IP Library Granted Patent US 7,080,519
Granted Patent B1
US 7,080,519 · App. 10/663,105 · Granted Jul 25, 2006

Method and apparatus for cooling AC condensing coils

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Quick Facts
Patent No.
US 7,080,519
App. No.
10/663,105
Granted
Jul 25, 2006
Kind
B1
Abstract

A method and apparatus for cooling an air conditioning system's condensing coils utilizing an air filter pad made of glass fibers with self contained, perforated water capillary tubes allowing moisture to permeate the filter pad. The filter pads may be connectable in series and provided with integral mounting strips for fixed or magnetic, internal or external attachment to the condensing unit. Special adaptive solenoids are also provided to allow for minimum flow of water over long periods of time. Dual sensors are provided connected to both the high and low side of the compressor for sensing compressor temperature status and switching the solenoid on and off, thereby preventing freezing of the compressor. A unique method for applying chilled water to the capillary tubes by coiling the capillary tube around the suction line of the compressor is utilized. The system may be provided in kits with several pads adapted for use with a wide variety of condensing unit configurations including automotive and further includes valves, tubing, wiring and connection boxes, insulation components for enclosing compressor tubing and water pump and reservoir as required, along with detailed instructions for assembly and installation.

Claims (22)

1. A condenser coil cooling system for central air conditioners having externally located condensing and compressor units in a housing having a forced draft fan for drawing an air stream across the condensing coils comprising:

a) an air filter panel having fine screen meshes covering one face located within said air stream leading to said condensing coils;

b) a first length of flexible polymeric tubing having a plurality of perforations attached periodically to a rigid strip inserted along one edge of said filter panel;

c) a second length of flexible polymeric tubing having one end connected to said first length of polymeric tubing, a portion of which is coiled around and in contact with refrigeration suction tubing associated with said compressor;

d) an electrically controlled water valve having an inlet port connected to a source of pressurized water and an outlet port connected to said second length of flexible polymeric tubing;

e) a means for electrically controlling said water valve between open and closed positions in response to preset electrical temperature sensors located in contact with both said pressure and said suction refrigeration lines connected to said compressor; and

f) a current limiting means not exceeding 3 amps located within an electrical circuit on each side of the electrical load involving said means for electrically controlling said water valve and said electrical temperature sensors.

2. The condenser coil cooling system according to claim 1 wherein said system further comprises a water filter connected to said source of pressurized water.

3. The condenser coil cooling system according to claim 2 wherein said water filter is connected between said first and second length of flexible polymeric tubing.

4. A condenser coil cooling system for air conditioners having condensing and compressor units with forced draft fans for drawing an air stream across the condensing coils comprising:

a) an air filter panel having fine screen meshes covering one face located within said air stream leading to said condensing coils;

b) a first length of flexible polymeric tubing having a plurality of perforations attached periodically to a rigid strip inserted along an upper edge of said filter panel;

c) a second length of flexible polymeric tubing having one end connected to said first length of polymeric tubing, a portion of which is coiled around and in contact with refrigeration suction tubing associated with said compressor;

d) an electrically controlled water valve having an inlet port connected to a source of pressurized water and an outlet port connected to said second length of flexible polymeric tubing;

e) a means for electrically controlling said water valve between open and closed positions in response to preset electrical temperature sensors located in contact with both said pressure and said suction refrigeration lines connected to said compressor; and

f) a water filter connected to said source of pressurized water.

5. The condenser coil cooling system according to claim 4 wherein said source of pressurized water is a reservoir having a pump connected thereto.

6. The condenser coil cooling system according to claim 5 wherein said cooling system is installed on an automobile.

7. The condenser coil cooling system according to claim 6 wherein said cooling system further comprises a water supply reservoir.

8. The condenser coil cooling system according to claim 6 wherein said cooling system further comprises a pump means.

9. The condenser coil cooling system according to claim 6 wherein said cooling system is connected to a automobile's windshield washer system.

10. The condenser coil cooling system according to claim 6 wherein said cooling system is battery powered.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2008
From: JOHNSON, TOMMY A., MR.
To: SUPERCOOLER, LLC
Reel/Frame 021489/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2008
From: JOHNSON, TOMMY A., SR.
To: VALUE ADDED, LLC
Reel/Frame 021243/0643 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2008
From: FORDY'S CHILLING FILTER COMPANY, LLC
To: VALUE ADDED, LLC
Reel/Frame 021243/0646 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2008
From: JOHNSON, TOMMY A., SR.
To: FORDY'S CHILLING FILTER COMPANY, LLC
Reel/Frame 020487/0940 →