1. Field
The present disclosure relates generally to the field of securing network plugs, and more particularly to a method and apparatus for locking a network cable in a jack.
2. Background
In a typical network server room or other data center large numbers of computer systems such as servers are kept in racks, and even larger numbers of cables are plugged into these servers, sometimes resulting in a seemingly unmanageable number of plugs and cables, as illustrated in
Many of these cables are connected to network equipment utilizing a standard 8-position 8-contact (8P8C) connector, frequently called an RJ45 connector. This connector is widely used for local area networks using the Ethernet protocol and is likely to be familiar to any computer user.
In order to reduce the likelihood of an inadvertent disconnect of a plug from a jack, or to improve security when an important connection may be accessed by unauthorized individuals, certain cable locks have been developed in the prior art. Some of these cable locks, such as the ones illustrated in
Further, some cable locks in the prior art utilize a modified jack, for example, including a specialized latch mechanism or fastener, such as a screw-lock, to hold the plug in place. Still other cable locks in the prior art such as the ones illustrated in
These and other prior art examples of cable locks suffer from one or more of the following disadvantages: large size (i.e., requiring widely spaced jacks and/or protruding jacks), the need for a key or other tool to remove the plug, high price, or the need for a specialized jack to accept the lock mechanism. Thus, there is a desire in the field for an improved cable locking mechanism.
The following presents a simplified summary of the disclosure in order to provide a basic understanding of certain disclosed embodiments. This summary is not an extensive overview of all contemplated embodiments, and is intended neither to identify key or critical elements, nor to delineate the scope of such embodiments. Its sole purpose is to present some concepts of certain disclosed embodiments in a simplified form as a prelude to a more detailed description, presented later.
In various representative aspects, the instant disclosure provides for a method and apparatus for securing a plug in a jack. Exemplary features may include a tab lock that a user may slide forward to place a distally extending tongue underneath a release lever, such that pressing down on the release lever does not disengage a latch from holding the plug in the jack. The user may further slide the tab lock backward to remove the distally extending tongue from underneath the release lever such that the release lever functions normally enabling the plug to be released from the jack. In one aspect, the disclosure provides a method of securing a plug in a jack. Here, the plug is inserted into the jack to engage a latch on the plug into the jack. A tab lock is pressed forward to slide at least a portion of a distally extending tongue of the tab lock underneath a portion of a release lever coupled to the latch.
Another aspect of the disclosure provides an apparatus for securing a plug in a jack. A tab lock includes a distally extending tongue, wherein at least a portion of the distally extending tongue is configured to slide underneath a release lever of the plug to hinder a releasing of a latch coupled to the release lever from a corresponding latch in the jack.
These and other aspects are more fully comprehended upon review of this disclosure.
The accompanying drawings, together with the specification, illustrate exemplary embodiments of the present invention, and, together with the description, serve to explain the principles of the present invention.
In the following detailed description, only certain exemplary embodiments of the present invention are shown and described, by way of illustration. As those skilled in the art would recognize, the invention may be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein. Also, in the context of the present application, when an element is referred to as being “on” another element, it can be directly on the other element or be indirectly on the other element with one or more intervening elements interposed therebetween. Also, in the context of the present application, when an element is referred to as being “connected” or “coupled” to another element, it can be directly connected or coupled to the other element or be indirectly connected or coupled to the other element with one or more intervening elements interposed therebetween. Like reference numerals designate like elements throughout the specification.
Further, the present disclosure may be made in relation to an RJ45 plug. Those skilled in the art will comprehend that the broad concepts described in the disclosure and shown in the illustrations can be applied to other plugs and interfaces besides the RJ-45 plug, such as but not limited to any suitable registered jack (RJ) (e.g., RJ14, RJ11, etc.) or any other suitable plug having a release lever and a latch coupled to the release lever.
Methods and apparatus for securing and removing a cable plugged into a jack may operate in conjunction with a tab lock 200. Referring now to
A base 212 may be coupled to the plug 206. Here, the base 212 includes a strain relief member 214 and a finger 216. The strain relief member 214 is an optional component that may provide structural integrity enabling significant usage of the mechanism without damaging the cable 210. The finger 216 extends upward and forward from the base 212, through the tab lock 200, and at its end, rests upon the release lever 204 of the plug 206.
In the illustrated example, the angle θ between the first facet 504 and the bottom surfaced 514 at the tip 506 of the tongue 402 may be about 13°. The first facet 504 rises to a height of about 0.029 inches from the bottom surface 514, and the second facet 508 maintains the thickness of about 0.029 inches for its length, which may be substantially parallel with the bottom surface 514. The third facet 510 rises from the second facet 508 with an angle φ of about 15° with respect to a line parallel to the bottom surface 514. Of course, those of ordinary skill in the art will comprehend that these exact numerical values for the dimensional characteristics of the tongue 402 may vary within the scope of this disclosure to other suitable values to perform equivalent functions.
In various embodiments, the entirety of the tongue 202 may need not completely avoid contact with the release lever 204 in order to allow the latch 220 fully to disengage the plug 206 from the jack. That is, referring to
For example, one embodiment as illustrated in cross-section in
As discussed above, the first facet 504 rises from the bottom surface 514 of the tongue 202 at an angle θ of about 13°. However, other angles may be utilized. Here, this angle θ may be less than or equal to the angle at which the release lever 204 rises from the plug 206. The purpose of the portion of the tongue 202 including the first facet 504 is to allow the tab lock 200 to be slid all the way forward until the tip 506 of the tongue 202 comes into contact with the release lever 204. That is, although the first facet 504 may be omitted in certain examples, without this first facet 504, the tongue 202 may damage the release lever 204 if the tab lock 200 were pushed forward into its lock position with a relatively great force. That is, the angle of the first facet 504 allows the distal tip 506 of the tongue 202 to impact the release lever 204 at a location that should not damage the release lever 204.
The tab lock 200 and associated components described provide for a physically small and simple to use yet effective mechanism for locking a plug, for example, an RJ45 plug into its jack such that the likelihood that the plug is inadvertently removed from the jack is reduced or eliminated. In this way, network downtime may be enhanced by reducing or eliminating inadvertent disconnections. The relatively small physical size possible with the disclosed tab lock provides for a locking mechanism that may function in an extremely densely configured server or other computer network equipment with large numbers of jacks closely placed together. Further, the tab locks may be utilized in flush or recessed jacks as well as jacks that protrude outward from a surface of the server. Moreover, the tab lock provides for securing and releasing the plug without a need for a key or other tool.
Further, the clasp 208 may function to provide a readily recognized visual cue that a particular plug has its tab lock in its unlocked position. That is, in a scenario where a server or network device has a number of cables plugged into it, certain ones of the plugs may be desired to be temporarily easily identified. In an aspect of the instant disclosure, the tab lock 200 may be pulled out into its unlocked position. Here, the tab lock that is in its unlocked position is easily identified even from a relatively great distance, as other tab locks may be pushed into their locked position. The identification of the tab lock that is pulled into its unlocked position may be further enhanced when the clasp or other rear portion of the tab lock has a conspicuous color or light, particularly when the color contrasts from that of the server and/or the cable itself. Moreover, utilizing a variety of colors of tab locks provides for color coding of the plugs as determined by a user.
According to various aspects of the disclosure, the materials utilized to construct the plug, the tab lock, and the base/strain relief may be any suitable material, and may be materials different from one another. For example, in an embodiment configured to be utilized with an RJ45 plug, the plug may be any material capable of having its release lever flex to a suitable degree to enable the latching and unlatching in accordance with the relevant specifications for the RJ45 plug. The base and strain relief member may be the same or different material, and the tab lock may be any material having sufficient rigidity to support the pushing and pulling of the tab lock into its locked and unlocked position, and to substantially hinder the bending of the release lever of the plug to such a degree as to release the latch from the jack.
In block 910, the tab lock is pulled backward, for example, by utilizing the grip or recessed portion to grasp the tab lock and pull it away from the jack. In block 912, due to the pulling backward on the tab lock, the tongue of the tab lock slides out from underneath the release lever. Therefore, in block 914, when the finger of the strain relief member is pressed downward, the release lever bends down in a substantially unhindered fashion to release the latch from the corresponding latch in the jack. Thus, in block 916, the plug is released from the jack by pulling on the plug.
In the foregoing specification, the invention has been described with reference to specific exemplary embodiments. Various modifications and changes may be made, however, without departing from the scope of the present invention as set forth in the claims. The specification and figures are illustrative, rather than restrictive, and modifications are intended to be included within the scope of the present invention. Accordingly, the scope of the invention should be determined by the claims and their legal equivalents rather than by merely the examples described.
For example, the steps recited in any method or process claims may be executed in any order and are not limited to the specific order presented in the claims. Additionally, the components and/or elements recited in any apparatus claims may be assembled or otherwise operationally configured in a variety of permutations and are accordingly not limited to the specific configuration recited in the claims.
Benefits, other advantages and solutions to problems have been described above with regard to particular embodiments; however, any benefit, advantage, solution to a problem, or any element that may cause any particular benefit, advantage, or solution to occur or to become more pronounced are not to be construed as critical, required, or essential features or components of any or all the claims.
As used herein, the terms “comprise,” “comprises,” “comprising,” “having,” “including,” “includes” or any variation thereof, are intended to reference a non-exclusive inclusion, such that a process, method, article, composition or apparatus that comprises a list of elements does not include only those elements recited, but may also include other elements not expressly listed or inherent to such process, method, article, composition, or apparatus. Other combinations and/or modifications of the above-described structures, arrangements, applications, proportions, elements, materials, or components used in the practice of the present invention, in addition to those not specifically recited, may be varied or otherwise particularly adapted to specific environments, manufacturing specifications, design parameters, or other operating requirements without departing from the general principles of the same.
Number | Name | Date | Kind |
---|---|---|---|
4647726 | Blum | Mar 1987 | A |
5090916 | Magnier | Feb 1992 | A |
6290527 | Takaya et al. | Sep 2001 | B1 |
6821024 | Bates, III | Nov 2004 | B2 |
6851957 | Bhogal et al. | Feb 2005 | B1 |
7163414 | Lo et al. | Jan 2007 | B2 |
7204721 | Lundholm et al. | Apr 2007 | B2 |
7632125 | Irwin et al. | Dec 2009 | B2 |
7806706 | Obenshain | Oct 2010 | B2 |
7892012 | Foung | Feb 2011 | B1 |
8287197 | Sasaki et al. | Oct 2012 | B2 |
20030063862 | Fillion et al. | Apr 2003 | A1 |
20100136809 | Andres et al. | Jun 2010 | A1 |
Number | Date | Country | |
---|---|---|---|
20120088392 A1 | Apr 2012 | US |