Claims
- 1. An optical scanner, comprising:
- a light source for emitting a light beam,
- first optics, including a collimator lens, for providing a transformed light beam by transforming said light beam to have specified characteristics,
- a deflector for providing a deflected light beam by deflecting said transformed light beam in a main scanning direction, and
- second optics, including a scanning lens, for providing a focused light beam by focusing said deflected light beam to form a focused image on a predetermined surface to be scanned, said focused image defining an image point which has an image plane and cross sections, said cross sections including a main scanning cross section defined in said image plane in said main scanning direction, and a sub-scanning cross section defined in said image plane in a direction orthogonal to said main scanning direction, wherein an axial direction is defined by a direction perpendicular to both said cross sections;
- wherein a movement in the axial direction of said image plane of said main scanning cross section due to the temperature-dependent changes in optical characteristics in said main scanning cross section is canceled by a movement in the axial direction of said image plane of said main scanning cross section due to a temperature dependent change in distance from said light source to a first optical element of said first optics while said image plane of said sub-scanning cross section displaces by an amount in the axial direction.
- 2. The optical scanner according to claim 1, wherein at least one optical element of said second optics is made of a plastic material.
- 3. An optical scanner, comprising:
- a light source for emitting a light beam,
- first optics, including a collimator lens, for providing a transformed light beam by transforming said light beam to have specified characteristics,
- a deflector for providing a deflected light beam by deflecting said transformed light beam in a main scanning direction, and
- second optics, including a scanning lens, for providing a focused light beam by focusing said deflected light beam to form a focused image on a predetermined surface to be scanned, said focused image defining an image point which has an image plane and cross sections, said cross sections including a main scanning cross section defined in said image plane in said main scanning direction, and a sub-scanning cross section defined in said image plane in a direction orthogonal to said main scanning direction, wherein an axial direction is defined by a direction perpendicular to both said cross sections;
- wherein a movement in the axial direction of said image plane of said sub-scanning cross section due to temperature-dependent change in optical characteristics in said sub-scanning cross section is canceled by a movement in the axial direction of said image plane of said sub-scanning cross section due to a temperature dependent change in distance from said light source to a first optical element of said first optics while said image plane of said main scanning cross section displaces by an amount in the axial direction.
- 4. The optical scanner according to claim 3, wherein at least one optical element of said second optics is made of a plastic material.
- 5. An optical scanner, comprising:
- a light source for emitting a light beam,
- first optics, including a collimator lens, for providing a transformed light beam by transforming said light beam to have specified characteristics,
- a deflector for providing a deflected light beam by deflecting said transformed light beam in a main scanning direction, and
- second optics, including a scanning lens, for providing a focused light beam by focusing said deflected light beam to form a focused image on a predetermined surface to be scanned, said focused image defining an image point which has an image plane and cross sections, said cross sections including a main scanning cross section defined in said image plane in said main scanning direction, and a sub-scanning cross section defined in said image plane in a direction orthogonal to said main scanning direction;
- wherein absolute values of displacement of said image plane in said main and sub-scanning cross sections due to temperature dependent change are substantially the same; and
- wherein a direction of said displacement of said image plane due to temperature dependent changes in said main scanning cross section is opposite to a direction of said displacement of said displacement of said image plane due to temperature dependent changes in said sub-scanning cross section.
- 6. The optical scanner according to claim 5, wherein at least one optical element of said second optics is made of a plastic material.
Parent Case Info
This is a continuation of application Ser. No. 08/837,750 filed Apr. 22, 1997, which is a divisional of Ser. No. 604,901, filed Feb. 22, 1996, now U.S. Pat. No. 5,673,136.
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Divisions (1)
|
Number |
Date |
Country |
Parent |
604901 |
Feb 1996 |
|
Continuations (1)
|
Number |
Date |
Country |
Parent |
837750 |
Apr 1997 |
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