Container lid with rotatable sipper and flexible handle

Information

  • Patent Grant
  • 11673720
  • Patent Number
    11,673,720
  • Date Filed
    Friday, December 20, 2019
    4 years ago
  • Date Issued
    Tuesday, June 13, 2023
    a year ago
Abstract
A container lid can include: a body having an opening formed therethrough; a sipping member rotatably coupled to the body, a passageway formed through an interior of the sipping member so as to extend from a proximal end of the sipping member to a distal end of the sipping member, the sipping member configured to rotate between a stowed position in which the passageway and the opening are misaligned, such that the opening is sealed, and a released position in which the passageway and the opening are aligned; and a flexible handle connected at a first end to the sipping member and rotatably coupled at a second end to the body via a pivot pin. The handle can be configured such that a substantially downward force exerted on the handle causes rotation of the sipping member toward the released position.
Description
TECHNICAL FIELD

The present disclosure relates generally to container lids, and more particularly, to a container lid with a rotatable sipper and flexible handle.


BACKGROUND

Container lids can include mechanisms, such as caps (e.g., a screw-on cap, a flip cap, a push cap, etc.), for sealing an opening of a container through which fluid may enter and/or exit. To access fluid within the container while the container lid engages the container, a user can typically move or remove the cap relative to the opening of the container such that a fluid path into the container may be provided, allowing the user to drink through the lid. When the user wishes to seal the container (e.g., for transport), the user can move the cap such that the fluid path is sealed. Ideally, the cap seals the fluid path in a leak-proof manner so that leakage of fluid within the container is prevented.


A wide range of container lid designs exist. Some designs include a sipping member, or “sipper,” which operates akin to a straw through which a user can drink fluid contained inside of the container. Other designs include a handle protruding from the lid to enable the container to be carried when the lid and container are coupled together. However, there is a need for a container lid which incorporates both a sipping member and a handle to achieve an enhanced degree of usability, portability, and convenience.


SUMMARY

The present disclosure provides a container lid with a rotating sipping member coupled to a flexible handle for convenient transport of the lid and container. When the sipping member is stowed away, a user can carry the container, coupled to the lid, by the handle without the sipping member releasing. Upon exerting a substantially downward force (e.g., push, pull, etc.) on the handle, the sipping member can release and rotate to a released position.


According to embodiments of the present disclosure, a container lid can include: a body having an opening formed therethrough and a thread pattern formed thereon for reversibly mating the container lid to a container, the opening in fluid communication with an interior of the container; a sipping member rotatably coupled to the body, a passageway formed through an interior of the sipping member so as to extend from a proximal end of the sipping member to a distal end of the sipping member, the sipping member configured to rotate between a stowed position in which the passageway and the opening are misaligned, such that the opening is sealed, and a released position in which the passageway and the opening are aligned; and a flexible handle connected at a first end to the sipping member and rotatably coupled at a second end to the body via a pivot pin. The handle can be configured such that a substantially downward force exerted on the handle causes rotation of the sipping member toward the released position.


The handle can be configured such that, when the sipping member is in the stowed position, the sipping member remains in the stowed position in response to a substantially upward or lateral force exerted on the handle.


When the sipping member is in the released position, the passageway of the sipping member and the opening can define a fluid path through which a fluid disposed in the interior of the container can exit the container. When the sipping member is in the stowed position, the fluid path defined by the passageway of the sipping member and the opening can be obstructed.


When the sipping member is in the stowed position, the opening can be sealed by a portion of a body of the sipping member.


The handle can be configured such that the downward force exerted on the handle further causes rotation of the handle about the pivot pin.


Rotation of the sipping member from the stowed position to the released position can cause the handle to rotate about the pivot pin approximately 90 degrees.


Rotation of the sipping member from the released position to the stowed position can increase a size of a carrying space defined by the handle and an outer portion of the body.


When the sipping member is in the released position, at least one of a portion of the sipping member and a portion of the handle can be configured to come into contact with an outer surface of the body, preventing further rotation of the sipping member away from the stowed position.


The first end of the handle can be co-injected with a portion of the sipping member.


The first end of the handle can include a protrusion portion having a surface level raised above that of an adjacent portion of the handle.


An upper surface of the protrusion portion can be surrounded entirely by a portion of the sipping member.


The first end of the handle can be positioned above the second end of the handle when the container lid is oriented in an upright manner.


The container lid can further include an indentation portion formed into the upper surface of the body, the indentation portion defining an interior receiving space configured to receive a portion of the sipping member. Additionally, the container lid can further include support arms extending outwardly from opposite sides of the sipping member, respectively, and disposed at least partially inside of the indentation portion. The sipping member can be rotatably coupled to the body via the support arms such that the sipping member is configured to rotate about the support arms. The support arms can be integral with the sipping member.


The indentation portion further can define support arm receiving spaces configured to receive the support arms. Also, when the sipping member is in the stowed position, the indentation portion is configured to receive the sipping member such that an upper surface of the sipping member is substantially flush with an upper surface of the body.


The thread pattern can be formed on an interior surface of the body.


The sipping member can be made of a polypropylene-based material, and the handle can be made of a silicon-based material or a thermoplastic rubber-based material.





BRIEF DESCRIPTION OF THE DRAWINGS

The embodiments herein may be better understood by referring to the following description in conjunction with the accompanying drawings in which like reference numerals indicate identically or functionally similar elements, of which:



FIG. 1 is a side view of a container coupled to a lid with a rotatable sipping member in a stowed position;



FIGS. 2A and 2B include a side cross-sectional view and a top view, respectively, of the lid of FIG. 1;



FIG. 3 is a side view of a container coupled to a lid with a rotatable sipping member in a released position; and



FIGS. 4A and 4B include a side cross-sectional view and a front view, respectively, of the lid of FIG. 3.





It should be understood that the above-referenced drawings are not necessarily to scale, presenting a somewhat simplified representation of various preferred features illustrative of the basic principles of the disclosure. The specific design features of the present disclosure, including, for example, specific dimensions, orientations, locations, and shapes, will be determined in part by the particular intended application and use environment.


DETAILED DESCRIPTION OF THE EMBODIMENTS

Hereinafter, embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present disclosure. Further, throughout the specification, like reference numerals refer to like elements.


The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. As used herein, the singular forms “a,” “an,” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises” and/or “comprising,” when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof. As used herein, the term “and/or” includes any and all combinations of one or more of the associated listed items.


Referring now to embodiments of the present disclosure, the disclosed container lid can include a sipping member, or “sipper,” coupled to a flexible handle for convenient transport. The sipping member can rotate between a stowed position, in which the sipping member is stowed within an indentation portion formed in an upper surface of the lid, and a released position, in which a user can sip fluid contained inside of a container. While the sipping member is stowed, the user can carry the lid by handle, exerting a substantially upward force on the handle, and the sipping member can remain stowed. To release the sipping member, the user can downwardly push or pull the handle, thereby rotating the sipping member to a released position.



FIG. 1 is a perspective view of a container 100 coupled to a lid 200 with a rotatable sipping member 220 in a stowed position, and FIGS. 2A and 2B include a side cross-sectional view and a top view, respectively, of the lid 200 with the rotatable sipping member 220 in the stowed position. FIG. 3 is a side view of the container 100 coupled to the lid 200 with the rotatable sipping member 220 in a released position, and FIGS. 4A and 4B include a side cross-sectional view and a front view, respectively, of the lid 200.


As shown in FIGS. 1 and 2A-2B, the lid 200 can reversibly couple to a container 100 operable to contain a fluid (e.g., liquid). The container 100 can include a base coupled to a plurality of upwardly extending walls forming an opening at an upper end of the container 100, as will be generally known in the art. The container 100 can be formed of various materials, including, for instance, metallic materials such as stainless steel, plastic-based materials, ceramic-based materials, or the like. The container 100 can include, for instance, a single- or double-walled structure. The container 100 can be shaped in any suitable manner, such as cylindrical as shown in FIG. 1.


The lid 200 can couple to the upper end of the container 100, covering the opening of the container 100. The lid 200 can include a body 210. The body 210 can be formed of various materials, such as plastic-based materials including, for example, polypropylene (PP) or the like. The body 210 can include an opening 211 formed therethrough. The opening 211 can be disposed in the body 210 such that the opening 211 is in fluid communication with the interior of the container 100, allowing a fluid disposed inside the container 100 to exit the container 100 via the opening 211 (e.g., as a user drinks through the lid). In some embodiments, the opening 211 can be formed at a location offset from a center of the body 210, as shown in FIG. 2A.


The body 210 can further include a thread pattern 212 formed thereon for reversibly mating the lid 200 to the container 100. The thread pattern 212 can be disposed on an internal surface of the body 210, as shown in FIG. 2A, so as to engage with a corresponding thread pattern disposed on an external surface of the container 100. Alternatively, the thread pattern 212 can be formed on an external surface of the body 210 so as to engage with a corresponding thread pattern disposed on an internal surface of the container 100.


In addition, the body 210 can include an indentation portion 213 formed into an upper surface of the body 210. In some embodiments, as shown in FIGS. 4A and 4B, the indentation portion 213 can be formed along a center line of the upper surface of the body 210. The lower surface of the indentation portion 213 can be substantially parallel with the base of the container 100, or can be formed with a sloped surface, that is angularly offset from the base of the container 100, as shown in FIG. 4A. Also, in some embodiments, the opening 211 can be disposed inside of the indentation portion 213 at a bottom portion thereof.


The lid 200 can additionally include a sipping member 220 rotatably coupled to the body 210. Like the body 210, the sipping member 220 can be formed of various materials, such as plastic-based materials including, for example, PP or the like. A passageway 221 can be formed through an interior of the sipping member 220 so as to extend from a proximal end of the sipping member 220 to a distal end of the sipping member 220. For the purpose of the present disclosure, the proximal end of the sipping member 220 can correspond to the end of the sipping member 220 configured to come into contact with the opening 211 of the body 210. The distal end, by contrast, can correspond to the opposite end of the sipping member 220 engaged by a user while drinking through the sipping member 220.


The indentation portion 213 of the body 210 can define an interior receiving space configured to receive at least a portion of the sipping member 220. Particularly, when the sipping member 220 is disposed in a stowed position against the body 210 of the lid 200, as shown in FIGS. 1 and 2A-2B, the sipping member 220 can at least partially fit inside of the receiving space of the indentation portion 213 such that an upper surface of the sipping member 220 is substantially flush with an upper surface of the body 210. As a result, the sipping member 220 can be stowed conveniently against the body 210 when not in use (e.g., during transport of the container 100).


The indentation portion 213 can be formed with space enabling a portion of the sipping member 220 to rotate inside of the indentation portion 213. In this regard, the sipping member 220 can be coupled to the body 210 via support arms 222 extending outwardly from opposite sides of the sipping member 220, respectively, and attaching to the body 210, as shown in FIG. 2B. The indentation portion 213 can define support arm receiving spaces configured to receive the support arms 222. The support arm receiving spaces of the indentation portion 213 can permit the support arms to rotate therewithin. As a result, the sipping member 220 can rotate about the support arms 222. In some embodiments, the support arms 222 can be integral with the sipping member 220. That is, the sipping member 220 and the support arms 222 can be made of the same material so as to form a singular structure.


The lid 200 can further include a handle 230 for use when the user wishes to carry the container. The handle 230 can be formed of various flexible materials, such as, for example, a silicon-based material, a thermoplastic rubber-based material, or the like. The flexibility of the handle 230 can permit the handle 230 to be deformed in various shapes, as described below.


The handle 230 can be connected at a first end thereof to the sipping member 220 and rotatably coupled at a second end thereof to the body 210 via a pivot pin 240. When the lid 200 is oriented in an upright manner, as shown in FIGS. 2A and 4A, the first end of the handle 230 connected to the sipping member 220 can be positioned above the second end of the handle 230 coupled to the to the body 210 via the pivot pin 240. The handle 230 can extend outwardly from the lid 200 so as to form a carrying space inside of the handle 230 through which the user can insert one or more fingers for carrying the lid 200 and container 100 (when the container 100 and lid 200 are mated together).


In some embodiments, the first end of the handle 230 can be co-injected with a portion of the sipping member 220. That is, the respective materials of the sipping member 220 and handle 230 can be formed through injection into the same mold such that the sipping member 220 and handle 220 are attached to each other. The portion of the sipping member 220 with which the handle 230 is co-injected can correspond to an outwardly extending arm 223 disposed at or proximate to the proximal end of the sipping member 220, as shown in FIGS. 2A and 4A.


In some embodiments, the handle 230 can include a protrusion portion 231 disposed at the first end thereof, adjacent to the sipping member 220. The protrusion portion 231 can be formed with a surface level raised above that of an adjacent portion of the handle 230. The protrusion portion 231 can further be formed with a textured upper surface, enhancing the user's ability to grip the upper portion of the handle 230. Furthermore, as a result of the co-injection, the upper surface of the protrusion portion 231 can be surrounded entirely by a portion of the sipping member 220, as shown in FIG. 2B, thus enhancing the visibility of the protrusion portion 231.


The handle 230 and the sipping member 220 can be coupled together in such a manner that certain user interaction with the handle 230 causes rotation of the sipping member 220. In this regard, the sipping member 220 can be configured to rotate between, at least, a stowed position and a released position. Of course, the sipping member 220 can freely rotate to any position between the stowed position and the released position.


As shown in FIG. 2A, when the sipping member 220 is in the stowed position, the passageway 221 of the sipping member 220 and the opening 211 of the body 210 can be misaligned, such that the opening 211 is sealed, preventing spillage of fluid contained within the container 100. In the stowed position, a portion of the body of the sipping member 220 can seal the opening 211 of the body 210. The proximal end of the sipping member 220 can be circularly shaped so as to enable rotation of the sipping member inside of the indentation portion 213, as shown in FIG. 2A. Various portions of the circularly shaped proximal end of the sipping member 220 can operate to seal the opening 211. As such, the top of the opening 211 can be shaped in a manner corresponding to the shape of the circularly shaped proximal end of the sipping member 220, allowing the top of the opening 211 to come into contact with the sipping member 220 as it rotates.


As shown in FIG. 4A, when the sipping member 220 is in the released position, the passageway 221 of the sipping member 220 and the opening 211 can be aligned, allowing a user to drink therethrough. In the released position, the passageway 221 and the opening 211 can define a fluid path through which a fluid disposed in the interior of the container 100 can exit the container 100. By contrast, the fluid path defined by the passageway 221 and the opening 211 can be obstructed by the body of the sipping member 220 in the stowed position, preventing said fluid from leaking through the lid 200.


The body 210 of the lid 200 can include a stopping portion 214 configured to prevent the sipping member 220 from rotating beyond the released position, that is, rotating further in a direction opposite of the stowed position. In this regard, a portion of the sipping member 220 and/or a portion of the handle 230 can come into contact with an outer surface, i.e., stopping portion 214, of the body 210 when the sipping member 220 rotates into the released position. The stopping portion 214 can stop the sipping member 220 from rotating beyond such position.


As noted above, manipulation of the handle 230 can cause rotation of the sipping member 220 attached thereto. In this regard, the handle 230 can be configured such that a substantially downward force exerted on the handle 230 causes rotation of the sipping member 220 toward the released position (see, e.g., FIGS. 3, 4A and 4B). A user can apply a substantially downward force on the handle 230 by, for example, pressing downwardly on an upper region of the handle 230. The user can release the sipping member 220 from the stowed position by pressing down on the protrusion portion 231, as an example. Additionally, the user can rotate the sipping member 220 by pushing, pulling, or otherwise interacting with the handle 230 in a manner which generates a substantially downward force upon the handle 230. Thus, the user can conveniently release the sipping member 220 from the stowed position through a substantially downwardly directed interaction with the handle 230.


In addition to rotation of the sipping member 220, the substantially downward force exerted on the handle 230 described above can also cause rotation of the handle 230 about the pivot pin 240. In one example, rotation of the sipping member 220 from the stowed position to the released position can cause the handle 230 to rotate about the pivot pin 240 approximately 90 degrees. Rotation of the sipping member 220 from the released position to the stowed position can cause the handle 230 to rotate about the pivot pin 240 approximately 90 degrees in the opposite direction.


As mentioned above, the handle 230 in conjunction with an outer portion of the body 210 can define a carrying space therein through which the user can insert one or more fingers for carrying the lid 200. In some cases, the size and shape of the carrying space defined inside of the handle 230 can be modified due to the flexibility of the handle 230, such as in response to rotation of the sipping member 220 and handle 230. For example, when the sipping member 220 is rotated from the released position to the stowed position, the size of the carrying space as defined by the handle 230 and the outer portion of the body 210 can increase, as demonstrated in FIG. 1 in relation to FIG. 3. Conversely, when the sipping member 220 is rotated from the stowed position to the released position, the size of the carrying space can decrease as the handle 230 flexes in response to such rotation.


Meanwhile, a substantially upward or lateral (i.e., sideways) force can be exerted on the handle 230 when the user is carrying the lid 200 by the handle 230, e.g., during transport of the container 100. In such case, the handle 230 can be configured such that, when the sipping member 220 is in the stowed position, as shown in FIGS. 1, 2A and 2B, the sipping member 220 can remain stowed in response to the substantially upward or lateral force exerted on the handle 230. Therefore, the lid 200 and container 100 can be carried by the handle 230, while the sipping member 220 is stowed, without inadvertent release of the sipping member 220.


Accordingly, the container lid with a rotatable sipping member (“sipper”) and flexible handle disclosed herein enables a user to stow the sipper when its presence is unnecessary or unwanted. A simple substantially downward force exerted on the handle can cause release (rotation) of the sipper away from the stowed position, allowing a user to drink through the sipper. However, when the sipper is stowed away, a user can carry the lid by the handle without the sipper releasing.


The foregoing description has been directed to embodiments of the present disclosure. It will be apparent, however, that other variations and modifications may be made to the described embodiments, with the attainment of some or all of their advantages. Accordingly, this description is to be taken only by way of example and not to otherwise limit the scope of the embodiments herein. Therefore, it is the object of the appended claims to cover all such variations and modifications as come within the true spirit and scope of the embodiments herein.

Claims
  • 1. A container lid comprising: a body having an opening formed therethrough and a thread pattern formed thereon for reversibly mating the container lid to a container, the opening in fluid communication with an interior of the container;a sipping member rotatably coupled to the body, said sipping member formed of a first material, a passageway formed through an interior of the sipping member so as to extend from a proximal end of the sipping member to a distal end of the sipping member, the sipping member configured to rotate between a stowed position in which the passageway and the opening are misaligned, such that the opening is sealed, and a released position in which the passageway and the opening are aligned; anda handle connected at a first end to the sipping member and rotatably coupled at a second end to the body via a pivot pin, the handle being formed of a second flexible material different than said first material, said second flexible material being co-injected with said first material,wherein the handle is configured such that a substantially downward force exerted on the handle causes rotation of the sipping member toward the released position, wherein rotation of the sipping member from the released position to the stowed position increases a shortest linear distance between the first end of the handle and the second end of the handle.
  • 2. The container lid of claim 1, wherein the handle is configured such that, when the sipping member is in the stowed position, the sipping member remains in the stowed position in response to a substantially upward or lateral force exerted on the handle.
  • 3. The container lid of claim 1, wherein, when the sipping member is in the released position, the passageway of the sipping member and the opening define a fluid path through which a fluid disposed in the interior of the container can exit the container.
  • 4. The container lid of claim 3, wherein, when the sipping member is in the stowed position, the fluid path defined by the passageway of the sipping member and the opening is obstructed.
  • 5. The container lid of claim 1, wherein, when the sipping member is in the stowed position, the opening is sealed by a portion of a body of the sipping member.
  • 6. The container lid of claim 1, wherein the handle is configured such that the substantially downward force exerted on the handle further causes rotation of the handle about the pivot pin.
  • 7. The container lid of claim 1, wherein rotation of the sipping member from the stowed position to the released position causes the handle to rotate about the pivot pin approximately 90 degrees.
  • 8. The container lid of claim 1, wherein, when the sipping member is in the released position, at least one of a portion of the sipping member and a portion of the handle is configured to come into contact with an outer surface of the body, preventing further rotation of the sipping member away from the stowed position.
  • 9. The container lid of claim 1, wherein the first end of the handle is co-injected with a portion of the sipping member.
  • 10. The container lid of claim 1, wherein the first end of the handle includes a protrusion portion having a surface level raised above that of an adjacent portion of the handle.
  • 11. The container lid of claim 10, wherein an upper surface of the protrusion portion is surrounded entirely by a portion of the sipping member.
  • 12. The container lid of claim 1, wherein the first end of the handle is positioned above the second end of the handle when the container lid is oriented in an upright manner.
  • 13. The container lid of claim 1, further comprising an indentation portion formed into an upper surface of the body, the indentation portion defining an interior receiving space configured to receive a portion of the sipping member.
  • 14. The container lid of claim 13, further comprising support arms extending outwardly from opposite sides of the sipping member, respectively, and disposed at least partially inside of the indentation portion, wherein the sipping member is rotatably coupled to the body via the support arms such that the sipping member is configured to rotate about the support arms.
  • 15. The container lid of claim 14, wherein the support arms are integral with the sipping member.
  • 16. The container lid of claim 14, wherein the indentation portion further defines support arm receiving spaces configured to receive the support arms.
  • 17. The container lid of claim 13, wherein, when the sipping member is in the stowed position, the indentation portion is configured to receive the sipping member such that an upper surface of the sipping member is substantially flush with an upper surface of the body.
  • 18. The container lid of claim 1, wherein the thread pattern is formed on an interior surface of the body.
  • 19. The container lid of claim 1, wherein the sipping member is made of a polypropylene-based material, and the handle is made of a silicon-based material or a thermoplastic rubber-based material.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application claims priority to U.S. Provisional Patent Application No. 62/787,894, titled “Container Lid With Rotatable Sipper And Flexible Handle,” filed Jan. 3, 2019, the entirety of which is incorporated by reference herein.

US Referenced Citations (76)
Number Name Date Kind
4213310 Buss Jul 1980 A
D262856 Mactavish Feb 1982 S
D268469 Ruxton Apr 1983 S
D279346 Ruxton Jun 1985 S
D294325 Fiore, Jr. Feb 1988 S
D338130 Costello Aug 1993 S
5273172 Rossbach et al. Dec 1993 A
5465866 Belcastro Nov 1995 A
5735438 Ostrowsky Apr 1998 A
5964365 Peeples Oct 1999 A
6164484 Fiore Dec 2000 A
6276560 Belcastro Aug 2001 B1
6279773 Kiyota Aug 2001 B1
6494056 Roth Dec 2002 B1
6523711 Hughes et al. Feb 2003 B1
6584800 Roth Jul 2003 B1
D478469 Roth Aug 2003 S
6601403 Roth Aug 2003 B1
D485468 Roth Jan 2004 S
D511435 Roth Nov 2005 S
D512875 Maldonado Dec 2005 S
D518335 Stuart Apr 2006 S
7082784 Roth Aug 2006 B2
D549048 Duke Aug 2007 S
D624361 Roth Sep 2010 S
7866183 Roth Jan 2011 B2
D634158 Roth Mar 2011 S
D634161 Roth Mar 2011 S
7997099 Roth Aug 2011 B2
8051674 Roth Nov 2011 B2
8061158 Roth Nov 2011 B2
8276776 Roth Oct 2012 B2
8408414 Roth Apr 2013 B2
8544676 Roth Oct 2013 B2
D696906 Roth Jan 2014 S
8672174 McMullin Mar 2014 B1
8777039 Roth Jul 2014 B2
RE45055 Roth Aug 2014 E
D738163 Roth Sep 2015 S
9380898 Mason Jul 2016 B2
9573738 Lai Feb 2017 B1
D804903 Mason Dec 2017 S
D804904 Noveletsky Dec 2017 S
9944438 Roth Apr 2018 B2
10077143 Roth Sep 2018 B2
10196182 Roth Feb 2019 B2
D874217 Tsai Feb 2020 S
20020040909 Goto et al. Apr 2002 A1
20030196448 Roth Oct 2003 A1
20050258201 Willows Nov 2005 A1
20060185384 Roth Aug 2006 A1
20080078200 Roth Apr 2008 A1
20080078787 Yelland Apr 2008 A1
20080217284 Roth Sep 2008 A1
20100193462 Roth Aug 2010 A1
20110198361 Chen Aug 2011 A1
20120181277 Wang-Wu Jul 2012 A1
20120234789 Mason Sep 2012 A1
20120285961 Roth Nov 2012 A1
20130214006 Roth Aug 2013 A1
20150307265 Winn Oct 2015 A1
20160001933 Roth Jan 2016 A1
20160120343 Liang May 2016 A1
20160296051 Lane et al. Oct 2016 A1
20170015462 Roth Jan 2017 A1
20170050775 Sanbar Feb 2017 A1
20170050785 Roth Feb 2017 A1
20170144809 Sorensen et al. May 2017 A1
20170340148 Chen et al. Nov 2017 A1
20180050850 Murosky et al. Feb 2018 A1
20190135502 Tsai May 2019 A1
20200055646 DeKeyser Feb 2020 A1
20200148431 Tsai May 2020 A1
20200216218 Sanbar Jul 2020 A1
20200216232 Noveletsky Jul 2020 A1
20200367678 Harris Nov 2020 A1
Foreign Referenced Citations (128)
Number Date Country
2004100578 Sep 2004 AU
2004201562 Oct 2005 AU
328776 Dec 2009 AU
2010200265 Aug 2010 AU
2011332161 May 2013 AU
2016201471 Apr 2016 AU
2014368954 Jun 2016 AU
2015218686 Sep 2016 AU
1491016 Nov 2016 AU
1491116 Nov 2016 AU
1644816 Nov 2016 AU
1644916 Nov 2016 AU
2015259105 Nov 2016 AU
2015259182 Nov 2016 AU
2015259183 Nov 2016 AU
2017204758 Jul 2017 AU
2017226173 Sep 2018 AU
2017226178 Sep 2018 AU
2017354038 May 2019 AU
2018309062 Feb 2020 AU
2019376154 Mar 2021 AU
51305 May 1983 CA
2292400 Jun 2000 CA
2470906 Jun 2005 CA
132268 Jun 2010 CA
135424 Jun 2010 CA
135425 Jun 2010 CA
2691193 Aug 2010 CA
2817042 May 2012 CA
2900674 Sep 2014 CA
2933614 Jun 2015 CA
2939634 Aug 2015 CA
2948174 Nov 2015 CA
2948176 Nov 2015 CA
2948180 Nov 2015 CA
3016564 Sep 2017 CA
3042043 May 2018 CA
170355 Sep 2018 CA
170356 Sep 2018 CA
178839 Sep 2018 CA
178861 Sep 2018 CA
172791 Jan 2019 CA
3070466 Feb 2019 CA
3112845 May 2020 CA
101798009 Aug 2010 CN
201770189 Mar 2011 CN
1013129824 Jun 2013 CN
106170444 Nov 2016 CN
106414265 Feb 2017 CN
106458385 Feb 2017 CN
106660672 May 2017 CN
207803967 Sep 2018 CN
109068879 Dec 2018 CN
109071073 Dec 2018 CN
109744820 May 2019 CN
110997512 Apr 2020 CN
112996411 Jun 2021 CN
2958818 Oct 2017 DK
2958818 Dec 2015 EP
3107814 Dec 2016 EP
3142941 Mar 2017 EP
2958818 Jul 2017 EP
3142939 Nov 2017 EP
3142940 Dec 2017 EP
3257778 Dec 2017 EP
3083443 Jun 2018 EP
3534757 Sep 2019 EP
3423372 Mar 2020 EP
3661853 Jun 2020 EP
3876785 Sep 2021 EP
2642832 Nov 2017 ES
2442593 Feb 2009 GB
2467629 Aug 2010 GB
2477219 Jul 2011 GB
2475189 Sep 2011 GB
2482766 Feb 2012 GB
2493790 Feb 2013 GB
2528619 Jan 2016 GB
1157301 Nov 2012 HK
1167376 Mar 2013 HK
P20171530 Feb 2018 HR
H04294751 Oct 1992 JP
2003312706 Nov 2003 JP
2008120456 May 2008 JP
2014500835 Jan 2014 JP
2017504532 Feb 2017 JP
2017509555 Apr 2017 JP
2017518928 Jul 2017 JP
2017518929 Jul 2017 JP
2017520483 Jul 2017 JP
2019506983 Mar 2019 JP
2019507710 Mar 2019 JP
1020030064663 Aug 2003 KR
1020160102033 Aug 2016 KR
1020170007389 Jan 2017 KR
1020170007393 Jan 2017 KR
1020170009900 Jan 2017 KR
1020180107285 Oct 2018 KR
1020180116426 Oct 2018 KR
1020200027572 Mar 2020 KR
1020210089660 Jul 2021 KR
PA03001327 Jul 2005 MX
2016008030 Oct 2016 MX
2016014799 Mar 2017 MX
2016014803 Mar 2017 MX
2016014804 Mar 2017 MX
2018010638 May 2019 MX
2018010641 Jun 2019 MX
2958818 Mar 2018 PL
2958818 Dec 2017 SI
WO2008112504 Sep 2008 WO
WO-2009010087 Jan 2009 WO
WO2012071218 May 2012 WO
WO-2013096809 Jun 2013 WO
WO2014137582 Sep 2014 WO
WO2015095776 Jun 2015 WO
WO2015127373 Aug 2015 WO
WO2015175689 Nov 2015 WO
WO2015175716 Nov 2015 WO
WO2015175717 Nov 2015 WO
WO2015175723 Nov 2015 WO
WO-2017146625 Aug 2017 WO
WO2017152016 Sep 2017 WO
WO2017152021 Sep 2017 WO
WO2018085412 May 2018 WO
WO2019028326 Feb 2019 WO
WO2020097501 May 2020 WO
WO2020142252 Jul 2020 WO
Non-Patent Literature Citations (15)
Entry
Young, Lee, International Search Report and Written Opinion issued in application No. PCT/2019US/067742, dated Mar. 19, 2020, 13 pages.
U.S. Appl. No. 62/787,894 titled “Container Lid With Rotatable Sipper and Flexible Handle”, filed Jan. 3, 2019.
PCT Patent Application No. PCT/US2019/067742 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Dec. 20, 2019.
International Preliminary Report on Patentability issued in PCT Patent Application No. PCT/US2019/067742 dated Jul. 15, 2021.
Mexican Patent Application No. MX/a/2021/008077 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Jan. 7, 2021.
Korean Patent Application No. 10-2021-7020884 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Aug. 3, 2021.
Japanese Patent Application No. 2021-539133 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Jul. 5, 2021.
European Patent Application No. 19907503.7 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Aug. 3, 2021.
Extended European Search Report issued in European Patent Application No. 19907503.7 dated Oct. 5, 2022.
Chinese Patent Application No. 201980086850.9 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Jun. 28, 2021.
Canada Patent Application No. 3122313 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Jun. 4, 2021.
Australia Patent Application No. 2019418426 titled “Container Lid With Rotatable Sipper and Flexible Handle” filed on Jun. 1, 2021.
U.S. Appl. No. 62/787,894, filed Dec. 20, 2019 titled Container Lid With Rotatable Sipper and Flexible Handle.
Office Action issued in Chinese Application No. 201980086850.9 dated Apr. 28, 2022, 17 pages including English translation.
Office Action issued in Chinese Patent Application No. 201980086850.9 dated Dec. 13, 2022.
Related Publications (1)
Number Date Country
20200216232 A1 Jul 2020 US
Provisional Applications (1)
Number Date Country
62787894 Jan 2019 US