IP Library › Granted Patent US 12,479,649
Granted Patent B2
US 12,479,649 · App. 18/420,459 · Granted Nov 25, 2025

Cooling sleeve and mating bottle

Inventors: June Angus (Seattle, WA); Keith Willows (Seattle, WA); Antonio Del Rosario (Bellevue, WA)
Assignee: Amphipod, Inc.
B65D81/3883
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Quick Facts
Patent No.
US 12,479,649
App. No.
18/420,459
Granted
Nov 25, 2025
Kind
B2
Abstract

An insulator for use with a bottle includes a sleeve defined by a sleeve panel forming a sidewall extending upwardly from a bottom end to a top end, the top end having an opening, wherein the bottle is retainable within an interior space defined by the sleeve panel. A first heat absorbing pad is positioned on the sidewall of the sleeve and a second heat absorbing pad positioned on the sidewall of the sleeve, the second heat absorbing pad being positioned at a location diametrically opposite the position of the first heat absorbing pad, the first heat absorbing pad further being formed with a central void.

Claims (33)

1 . An insulator for use with a bottle, comprising:

a sleeve defined by a sleeve panel forming a sidewall extending upwardly from a bottom end to a top end, the top end having an opening, wherein the bottle is retainable within an interior space defined by the sleeve panel;

a first heat absorbing pad positioned on the sidewall of the sleeve; and

a second heat absorbing pad positioned on the sidewall of the sleeve, the second heat absorbing pad being positioned at a location diametrically opposite the position of the first heat absorbing pad;

the first heat absorbing pad further being formed with a central void, wherein the first heating absorbing pad sub tially encircles the central void.

2 . The insulator of claim 1 , wherein the sleeve panel further comprises an interior side facing toward the interior space and an exterior side facing away from the interior space, the first heat absorbing pad and the second heat absorbing pad each being positioned on the interior side of the sleeve panel.

3 . The insulator of claim 2 , further comprising a retainer panel attached to the sleeve panel, the first heat absorbing pad and the second heat absorbing pad each being positioned between the retainer panel and the sleeve panel.

4 . The insulator of claim 3 , wherein the retainer panel is relatively more heat-conductive than the sleeve panel.

5 . The insulator of claim 4 , wherein the first heat absorbing pad and the second heat absorbing pad are formed as a single combined heat absorbing pad, the single combined heat absorbing pad being configured with separate regions which define the first heat absorbing pad and the second heat absorbing pad.

6 . The insulator of claim 1 , wherein the second heat absorbing pad is configured with a narrow central neck, the narrow central neck being positioned centrally between the top end and the bottom end of the sleeve.

7 . The insulator of claim 6 , further comprising a height from the top end to the bottom end of the sleeve, with a midpoint defined half-way between the top end and the bottom end, and further wherein both the central void and the neck intersect with the midpoint.

8 . The insulator of claim 1 , further comprising a height from the top end to the bottom end of the sleeve, with a midpoint defined half-way between the top end and the bottom end, wherein the central void intersects with the midpoint.

9 . The insulator of claim 2 , further comprising a hand strap attached to the sleeve, the hand strap being positioned on the exterior side of the sleeve panel and over the second heat absorbing pad.

10 . The insulator of claim 2 , wherein the bottle includes a length and a width along a plane perpendicular to a height of the bottle, the width of the bottle being greater than the length of the bottle, and further wherein, when the bottle is retained within the sleeve, the first heat absorbing pad extends substantially across the entire width of the bottle and the second heat absorbing pad extends substantially across the entire width of the bottle.

11 . The insulator of claim 2 , further comprising a retainer panel attached to the sleeve panel, the retainer panel being arranged to define a first pocket and a second pocket on the interior side of the sleeve, the first heat absorbing pad being removably retained within the first pocket and the second heat absorbing pad being removably retained within the second pocket.

12 . The insulator of claim 1 , wherein each of the first heat absorbing pad and the second heat absorbing pad are filed with a gel material.

13 . An insulator for use with a bottle, comprising:

a sleeve defined by a sleeve panel forming a sidewall extending upwardly from a bottom end to a top end, the top end having an opening, wherein the bottle is retainable within an interior space defined by the sleeve panel;

a hand strap attached to the sleeve between the top end and the bottom end, the hand strap forming an opening between the hand strap and the sleeve;

a heat absorbing pad positioned on the sidewall of the sleeve, the heat absorbing pad including a hand heat absorbing pad region located at a position underlying the hand strap; and

the sleeve further having a void region positioned on the sidewall of the sleeve, the void region being located diametrically opposite the hand heat absorbing pad region, wherein the heat absorbing pad is not positioned over the void region when the heat absorbing pad is positioned on the sidewall of the sleeve.

14 . The insulator of claim 13 , wherein the heat absorbing pad further comprises a finger heat absorbing pad region, the finger heat absorbing pad region substantially encircling the void region.

15 . The insulator of claim 14 , wherein the heat absorbing pad comprises a first heat absorbing pad and a second heat absorbing pad, the first heat absorbing pad encompassing the finger heat absorbing pad region and the void region, the second heat absorbing pad encompassing the hand heat absorbing pad region.

16 . The insulator of claim 14 , wherein the sleeve panel further comprises an interior side facing toward the interior space and an exterior side facing away from the interior space, the heat absorbing pad being positioned on the interior side of the sleeve panel.

17 . The insulator of claim 16 , further comprising a retainer panel attached to the sleeve panel, the heat absorbing pad being positioned between the retainer panel and the sleeve panel.

18 . The insulator of claim 17 , wherein the retainer panel is relatively more heat-conductive than the sleeve panel.

19 . The insulator of claim 15 , wherein the heat retaining pad is integrally formed with the sleeve panel.

20 . The insulator of claim 14 , wherein the hand heat absorbing pad region is configured with a narrow central neck, the narrow central neck being positioned centrally between the top end and the bottom end of the sleeve.

21 . The insulator of claim 20 , wherein the void region is positioned centrally between the top end and the bottom end of the sleeve.

22 . The insulator of claim 20 , further comprising a height from the top end to the bottom end of the sleeve, with a midpoint defined half-way between the top end and the bottom end, and further wherein both the void region and the central neck intersect with the midpoint.

23 . The insulator of claim 13 , wherein the bottle includes a length and a width along a plane perpendicular to a height of the bottle, the width of the bottle being greater than the length of the bottle, and further wherein, when the bottle is retained within the sleeve, hand heat absorbing pad region extends substantially across the entire width of the bottle and the finger heat absorbing pad region extends substantially across the entire width of the bottle.

24 . The insulator of claim 13 , further comprising a retainer panel attached to the sleeve panel, the retainer panel being arranged to define a pocket on the interior side of the sleeve, the heat absorbing pad being removably retained within the pocket.

25 . The insulator of claim 13 , wherein each of the first heat absorbing pad and the second heat absorbing pad are filed with a gel material.

Continuity (2)
Provisional Application 63576219 · Jan 25, 2023
Related Publication 20240246745A1 · Jul 25, 2024
References Cited (5)
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US 6786880B2 · Wall · 2004 [cited by examiner]
US 9907421B2 · Carson · 2018 [cited by examiner]