IP Library Granted Patent US 9,869,475
Granted Patent B2
US 9,869,475 · App. 14/594,374 · Granted Jan 16, 2018

Heat pump water heater appliance and a method for operating the same

Inventors: Brett Alan Farris (Louisville, KY); Michael Lee Alsip (Louisville, KY)
Assignee: Haier US Appliance Solutions, Inc.
F24D19/1054F24D15/04F24D19/088F25D21/14Y02B30/12
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Quick Facts
Patent No.
US 9,869,475
App. No.
14/594,374
Granted
Jan 16, 2018
Kind
B2
Abstract

A heat pump water heater appliance includes a tank that defines an interior volume. A drain pan is positioned below an evaporator of a sealed system. A liquid monitoring sensor has a voltage divider with a pair of probes. The probes of the pair of probes extend into the drain pan. A related method for operating a heat pump water heater appliance is also provided.

Claims (38)

1. A heat pump water heater appliance, comprising:

a tank defining an interior volume;

a sealed system configured for heating water within the interior volume of the tank, the sealed system having an evaporator;

a drain pan positioned below the evaporator of the sealed system, the drain pan positioned for receiving liquid runoff from the evaporator of the sealed system;

a liquid monitoring sensor having a voltage divider with a pair of probes, the probes of the pair of probes extending into the drain pan; and

a controller in electrical communication with the liquid monitoring sensor such that the controller is configured for receiving an electrical signal from the liquid monitoring sensor,

wherein the controller is configured for:

establishing that liquid within the drain pan is substantially pure liquid water having less than one percent of dust or refrigerant if the electrical signal from the liquid monitoring sensor is within a first voltage range,

determining that liquid within the drain pan includes contaminated liquid water having at least one percent of dust or refrigerant if the electrical signal from the liquid monitoring sensor is within a second voltage range, and

disabling a compressor of the sealed system if the electrical signal from the liquid is within the second voltage range.

2. The heat pump water heater appliance of claim 1 , wherein a first probe of the pair of probes is grounded.

3. The heat pump water heater appliance of claim 2 , wherein a second probe of the pair of probes is electrically coupled to a first electrical impedance element and a second electrical impedance element of the voltage divider, the first and second electrical impedance elements each being one of a resistor, a capacitor and an inductor.

4. The heat pump water heater appliance of claim 3 , wherein the first electrical impedance element is a resistor and the second electrical impedance element is a capacitor.

5. The heat pump water heater appliance of claim 3 , wherein the first electrical impedance element extends between an input voltage pin and a connection conductor of the voltage divider, the connection conductor of the voltage divider extending between and electrically coupling the first electrical impedance element, the second electrical impedance element and the second probe of the pair of probes, the second electrical impedance element extending between an analog or digital input pin of the controller and the connection conductor.

6. The heat pump water heater appliance of claim 5 , wherein the first electrical impedance element is a resistor and the second electrical impedance element is a capacitor.

7. The heat pump water heater appliance of claim 1 , wherein the probes of the pair of probes are spaced apart from each other by a gap within the drain pan.

8. The heat pump water heater appliance of claim 1 , wherein the controller is configured for alerting a user of the water heater appliance if the electrical signal from the liquid monitoring sensor exceeds a threshold voltage.

9. The heat pump water heater appliance of claim 1 , further comprising a casing, the tank disposed within the casing, the evaporator of the sealed system and the drain pan also disposed within the casing.

10. The heat pump water heater appliance of claim 9 , wherein the casing extends between a top portion and a bottom portion, the evaporator of the sealed system and the drain pan disposed within the casing adjacent the top portion of the casing.

11. The heat pump water heater appliance of claim 1 , further comprising a drain line extending from the drain pan, the drain line configured for directing liquids out of the drain pan.

12. A heat pump water heater appliance, comprising:

a tank defining an interior volume;

a sealed system configured for heating water within the interior volume of the tank, the sealed system having an evaporator;

a drain pan positioned below the evaporator of the sealed system, the drain pan positioned for receiving liquid runoff from the evaporator of the sealed system;

a liquid monitoring sensor having a voltage divider with a pair of probes, the probes of the pair of probes extending into the drain pan; and

a controller in electrical communication with the liquid monitoring sensor such that the controller is configured for receiving an electrical signal from the liquid monitoring sensor,

wherein the controller is configured for:

establishing that liquid within the drain pan is substantially pure liquid water having less than one percent of dust or refrigerant if the electrical signal from the liquid monitoring sensor is within a first voltage range,

determining that liquid within the drain pan includes contaminated liquid water having at least one percent of dust or refrigerant if the electrical signal from the liquid monitoring sensor is within a second voltage range, and

activating an audible alert speaker or a visual display if the electrical signal from the liquid is within the second voltage range.

13. The heat pump water heater appliance of claim 12 , wherein a first probe of the pair of probes is grounded, and wherein the probes of the pair of probes are spaced apart from each other by a gap within the drain pan.

14. The heat pump water heater appliance of claim 13 , wherein a second probe of the pair of probes is electrically coupled to a first electrical impedance element and a second electrical impedance element of the voltage divider, the first and second electrical impedance elements each being one of a resistor, a capacitor and an inductor.

15. The heat pump water heater appliance of claim 14 , wherein the first electrical impedance element is a resistor and the second electrical impedance element is a capacitor.

16. The heat pump water heater appliance of claim 14 , wherein the first electrical impedance element extends between an input voltage pin and a connection conductor of the voltage divider, the connection conductor of the voltage divider extending between and electrically coupling the first electrical impedance element, the second electrical impedance element and the second probe of the pair of probes, the second electrical impedance element extending between an analog or digital input pin of the controller and the connection conductor.

17. The heat pump water heater appliance of claim 16 , wherein the first electrical impedance element is a resistor and the second electrical impedance element is a capacitor.

18. The heat pump water heater appliance of claim 12 , further comprising a casing, the tank disposed within the casing, the evaporator of the sealed system and the drain pan also disposed within the casing.

19. The heat pump water heater appliance of claim 18 , wherein the casing extends between a top portion and a bottom portion, the evaporator of the sealed system and the drain pan disposed within the casing adjacent the top portion of the casing.

20. The heat pump water heater appliance of claim 12 , further comprising a drain line extending from the drain pan, the drain line configured for directing liquids out of the drain pan.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038952/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2015
From: FARRIS, BRETT ALAN; ALSIP, MICHAEL LEE
To: GENERAL ELECTRIC COMPANY
Reel/Frame 034681/0848 →
Continuity (1)
Related Publication 20160201929A1 · Jul 14, 2016