Container caps and systems

Information

  • Patent Grant
  • 8561857
  • Patent Number
    8,561,857
  • Date Filed
    Wednesday, July 25, 2012
    12 years ago
  • Date Issued
    Tuesday, October 22, 2013
    11 years ago
Abstract
Caps and container systems suited to dispensing products like cosmetics. Some of the caps include two portions that can be coupled together and that include a dispensing system that has at least two open positions and at least one closed position.
Description
BACKGROUND OF THE INVENTION

1. Field of the Invention


The present invention relates generally to containers, and, more particularly, to container caps and systems.


2. Description of Related Art


Products are typically stored within containers. For example, cosmetic and food products are often stored in bottles and the like. A container may have a cap or lid that allows a consumer to have access to the product in a controlled fashion. When the cap is in an open position, the product is dispensed typically under an externally applied pressure and/or due to the force of gravity. When the cap is in a closed position, the product is stopped from leaving the container.


SUMMARY OF THE INVENTION

The present invention provides container caps and systems. Some embodiments of the present caps include a bottom portion having a top surface that includes a centered opening, a first recessed holding element coupled to the centered opening through a first recessed region, a second recessed holding element coupled to the centered opening through a second recessed region, and a raised element coupled to the centered opening; and a top portion couplable to the bottom portion, the top portion having a bottom surface that includes an off-centered opening, a first raised element, and a second raised element.


In some embodiments, the present caps include a top portion and a bottom portion, the top portion being couplable to the bottom portion, the top and bottom portions being configured to cause the cap to reach an open position starting from a closed position when: the top portion is rotated in a clockwise direction with respect to the bottom portion from a closed position; and the top portion is rotated in a counterclockwise direction with respect to the bottom portion from the closed position; the top and bottom portions being configured to restrict relative rotation between them to less than 360 degrees. In some embodiments, such rotation is restricted to approximately 240 degrees. In other embodiments, such rotation is restricted to approximately 90 degrees. In still other embodiments, such rotation is restricted to approximately 60 degrees.


Some embodiments of the present container systems include a bottle configured to hold a product, and a two-piece cap coupled to the bottle. The two-piece (or two-portion) cap may include a dispensing system that includes two or more open positions and one or more closed positions.


Any embodiment of any of the present container systems and caps may consist of or consist essentially of—rather than comprise/include/contain/have—the described elements and/or features. Thus, in any of the claims, the term “consisting of” or “consisting essentially of” may be substituted for any of the open-ended linking verbs recited above, in order to change the scope of a given claim from what it would otherwise be using the open-ended linking verb.


Details associated with the embodiments described above and others are presented below. Other embodiments of the present caps and container systems are possible.





BRIEF DESCRIPTION OF THE DRAWINGS

The following drawings illustrate by way of example and not limitation. Every feature of a given structure is not always labeled in every figure in which that structure appears, in order to keep the figures clear.



FIG. 1 is a perspective view of one of the present container systems that includes one of the present caps.



FIG. 2 is a partial cross-sectional view taken along lines 2-2 shown in FIG. 1.



FIG. 3 is an assembly view of the container system shown in FIG. 1.



FIG. 4 is a bottom view of the top portion of the cap shown in FIG. 2.



FIG. 5 is a cross-sectional view taken along 5-5 shown in FIG. 4.



FIG. 6 is a top view of the bottom portion of the cap shown in FIG. 2.



FIG. 7 is a cross-sectional view taken along 7-7 shown in FIG. 6.



FIG. 8 is a top view of the cap shown in the preceding figures, and illustrates (via hidden lines and arrows) how the two cap portions can rotate with respect to each other.





DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS

The term “coupled” is defined as connected, although not necessarily directly, and not necessarily mechanically. The terms “a” and “an” are defined as one or more unless this disclosure explicitly requires otherwise. The terms “substantially,” “approximately,” “about,” and variations thereof are defined as being largely but not necessarily wholly what is specified, as understood by a person of ordinary skill in the art. In one non-limiting embodiment, the term substantially refers to ranges within 10%, preferably within 5%, more preferably within 1%, and most preferably within 0.5% of what is specified.


The terms “comprise” (and any form of comprise, such as “comprises” and “comprising”), “have” (and any form of have, such as “has” and “having”), “include” (and any form of include, such as “includes” and “including”) and “contain” (and any form of contain, such as “contains” and “containing”) are open-ended linking verbs. As a result, a cap or container system that “comprises,” “has,” “includes” or “contains” one or more elements possesses those one or more elements, but is not limited to possessing only those one or more elements. Likewise, an element of a cap that “comprises,” “has,” “includes” or “contains” one or more features possesses those one or more features, but is not limited to possessing only those one or more features. For example, a cap that includes a top portion and a bottom portion that includes a centered opening, a first recessed holding element coupled to the centered opening through a first recessed region, a second recessed holding element coupled to the centered opening through a second recessed region, and a raised element coupled to the centered opening is a cap with a bottom portion that includes the specified features but is not limited to having only those features. Such a bottom portion could also include, for example, a second raised element.


Furthermore, a device or structure that is configured in a certain way is configured in at least that way, but it may also be configured in ways other than those specifically described.



FIG. 1 depicts container system 100. System 100 comprises cap or lid 101 operatively coupled to bottle 102. Bottle 102 may be any type of bottle, bin, can, chamber, flask, jar, jug, receptacle, repository, tube, vessel, vial, or the like. A product such as, for example, a cosmetic or food product (not shown) may be stored within bottle 102. Cap 102 allows a consumer to have access to the product in a controlled manner. Particularly, when system 100 is in an open position, the product may be dispensed, for instance, under an externally applied pressure, the force of gravity, or both. When system 100 in a closed position, the product is stopped from leaving bottle 102. Although bottle 102 is shown as having a cylindrical shape, it may have any shape.


Cap 101 allows a user to operate system 100 with the right or left hand. Particularly, cap 101 is configured with a dispensing system that includes two open positions that are on opposite rotational sides of one closed position. As a result, system 100 may assume an open position when cap 101 is turned either clockwise or counterclockwise from its closed position.


In one embodiment, cap 101 comprises top and bottom portions, discussed in more detail below with respect to FIGS. 2 and 3. In another embodiment, cap 101 comprises only a top portion and another portion equivalent to the bottom portion of FIG. 3 may be manufactured or otherwise provided as an integral part of bottle 102.


Top portion 200, which is shown in FIG. 1, and bottom portion 300 are shown in cross section in FIG. 2. Top portion 200 includes dispensing element or opening 201, which may be positioned off-center and/or near the edge of top portion 200. When system 100 is in one of its open positions, the product held within bottle 102 can exit cap 101 through opening 201. Bottle 102 may be coupled to the underside of bottom portion 300 in any suitable manner, including via a threaded engagement as shown in FIG. 2 or a snap-fit engagement. For a snap-fit engagement, the bottle and the cap (when the cap is of the two-piece configuration shown in the figures) can be provided with cooperating configurations well known to those of ordinary skill in the art for creating snap-fit engageable parts.


As shown in FIG. 3, bottom portion 300 includes surface elements on its top surface and, more specifically, on central projection 304. Bottom portion also includes restriction element 302 and rail element 303, which is female in nature. Top portion 200 includes surface elements that interact with the surface elements of bottom portion 300, as described in greater detail below. Top portion 200 also includes stop element 202 that, together with restriction element 302, controls the extent to which the two portions can rotate with respect to each other. In addition, top portion 200 includes one or more male rail elements 203 that ride in rail element 303 of bottom portion 300 and allow the portions to rotate with respect to each other; together these rail elements also serve at least in part as the mechanism that couples the depicted embodiment of top portion 200 and bottom portion 300 together.


Cap 101 may be configured such that the top and bottom portions can be coupled to each other in any suitable manner, such as through a snap fit. This may be achieved by tapering the bottom portion of male rail elements 203 (see FIG. 2 and FIG. 5) such that the top portion can fit down over the bottom portion more easily than if the male rail elements had a rectangular profile.



FIGS. 4 and 5 are bottom and cross sectional views, respectively, of top portion 200. FIG. 4 shows that the surface elements of the bottom surface of top portion 200 include first protruding or raised (e.g., convex (cx)) element 401 and second raised (e.g., convex) element 402. The surface elements of the bottom surface also include first and second raised (e.g., convex) regions 404 and 405 that extend from elements 401 and 402, respectively, toward a central area of the bottom surface. The surface elements of the bottom surface also include region 406, which may be recessed (e.g., concave) or otherwise indented into the top portion, coupling dispensing element or opening 201 to the central area of the bottom surface.


In addition to showing one or male rail elements 203 and stop element 202, FIG. 5 shows vertical collar 204, which encircles the surface elements of top portion 200 and helps keep top portion 200 centered over bottom portion 300 by contacting central projection 304 of bottom portion 300, as shown in FIG. 2.



FIGS. 6 and 7 are top and cross sectional views, respectively, of bottom portion 300. The surface elements of the top surface of bottom portion 300 include first element 501 (also characterizable as first holding element 501), which includes a centrally oriented recessed (e.g., concave (cc)) portion 521 surrounded in part by a raised lip 531 that serves to help keep the top and bottom portions in a given open position once they get there; second element 502 (also characterizable as second holding element 502), which includes a centrally oriented recessed (e.g., concave (cc)) portion 522 surrounded in part by a raised lip 532 that serves to help keep the top and bottom portions in a given open position once they get there; central opening 507; and raised (e.g., convex (cx)) element 508. Elements 501, 502, and 508 may all be configured to fit with elements 401 and 402 and opening 201. Bottom portion 300 also includes a downwardly-projecting section that defines a passageway 509 extending from central opening 507 and perpendicular to the flat portion of the top surface of bottom portion 300. Recessed (e.g., concave) regions (e.g., channels) 504 and 505 extend from first and second holding elements 501 and 502, respectively, toward a central area of the top surface of bottom portion 300, and may be shaped or contoured to match the shape or contour of raised regions 404 and 405 of the bottom surface of top portion 200 when properly aligned with them. Center opening 507 may be coupled to raised element 508 via raised (e.g., convex) channel 506, which can be shaped to conform to recessed channel 405 of top portion 200.


As a result of the configuration of the top and bottom portions of cap 101, product exiting bottle 102 through opening 507 can flow into channel 504 or 505, depending on which is not occupied by either raised region 404 or 405. The product is then directed by that recessed channel to holding element 501 or 502. Product will be deterred from traveling on the top surface of bottom portion 300 other than through that channel (e.g., either 504 or 505) and into the holding element associated with that channel (e.g., either 501 or 502) because raised regions 404 and 405 will occupy the other of recessed channels 504 and 505 and raised region 506.


Raised region 506 may interfere with raised region 404 or 405 when they are aligned. However, the container system (and more specifically cap 101) may be configured such that there is sufficient “play” in the fit between male rail elements 203 and (female) rail element 303 that the top and bottom portions may tilt somewhat without becoming uncoupled when opposed raised regions 506 and either 404 or 405 are aligned. Alternatively, either or both of raised region 506 and raised element 508 may be configured to be biased toward a raised position (which they would occupy when aligned with recessed region 406 and opening 201, respectively) but depressable to a recessed position when contacted by raised region 404 or 405 and raised element 401 or 402, respectively. Such a configuration may be achieved in a number of different way, such as for example through the material chosen for bottom portion 300 (if raised region 506 and raised element 508 are integral with bottom portion 300), or through the manner in which raised region and/or raised element 508 are coupled to bottom portion 300 if they are made from separate structures (though, in such a case, bottom portion 300 still may be characterized as having or including raised region 506 and raised element 508). Bottom portion 300 may also includes a tapered base section 510 that is configured to contact to some extent an upper tapered portion of container 102, shown in FIG. 2.


Top and bottom portions 200 and 300 are couplable to each other and, in operation, can rotate with respect to each other. More specifically, the top surface of bottom portion 300 can rotate with respect to the bottom surface of top portion 200. However, restriction element 302 and stop element 202 are configured to interact with each other to restrict relative movement of the cap portions to less than 360 degrees. For example, bi-directional arrow 610 in FIG. 8 shows that stop element 202 and restriction element 302 may be configured such that stop element 202 is allowed to travel approximately 240 degrees before reaching one side of restriction element 302 from the other side of the restriction element. In other embodiments, the total relative travel between the two may be 120 degrees or less, 90 degrees or less, 60 degrees or less, 40 degrees or less, or any other desired amount.


The depicted embodiment of the present caps is configured such that cap 101 assumes two open positions and one closed position as the user rotates top portion 200 with respect to bottom portion 300. Cap 101 is in an open position when opening 201 is aligned with either first holding element 501 or second holding element 502 of bottom portion 300, thus allowing a product to exit from bottle 102 into bottom portion 300 and out through top portion 200. Cap 101 is in a closed position when opening 201 of the top portion is aligned with raised element 508, as shown in FIG. 8. When top portion 200 is rotated relative to bottom portion 300 in the direction of clockwise arrow 614 from the depicted closed position, opening 201 moves to a first open position over first holding element 501, and the bottom edge (from the perspective shown in FIG. 8) of stop element 202 rests against (or may contact temporarily) the lower edge of restriction element 302. When top portion 200 is rotated relative to bottom portion 300 in the direction of counterclockwise arrow 618 from the depicted closed position, opening 201 moves to a second open position over second holding element 502, and the top edge of stop element 202 rests against (or may contact temporarily) the upper edge of restriction element 302. As shown in the figures, raised element 508 may be positioned mid-way rotationally between first and second holding elements 501 and 502.


In some embodiments, the surface elements of the two portions may be configured to make an audible sound (e.g., a “click”) to indicate a particular position is reached, such as an open position or the closed position. The height of raised element 508 may be such that it breaks the plane of the bottom surface of the top portion and protrudes into opening 201 when cap 101 is in its closed position.


The present caps may be made from any of a variety of suitable materials that are well-known to those of ordinary skill in the art. The material chosen may be translucent, transparent, semi-transparent, or opaque in different embodiments.


The present caps and container systems are not intended to be limited to the particular forms disclosed. Rather, they include all modifications, equivalents, and alternatives falling within the scope of the claims. For example, while the dispensing element of the top portion of the cap depicted in the figures is shown as a single opening, in other embodiments the dispensing element comprises multiple (e.g., 2 or more) smaller openings clustered together. Further, while the depicted embodiment of the present caps has been provided with one closed position flanked by two open positions, in other embodiments the surface elements of the bottom portion could be configured with another biased/depressable raised region and raised element surface element (similar to 506 and 508), to increase the number of closed positions to two. In such a case, the surface elements of the bottom portion would be arranged in the shape of a cross. The top portion's surface elements could remain three in number, though their positions would change to a T-configuration. Moreover, the top and bottom portions of the present caps could be configured with any number of alternating open and closed positions.


As another example, the restriction and stop elements can have different configurations than those shown. For instance, multiple restriction elements that are spaced apart from each other may be used rather than a single restriction element as shown in the figures.


The claims are not to be interpreted as including means-plus- or step-plus-function limitations, unless such a limitation is explicitly recited in a given claim using the phrase(s) “means for” or “step for,” respectively.

Claims
  • 1. A cap comprising: a top portion comprising a top portion bottom surface and a top portion top surface, wherein a single off-centered opening extends from the top portion bottom surface through the top portion top surface; anda bottom portion comprising a bottom portion bottom surface and a bottom portion top surface, wherein the bottom portion bottom surface comprises a centered opening;wherein the top portion is couplable to the bottom portion, the top and bottom portions being configured to cause the cap to reach an open position starting from a closed position when: the top portion is rotated in a clockwise direction with respect to the bottom portion from a closed position; andthe top portion is rotated in a counterclockwise direction with respect to the bottom portion from the closed position,wherein the top and bottom portions are configured to restrict relative rotation between them to less than 360 degrees, andwherein the top and bottom portions are configured such that a product can enter the centered opening and exit the single off-centered opening.
  • 2. The cap of claim 1, wherein the top and bottom portions are configured to restrict relative rotation between them to approximately 240 degrees.
  • 3. The cap of claim 1, the top and bottom portions are configured to cause the cap to reach a closed position starting from an open position when: the top portion is rotated in a clockwise direction with respect to the bottom portion from a first open position; andthe top portion is rotated in a counterclockwise direction with respect to the bottom portion from a second position.
  • 4. The cap of claim 1, wherein the wherein off-centered opening is substantially circular in shape.
  • 5. The cap of claim 1, wherein the bottom portion is configured to be coupled to a container.
  • 6. The cap of claim 1, wherein the top and bottom portions are configured with mating rail elements that facilitate their rotation with respect to each other.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. application Ser. No. 12/407,391, filed Mar. 19, 2009, which claims the benefit of U.S. Provisional Application No. 61/039,061, filed Mar. 24, 2008. The contents of these applications are incorporated by reference.

US Referenced Citations (202)
Number Name Date Kind
1124523 Reeser Jan 1915 A
1891031 Arsdale Dec 1932 A
2381707 Coleman Aug 1945 A
2961228 Moore Nov 1960 A
3029003 Gronemeyer Apr 1962 A
3042273 Bauer el al. Jul 1962 A
3094283 Balister Jun 1963 A
3149755 Porter et al. Sep 1964 A
3204836 Joffe Sep 1965 A
3214069 Dike Oct 1965 A
3388841 McHardy Jun 1968 A
3419198 Petterson Dec 1968 A
3429481 Navia Feb 1969 A
3467287 Marchant et al. Sep 1969 A
3860111 Thompson Jan 1975 A
3889852 Strefford Jun 1975 A
3991908 Thomas et al. Nov 1976 A
D247848 Croyle May 1978 S
4179051 Thomas Dec 1979 A
4220248 Wilson et al. Sep 1980 A
4261486 Bush et al. Apr 1981 A
4299339 Giroux et al. Nov 1981 A
D263805 Seager Apr 1982 S
4346823 Eppenbach Aug 1982 A
4358032 Libit Nov 1982 A
4377247 Hazard et al. Mar 1983 A
4380307 Stillinger Apr 1983 A
4432760 Mittleman et al. Feb 1984 A
4457458 Heinol Jul 1984 A
D275655 Bainton Sep 1984 S
4500016 Funfstuck Feb 1985 A
4519517 Walter May 1985 A
4538653 Shea et al. Sep 1985 A
4570817 Hambleton et al. Feb 1986 A
4598837 Kreiseder et al. Jul 1986 A
4613063 Wright Sep 1986 A
4625898 Hazard Dec 1986 A
4653672 Tuerk et al. Mar 1987 A
4666068 Bush May 1987 A
D291536 Crawford et al. Aug 1987 S
4699299 Gach Oct 1987 A
4793502 Beck Dec 1988 A
4807768 Gach Feb 1989 A
4826026 Gach et al. May 1989 A
4852770 Sledge et al. Aug 1989 A
4856995 Wagner Aug 1989 A
D306701 Beck Mar 1990 S
4993606 Bolen et al. Feb 1991 A
D315308 Van Kerkhoven Mar 1991 S
D315872 Bixler Apr 1991 S
5005737 Rohr Apr 1991 A
5007555 Beck Apr 1991 A
5040694 Gambello Aug 1991 A
D320746 Bolen et al. Oct 1991 S
5058778 Weinstein Oct 1991 A
5062542 Morton Nov 1991 A
5065911 Rohr et al. Nov 1991 A
5105959 Kinsley Apr 1992 A
5123574 Poulos Jun 1992 A
D328710 Deflander Aug 1992 S
D328711 Deflander Aug 1992 S
5161718 Gueret Nov 1992 A
D334538 Bolen et al. Apr 1993 S
D334709 Fleming et al. Apr 1993 S
5199617 Bennet Apr 1993 A
5211300 Hsing et al. May 1993 A
5213235 Miranda May 1993 A
5213238 Martin et al. May 1993 A
D336430 Maguire et al. Jun 1993 S
5242075 Ott et al. Sep 1993 A
D340188 Forsyth Oct 1993 S
D341225 Lang et al. Nov 1993 S
5289945 Stradder Mar 1994 A
5325999 Gueret Jul 1994 A
D349647 Moffit Aug 1994 S
5356017 Rohr et al. Oct 1994 A
5358130 Mengua et al. Oct 1994 A
5358132 Bennett Oct 1994 A
5358146 Stull Oct 1994 A
D352457 Hughes et al. Nov 1994 S
5361920 Nozawa et al. Nov 1994 A
5366115 Kersten et al. Nov 1994 A
5379926 Mueller et al. Jan 1995 A
D357200 Thomas Apr 1995 S
5419446 Cox et al. May 1995 A
D359905 Molo Jul 1995 S
5437383 Stull Aug 1995 A
5489035 Fuchs Feb 1996 A
5507419 Martin et al. Apr 1996 A
5520307 Miller et al. May 1996 A
5533649 Von Schuckmann Jul 1996 A
D374399 Neveras et al. Oct 1996 S
5566850 Forsyth et al. Oct 1996 A
5601213 Daniello Feb 1997 A
5620114 Chalfa, Jr. Apr 1997 A
D385791 Forsyth et al. Nov 1997 S
D389761 Thomas Jan 1998 S
5730322 Iba et al. Mar 1998 A
5738236 Brun, Jr. Apr 1998 A
5785213 Guillot Jul 1998 A
D407976 Ekkert Apr 1999 S
5913435 Fuchs Jun 1999 A
5927556 Mooney et al. Jul 1999 A
5960972 Larguia Oct 1999 A
5975354 Goncalves Nov 1999 A
D418363 Barnes et al. Jan 2000 S
6089411 Baudin et al. Jul 2000 A
D443518 Goettner Jun 2001 S
6241128 McClean et al. Jun 2001 B1
6244470 Harley-Wilmot Jun 2001 B1
D444387 Adachi et al. Jul 2001 S
6283339 Morrow Sep 2001 B1
6302301 Vette Oct 2001 B1
6315170 Thomson et al. Nov 2001 B1
6332551 Copeland Dec 2001 B1
6336460 Yuhara Jan 2002 B2
6378735 Chu Apr 2002 B1
6382476 Randall et al. May 2002 B1
6394323 McClean et al. May 2002 B2
6405867 Moore Jun 2002 B1
6405885 Elliot Jun 2002 B1
6419825 Hahmann et al. Jul 2002 B1
6439442 Markert et al. Aug 2002 B1
D468639 Wennerstrom et al. Jan 2003 S
D470765 Baker Feb 2003 S
6543650 Sprick et al. Apr 2003 B1
6564978 Safian et al. May 2003 B1
D475618 Barnes et al. Jun 2003 S
D476559 Norris et al. Jul 2003 S
D477532 Wong Jul 2003 S
D479803 Alguire et al. Sep 2003 S
6615473 McClean et al. Sep 2003 B2
6622895 McClean et al. Sep 2003 B2
RE38328 Gueret Nov 2003 E
D485181 Yourist Jan 2004 S
6691394 McClean Feb 2004 B1
6698590 Moore Mar 2004 B2
6702161 Adams et al. Mar 2004 B2
D488383 Kudo et al. Apr 2004 S
6757957 McClean et al. Jul 2004 B2
6766926 Elchert Jul 2004 B1
D494468 Vovan Aug 2004 S
6783031 Robbins et al. Aug 2004 B2
D497802 Haggerty et al. Nov 2004 S
6854619 Knickerbocker Feb 2005 B2
6866208 Kao Mar 2005 B2
6905082 Wu Jun 2005 B1
D508402 Hierzer et al. Aug 2005 S
D508411 Lamb et al. Aug 2005 S
D509137 Hierzer et al. Sep 2005 S
D509138 Hierzer et al. Sep 2005 S
D509428 Hierzer et al. Sep 2005 S
D509429 Hierzer et al. Sep 2005 S
D509430 Hierzer et al. Sep 2005 S
D509431 Hierzer et al. Sep 2005 S
D509432 Hierzer et al. Sep 2005 S
D509735 Hierzer et al. Sep 2005 S
D509736 Hierzer et al. Sep 2005 S
D509737 Hierzer et al. Sep 2005 S
6948641 Williams Sep 2005 B1
D512635 Hierzer et al. Dec 2005 S
6971547 Englert et al. Dec 2005 B2
6988642 Gallo et al. Jan 2006 B2
D515917 Hierzer et al. Feb 2006 S
D515918 Hierzer et al. Feb 2006 S
D515919 Hierzer et al. Feb 2006 S
D516910 Bresler Mar 2006 S
D518712 Hierzer et al. Apr 2006 S
D518713 Hierzer et al. Apr 2006 S
D518714 Hierzer et al. Apr 2006 S
D518715 Hierzer et al. Apr 2006 S
D529800 Liebe Oct 2006 S
D530202 Herald et al. Oct 2006 S
7128227 Skillin et al. Oct 2006 B2
D533063 Lee et al. Dec 2006 S
D533074 Mongeon et al. Dec 2006 S
D535564 Toth et al. Jan 2007 S
D538161 Smith et al. Mar 2007 S
7201288 Von Ronn et al. Apr 2007 B2
7225938 Frisch Jun 2007 B2
D548086 Conway et al. Aug 2007 S
7331478 Aljadi Feb 2008 B2
7374053 Herald et al. May 2008 B2
7475833 Chih Jan 2009 B2
D587581 DeMarco et al. Mar 2009 S
7513399 Mengeu Apr 2009 B2
7575123 Laveault et al. Aug 2009 B2
D604160 DeMarco Nov 2009 S
7648037 Ohashi Jan 2010 B2
7651003 Albers et al. Jan 2010 B2
7748579 Shin Jul 2010 B1
7766197 Getsy Aug 2010 B2
7871020 Nelson et al. Jan 2011 B2
7878350 Ramoundos Feb 2011 B2
20010011446 McClean et al. Aug 2001 A1
20030042331 Lu Mar 2003 A1
20050082290 Fask et al. Apr 2005 A1
20050205607 Hierzer et al. Sep 2005 A1
20060037886 Thiebaut Feb 2006 A1
20060237388 Kick Oct 2006 A1
20060249473 Kunz Nov 2006 A1
20070187406 Nobile et al. Aug 2007 A1
Foreign Referenced Citations (8)
Number Date Country
598 066 Feb 1952 CH
280 997 Apr 1978 CH
12660077 Sep 2000 CN
1 022 229 Jul 2000 EP
D1113385 Mar 2001 JP
D1155998 Oct 2002 JP
281588 Mar 1984 TW
D101297 Oct 1992 TW
Non-Patent Literature Citations (6)
Entry
International Search Report and Written Opinion, issued in International Application No. PCT/US2009/031805, mailed Mar. 10, 2009.
Office Communication issued in Chinese patent application No. 200980000033.3, dated Nov. 16, 2011. (English translation).
Office Communication, issued in U.S. Appl. No. 12/358,408, mailed on Sep. 15, 2011.
Office Communication, issued in U.S. Appl. No. 12/358,408, mailed on Feb. 9, 2012.
PCT International Preliminary Report on Patentability, issued in International Application No. PCT/US2009/03185, dated Oct. 22, 2010.
Search Report issued in Taiwan Application No. 097304400, dated Mar. 30, 2009.
Related Publications (1)
Number Date Country
20120285960 A1 Nov 2012 US
Provisional Applications (1)
Number Date Country
61039061 Mar 2008 US
Continuations (1)
Number Date Country
Parent 12407391 Mar 2009 US
Child 13558134 US