IP Library Granted Patent US 8,028,650
Granted Patent B2
US 8,028,650 · App. 11/794,512 · Granted Oct 4, 2011

Optical lens coating apparatus

Assignee: Hoya Corporation
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Quick Facts
Patent No.
US 8,028,650
App. No.
11/794,512
Granted
Oct 4, 2011
Kind
B2
Abstract

A light irradiation device ( 151 ) includes a UV lamp ( 153 ), first and second optical filters ( 164, 165 ) which transmit and block wavelengths within different specific ranges, and a filter switching mechanism ( 162 ) which selectively interposes the first and second optical filters ( 164, 165 ) between the UV lamp ( 153 ) and an optical lens. The blocking wavelength of the first optical filter ( 164 ) is relatively longer than that of the second optical filter ( 165 ). The first optical filter ( 164 ) is interposed between the UV lamp ( 153 ) and the optical lens since the start of curing a coating solution until a lapse of a predetermined period of time. When the predetermined period of time has elapsed, the second optical filter ( 165 ) is interposed between the UV lamp ( 153 ) and the optical lens to replace the first optical filter ( 164 ).

Claims (23)

1. An optical lens coating apparatus characterized by comprising:

a light source which emits ultraviolet radiation to a coating solution applied to a coating target surface of an optical lens to cure the coating solution, and a filter switching mechanism disposed between said light source and the optical lens,

wherein said filter switching mechanism comprises at least first and second optical filters which transmit and block wavelengths within different specific ranges of the ultraviolet radiation emitted from said light source, and

filter switching means for selectively interposing said first optical filter and said second optical filter between said light source and said optical lens,

wherein said first optical filter has a blocking wavelength longer than that of said second optical filter, and is interposed between said light source and said optical lens by said filter switching means since start of curing the coating solution by irradiation with the ultraviolet radiation until a lapse of a predetermined period of time, and

said second optical filter is interposed between said light source and said optical lens, when the predetermined period of time has elapsed, to replace said first optical filter,

the first optical filter and the second optical filter are disposed on a same plane;

the first optical filter is placed directly below the light source until a lapse of a predetermined period of time after a start of curing of the coating solution;

the first optical filter moves to a retreat position by actuation of the filter switching means from the position directly below the light source after a lapse of a predetermined period of time; and

the second optical filter moves so as to be interposed in between the optical lens and the light source as the first optical filter moves to said retreat position.

2. An optical lens coating apparatus according to claim 1 , characterized in that said first optical filter comprises a UV filter which blocks ultraviolet radiation having a wavelength of not more than about 370 nm to 390 nm, and

said second optical filter comprises a UV filter which blocks ultraviolet radiation having a wavelength of not more than about 350 nm.

3. An optical lens coating apparatus according to claim 1 , characterized in that said filter switching mechanism further comprises irradiation intensity switching means for switching an irradiation intensity of the ultraviolet radiation emitted by said light source in accordance with transmittances of said first optical filter and said second optical filter.

4. An optical lens coating apparatus according to claim 1 , further comprising

a lens rack which stores an optical lens coated with the coating solution and transports the optical lens from a coating position to an ultraviolet receiving position, and nitrogen purging means for purging air in said lens rack with nitrogen.

5. An optical lens coating apparatus comprising:

a light source which emits ultraviolet radiation to a coating solution applied to a coating target surface of an optical lens to cure the coating solution, and a filter switching mechanism disposed between said light source and the optical lens,

wherein said filter switching mechanism comprises at least first and second optical filters which transmit and block wavelengths within different specific ranges of the ultraviolet radiation emitted from said light source, and

filter switching means for selectively interposing said first optical filter and said second optical filter between said light source and said optical lens,

a lens rack which stores an optical lens coated with the coating solution and transports the optical lens from a coating position to an ultraviolet receiving position, and nitrogen purging means for purging air in said lens rack with nitrogen,

a housing which stores said light source,

a transparent plate arranged on a lower surface of said housing, and

rack elevating means for moving said lens rack upward to bring said lens rack into tight contact with said transparent plate, thereby hermetically closing said lens rack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2007
From: JINBO, MASAHIRO; OTA, HIROSHI; IMIZU, TAKESHI
To: HOYA CORPORATION
Reel/Frame 019552/0962 →
Priority Claims (1)
JP 2004-377046 · Dec 27, 2004 · national
Continuity (1)
Related Publication 20100012028A1 · Jan 21, 2010