Air conditioner devices
View Patent ↗An air conditioner includes an ion generator that provides ions and safe amounts of ozone. The ion generator includes a high voltage generator that provides a voltage potential difference between first and second electrode arrays. At least one of the first and second arrays is removable from the housing for cleaning.
1. An air treatment apparatus comprising:
a housing having:
(a) a bottom portion;
(b) a top portion; and
(c) a body portion positioned between the bottom portion and the top portion, the body portion extending along a first axis, the body portion having:
(i) at least one intake vent; and
(ii) at least on exhaust vent;
a first electrode supported by the housing;
a second electrode configured to be removably supported by the housing;
a voltage generator operatively coupled to the electrodes, the voltage generator being configured to cause a plurality of ions to flow toward the second electrode along a second axis, the second axis being substantially perpendicular to the first axis; and
a circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions for a designated period of time after a designated event occurs by increasing the potential of the first electrode.
2. The air treatment apparatus of claim 1 , the body portion of the housing having an inner wall, the inner wall defining a slot configured to receive the second electrode, the second electrode configured to be slidably removable through the slot.
3. The air treatment apparatus of claim 2 , which includes a handle coupled to the second electrode.
4. The air treatment apparatus of claim 1 , which includes a grasp coupled to the second electrode.
5. The air treatment apparatus of claim 1 , which includes a pedestal coupled to the bottom portion of the housing.
6. The air treatment apparatus of claim 1 , which includes at least one input device coupled to the top portion of the housing.
7. The air treatment apparatus of claim 1 , which includes at least one output device coupled to the top portion of the housing.
8. The air treatment apparatus of claim 7 , the output device including a light source.
9. The air treatment apparatus of claim 1 , which includes the circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions based on an input provided by a user.
10. An air treatment apparatus comprising:
a housing having:
(a) a bottom portion;
(b) a top portion; and
(c) a body portion positioned between the bottom portion and the top portion, the body portion extending along a first axis, the body portion having:
(i) at least one intake vent;
(ii) at least one exhaust vent; and
(iii) an inner wall which defines a slot;
a first electrode supported by the housing;
a second electrode configured to be:
(i) removably supported by the housing; and
(ii) slidably removable through the slot;
a voltage generator operatively coupled to the electrodes, the voltage generator being configured to cause a plurality of ions to flow toward the second electrode along a second axis, the second axis being substantially perpendicular to the first; and
a circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions for a designated period of time after a designated event occurs by increasing the potential of the first electrode.
11. The air treatment apparatus of claim 10 , which includes a grasp coupled to the second electrode.
12. The air treatment apparatus of claim 11 , which includes a handle coupled to the second electrode.
13. The air treatment apparatus of claim 10 , which includes a pedestal coupled to the bottom portion of the housing.
14. The air treatment apparatus of claim 10 , which includes at least one input device coupled to the top portion of the housing.
15. The air treatment apparatus of claim 10 , which includes at least one output device coupled to the top portion of the housing.
16. The air treatment apparatus of claim 15 , the output device including a light source.
17. The air treatment apparatus of claim 10 , which includes the circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions based on an input provided by a user.
18. An air treatment apparatus comprising:
an housing having:
(a) an elongated shape;
(b) a bottom portion;
(c) a top portion; and
(d) a body portion positioned between the bottom portion and the top portion, the body portion extending along a first axis, the body portion having:
(i) at least one intake vent;
(ii) at least one exhaust vent; and
(iii) an inner wall which defines a slot;
a first electrode supported by the housing;
a second electrode configured to be:
(i) removably supported by the housing; and
(ii) slidably removable through the slot;
a voltage generator operatively coupled to the electrodes, the voltage generator being configured to cause a plurality of ions to flow toward the second electrode along a second axis, the second axis being substantially perpendicular to the first axis;
a circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions for a designated period of time after a designated event occurs by increasing the potential of the first electrode; and
a grasp coupled to the second electrode.
19. The air treatment apparatus of claim 18 , which includes a handle coupled to the second electrode.
20. The air treatment apparatus of claim 18 , which includes a pedestal coupled to the bottom portion of the housing.
21. The air treatment apparatus of claim 18 , which includes at least one input device coupled to the top portion of the housing.
22. The air treatment apparatus of claim 18 , which includes at least one output device coupled to the top portion of the housing.
23. The air treatment apparatus of claim 22 , the output device including a light source.
24. The air treatment apparatus of claim 18 , which includes the circuitry supported by the housing, the circuitry configured to cause the voltage generator to increase the flow of ions based on an input provided by a user.