The invention relates to automotive key fobs for remote keyless entry and, in particular, to a fob that releases internal pressure build-up due to environmental heating.
Conventional key fobs for remote keyless entry include an elastomeric seal to prevent liquids (e.g., water) from entering the fob. Due to the seal, pressure can build-up inside the fob due to environmental heating, such as by sun exposure, which may cause inadvertent opening of the fob.
Thus, there is a need to provide a fob that allows air to escape upon pressure build-up.
An object of the invention is to fulfill the needs referred to above. In accordance with the principles of the present invention, this objective is obtained by providing a self-venting device that includes a first component having an interior, a second component coupled to the first component so as to close the interior, and seal structure engaged between the first and second components in a sealed state so as to seal the interior from external agents. The seal structure includes a plurality of seal members, each having a resilient seal tip extending therefrom. The seal tips are constructed and arranged such that 1) when pressure inside the interior is equal to pressure outside of the device, the seal tips are compressed between the first and second components in the sealed state, and 2) when pressure in the interior is greater than the pressure outside of the device causing the second component to move away from the first component, the seal tips move to an unsealed state, permitting air to exit from the interior.
In accordance with another aspect of a disclosed embodiment, a method vents a device having a first component and second component. The method provides seal structure engaged between the first and second components in a sealed state so as to seal the interior from external agents, such that when pressure inside the interior is equal to pressure outside of the device, a resilient portion of the seal structure is compressed between the first and second components in the sealed state. When pressure in the interior is greater than the pressure outside of the device causing the second component to move away from the first component, the method ensures that the resilient portion of the seal structure moves to an unsealed state, permitting air to exit from the interior.
Other objects, features and characteristics of the present invention, as well as the methods of operation and the functions of the related elements of the structure, the combination of parts and economics of manufacture will become more apparent upon consideration of the following detailed description and appended claims with reference to the accompanying drawings, all of which form a part of this specification.
The invention will be better understood from the following detailed description of the preferred embodiments thereof, taken in conjunction with the accompanying drawings, wherein like reference numerals refer to like parts, in which:
With reference to
In accordance with an embodiment, seal structure, generally indicated at 18, is provided between and engaged with a portion of the cover 16 and a portion of the body 12 in a sealed state to provide an axial airtight seal for the interior 14 against external environmental agents. The seal structure 18 is preferably an elastomer O-ring, having a plurality of seal members, generally indicated at 19, with each seal member including a resilient seal tip 20 that extends from a base 22 in a cantilever manner.
With reference to
Thus, the seal structure 18 provides self-venting (pressure relief) of the key fob 10 in addition to providing highly reliable sealing at no additional cost.
The foregoing preferred embodiments have been shown and described for the purposes of illustrating the structural and functional principles of the present invention, as well as illustrating the methods of employing the preferred embodiments and are subject to change without departing from such principles. Therefore, this invention includes all modifications encompassed within the spirit of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
4636593 | Novak | Jan 1987 | A |
4758004 | Semon | Jul 1988 | A |
5526526 | Clark et al. | Jun 1996 | A |
6621446 | Chaillie | Sep 2003 | B1 |
6696639 | Nurmi | Feb 2004 | B1 |
7514642 | Burca et al. | Apr 2009 | B2 |
7598462 | Burca et al. | Oct 2009 | B2 |
9022162 | Konno | May 2015 | B2 |
20040201512 | Sugimoto | Oct 2004 | A1 |
20060054484 | Uleski et al. | Mar 2006 | A1 |
20060186990 | Yamamoto et al. | Aug 2006 | A1 |
20070131530 | Burca et al. | Jun 2007 | A1 |
20110272463 | Jennings et al. | Nov 2011 | A1 |
20130042765 | Chameroy | Feb 2013 | A1 |
Entry |
---|
International Search Report and Written Opinion dated Feb. 25, 2016 from corresponding International Patent Application No. PCT/US2015/060633. |
Number | Date | Country | |
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20160138716 A1 | May 2016 | US |