Claims
- 1. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member of the constant angular velocity type disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam;
- a second deflecting member of the constant angular velocity type, disposed in the vicinity of said image point on the image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member;
- first optical means for directing a parallel beam to be incident on said first deflecting member;
- second optical means for directing the beam coming from said second deflecting member to a surface to be scanned;
- said first lens group and second lens group having no distortion, and said second optical means being an image forming lens with focal length of f.sub.3 and the following characteristic; ##EQU15## where: .DELTA. is the distance between a position of a beam image formed on the surface to be scanned and a reference position at which the beam image would be formed if the image forming lens had no distortion:
- .beta.=f.sub.1 /f.sub.2
- m=K.sub.1 /K.sub.2, where K.sub.1 is an angular velocity of said first deflecting member, and K.sub.2 is an angular velocity of said second deflecting member;
- .phi. is a rotational angle of said first deflecting member.
- 2. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member, of the constant angular velocity type disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam;
- a second deflecting member of the constant angular velocity type disposed in the vicinity of said image point on the image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member;
- first optical means for directing a parallel beam to be incident on said first deflecting member;
- second optical means for directing the beam coming from said second deflecting member to a surface to be scanned; said second lens group and said second optical means having no distortion, and said first lens group having the following characteristic: ##EQU16## where: h is the distance between the optical axis of said first lens group and a position on the focal plane thereof where an image of the beam incident thereon with an angle 2.theta. is formed thereon,
- .beta.=f.sub.1 /f.sub.2
- m=K.sub.1 /K.sub.2 where K.sub.1 is an angular velocity of the first deflecting member, K.sub.2 is an angular velocity of the second deflecting member, and .phi..sub.1 is a rotational angle of said first deflecting member.
- 3. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member of the constant angular velocity type disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam;
- a second deflecting member of the constant angular velocity type disposed in the vicinity of said image point on the image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member;
- first optical means for directing a parallel beam to be incident on said first deflecting member;
- second optical means for directing the beam coming from said second deflecting member to a surface to be scanned;
- first lens group and second optical means having no distortion, and said second lens group having the following characteristic; ##EQU17## where .phi.'.sub.1 is an angle of the beam emergent from said second lens group with respect to its optical axis,
- .beta.=f.sub.1 /f.sub.2,
- f.sub.3 is a focal length of said second optical means,
- m=K.sub.2 /K.sub.1 where K.sub.1 is an angular velocity of the first deflecting member, K.sub.2 is an angular velocity of the second deflecting member, and
- h is a distance between the optical axis of said first lens group and a position on the focal plane thereof where an image of the beam is formed thereon.
- 4. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optionally conjugate, positional relation;
- a first deflecting means, disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam, including a galvanomirror whose rotational angle .phi. is represented by .phi..sub.1 =a.sub.1 sin b.sub.1 t, where t is time and a.sub.1, b.sub.1 are constants;
- a second deflecting member, disposed in the vicinity of said image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member, including a falvanomirror whose rotational angle .phi..sub.2 is represented by .phi..sub.2 =a.sub.2 sin b.sub.2 t, where t is time and a.sub.2, b.sub.2 are constants;
- said first and second groups having no distortion, and said second optical means being an image forming lens having a focal f.sub.3 with the following characteristic; ##EQU18## where y' is a distance between the optical axis of said second optical means and a position on the focal plane thereof where an image of the beam is formed thereon and
- .beta.=f.sub.1 /f.sub.2.
- 5. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member, disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam, including a galvanomirror whose rotational angle .phi..sub.1 is represented by .phi..sub.1 =a.sub.1 sin b.sub.1 t, where it is time and a.sub.1, b.sub.1 are constants;
- a second deflecting member, disposed in the vicinity of said image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member, including a galvanomirror whose rotational angle .phi..sub.2 is represented by .phi..sub.2 =a.sub.2 sin b.sub.2 t, where t is time and a.sub.2, b.sub.2 are constants;
- said first lens group having the following characteristic;
- h=2a.sub.1 f.sub.1 arc sin .phi.1/(a.sub.1)
- said second lens group having the following distortion:
- h=2a.sub.1 f.sub.1 arc sin .phi.1/(2.beta.a.sub.1)
- said second optical means being an image forming lens having a focal length f.sub.3 with the following distortion:
- y'=2(a.sub.2 +.beta.a.sub.1)f.sub.3 .multidot.arc sin .theta./[2(a.sub.2 +.beta.a.sub.1)]
- where
- .beta.=f.sub.1 /f.sub.2
- h is a distance between the optical axis of said first lens group and a position on the focal plane thereof where an image of the beam incident on said first lens group with an angle of 2.phi..sub.1, is formed thereon,
- .phi..sub.1 is an angle formed between the optical axis of said second lens group and the beam emergent therefrom, which beam has been incident on said first lens group with the angle of 2.phi..sub.1,
- .phi. is an angle formed between the optical axis of said second optical means and the beam incident thereon, and
- y' is a distance between the optical axis of said second optical means and a position on the focal plane thereof where an image of the beam is formed thereon.
- 6. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member, disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam, including a glavanomirror whose rotational angle .phi..sub.1 is represented by .phi..sub.1 =a.sub.1 sin b.sub.1 t, where t is time and a.sub.1, b.sub.1 are constants;
- a second deflecting member, disposed in the vicinity of said image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member, including a galvanomirror whose rotational angle .phi..sub.2 is represented by .phi..sub.2 =a.sub.2 sin b.sub.2 t, where t is time and a.sub.2, b.sub.2 are constants;
- said first and second groups having f-.theta. characteristics of distortion, and said second optical means having a focal length f.sub.3 with the following characteristics;
- y'=2(a.sub.2 +.beta.a.sub.1)f.sub.3 .multidot.arc sin .theta./2(a.sub.2 +.beta.a.sub.1)
- where
- .beta.=f.sub.1 /f.sub.2,
- .theta. is an angle formed between the optical axis of said second optical means and the beam incident thereon,
- y' is a distance between the optical axis of said second optical means and a position on the focal plane thereof where an image of the beam is formed thereon,
- and where f-.theta. characteristics of distortion is such that an inclination of an afocal beam incident on a lens system plane, between the optical axis of the lens system and the image of the beam thereon.
- 7. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which focal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member, disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam, including a galvanomirror whose rotational angle .theta..sub.1 is represented by .theta..sub.1 =a.sub.1 sin b.sub.1 t, where t.sub.1 is time and a.sub.1 and b.sub.1 are constants;
- a second deflecting member, which is a constant angular velocity type, disposed in the vicinity of said image point on the image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member;
- said first lens group having the following characteristic:
- h=2a.sub.1 f.sub.1 arc sin .phi..sub.1 /(a.sub.1)
- and said second lens group and said second optical means having f-.theta. characteristics of distortion,
- where h is a distance between the optical axis of said first lens group and a position on the focal plane thereof where an image of the beam incident on said first lens group with an angle of 2.phi..sub.1 is formed thereon, and where f-.theta. characteristics of distortion is such that an inclination of an afocal beam incident on a lens system is linear with respect to a distance, measured on its focus plane, between the optical axis of the lens system and the image of the beam thereon.
- 8. A scanning optical system comprising:
- an afocal system including a first lens group having a focal length f.sub.1 and a second lens group having a focal length f.sub.2, which afocal optical system brings the object point on its objective field side and the image point on the image field side into an optically conjugate, positional relation;
- a first deflecting member of the constant angular velocity type, disposed in the vicinity of said object point on the objective field side of the afocal optical system to scan the beam;
- a second deflecting member, disposed in the vicinity of said image field side of the optical system within a plane substantially equal to the plane formed by the beam scanned by said first deflecting member, including a galvanomirror whose rotational angle .phi..sub.2 is represented by .phi..sub.2 =a.sub.2 sin b.sub.2 t, where t is time and a.sub.2 and b.sub.2 are constants;
- said first lens group having f-.theta. characteristics of distortion, and said second lens group having the following distortion; ##EQU19## said second optical means being an image forming lens having a focal length f.sub.3 with the following characteristic: ##EQU20## where .beta.=f.sub.1 /f.sub.2,
- K.sub.1 is an angular velocity of said first deflecting member,
- h is a distance between the optical axis of said first lens group and a position on the focal plane thereof where an image of the beam incident on said first lens group with an angle of 2.phi..sub.1, is formed thereon,
- .theta. is a distance between the optical axis of said second optical means and the beam incident thereon,
- y' is a distance between the optical axis of the second optical means and a position on the focal plane thereof where an image on the beam is formed thereon.
Priority Claims (2)
Number |
Date |
Country |
Kind |
51-159313 |
Dec 1976 |
JPX |
|
52-11277 |
Feb 1977 |
JPX |
|
Parent Case Info
This is a continuation of application Ser. No. 863,439 filed Dec. 22, 1977 now abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
Country |
Parent |
863439 |
Dec 1977 |
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