Ion generation device
The present invention provides methods and systems for an ion generation device that includes an elongate housing having a back portion and a pair of side portions extending from the back portion and forming a cavity therein. A conductive portion is disposed within the cavity and connected to a power supply for providing power to the conductive portion. A plurality of tines are engaged to the conductive portion.
1. A method of ionizing air, comprising:
providing an ion generator device that comprises an elongate housing having a back portion and a pair of side portions extending from the back portion and forming a cavity therein, a conductive portion disposed within the cavity and connected to a power supply disposed within the cavity for providing voltage to the conductive portion, an insulator disposed between the housing and conductive portion containing a hollow interior portion for receiving the conductive portion and power supply, and a plurality of tines engaged to the conductive portion; and
placing the ion generator device in an HVAC system that includes a heat transfer device, wherein the heat transfer device is positioned adjacent the ion generator device.
2. The method of ionizing air of claim 1 , further providing an extrusion disposed within the cavity of the housing.
3. The method of ionizing air of claim 1 , wherein the plurality of tines extend perpendicularly from the conductive portion and have a lower portion and a top portion, wherein the lower portion is engaged to the conductive portion and is wider than the top portion.
4. The method of ionizing air of claim 1 , wherein the conductive portion is composed of a polypropylene impregnated with carbon.
5. The method of ionizing air of claim 1 , wherein the ion generator device is positioned such that air flows perpendicular to longitudinal length of the tines.
6. The method of ionizing air of claim 1 , wherein the power supply is engaged to an electrical connector for supplying power to the power supply.