IP Library Granted Patent US 9,563,106
Granted Patent B2
US 9,563,106 · App. 14/673,194 · Granted Feb 7, 2017

Teleconverter mounted on a master lens apparatus to obtain a lens system having a focal length longer than that of the master lens apparatus, and imaging system comprising the same

Inventor: Yasuji Ogata (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
G03B17/565G02B13/02G02B15/12
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Quick Facts
Patent No.
US 9,563,106
App. No.
14/673,194
Granted
Feb 7, 2017
Kind
B2
Abstract

A teleconverter includes a master lens apparatus-side mount on which a master lens apparatus is mounted, a camera body-side mount on which a camera body is mounted, and a converter lens unit that has a negative refracting power for mounting the master lens apparatus thereon to obtain a lens system having a focal length longer than that of the master lens apparatus, the converter lens unit including a first lens group on the master lens apparatus side and a second lens group on the camera body side with an on longest air separation interposed between them, the first lens group has positive refracting power, and the second lens group has negative refracting power, with satisfaction of the following condition (1): −1.53< f 1/ f <−0.66  (1) where f is the focal length of a whole system of the converter lens unit, and f1 is the focal length of the first lens group.

Claims (85)

1. A teleconverter, comprising:

a master lens apparatus-side mount on which a master lens apparatus is mounted,

a camera body-side mount on which a camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said converter lens unit comprises five lenses: in order from an object side to an image side along an optical path, a first positive lens, a first negative lens, a second positive lens, a second negative lens, and a third positive lens,

said first lens group has positive refracting power, and

said second lens group has negative refracting power, with satisfaction of the following condition (3):

0.04< d 12/ D< 0.3  (3)

where d12 is the on-axis longest air separation between said first lens group and said second lens group, and

D is an on-axis thickness of said converter lens unit.

2. The teleconverter as recited in claim 1 , which further satisfies the following Condition (5):

50< nd 5<100  (5)

where nd5 is an Abbe constant of said third positive lens.

3. The teleconverter as recited in claim 2 , wherein:

a total number of lenses in said first lens group is one: said first positive lens, and

a total number of lenses in said second lens group is four: said first negative lens, said second positive lens, said second negative lens, and said third positive lens.

4. A teleconverter, comprising:

a master lens apparatus-side mount on which a master lens apparatus is mounted,

a camera body-side mount on which a camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said converter lens unit comprises five lenses: in order from an object side to an image side along an optical path, a first positive lens, a first negative lens, a second positive lens, a second negative lens, and a third positive lens,

said first lens group has positive refracting power, and

said second lens group has negative refracting power, with satisfaction of the following condition (5):

50< nd 5<100  (5)

where nd5 is an Abbe constant of said third positive lens.

5. The teleconverter as recited in claim 4 , wherein:

a total number of lenses in said first lens group is one: said first positive lens, and

a total number of lenses in said second lens group is four: said first negative lens, said second positive lens, said second negative lens, and said third positive lens.

6. A teleconverter, comprising:

a master lens apparatus-side mount on which a master lens apparatus is mounted,

a camera body-side mount on which a camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said first lens group has positive refracting power,

said second lens group has negative refracting power,

said converter lens unit comprises five lenses: in order along an optical path, a first positive lens, a first negative lens, a second positive lens, a second negative lens, and a third positive lens,

a total number of lenses in said first lens group is one: said first positive lens, and

a total number of lenses in said second lens group is four: said first negative lens, said second positive lens, said second negative lens, and said third positive lens.

7. An imaging system, characterized by comprising:

a master lens apparatus,

a camera body, and

a teleconverter capable of being mounted between said master lens apparatus and said camera body, wherein:

said teleconverter comprises:

a master lens apparatus-side mount on which said master lens apparatus is mounted,

a camera body-side mount on which said camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said first lens group has positive refracting power, and

said second lens group has negative refracting power, with satisfaction of the following condition (3):

0.04< d 12/ D< 0.3  (3)

where d12 is the on-axis longest air separation between said first lens group and said second lens group, and

D is an on-axis thickness of said converter lens unit, and

said camera body includes an imaging device that is located in a position of an image formed by a combined optical system of said master lens apparatus and said teleconverter, and operable to convert the image formed by said combined optical system into electric signals.

8. An imaging system, characterized by comprising:

a master lens apparatus,

a camera body, and

a teleconverter capable of being mounted between said master lens apparatus and said camera body, wherein:

said teleconverter comprises:

a master lens apparatus-side mount on which said master lens apparatus is mounted,

a camera body-side mount on which said camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said converter lens unit comprises five lenses: in order from an object side to an image side along an optical path, a first positive lens, a first negative lens, a second positive lens, a second negative lens, and a third positive lens,

said first lens group has positive refracting power, and

said second lens group has negative refracting power, with satisfaction of the following condition (5):

50< nd 5<100  (5)

where nd5 is an Abbe constant of said third positive lens, and

said camera body includes an imaging device that is located in a position of an image formed by a combined optical system of said master lens apparatus and said teleconverter, and operable to convert the image formed by said combined optical system into electric signals.

9. An imaging system, characterized by comprising:

a master lens apparatus,

a camera body, and

a teleconverter capable of being mounted between said master lens apparatus and said camera body, wherein:

said teleconverter comprises:

a master lens apparatus-side mount on which said master lens apparatus is mounted,

a camera body-side mount on which said camera body is mounted, and

a converter lens unit that has a generally negative refracting power for mounting said master lens apparatus thereon to obtain a lens system having a focal length longer than that of said master lens apparatus, wherein:

said converter lens unit comprises a first lens group on said master lens apparatus side and a second lens group on said camera body side with an on-axis longest air separation interposed there-between,

said first lens group has positive refracting power,

said second lens group has negative refracting power,

said converter lens unit comprises five lenses: in order along an optical path, a first positive lens, a first negative lens, a second positive lens, a second negative lens, and a third positive lens,

a total number of lenses in said first lens group is one: said first positive lens, and

a total number of lenses in said second lens group is four: said first negative lens, said second positive lens, said second negative lens, and said third positive lens, and

said camera body includes an imaging device that is located in a position of an image formed by a combined optical system of said master lens apparatus and said teleconverter, and operable to convert the image formed by said combined optical system into electric signals.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2021
From: OLYMPUS CORPORATION
To: OM DIGITAL SOLUTIONS CORPORATION
Reel/Frame 058329/0766 →
CHANGE OF NAME Recorded Nov 20, 2015
From: OLYMPUS IMAGING CORP.
To: OLYMPUS CORPORATION
Reel/Frame 037148/0834 →
Priority Claims (1)
JP 2012-109239 · May 11, 2012 · national
Continuity (2)
Division 13892253 · May 11, 2013
Related Publication 20150205188A1 · Jul 23, 2015