This application is a U.S. National Stage Application under 35 U.S.C. §371 of PCT Application No. PCT/KR2013/008472, filed Sep. 23, 2013, which claims priority to Korean Patent Application No. 10-2012-0109095, filed Sep. 28, 2012, whose entire disclosures are hereby incorporated by reference.
The present invention relates to an ionizer mounted to an air outlet of an air conditioner.
In general, as environmental pollution becomes the worse, people having different respiratory disease or showing allergy reaction caused by polluted air increases the more. Consequently, various attempts, such as generation of anions, have been made for cleaning the polluted air to improve a quality of the air.
The anion, a molecule of oxygen, nitrogen, or so on having a negative charge, is very beneficial for a human body, and effective for removal of dust and odor.
The anion may be generated by an ionizer 10 fabricated as a small sized module, and the ionizer may be used mounted to, and used in, different types of air conditioners, such as air purifiers, air cleaners, ventilators, air coolers, air heaters, and so on.
Referring to
However, since the ionizer 10 is mounted to the air conditioner as a small sized module, the ionizer 10 mounted to the air conditioner has problems in that it is difficult for a user to recognize whether the small sized ionizer module 10 is mounted to the air conditioner or not easily, and whether the ionizer 10 generates the ions normally or not, exactly.
To solve the problems, an object of the present invention is to provide an ionizer which can visualize the ionizer mounted to an air outlet of an air conditioner for a user to know easily, and the user can recognize whether the ion is being generated or not and an intensity of ion generation, exactly.
To achieve these objects and other advantages, an ionizer includes an ion generating unit for generating ions, and an ion visualizing unit mounted to an air outlet of an air conditioner for notifying whether the ion generating unit generates the ions or not, the ion visualizing unit having the ion generating unit mounted thereto.
The ion visualizing unit may include a housing having the ion generating unit mounted therein and at least one hole formed therein for discharging the ions the ion generating unit generates.
The ion generating unit may be mounted to face a direction perpendicular to an air discharge direction of the air outlet.
The housing may have a printed circuit board with a controller mounted thereto for controlling the turned on/off operation of the ion generating unit mounted thereto.
The housing may include a side plate having at least one hole facing the air outlet, and a front plate facing an outside of the air conditioner perpendicular to the side plate.
The ion visualizing unit may further include a light element mounted to the housing for notifying whether the ions are generated or not.
The light element may be mounted to face a direction parallel with the air discharging direction of the air outlet.
The light element may be turned from a turned off state to a turned on state when the ion generating unit generates the ions.
The light element may be mounted in plural in number, and a number of the light elements which are turned to the turned on state may vary with intensity of ion generation of the ion generating unit.
The light element may have brightness or a color varied with intensity of ion generation of the ion generating unit.
The ionizer of the present invention mounted to the air outlet of the air conditioner includes an ion generating unit for generating ions, and an ion visualizing unit for notifying whether the ions are generated or not, and has an advantage in that the user can notice whether the ionizer is mounted or not, easily.
And, whether the ions are generated or not, or the intensity of ion generation can be known exactly with a turn on/off state, brightness, or a color of the light elements.
Hereinafter, preferred embodiments of the present invention will be described with reference to the attached drawings, in detail.
The ionizer of the present invention may be mounted to an air outlet 22 of an air conditioner 20. As shown in
Referring to
The ion visualizing unit 50 may be mounted to the air outlet 22 of the air conditioner 20. The ion visualizing unit 50 may include a housing 51 for housing the ion generating unit 10 therein. The ion visualizing unit 50 may include a light element 53 mounted to the housing 51 for notifying whether the ion generating unit 10 generates the ions or not.
The housing 51 may form an exterior appearance of the ionizer. As shown in ” shape. The housing may have at least one hole 52 formed therein for discharging the ions generated by the ion generating unit 10. The housing 51 may include a side plate 56 facing the air outlet 22, and a front plate 58 mounted perpendicular to the side plate 56 to face an outside of the air conditioner. The side plate 56 of the housing 51 may have at least one hole 52 formed therein. The ion generating unit 10 may be built in the housing 51, for discharging the anions and the cations generated by the ion generating unit 10 through the at least one hole 52 formed in the housing 51 to an outside of the housing 51. The housing 51 may have two holes 52 formed therein. In this case, the anions may be discharged from the ion generating unit 10 through one of the two holes 52, and the cations may be discharged from the ion generating unit 10 through the other one of the two holes 52. The ion generating unit 10 may be mounted in the housing 51 to face a direction perpendicular to the air discharge direction of the air conditioner, the anions and the cations from the ion generating unit 10 may pass through the air outlet 22 of the air conditioner 20 via the holes 52 in the housing 51, and may be carried away by the air being discharged to the outside of the air conditioner 20 through the air outlet 22 of the air conditioner 20. Mounted to the housing 51, there may be a PCB (Printed Circuit Board) 40 with a controller (Not shown) mounted thereto for controlling turning on/off of the ion generating unit 10.
The light element 53 may be mounted to the housing 51 to face a direction parallel to the air discharge direction of the air conditioner. The light element 53 may have a light source, such as an LED (Light Emitting Device). The light element 53 may direct a light in a direction the front plate 58 of the housing 51 faces. The light element 53 may be mounted to the front plate 58 of the housing 51. The light element 53 may be controlled by the controller. The light element 53 may be turned from a turned off state to a turned on state when the ion generating unit 10 generates the ions. The light element 53 may vary brightness or a color thereof with intensity of ion generation of the ion generating unit 10. The light element 53 may have brightness thereof increasing gradually if the ion generating unit 10 generates the ions, after the ion generating unit 10 is changed from the turned off state to the turned on state, or if the intensity of the ion generation increases gradually in proportion thereto. The light element 53 may vary a color thereof from a blue color to a red color gradually if the ion generating unit 10 generates the ions, after the ion generating unit 10 is changed from the turned off state to the turned on state, or if the intensity of the ion generation increases gradually. A plurality of the light elements 53 may be mounted to the front plate 58 of the housing 51. The light elements 53 may have a number of the light elements 53 changed to a turned on state varied with the intensity of the ion generation of the ion generating unit 10. Least number of the light elements 53 may be turned on at the time the ion generating unit 10 generates the ions, and, if the intensity of the ion generation increases gradually, the number of turned on light elements 53 may increase.
Referring to
Referring to
Referring to ” shape, but in other shapes of an ion visualizing unit 60. As an example, the ion visualizing unit 60 may be fabricated in a variety of shapes including a housing 61 for mounting the ion generating unit therein, holes 62 for discharging ions generated by the ion generating unit 10 to an outside of the ion generating unit 10, and light elements 63 for notifying whether the ions are generated or not.
Thus, the preferred embodiments of the present invention described thus are disclosures for illustrative purposes, and various modifications, changes, and addition will be possible without departing from the spirit or scope of the invention by those skilled in this field of art.
Number | Date | Country | Kind |
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10-2012-0109095 | Sep 2012 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2013/008472 | 9/23/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2014/051294 | 4/3/2014 | WO | A |
Number | Name | Date | Kind |
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20050198853 | Cafaro | Sep 2005 | A1 |
20100039746 | Shaw | Feb 2010 | A1 |
Number | Date | Country |
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20-0337085 | Dec 2003 | KR |
10-2005-0087666 | Aug 2005 | KR |
10-2005-0097602 | Oct 2005 | KR |
20-2009-0006291 | Jun 2009 | KR |
Entry |
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International Search Report dated Jan. 22, 2014 issued in Application No. PCT/KR2013/008472 (full English text). |
Number | Date | Country | |
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20150255962 A1 | Sep 2015 | US |