IP Library › Granted Patent US 10,910,210
Granted Patent B2
US 10,910,210 · App. 16/471,043 · Granted Feb 2, 2021

Ultraviolet sterilizer

Inventors: Hideaki Yagyu (Tokyo, JP); Ryosuke Ikeno (Tokyo, JP); Masahiro Sasaki (Tokyo, JP)
Assignee: Ushio Denki Kabushiki Kaisha
H01J61/025A61L2/0047A61L2/26G02B5/208H01J61/52A61L2202/11
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Quick Facts
Patent No.
US 10,910,210
App. No.
16/471,043
Granted
Feb 2, 2021
Kind
B2
Abstract

The present invention has as its object the provision of an ultraviolet sterilizer that can reduce ultraviolet light in a wavelength region of 230 to 300 nm, which is harmful to the human body, and can output effective light in a wavelength region of 200 to 230 nm with high emission intensity. The ultraviolet sterilizer of the present invention is an ultraviolet sterilizer comprising: an ultraviolet light source; a lamp storage chamber for storing the ultraviolet light source; and a light guiding part for guiding light from the ultraviolet light source, in which a band pass filter for reducing ultraviolet light in a wavelength region harmful to a human body is provided at least one of a position between the light guiding part and the lamp storage chamber and a position of a light outputting leading end of the light guiding part, and an inner surface of the light guiding part is formed from an ultraviolet absorbing member that absorbs the ultraviolet light in the wavelength region harmful to the human body.

Claims (30)

1. An ultraviolet sterilizer comprising:

an ultraviolet light source;

a lamp storage chamber for storing the ultraviolet light source; and

a light guiding part for guiding light from the ultraviolet light source, wherein

the light guiding part which includes a cylindrical body is disposed so as to protrude in a direction approximately perpendicular to a tube axis of the ultraviolet light source from an opening provided in a peripheral wall part of the lamp storage chamber,

a band pass filter for reducing ultraviolet light in a wavelength region of 230 to 300 nm which is harmful to a human body is provided at least one of a position between the light guiding part and the lamp storage chamber and a position of a light outputting leading end of the light guiding part, and

an inner surface of the light guiding part is formed from an ultraviolet absorbing member that absorbs the ultraviolet light in the wavelength region of 230 to 300 nm which is harmful to the human body.

2. The ultraviolet sterilizer according to claim 1 , wherein

the band pass filter is a band pass filter that makes a light intensity ratio represented by the following Formula (1) not higher than 10%,

light intensity ratio [%]={(intensity in an ultraviolet range having a wavelength region of 230 to 300 nm harmful to the human body)/(intensity in an effective light range having a wavelength region of 200 to 230 nm)}×100.  Formula (1):

3. The ultraviolet sterilizer according to claim 1 , wherein

effective light in a wavelength region of 200 to 230 nm that has passed through the band pass filter is reflected by the ultraviolet absorbing member.

4. The ultraviolet sterilizer according to claim 1 , wherein

the ultraviolet absorbing member is composed of glass.

5. The ultraviolet sterilizer according to claim 1 , wherein

the ultraviolet light source is an excimer lamp having a center wavelength within a wavelength range of 190 to 260 nm.

6. The ultraviolet sterilizer according to claim 1 , wherein

the light guiding part has a cylindrical body, the band pass filter or an irradiation window having an ultraviolet transmitting property is provided at a leading end of the cylindrical body, and an oxygen-containing layer is formed in the cylindrical body, and

ultraviolet light having a wavelength at which the ultraviolet light generates ozone when absorbed by oxygen is absorbed in the oxygen-containing layer.

7. The ultraviolet sterilizer according to claim 6 , wherein

a base end and the leading end of the cylindrical body are closed by the band pass filter and the irradiation window, and

the oxygen-containing layer is airtightly formed between the band pass filter and the irradiation window.

8. The ultraviolet sterilizer according to claim 6 , wherein

the band pass filter is provided at a position between the light guiding part and the lamp storage chamber, and the irradiation window is provided at a position of the light outputting leading end of the light guiding part.

9. The ultraviolet sterilizer according to claim 1 , wherein

the lamp storage chamber has a cylindrical body, and

at least one of an air exhaust fan and an air supply fan is provided at least one of one end and the other end of the cylindrical body in a cylinder axis direction thereof.

10. The ultraviolet sterilizer according to claim 9 , wherein

an ozone filter is provided in an air flow passage including at least one of the air exhaust fan and the air supply fan provided in the cylindrical body.

11. The ultraviolet sterilizer according to claim 1 , wherein the ultraviolet light source is disposed to extend in an axial direction of the lamp storage chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2019
From: YAGYU, HIDEAKI; IKENO, RYOSUKE; SASAKI, MASAHIRO
To: USHIO DENKI KABUSHIKI KAISHA
Reel/Frame 049514/0859 →
Priority Claims (2)
JP 2017-001592 · Jan 10, 2017 · national
JP 2017-008220 · Jan 20, 2017 · national
Continuity (1)
Related Publication 20200234941A1 · Jul 23, 2020
Cited By (1)
US 12,649,685