IP Library › Granted Patent US 12,729,900
Granted Patent B2
US 12,729,900 · App. 18/433,948 · Granted Sep 8, 2026

Refrigeration door system and door assembly with defrosting and related methods

Inventor: Peter M. Osgard (Jacksonville, FL)
F25D21/125F25D21/08F25D23/028F25D2317/062
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Quick Facts
Patent No.
US 12,729,900
App. No.
18/433,948
Granted
Sep 8, 2026
Kind
B2
Abstract

A refrigeration door system has a defrosting feature. The refrigeration door system also includes a housing defining a refrigerated cavity therein, and a door assembly carried by the housing and providing access to the refrigerated cavity. The door assembly includes a door frame and door coupled to the door frame. The door switches between an open position providing the access to the refrigerated cavity and a closed position where the refrigerated cavity is inaccessible. The door frame includes gasket pieces carried by a first side member and a second side member. The gasket pieces are spaced apart and define an air channel. The refrigeration door system also includes a positive pressure source fluidly coupled to the top member and configured to output air, and a heating device configured to heat the air from the positive pressure source.

Claims (51)

1 . A refrigeration door system with a defrosting feature, the refrigeration door system comprising:

a housing defining a refrigerated cavity therein; and

a door assembly carried by the housing and providing access to the refrigerated cavity;

the door assembly comprising

a door frame and door coupled to the door frame, the door switching between an open position providing the access to the refrigerated cavity and a closed position where the refrigerated cavity is inaccessible,

the door frame comprising

a top member having a first end and a second end opposite the first end, the top member having a top conduit therein,

a first side member coupled transversely to the first end of the top member and having a first conduit therein, the first conduit being fluidly coupled to the top conduit,

a second side member coupled transversely to the second end of the top member and having a second conduit therein, the second conduit being fluidly coupled to the top conduit,

a plurality of orifices positioned along the first side member and the second side member and being adjacent to the door when in the closed position, and

a plurality of gasket pieces carried by the first side member and the second side member, the plurality of gasket pieces being spaced apart and defining an air channel between each of the first side member and the second side member and adjacent portions of the door,

at least one positive pressure source fluidly coupled to the top member and configured to output air into at least first and second conduits and through the plurality of orifices, and

at least one heating device configured to heat the air from the at least one positive pressure source.

2 . The refrigeration door system of claim 1 wherein the first side member and the second side member each comprises a port integrated within the door frame and being fluidly coupled respectively to the first conduit and the second conduit.

3 . The refrigeration door system of claim 2 wherein the door comprises first and second door sweeps carried on a bottom edge to define a longitudinal channel.

4 . The refrigeration door system of claim 3 wherein the port of the first and second side members is fluidly coupled to the longitudinal channel when the door is in the closed position.

5 . The refrigeration door system of claim 1 wherein the door frame comprises first and second air diverters respectively fluidly coupled to proximal ends of the first conduit and the second conduit.

6 . The refrigeration door system of claim 1 wherein the at least one heating device comprises first and second heating devices respectively positioned adjacent the first and second ends of the top member.

7 . The refrigeration door system of claim 6 wherein each heating device comprises an elongate resistive heating device extending longitudinally in the top member.

8 . The refrigeration door system of claim 1 wherein the at least one positive pressure source comprises a single positive pressure source configured to output air into the top conduit; and wherein the door frame comprises a third air diverter within the top conduit and to direct air outward towards the first and second ends of the top member and into the first conduit and the second conduit.

9 . The refrigeration door system of claim 1 wherein the at least one positive pressure source comprises a fan.

10 . A door assembly for a refrigeration door system with a defrosting feature, the door assembly comprising:

a door frame;

a door coupled to the door frame, the door switching between an open position providing access to a refrigerated cavity and a closed position where the refrigerated cavity is inaccessible;

the door frame comprising

a top member having a first end and a second end opposite the first end, the top member having a top conduit therein,

a first side member coupled transversely to the first end of the top member and having a first conduit therein, the first conduit being fluidly coupled to the top conduit,

a second side member coupled transversely to the second end of the top member and having a second conduit therein, the second conduit being fluidly coupled to the top conduit,

a plurality of orifices positioned along the first side member and the second side member and being adjacent to the door when in the closed position, and

a plurality of gasket pieces carried by the first side member and the second side member, the plurality of gasket pieces being spaced apart and defining an air channel between each of the first side member and the second side member and adjacent portions of the door,

at least one positive pressure source fluidly coupled to the top member and configured to output air into at least first and second conduits and through the plurality of orifices; and

at least one heating device configured to heat the air from the at least one positive pressure source.

11 . The door assembly of claim 10 wherein the first side member and the second side member each comprises a port integrated within the door frame and being fluidly coupled respectively to the first conduit and the second conduit.

12 . The door assembly of claim 11 wherein the door comprises first and second door sweeps carried on a bottom edge to define a longitudinal channel.

13 . The door assembly of claim 12 wherein the port of the first and second side members is fluidly coupled to the longitudinal channel when the door is in the closed position.

14 . The door assembly of claim 10 wherein the door frame comprises first and second air diverters respectively fluidly coupled to proximal ends of the first conduit and the second conduit.

15 . The door assembly of claim 10 wherein the at least one heating device comprises first and second heating devices respectively positioned adjacent the first and second ends of the top member.

16 . The door assembly of claim 15 wherein each heating device comprises an elongate resistive heating device extending longitudinally in the top member.

17 . The door assembly of claim 10 wherein the at least one positive pressure source comprises a single positive pressure source configured to output air into the top conduit; and wherein the door frame comprises a third air diverter within the top conduit and to direct air outward towards the first and second ends of the top member and into the first conduit and the second conduit.

18 . A method for making a refrigeration door system with a defrosting feature, the method comprising:

coupling a door assembly to be carried by a housing and providing access to a refrigerated cavity, the door assembly comprising a door frame and a door coupled to the door frame, the door switching between an open position providing the access to the refrigerated cavity and a closed position where the refrigerated cavity is inaccessible;

the door frame comprising

a top member having a first end and a second end opposite the first end, the top member having a top conduit therein,

a first side member coupled transversely to the first end of the top member and having a first conduit therein, the first conduit being fluidly coupled to the top conduit,

a second side member coupled transversely to the second end of the top member and having a second conduit therein, the second conduit being fluidly coupled to the top conduit,

a plurality of orifices positioned along the first side member and the second side member and being adjacent to the door when in the closed position, and

a plurality of gasket pieces carried by the first side member and the second side member, the plurality of gasket pieces being spaced apart and defining an air channel between each of the first side member and the second side member and adjacent portions of the door;

positioning at least one positive pressure source to be fluidly coupled to the top member and configured to output air into at least first and second conduits and through the plurality of orifices; and

coupling at least one heating device to heat the air from the at least one positive pressure source.

19 . The method of claim 18 wherein the first side member and the second side member each comprises a port integrated within the door frame and being fluidly coupled respectively to the first conduit and the second conduit.

20 . The method of claim 19 wherein the door comprises first and second door sweeps carried on a bottom edge to define a longitudinal channel fluidly coupled to the first conduit and the second conduit when the door is in the closed position.

Continuity (5)
Continuation In Part 18327281 · Jun 1, 2023
Continuation In Part 17554030 · Dec 17, 2021
Continuation 17164930 · Feb 2, 2021
Provisional Application 62970689 · Feb 5, 2020
Related Publication 20240183605A1 · Jun 6, 2024
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