IP Library Patent Application 14916067
Patent Application
App. No. 14/916,067

Holding Cabinets With Closed-Loop Environmental Control Systems, Methods For Controlling Environmental Conditions In Holding Cabinets, And Computer-Readable Media Storing Instructions For Implementing Such Methods

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Quick Facts
Patent No.
US None
App. No.
14/916,067
Abstract

Methods disclosed herein may be methods for maintaining environmental conditions in a cabinet. Such methods may comprise determining a relative humidity set point. Such methods may comprise activating a fan configured to circulate air within said cabinet. Such methods may comprise supplying humidity by activating a heater in a fluid pan or a mist generator. Such methods may comprise measuring a relative humidity, an air temperature, and a rate of airflow in said cabinet. Such methods may comprise adjusting a duty cycle of said heater and said fan in response to said air temperature, said relative humidity, and said rate of airflow to maintain said relative humidity within a predetermined range based on the relative humidity set point. Computer-readable instructions to perform such methods may be stored on non-transitory, computer-readable media. Further, a system comprising a processor and a memory storing such computer-readable instructions may implement such methods.

Claims (91)

1 . A method for maintaining environmental conditions in a cabinet, comprising:

determining a relative humidity set point;

activating a fan configured to circulate air within said cabinet;

activating a humidity-generating device;

measuring a relative humidity, an air temperature, and a rate of airflow in said cabinet; and

adjusting a duty cycle of said humidity-generating device and said fan in response to said air temperature, said relative humidity, and said rate of airflow to maintain said relative humidity within a predetermined range based on the relative humidity set point.

2 . The method according to claim 1 , wherein the relative humidity set point is determined based on a particular type of product to be placed in said cabinet.

3 . The method according to claim 1 , wherein the humidity-generating device includes a heater in a fluid pan.

4 . The method according to claim 1 , wherein the humidity-generating device includes a mist generator, the mist generator including:

a fluid reservoir;

a wicking device configured to wick fluid from the fluid reservoir toward the heater; and

a heater configured to generate mist by evaporating fluid wicked by the wicking device.

5 . The method according to claim 4 ,

wherein the mist generator further includes an electrode, and

wherein the method further comprises:

determining whether the fluid in the fluid reservoir is within a predetermined range based on a signal provided by the electrode; and

performing at least one of the following in response to determining that the fluid in the fluid reservoir is not within the predetermined range:

adding additional fluid to the fluid reservoir; and

removing fluid from the fluid reservoir.

6 . The method according to claim 1 ,

wherein said cabinet includes a plurality of zones, and

wherein the method further comprises, for each zone of the plurality of zones:

determining a respective relative humidity set point for the respective zone;

activating a respective fan configured to circulate air within the respective zone;

activating a respective humidity-generating device within the respective zone;

measuring a relative humidity, an air temperature, and a rate of airflow within the respective zone; and

adjusting a duty cycle of said respective humidity-generating device and said respective fan in response to said air temperature, said relative humidity, and said rate of airflow within the respective zone to maintain said relative humidity in the respective zone within a predetermined range based on the relative humidity set point for the respective zone.

7 . The method according to claim 4 , wherein an average diameter of the heater is less than an average diameter of the wick device, such that the mist is released from the mist generator at a perimeter of the heater.

8 . A system configured to maintain environmental conditions in a cabinet, comprising:

a processor; and

a memory storing computer-readable instructions that, when executed by the processor, instruct the processor to perform processes comprising:

determining a relative humidity set point;

activating a fan configured to circulate air within said cabinet;

activating a humidity-generating device;

measuring a relative humidity, an air temperature, and a rate of airflow in said cabinet; and

adjusting a duty cycle of said humidity-generating device and said fan in response to said air temperature, said relative humidity, and said rate of airflow to maintain said relative humidity within a predetermined range based on the relative humidity set point.

9 . The system according to claim 8 , wherein the computer-readable instructions instruct the processor to determine the relative humidity set point based on a particular type of product to be placed in said cabinet.

10 . The system according to claim 8 , wherein the humidity-generating device includes a heater in a fluid pan.

11 . The system according to claim 8 , wherein the humidity-generating device includes a mist generator, the mist generator including:

a fluid reservoir;

a wicking device configured to wick fluid from the fluid reservoir toward the heater; and

a heater configured to generate mist by evaporating fluid wicked by the wicking device.

12 . The system according to claim 11 ,

wherein the mist generator further includes an electrode,

wherein the computer-readable instructions instruct the processor to determine whether the fluid in the fluid reservoir is within a predetermined range based on a signal provided by the electrode,

wherein the computer-readable instructions instruct the processor to perform at least one of the following in response to determining that the fluid in the fluid reservoir is not within the predetermined range:

controlling a pump to add additional fluid to the fluid reservoir; and

controlling mist generator to discharge fluid from the fluid reservoir.

13 . The system according to claim 8 ,

wherein said cabinet includes a plurality of zones, and

wherein the computer-readable instructions instruct the processor to perform processes further comprising, for each zone of the plurality of zones:

determining a respective relative humidity set point for the respective zone;

activating a respective fan configured to circulate air within the respective zone;

activating a respective humidity-generating device within the respective zone;

measuring a relative humidity, an air temperature, and a rate of airflow within the respective zone; and

adjusting a duty cycle of said respective humidity-generating device and said respective fan in response to said air temperature, said relative humidity, and said rate of airflow within the respective zone to maintain said relative humidity in the respective zone within a predetermined range based on the relative humidity set point for the respective zone.

14 . The system according to claim 11 , wherein an average diameter of the heater is less than an average diameter of the wick device, such that the mist generator is configured to release the mist at a perimeter of the heater.

15 . The system according to claim 11 ,

wherein the wicking device includes a wicking material extending in a longitudinal direction between a base portion of the mist generator and the heater, and

wherein the wicking material is configured to convey fluid, via capillary action, in the longitudinal direction from the fluid reservoir to the heater.

16 . The system according to claim 15 , wherein the wicking material is a porous material.

17 . The system according to claim 15 , wherein the wicking material is cotton.

18 . The system according to claim 15 , wherein the wicking material includes a plurality of rope-like strands extending in the longitudinal direction.

19 . The system according to claim 15 , wherein the wicking material is a ceramic.

20 . A non-transitory, computer-readable medium storing computer-readable instructions that, when executed by a processor, instruct the processor to perform processes comprising:

determining a relative humidity set point;

activating a fan configured to circulate air within a cabinet;

activating a humidity-generating device;

measuring a relative humidity, an air temperature, and a rate of airflow in said cabinet; and

adjusting a duty cycle of said humidity-generating device and said fan in response to said air temperature, said relative humidity, and said rate of airflow to maintain said relative humidity within a predetermined range based on the relative humidity set point.

21 . The non-transitory, computer-readable medium according to claim 20 , wherein the computer-readable instructions instruct the processor to determine the relative humidity set point based on a particular type of product to be placed in said cabinet.

22 . The non-transitory, computer-readable medium according to claim 20 , wherein the humidity-generating device includes a heater in a fluid pan.

23 . The non-transitory, computer-readable medium according to claim 20 , wherein the humidity-generating device includes a mist generator, the mist generator including:

a fluid reservoir;

a wicking device configured to wick fluid from the fluid reservoir toward the heater; and

a heater configured to generate mist by evaporating fluid wicked by the wicking device.

24 . The non-transitory, computer-readable medium according to claim 23 ,

wherein the mist generator further includes an electrode,

wherein the computer-readable instructions instruct the processor to determine whether the fluid in the fluid reservoir is within a predetermined range based on a signal provided by the electrode,

wherein the computer-readable instructions instruct the processor to perform at least one of the following in response to determining that the fluid in the fluid reservoir is not within the predetermined range:

controlling a pump to add additional fluid to the fluid reservoir; and

controlling mist generator to discharge fluid from the fluid reservoir.

25 . The non-transitory, computer-readable medium according to claim 20 ,

wherein said cabinet includes a plurality of zones, and

wherein the computer-readable instructions instruct the processor to perform processes further comprising, for each zone of the plurality of zones:

determining a respective relative humidity set point for the respective zone;

activating a respective fan configured to circulate air within the respective zone;

activating a respective humidity-generating device within the respective zone;

measuring a relative humidity, an air temperature, and a rate of airflow within the respective zone; and

adjusting a duty cycle of said respective humidity-generating device and said respective fan in response to said air temperature, said relative humidity, and said rate of airflow within the respective zone to maintain said relative humidity in the respective zone within a predetermined range based on the relative humidity set point for the respective zone.

26 . The non-transitory, computer-readable medium according to claim 23 , wherein an average diameter of the heater is less than an average diameter of the wick device, such that the mist is released from the mist generator at a perimeter of the heater.

Assignments (3)
SECURITY INTEREST Recorded Apr 21, 2022
From: HENNY PENNY CORPORATION; HPC INVESTMENT COMPANY, LLC; HPC REAL ESTATE INVESTMENT I LTD.; WOOD STONE CORPORATION; WOOD STONE IDEAS, L.L.C.; IWD INNOVATIONS, LLC
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 059747/0602 →
SECURITY INTEREST Recorded Dec 8, 2017
From: HENNY PENNY CORPORATION; HPC INVESTMENT COMPANY, LLC; HPC REAL ESTATE INVESTMENT I LTD.; WOOD STONE CORPORATION; WOOD STONE IDEAS, L.L.C.; IWD INNOVATIONS, LLC
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 044777/0439 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2016
From: SHIRALI, MANOUCHEHR; SHEN, JINGJING
To: HENNY PENNY CORPORATION
Reel/Frame 037888/0647 →