring lever 40 has an open position and a closed position (described below in more detail), which consequently opens and closes opening 33. The spring lever 40 utilizes this staggered space (e.g., vertical displacement) between the ends of the first and second arms 411, 421 of the snap hook 30 to provide the spring lever 40 with force for biasing the lever 40 in a closed position against the blocking end 31.
The angles α, β formed by the first and second arms 41, 42 could be of any angle. Preferably, the first and second arms 41, 42 form angles α, β that enable the abutment segment 43 to engage the inside surface of the blocking end 31 and/or the snap protrusion 311 (although the abutment segment 43 could also function without contacting either the blocking end 31 or the snap protrusion 311).
Having thus described the system and method in detail, it is to be understood that the foregoing description is not intended to limit the spirit or scope thereof. It will be understood that the embodiments of the present disclosure described herein are merely exemplary and that a person skilled in the art may make any variations and modification without departing from the spirit and scope of the disclosure. All such variations and modifications, including those discussed above, are intended to be included within the scope of the disclosure. What is intended to be protected by Letters Patent is set forth in the following claims.
Number | Date | Country | Kind |
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102212393 U | Jul 2013 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
2049610 | Guidry | Aug 1936 | A |
D513000 | Cohen | Dec 2005 | S |
D606078 | Chen | Dec 2009 | S |
D624306 | Case | Sep 2010 | S |
D624307 | Case | Sep 2010 | S |
7883353 | Hao et al. | Feb 2011 | B2 |
D633909 | Heath et al. | Mar 2011 | S |
D640263 | Huang | Jun 2011 | S |
D655709 | Huang | Mar 2012 | S |
8179669 | Huang | May 2012 | B2 |
8192211 | Huang | Jun 2012 | B1 |
D662941 | Emami | Jul 2012 | S |
D672361 | Huang | Dec 2012 | S |
8542483 | Huang | Sep 2013 | B2 |
D709344 | Adelman et al. | Jul 2014 | S |
D709513 | Huang | Jul 2014 | S |
8929063 | Emami | Jan 2015 | B2 |
D724601 | Hsieh et al. | Mar 2015 | S |
20040145878 | Wang | Jul 2004 | A1 |
20050277316 | Cohen | Dec 2005 | A1 |
20120087079 | Ting | Apr 2012 | A1 |
20120239836 | Enayati | Sep 2012 | A1 |
20120327610 | Huang | Dec 2012 | A1 |
20130044423 | Huang | Feb 2013 | A1 |
20130182386 | Emami | Jul 2013 | A1 |
20130265709 | Huang | Oct 2013 | A1 |
20130327183 | Tai-Kao | Dec 2013 | A1 |
20140211407 | Huang | Jul 2014 | A1 |
Entry |
---|
techPowerUp: A-Data S805 Flash Drive Review, [online] Jul. 14, 2009 [retrieved on Aug. 7, 2009] http://www.techpowerup.com/reviews/AData/S805—Flash—Drive/ (4 pages). |
HP v250w 16GB USB Flash Pen Drive Disk Metal, [retrieved online on Mar. 26, 2013] http://stores.ebay.com/2ronz/USB-Flash-Drive-/—i.html?—fsub=216700 (1 page). |
Number | Date | Country | |
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20150009618 A1 | Jan 2015 | US |