Intermediary device

Information

  • Patent Grant
  • 7083162
  • Patent Number
    7,083,162
  • Date Filed
    Tuesday, September 2, 2003
    21 years ago
  • Date Issued
    Tuesday, August 1, 2006
    18 years ago
Abstract
The present invention provides an intermediary device which alters a surrounding environment and attaches to and/or integrates with at least one other device with little or no effect on devices to which the intermediary device is attached.
Description
TECHNICAL FIELD

This invention relates, generally, to a device which can serve as an intermediary device between other devices, and more particularly, to an intermediary device which alters the environment while leaving the other devices generally unaffected.


SUMMARY OF THE INVENTION

While the way in which the present invention addresses the disadvantages of the prior art will be discussed in greater detail below, in general, the present invention provides an intermediary device which attaches to and/or integrates with at least one other device, the intermediary device, altering a surrounding environment with little to no effect on devices to which it is attached.





BRIEF DESCRIPTION OF THE DRAWINGS

The subject invention will hereinafter be described in conjunction with the appended drawing figures, wherein like numerals denote like elements, and:



FIG. 1 is a block diagram illustrating an exemplary configuration of an intermediary device in accordance with an exemplary embodiment of the present invention;



FIG. 2 are front and rear perspective views of an exemplary embodiment of an intermediary device in accordance with the present invention;



FIG. 3 is perspective view of the intermediary device of FIG. 2 in an exemplary environment;



FIG. 4 is perspective view of another exemplary embodiment of an intermediary device the present invention;



FIG. 5 is perspective view showing an alternative aspect of the exemplary embodiment of FIG. 4; and



FIG. 6 is close-up perspective view an exemplary embodiment of the present invention.





DETAILED DESCRIPTION

The following description is of exemplary embodiments of the invention only, and is not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following description is intended to provide a convenient illustration for implementing various embodiments of the invention. As will become apparent, various changes may be made in the function and arrangement of the elements described in these embodiments without departing from the scope of the invention as set forth herein. For example, in the context of the present invention, the method and apparatus hereof find particular use in connection with environment altering systems such as air fresheners. However, generally speaking, various volatizable materials such as insect repellants, deodorizers, sanitizers, and/or the like are suitable for use in accordance with the present invention. Additionally, various embodiments of the present invention are described in conjunction with specific appliances and devices, though it should be appreciated that the scope of the present invention should not be considered limited to those specifically mentioned herein.


An intermediary device 100 in accordance with the present invention is provided for herein. Generally, device 100 comprises a structure configured to alter a surrounding environment, which can also be attached and/or integrated with at least one other device. For example, as mentioned above, device 100 may comprise an air freshener such as a solid, gel, liquid (e.g., scented oil) air freshening device which is attached to, for example and as described in further detail below, a home appliance.


In general, in accordance with various embodiments of the present invention, FIG. 1 is a block diagram of an exemplary intermediate vapor-dispensing device 100 configured to attach to a first device 110 and a second device 120. For example, in one exemplary embodiment, first device 110 is an electrical receptacle and second device 120 is a device which, in the absence of intermediary device 100, is typically plugged into the electrical receptacle.


For example, referring to the exemplary embodiments illustrated in FIGS. 2 and 3, and as described in further detail below, device 100 is configured to be positioned between a wall outlet 130 and an electrical cord 140 of an appliance (e.g., a radio as pictured) 150. Similarly, as shown in FIGS. 4–6, intermediary device 100 is integrated with a lamp 500 between a first device comprising a lamp socket 502 and a second device comprising a light bulb 503 which otherwise would be inserted into lamp socket 502. Thus, it should be apparent that, in its various embodiments, intermediate vapor-dispensing device 100 comprises any device configured to attach to a first device 110 and a second device 120 having various properties described herein below.


In accordance with various embodiments of the present invention, device 100 is a discrete, low-noticeability unit. In this context, “discrete, low-noticeability” refers generally to various characteristics of the same. For example, in the context of an intermediary device which is located between a wall outlet and a standard plug (e.g., connected to radio, alarm clock, etc.), as can be seen in FIGS. 2 and 3, intermediary device 100 is generally about the size and shape of a standard plug base 101. For example, a body 200 of intermediary device 100 can be described by length L and width W, (e.g. if rectangular) or diameter D (e.g. if cylindrical), and for intermediary device 100 to generally mimic the appearance of the plug on a conventional electrical cord for example, the ratio of length L to width W (or to diameter D) is preferably from about 1:1 to about 2: 1. Most preferably, and in order to more closely mimic the appearance of the plug on a conventional electrical cord, the ratio of L/W or L/D should be about 1.25:1 to about 1.75:1. In such embodiments, on one end of body 200, electrical outlet prongs 201 are provided for insertion into an electrical receptacle. In the illustrated embodiment, prongs 201 are configured for a standard two-prong outlet, though any configuration (three-prong, grounded outlet, European style, 220 amp, etc.) may likewise be used. On an opposing end of base 200, intermediary device outlets 202 are provided for insertion of other devices. Again, in the illustrated embodiment, outlets 202 are configured in a standard two-prong configuration, though any configuration may likewise be used, and, in fact, may desired in instances where intermediary device 100 is used as an adapter for plugging components into receptacles which otherwise might not fit (e.g., where a wall outlet is a two-prong configuration and an appliance is a three-prong configuration, prongs 201 may be two-prong, while outlets 202 may be three-prong). Thus, intermediary device 100 is at least partially “camouflaged” in that it suitably blends in with base 101 of the plug of appliance 150.


However, discrete and/or low-noticeability may also be obtained in a number of alternative manners. For example, with momentary reference to FIG. 5, in the context of a lamp 500 comprising, generally, a lamp base 501, a socket 502 and a light bulb 503, intermediary device 100 may be disguised by the placement of a lamp shade 504 or other hiding feature which covers and/or obstructs the viewing of intermediary device 100.


Of course, in addition to separate hiding features, intermediary device 100 may also have other generally discrete/camouflaged characteristics as in the case of the wall plug and other embodiments. For example, with reference to FIGS. 4–6, in the lamp embodiment, intermediary device 100 comprises a shape which has a natural contour corresponding to the shape of the lamp.


In various embodiments, intermediary device 100 comprises materials suitable for use in applications where electricity or heat are present. For example, intermediary device 100 may comprise a base material of a non-conductive nature such as plastic, ceramic, fiberglass or the like. Intermediary device 100 may further comprise various conductive materials (e.g., copper, aluminum, other metals or the like), such that electric current or heat can pass through intermediary device 100.


In an embodiment such as that described in FIGS. 4–6, intermediary device 100 has a male end 505 configured for insertion into socket 502. In many instances, male end 505 will thus be threaded for insertion and fastening into socket 502. However, various alternative methods for insertion/fastening now known or as yet unknown are likewise contemplated herein.


Male end 505 is attached to or otherwise integrated with an environment altering portion 506. In this embodiment, environment altering portion 506 comprises various components and structure which serve to alter the environment surrounding intermediary device 100. For example, in the context of a vapor-dispensing device 100, portion 506 comprises any combination of a material to be vaporized (insect repellant, air freshener, deodorizer or the like) in various forms (gel, solid, liquid, etc.), heating elements, material evacuation elements (e.g., a fan), control switches, switches for activating and de-activating the environment altering device and/or devices to which intermediary device 100 is connected, venting and the like. Of course, it should be appreciated that in various embodiments, some of these components may not be present, and other components not listed here may be present. Nonetheless, all of the same variously fall within the scope of the present invention.


In this exemplary embodiment, intermediary device 100 further comprises a female end 507. Female end 507 comprises a socket for receiving light bulb 503. Generally, the socket of female end 507 is configured to receive and retain light bulb 503, and thus, in instances where light bulb 503 is threaded, female end 507 will be similarly sized and threaded. In alternative embodiments, female end 507 may be configured in non-threaded manners yet which retain light bulb 503, such as, for example, by snap fit. Similarly, intermediary device 100 and/or female end 507 may act in an adaptive sense in that the size of female end 507 may not correspond to socket 502 so as to allow various light bulbs which would not otherwise fit socket 502 to be used with lamp 500.


Briefly, however, in other embodiments, intermediary device 100 need not follow such contours or have male and female ends, but rather may comprise a configuration which is separate from the typical plug and socket type configurations described above. For example, intermediary device 100 may comprise, in various embodiments a configuration which encompasses part of first or second device 110, 120. One such example might include a “ring” configuration which encircles and connects with lamp socket 502, but is not configured with its own socket 507 and rather, bulb 503 still connects with socket 502.


As mentioned above, intermediary device 100 comprises various elements which alter the environment surrounding device 100. One such example is alteration by dispensation of a vapor. In such embodiments, in addition to male and female ends (505, 507) and generally within altering portion 506, with reference to FIG. 6, intermediary device 100 comprises a reservoir 600 for containing a material to be dispensed 601 and a retainer 602 configured for holding reservoir 600.


Briefly, retainer 602 is any mechanism/structure capable of receiving and retaining reservoir 600. For example, the embodiment of FIG. 6 depicts retainer 602 as a two-piece structure which holds reservoir 600. In various embodiments, reservoir 600 has a predetermined shape; in this example, frusto-conical with a hollow core 603 (e.g., to fit around male end 505). Retainer 602 comprises an upper portion 604 and a lower portion 605. Upper portion 604 has a similar shape as reservoir 600 so that upper portion 604 can encompass reservoir 600 and secure to lower portion 605, thereby retaining reservoir 600. Briefly, in accordance wit various aspects of the present invention, various sections of intermediary device 100 may comprise features which facilitate intermediary devices altering the environment, such as, for example and as illustrated in FIG. 6, vents 606.


Finally, while the present invention has been described above with reference to various exemplary embodiments, many changes, combinations and modifications may be made to the exemplary embodiments without departing from the scope of the present invention. For example, the various components may be implemented in alternate ways. These alternatives can be suitably selected depending upon the particular application or in consideration of any number of factors associated with the operation of the system. In addition, the techniques described herein may be extended or modified for use with other types of devices. These and other changes or modifications are intended to be included within the scope of the present invention.

Claims
  • 1. An intermediary device comprising, a vaporizing device for volatilizing a vapor producing material having a first male end configured with light bulb threads and a second female end configured with light socket threads for receipt of a light bulb, said vaporizing device having a heat conduit to convey heat from said light bulb to said vapor producing material to boost volatilization; andan electrical connection between said first end and said second end.
  • 2. The intermediary device of claim 1, wherein said vapor producing material comprises at least one of a fragrance, deodorizer, sanitizer and insecticide vapor producing material.
  • 3. The intermediary device of claim 1, wherein said vaporizing device is electrically powered by screwing said first end into a light bulb socket.
  • 4. The intermediary device of claim 1, wherein said vaporizing device further comprises an electrical connection between said first end and a resistive heating element to heat said vapor producing material.
  • 5. The intermediary device of claim 1, wherein said vaporizing device comprises a reservoir to hold said vapor producing material and a vented heating element.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application claims priority to U.S. Provisional Application Ser. No. 60/407,394 entitled Intermediary Device and filed on Aug. 30, 2002 which is incorporated herein by reference.

US Referenced Citations (228)
Number Name Date Kind
1836600 Jones Dec 1931 A
2539696 Morrison Jan 1951 A
3262290 Huber Jul 1966 A
3748438 Costello Jul 1973 A
3780260 Eisner Dec 1973 A
3895928 Gonzalo Jul 1975 A
3908905 Von Philipp et al. Sep 1975 A
3923458 Gonzalo Dec 1975 A
3948445 Andeweg Apr 1976 A
4017030 Coplan et al. Apr 1977 A
4037353 Hennart et al. Jul 1977 A
4084079 Costello Apr 1978 A
4111655 Quincey Sep 1978 A
4123741 Kiyono et al. Oct 1978 A
4165835 Dearling Aug 1979 A
4171340 Nishimura et al. Oct 1979 A
4208012 Dutcher Jun 1980 A
4214146 Schimanski Jul 1980 A
4220281 Martens, III et al. Sep 1980 A
4228124 Kashihara et al. Oct 1980 A
4242969 Steigerwald et al. Jan 1981 A
4293173 Tricca Oct 1981 A
4294778 DeLuca Oct 1981 A
4346059 Spector Aug 1982 A
4391781 Van Lit Jul 1983 A
4408813 Koehler Oct 1983 A
4413779 Santini Nov 1983 A
4415797 Choustoulakis Nov 1983 A
4425302 Pons Pons Jan 1984 A
4467117 Zobele Aug 1984 A
4518212 Rumble May 1985 A
4530556 Bonus Jul 1985 A
4537351 Wilson Aug 1985 A
4544592 Spector Oct 1985 A
4549250 Spector Oct 1985 A
4556539 Spector Dec 1985 A
4571485 Spector Feb 1986 A
4574181 Spector Mar 1986 A
4595564 Spector et al. Jun 1986 A
4631387 Glucksman Dec 1986 A
4658985 Madsen et al. Apr 1987 A
4660764 Joyaux et al. Apr 1987 A
4662679 Franck et al. May 1987 A
4675504 Suhajda Jun 1987 A
4686353 Spector Aug 1987 A
4695434 Spector Sep 1987 A
4703155 Suhajda Oct 1987 A
4707336 Jones Nov 1987 A
4714984 Spector Dec 1987 A
4718856 Pinkerton et al. Jan 1988 A
4725712 Schroeder Feb 1988 A
4731520 Glucksman Mar 1988 A
4731522 Manchester Mar 1988 A
4732321 Dolan Mar 1988 A
4734560 Bowen Mar 1988 A
4739928 O'Neil Apr 1988 A
4743406 Steiner et al. May 1988 A
4753389 Davis Jun 1988 A
4777345 Manchester Oct 1988 A
4780286 Parent et al. Oct 1988 A
4795883 Glucksman et al. Jan 1989 A
4798935 Pezaris Jan 1989 A
4800239 Hill Jan 1989 A
4801271 Piper Jan 1989 A
4804821 Glucksman Feb 1989 A
4808347 Dawn Feb 1989 A
4816973 Atalla et al. Mar 1989 A
4830791 Muderlak et al. May 1989 A
4837421 Luthy Jun 1989 A
4849606 Martens, III et al. Jul 1989 A
4853517 Bowen et al. Aug 1989 A
4878615 Losi Nov 1989 A
4886469 Jseng Dec 1989 A
4915301 Munteanu Apr 1990 A
4919981 Levey et al. Apr 1990 A
4931224 Holzner, Sr. Jun 1990 A
4931258 Zlotnik et al. Jun 1990 A
4968456 Muderlak et al. Nov 1990 A
D315789 Muderlak Mar 1991 S
4998671 Leifheit Mar 1991 A
5004435 Jammet Apr 1991 A
5014913 Hoyt et al. May 1991 A
5015442 Hirai May 1991 A
5029729 Madsen et al. Jul 1991 A
5038394 Hasegawa et al. Aug 1991 A
5050798 Sullivan Sep 1991 A
5106317 Taylor Apr 1992 A
5111477 Muderlak et al. May 1992 A
5115975 Shilling May 1992 A
5121881 Lembeck Jun 1992 A
5126078 Steiner et al. Jun 1992 A
5136684 Lonker et al. Aug 1992 A
5147582 Holzner, Sr. et al. Sep 1992 A
5148984 Bryson, Jr. et al. Sep 1992 A
5175791 Muderlak et al. Dec 1992 A
5196171 Peltier Mar 1993 A
5201025 Landesberg Apr 1993 A
5217696 Wolverton et al. Jun 1993 A
5220636 Chang Jun 1993 A
5222186 Schimanski et al. Jun 1993 A
5223182 Steiner et al. Jun 1993 A
5233680 Fussell Aug 1993 A
5239610 Shao Aug 1993 A
5240426 Barla Aug 1993 A
5285014 Gilchrist Feb 1994 A
5290546 Hasegawa et al. Mar 1994 A
5295845 Changxing Mar 1994 A
5309338 Liu May 1994 A
5314669 Hamilton May 1994 A
5320542 Cheng Jun 1994 A
5339065 Slenker Aug 1994 A
5342584 Fritz et al. Aug 1994 A
5373581 Smith Dec 1994 A
5375728 West Dec 1994 A
5376338 Zlotnik Dec 1994 A
5382410 Peltier Jan 1995 A
D355251 Paulovich et al. Feb 1995 S
5394506 Stein et al. Feb 1995 A
5402517 Gillett et al. Mar 1995 A
D357330 Wong et al. Apr 1995 S
5431859 Tobin Jul 1995 A
5431885 Zlotnik et al. Jul 1995 A
5445802 Wendelken Aug 1995 A
5465198 Kellogg Nov 1995 A
5480591 Lagneaux et al. Jan 1996 A
5481442 Wiltshire et al. Jan 1996 A
5484086 Pu Jan 1996 A
5498397 Horng Mar 1996 A
5521357 Lock et al. May 1996 A
5522008 Bernard May 1996 A
5547616 Dancs et al. Aug 1996 A
5556192 Wang Sep 1996 A
5567361 Harper Oct 1996 A
5574821 Babasade Nov 1996 A
5575992 Kunze Nov 1996 A
5577156 Costello Nov 1996 A
5591395 Schroeder et al. Jan 1997 A
5624230 Taylor et al. Apr 1997 A
5634806 Hahn Jun 1997 A
5647052 Patel et al. Jul 1997 A
5647053 Schroeder et al. Jul 1997 A
5651942 Christensen Jul 1997 A
5662835 Collingwood Sep 1997 A
5664958 Chadwick et al. Sep 1997 A
5700430 Bonnema et al. Dec 1997 A
5735460 Eisenbraun Apr 1998 A
5749520 Martin et al. May 1998 A
5750498 Soeda et al. May 1998 A
5765751 Joshi Jun 1998 A
5788155 Martin et al. Aug 1998 A
5788931 Munoz Quintana Aug 1998 A
5796914 Gatzemeyer et al. Aug 1998 A
5805768 Schwartz et al. Sep 1998 A
5810265 Cornelius et al. Sep 1998 A
5813873 McBain et al. Sep 1998 A
5832648 Malone Nov 1998 A
5873529 Johnson Feb 1999 A
5875968 Miller et al. Mar 1999 A
5884808 Muderlak et al. Mar 1999 A
5899381 Gordon et al. May 1999 A
5903710 Wefler et al. May 1999 A
5926614 Steinel Jul 1999 A
5928605 Bonnema et al. Jul 1999 A
5932204 Joshi Aug 1999 A
5937140 Leonard et al. Aug 1999 A
5940577 Steinel Aug 1999 A
5944223 Klima et al. Aug 1999 A
5945094 Martin et al. Aug 1999 A
5955701 Schockner et al. Sep 1999 A
5957701 McMillin Sep 1999 A
5970643 Gawel, Jr. Oct 1999 A
5976503 Martin et al. Nov 1999 A
5998735 Patterson, Jr. Dec 1999 A
6021254 Hunter Feb 2000 A
6031967 Flashinski et al. Feb 2000 A
6032930 Calino Mar 2000 A
6035098 Chipalkatti et al. Mar 2000 A
6036536 Chiu Mar 2000 A
6044202 Junkel Mar 2000 A
6045374 Candeloro Apr 2000 A
6050551 Anderson Apr 2000 A
6051788 Nichols Apr 2000 A
6078728 O'Rourke et al. Jun 2000 A
6085026 Hammons et al. Jul 2000 A
6097881 DeWitt et al. Aug 2000 A
6099137 McCormick et al. Aug 2000 A
6101315 Steinel, Jr. Aug 2000 A
6104866 DeWitt et al. Aug 2000 A
6104867 Stathakis et al. Aug 2000 A
D430659 Zaraboza et al. Sep 2000 S
6123935 Wefler et al. Sep 2000 A
6141496 Sundberg et al. Oct 2000 A
6148143 Steinel, Jr. Nov 2000 A
6156088 Cardarelli Dec 2000 A
6197262 Del Ben Mar 2001 B1
6197263 Blount Mar 2001 B1
6227118 Nance May 2001 B1
6236807 Ruffolo et al. May 2001 B1
6249645 Smith Jun 2001 B1
6254065 Ehrensperger et al. Jul 2001 B1
6264548 Payne, Jr. et al. Jul 2001 B1
6269979 Dumont Aug 2001 B1
6270720 Mandish Aug 2001 B1
6275651 Voit Aug 2001 B1
6278840 Basaganas Millan Aug 2001 B1
6285830 Basaganas Millan Sep 2001 B1
6289176 Martter et al. Sep 2001 B1
6302559 Warren Oct 2001 B1
6315959 Mandish Nov 2001 B1
6328791 Pillion et al. Dec 2001 B1
6342676 Ha Jan 2002 B1
6349168 Jaworski Feb 2002 B1
6352210 Requejo Mar 2002 B1
6354513 Basaganas Millan Mar 2002 B1
6361752 Demarest et al. Mar 2002 B1
6364673 Lee Apr 2002 B1
6368564 Smith Apr 2002 B1
6371815 Wetzel et al. Apr 2002 B1
6374044 Freidel Apr 2002 B1
6374045 Basaganas Millan Apr 2002 B1
6381408 Jaworski et al. Apr 2002 B1
6478440 Jaworski et al. Nov 2002 B1
6603924 Brown et al. Aug 2003 B1
6714725 Grone et al. Mar 2004 B1
20010031225 Mandish Oct 2001 A1
20010053283 Levine et al. Dec 2001 A1
20020144992 Vieira Oct 2002 A1
20030138241 Ambrosi et al. Jul 2003 A1
Foreign Referenced Citations (12)
Number Date Country
35 35 564 May 1986 DE
41 31 613 Mar 1993 DE
278653 Aug 1988 EP
0 296 807 Dec 1988 EP
0 669 137 Mar 1995 EP
0 911 041 Apr 1999 EP
402507 Dec 1933 GB
2 356 815 Jun 2001 GB
WO 00 76292 Dec 2000 WO
WO 01 10739 Feb 2001 WO
WO 0168154 Sep 2001 WO
WO 0193919 Dec 2001 WO
Related Publications (1)
Number Date Country
20040113294 A1 Jun 2004 US
Provisional Applications (1)
Number Date Country
60407394 Aug 2002 US