Optical system including molded optical element and method of manufacturing the optical system N}j^55M_]
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Abstract [vY? !
An optical system that includes a molded optical element having a non-uniform refractive index distribution due to molding and a method of manufacturing the optical system is disclosed. Data of the non-uniformity of the refractive index distribution associated with molding of the molded optical element is acquired and used in order to determine the form of an aspheric surface of the molded optical element for correcting aberrations caused by the non-uniformity of the refractive index distribution. This data may be acquired by measuring the refractive index distribution of an optical element molded based on initial design values that are based on assuming uniformity in the refractive index distribution of the molded optical element or it may be computed based on the form of the molded optical element. The optical element may include a concave optical surface and may be a lens element that includes an aspheric surface. W]DZ'
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Inventors: Tanaka, Takashi; (Kawagoe City, JP) ; Fujita, Hiroaki; (Kawaguchi City, JP) *$o{+YP
Correspondence Name and Address: ARNOLD INTERNATIONAL o]|a5.O
P. O. BOX 129 O8%Y .SK
GREAT FALLS VwV`tKit
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22066-0129 ce\ F~8y
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Assignee Name and Adress: FUJINON CORPORATION tJ,x>s?Y
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Serial No.: 058367 s8]9OG3g
Series Code: 11 < l%3P6|
Filed: February 16, 2005 aD:vNX
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U.S. Current Class: 65/29.11; 65/DIG.13 ,
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U.S. Class at Publication: 065/029.11; 065/DIG.013 uZ(j"y
Intern'l Class: C03B 011/16 ) b
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Foreign Application Data 9ZEF%&58Y
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Date Code Application Number 1>SCY_Cv
Mar 29, 2004 JP 2004-095269 3./4] _p
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Claims `% x6;Ha
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What is claimed is: Ta38/v;S
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1. An optical system including a molded optical element having a non-uniform refractive index distribution due to molding, wherein: data of the non-uniformity of the refractive index distribution associated with molding of the molded optical element has been acquired and has been used in order to determine the form of an aspheric surface of the molded optical element for correcting aberrations caused by the non-uniformity of the refractive index distribution. yH8
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2. The optical system including a molded optical element according to claim 1, wherein: data of the non-uniformity of the refractive index distribution associated with molding of the molded optical element has been acquired by measuring the refractive index distribution of an optical element molded based on initial design values that are based on assuming uniformity in the refractive index distribution of the molded optical element; and said data has been used to compute a corrected form of said aspheric surface by correcting said initial design values. .`OdnLGy
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3. The optical system including a molded optical element according to claim 1, wherein: the optical system is provided with a plurality of molded optical elements; one or more of the plurality of molded optical elements has a form that is likely to acquire much more non-uniformity of the refractive index distribution due to molding than one or more others of the plurality of molded optical elements; and data of the non-uniformity of the refractive index distribution associated with molding of a molded optical element has been acquired only for an optical element that has a form that is likely to acquire much more non-uniformity of the refractive index distribution due to molding, and said data has been used in order to determine the form of an aspheric surface of the molded optical element for correcting aberrations caused by the non-uniformity of the refractive index distribution. /?jAG3"
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4. The optical system including a molded optical element according to claim 2, wherein: the optical system is provided with a plurality of molded optical elements; one or more of the plurality of molded optical elements has a form that is likely to acquire much more non-uniformity of the refractive index distribution due to molding than one or more others of the plurality of molded optical elements; and data of the non-uniformity of the refractive index distribution associated with molding of a molded optical element has been acquired only for an optical element that has a form that is likely to acquire much more non-uniformity of the refractive index distribution due to molding, and said data has been used in order to determine the form of an aspheric surface of the molded optical element for correcting aberrations caused by the non-uniformity of the refractive index distribution. /2&