Claims
- 1. A water heater for use in spas, hot tubs, pools, hydrotherapy pools, bath tubs, and similar bodies of water used indoors, outdoors, or both indoors and outdoors, the water heater comprising:
a heating chamber connected in a water flow path for heating water passing therethrough, the heating chamber having an inlet, an outlet, and at least one heating surface; the heating surface having an inner wet surface, and an outer dry surface; a dielectric layer coupled to the outer dry surface of the at least one heating surface by a binding material formed on the outer dry surface of the heating chamber; at least one resistor attached to the dielectric layer; a conductive layer connected to at least a portion of the at least one resistor; at least one temperature sensor located on or near the at least one heating surface for sensing temperature; at least one water presence sensor located in or near the heating chamber for sensing the presence or absence of water within the heating chamber; at least one terminal connected to at least a portion of the conductive layer and connected to at least one power controlling device, the at least one power controlling device connected to that at least one temperature sensor, the at least one water presence sensor, and a power supply for controllably energizing the water heater to regulate the temperature of the water heater; wherein the at least one power controlling device disconnects power to the water heater when the temperature sensed by the at least one temperature sensor exceeds a predetermined temperature and allows power to be reconnected to the water heater once the temperature has dropped below a predetermined temperature; wherein the at least one power controlling device disconnects power to the water heater when the at least one water presence sensor detects the absence of water within the heating chamber and allows power to be reconnected to the water heater once the at least one water presence sensor senses water present within the heating chamber.
- 2. The water heater according to claim 1, wherein the at least one power controlling device requires a manual reset after power to the water heater has been disconnected.
- 3. The water heater according to claim 1, wherein the at least one power controlling device automatically reconnects power to the water heater after it has been disconnected.
- 4. The water heater according to claim 1, wherein the at least one power controlling device has a high limit switch connected to the at least one temperature sensor and to the power supply for automatically causing the power to be disconnected from the water heater when the water temperature exceeds a predetermined temperature, the high limit switch requiring a manual reset once the water temperature has dropped below a predetermined temperature to allow power to be reconnected to the water heater.
- 5. The water heater according to claim 1, wherein the at least one power controlling device has a high limit switch connected to the at least one temperature sensor and to the power supply for automatically causing the power to be disconnected from the water heater when the water temperature exceeds a predetermined temperature, the high limit switch automatically reconnecting the power supply once the water temperature has dropped below a predetermined temperature.
- 6. The water heater according to claim 1, wherein the at least one heating surface comprises two heating surfaces.
- 7. The water heater according to claim 1, wherein the at least one heating surface comprises three heating surfaces.
- 8. The water heater according to claim 1, wherein the at least one heating surface comprises four heating surfaces.
- 9. The water heater according to claim 1, wherein the at least one heating surface comprises a plurality of heating surfaces corresponding to the number of sides ‘n’ of a polygonal cross-section of the heating chamber.
- 10. The water heater according to claim 1, wherein the at least one heating surface comprises a plurality of heating surfaces corresponding to the number ‘n’ minus one (‘n−1’), wherein ‘n’ corresponds to the number of sides of a polygonal cross-section of the heating chamber.
- 11. The water heater according to claim 1, wherein the at least one heating surface is stainless steel and the binding material is a chromium oxide coating formed on the outer surface of the heating surface as a result of the stainless steel being heated to a certain temperature.
- 12. The water heater according to claim 1, wherein the at least one heating surface is made of a non-conductive material thereby eliminating the need for the dielectric layer and the binding material such that the at least one resistor is attached directly onto the at least one heating surface.
- 13. The water heater according to claim 1, wherein the at least one heating surface is made of a material selected from the group consisting of copper, copper-nickel alloy, aluminum, aluminum alloys, magnesium, magnesium alloys, titanium, titanium alloys, steel, corrosion resistant varieties of steel, brass, ceramic, glass, or other suitable materials which are resistant to known changes in water chemistry of spas, hot tubs, pools, hydrotherapy pools, bath tubs, and similar bodies of water used indoors, outdoors, or both indoors and outdoors.
- 14. The water heater according to claim 1, further comprising an inlet pipe and an outlet pipe at the heating chamber inlet and outlet.
- 15. The water heater according to claim 14, wherein the inlet pipe and outlet pipe have end-flanged couplings to facilitate connection with a water flow system.
- 16. The water heater according to claim 15, wherein the end-flanged couplings are made of PVC, plastic, or equivalent polymer material.
- 17. The water heater according to claim 1, further comprising an insulating overcoat covering the dielectric layer, the at least one resistor and the conductive layer.
- 18. The water heater according to claim 1, wherein the insulating overcoat comprises a glass insulating material.
- 19. The water heater according to claim 1, wherein the at least one resistor is an electric resistance layer which is a product of depositing an electrically conductive composition onto the binding material.
- 20. The water heater according to claim 12, wherein the at least one resistor comprises electrically conductive particles dispersed in the binding material.
- 21. The water heater according to claim 1, wherein the at least one resistor is deposited onto the binding material in a pattern to provide one or more resistors.
- 22. The water heater according to claim 1, wherein the at least one resistor is deposited onto the binding material by electrostatic spraying with the use of a stencil.
- 23. The water heater according to claim 1, wherein the at least one resistor is screen printed onto the binding material in a pattern to provide one or more resistors.
- 24. The water heater according to claim 1, wherein the dielectric layer, at least one resistor, and conductive layer comprise at least one screen-printed thick film power resistor bonded to the binding material.
- 25. The water heater according to claim 1, wherein the dimensions and layout of the dielectric layer, at least one resistor, and conductive layer depends on the size and the amount of heat necessary to heat a spa, hot tub, pool, hydrotherapy pool, bath tub, or similar body of water used indoors, outdoors, or both indoors and outdoors, and can be determined in accordance with well-known methods.
- 26. The water heater according to claim 1, wherein the at least one resistor comprises a plurality of resistors; the at least one terminal comprises a plurality of terminals; and wherein the plurality of resistors, the dielectric layer, the conductive layer, and the plurality of terminals are configured to provide variable operating resistance values.
- 27. The water heater according to claim 26, wherein the plurality of resistors, the dielectric layer, the conductive layer, and the plurality of terminals are configured to provide separate operating resistance values of 1.5 kilowatts and 4.0 kilowatts, and a combined operating resistance value of 5.5 kilowatts.
- 28. The water heater according to claim 1, wherein the at least one terminal is coupled to the conductive layer by multi-strand percussion welds.
- 29. The water heater according to claim 1, wherein the at least one terminal is coupled to the conductive layer by a stud welded onto the conductive layer.
- 30. The water heater according to claim 1, wherein the at least one temperature sensor is located within the heating chamber.
- 31. The water heater according to claim 1, wherein the at least one temperature sensor is located within the water flow path on or near the inlet or outlet.
- 32. The water heater according to claim 1, wherein the at least one temperature sensor comprises two temperature sensor devices located at a first and second separated location on or within the heating chamber.
- 33. The water heater according to claim 1, wherein the at least one temperature sensor is a mechanical sensor such as a bulb and capillary device.
- 34. The water heater according to claim 1, wherein the water presence sensor is a pressure switch.
- 35. The water heater according to claim 1, wherein the water presence sensor is a flow meter.
- 36. The water heater according to claim 1, wherein the water presence sensor is a vacuum switch.
- 37. The water heater according to claim 1, wherein the water presence sensor comprises a solid state sensing device.
- 38. The water heater according to claim 1, further comprising a grounding connection coupled to the water heater.
- 39. The water heater according to claim 38, wherein the grounding connection comprises a clamp coupled to the at least one heating surface.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/215,636 filed Jun. 30, 2000, the entire contents of which are incorporated herein by this reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60215636 |
Jun 2000 |
US |