Pellicle frame and process for producing same

US2016259239A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016259239-A1
Application numberUS-201315026901-A
CountryUS
Kind codeA1
Filing dateOct 23, 2013
Priority dateOct 23, 2013
Publication dateSep 8, 2016
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

The present invention provides a pellicle frame that can prevent generation of haze and reduces a surface glittering defect under irradiation with collected light, and a method of manufacturing the pellicle frame. Specifically, provided are a pellicle frame, including: an aluminum frame material formed of aluminum or an aluminum alloy; and an anodic oxide film on a surface of the aluminum frame material, in which the anodic oxide film includes a film formed by using an alkaline anodic oxidation solution and a film formed by using an acid anodic oxidation solution, and a method of manufacturing the pellicle frame.

First claim

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1 . A pellicle frame, comprising: an aluminum frame material formed of aluminum or an aluminum alloy; and an anodic oxide film on a surface of the aluminum frame material, wherein the anodic oxide film comprises a film formed by using an alkaline anodic oxidation solution and a film formed by using an acid anodic oxidation solution. 2 . A pellicle frame according to claim 1 , wherein the anodic oxide film is substantially free of an intermetallic compound having a maximum length of 5 μm or more. 3 . A pellicle frame according to claim 1 , wherein the alkaline anodic oxidation solution comprises an inorganic alkaline solution containing any one or more kinds of inorganic alkaline components selected from the group consisting of sodium hydroxide, potassium hydroxide, lithium hydroxide, calcium hydroxide, strontium hydroxide, rubidium hydroxide, sodium carbonate, and sodium hydrogen carbonate. 4 . A pellicle frame according to claim 1 , wherein the alkaline anodic oxidation solution comprises an alkaline mixed solution containing any one or more kinds of salts of organic acids selected from the group consisting of tartaric acid, citric acid, oxalic acid, and salicylic acid and any one or more kinds of inorganic alkaline components selected from the group consisting of sodium hydroxide, potassium hydroxide, lithium hydroxide, calcium hydroxide, strontium hydroxide, rubidium hydroxide, sodium carbonate, and sodium hydrogen carbonate. 5 . A pellicle frame according to claim 1 , wherein the acid anodic oxidation solution comprises an acid solution containing any one or more kinds selected from the group consisting of maleic acid, phosphoric acid, oxalic acid, and chromic acid. 6 . A pellicle frame according to claim 1 , wherein the aluminum or aluminum alloy comprises an Al—Zn—Mg-based aluminum alloy. 7 . A pellicle frame according to claim 1 , wherein the anodic oxide film is blackened through dyeing treatment with a black dye or electrolytic deposition treatment so as to have a lightness index L* value of 40 or less. 8 . A pellicle frame according to claim 1 , wherein the pellicle frame has concentrations of ions to be eluted in 100 ml of pure water per 100 cm 2 of a surface area of the pellicle frame in an ion elution test for measuring concentrations of ions eluted after immersion in pure water at 80° C. for 4 hours of: 0.2 ppm or less for an acetate ion; 0.06 ppm or less for a formate ion; 0.01 ppm or less for an oxalate ion; 0.01 ppm or less for a sulfate ion; 0.02 ppm or less for a nitrate ion; 0.02 ppm or less for a nitrite ion; 0.02 ppm or less for a chlorine ion; and 0.01 ppm or less for a phosphate ion. 9 . A method of manufacturing a pellicle frame comprising: an aluminum frame material formed of aluminum or an aluminum alloy; and an anodic oxide film on a surface of the aluminum frame material, the method comprising the steps of, when forming the anodic oxide film: performing anodic oxidation treatment using an alkaline anodic oxidation solution; and performing anodic oxidation treatment using an acid anodic oxidation solution. 10 . A method of manufacturing a pellicle frame according to claim 9 , wherein the anodic oxide film is substantially free of an intermetallic compound having a maximum length of 5 μm or more. 11 . A method of manufacturing a pellicle frame according to claim 9 , wherein the alkaline anodic oxidation solution comprises an inorganic alkaline solution containing any one or more kinds of inorganic alkaline components selected from the group consisting of sodium hydroxide, potassium hydroxide, lithium hydroxide, calcium hydroxide, strontium hydroxide, rubidium hydroxide, sodium carbonate, and sodium hydrogen carbonate. 12 . A method of manufacturing a pellicle frame according to claim 9 , wherein the alkaline anodic oxidation solution comprises an alkaline mixed solution containing any one or more kinds of salts of organic acids selected from the group consisting of tartaric acid, citric acid, oxalic acid, and salicylic acid and any one or more kinds of inorganic alkaline components selected from the group consisting of sodium hydroxide, potassium hydroxide, lithium hydroxide, calcium hydroxide, strontium hydroxide, rubidium hydroxide, sodium carbonate, and sodium hydrogen carbonate. 13 . A method of manufacturing a pellicle frame according to claim 9 , wherein the acid anodic oxidation solution comprises an acid solution containing any one or more kinds selected from the group consisting of maleic acid, phosphoric acid, oxalic acid, and chromic acid. 14 . A method of manufacturing a pellicle frame according to claim 9 , wherein the aluminum or aluminum alloy comprises an Al—Zn—Mg-based aluminum alloy. 15 . A method of manufacturing a pellicle frame according to claim 9 , the method further comprising blackening the anodic oxide film through dyeing treatment with a black dye or electrolytic deposition treatment so as to have a lightness index L* value of 40 or less. 16 . A method of manufacturing a pellicle frame according to claim 9 , wherein the pellicle frame has concentrations of ions to be eluted in 100 ml of pure water per 100 cm 2 of a surface area of the pellicle frame in an ion elution test for measuring concentrations of ions eluted after immersion in pure water at 80° C. for 4 hours of: 0.2 ppm or less for an acetate ion; 0.06 ppm or less for a formate ion; 0.01 ppm or less for an oxalate ion; 0.01 ppm or less for a sulfate ion; 0.02 ppm or less for a nitrate ion; 0.02 ppm or less for a nitrite ion; 0.02 ppm or less for a chlorine ion; and 0.01 ppm or less for a phosphate ion.

Assignees

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Classifications

  • G03F1/64Primary

    characterised by the frames, e.g. structure or material, including bonding means therefor · CPC title

  • Chalcogenides; Silicon, germanium, arsenic or derivatives thereof; Metals, oxides or alloys thereof (G03F7/0044 takes precedence) · CPC title

  • Containers specially adapted for masks, mask blanks or pellicles; Preparation thereof · CPC title

  • Pellicles, e.g. pellicle assemblies, e.g. having membrane on support frame; Preparation thereof · CPC title

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What does patent US2016259239A1 cover?
The present invention provides a pellicle frame that can prevent generation of haze and reduces a surface glittering defect under irradiation with collected light, and a method of manufacturing the pellicle frame. Specifically, provided are a pellicle frame, including: an aluminum frame material formed of aluminum or an aluminum alloy; and an anodic oxide film on a surface of the aluminum frame…
Who is the assignee on this patent?
Nippon Light Metal Co
What technology area does this patent fall under?
Primary CPC classification G03F1/64. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Sep 08 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).