IP Library Granted Patent US 43,592
Granted Patent E1
US 43,592 · App. 11/280,934 · Granted Aug 21, 2012

Photographic lens

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Quick Facts
Patent No.
US 43,592
App. No.
11/280,934
Granted
Aug 21, 2012
Kind
E1
Abstract

A compact photographic lens for a digital camera is disclosed. The photographic lens has only two lens elements, yet provides excellent imaging even at the periphery of the image field. The photographic lens of the invention and an image sensor, together, fit within a volume of about 10 cm 3 . The lens is formed of, in order from the object side, a biconvex lens element having two aspherical surfaces, and a negative meniscus lens element having two aspherical surfaces. The convex surface of the meniscus lens element is positioned on the image side, and various conditions are satisfied in order to provide the photographic lens with a short overall length while favorably correcting various aberrations.

Claims (61)

1. A photographic lens having only two lens elements, said photographic lens comprising, in order from the object side:

a biconvex lens element having two aspherical surfaces; and

a negative meniscus lens element having two aspherical surfaces and with its convex surface on the image side;

wherein the following Conditions (1) and (2) are satisfied:

2·dd 2 <dd 1   Condition (1)

R 3 >R 4   Condition (2)

where,

dd 1 is the on-axis distance between the object-side surface and the image-side surface of the biconvex lens element,

dd 2 is the on-axis distance between the image-side surface of the biconvex lens element and the object-side surface of the negative meniscus lens element,

R 3 is the absolute value of the radius of curvature of the image-side surface of the biconvex lens element, and

R 4 is the absolute value of the radius of curvature of the object-side surface of the meniscus lens element.

2. The photographic lens as described in claim 1 , wherein the image-side aspherical surface of the negative meniscus lens element is shaped so that the positive a refractive power of the image-side aspherical surface of this lens element becomes weaker towards the periphery of the lens element.

3. The photographic lens described in claim 1 , wherein the following Conditions (3) and (4) are also satisfied:

nd 1 >50 νd1>50   Condition (3)

νd 2 <35   Condition (4)

where

νd 1 is the Abbe number at the d line of the biconvex lens element, and

νd 2 is the Abbe number at the d line of the meniscus lens element.

4. The photographic lens described in claim 2 , wherein the following Conditions (3) and (4) are also satisfied:

νd 1 >50   Condition (3)

νd 2 <35   Condition (4)

where

νd 1 is the Abbe number at the d line of the biconvex lens element, and

νd 2 is the Abbe number at the d line of the meniscus lens element.

5. A photographic lens having only two lens elements, said photographic lens comprising, in order from the object side:

a biconvex lens element having two aspherical surfaces; and

a meniscus lens element having two aspherical surfaces and with its convex surface on the image side;

wherein the following Conditions (1) and (2) are satisfied:

2·dd2<dd1   Condition (1)

|R3|>|R4|  Condition (2)

where,

dd1 is the on-axis distance between the object-side surface and the image-side surface of the biconvex lens element,

dd2 is the on-axis distance between the image-side surface of the biconvex lens element and the object-side surface of the meniscus lens element,

|R3| is the absolute value of the radius of curvature of the image-side surface of the biconvex lens element, and

|R4| is the absolute value of the radius of curvature of the object-side surface of the meniscus lens element.

6. The photographic lens as described in claim 5, wherein the meniscus lens has a negative refractive power.

7. The photographic lens as described in claim 5, wherein the image-side aspherical surface of the meniscus lens element is shaped so that a refractive power of the image-side aspherical surface of this lens element becomes weaker towards the periphery of the lens element.

8. The photographic lens described in claim 5, wherein the following Conditions (3) and (4) are also satisfied:

νd1>50   Condition (3)

νd2<35   Condition (4)

where

νd1 is the Abbe number at the d line of the biconvex lens element, and

νd2 is the Abbe number at the d line of the meniscus lens element.

9. The photographic lens described in claim 7, wherein the following Conditions (3) and (4) are also satisfied:

νd1>50   Condition (3)

νd2<35   Condition (4)

where

νd1 is the Abbe number at the d line of the biconvex lens element, and

νd2 is the Abbe number at the d line of the meniscus lens element.

10. The photographic lens described in claim 5, wherein the following conditions are also satisfied:

νd1>50

νd2>=35

where

νd1 is the Abbe number at the d line of the biconvex lens element, and

νd2 is the Abbe number at the d line of the meniscus lens element.

11. The photographic lens described in claim 7, wherein the following conditions are also satisfied:

νd1>50

νd2>=35

where

νd1 is the Abbe number at the d line of the biconvex lens element, and

νd2 is the Abbe number at the d line of the meniscus lens element.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2020
From: NANCHANG O-FILM OPTICAL-ELECTRONIC TECH CO., LTD.
To: TIANJIN OFILM OPTO ELECTRONICS CO., LTD.
Reel/Frame 052431/0700 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2019
From: FUJIFILM CORPORATION
To: NANCHANG O-FILM OPTICAL-ELECTRONIC TECH CO., LTD.
Reel/Frame 048045/0443 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2010
From: FUJINON CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 024630/0159 →
CHANGE OF NAME Recorded Jun 27, 2006
From: FUJI PHOTO OPTICAL CO., LTD.
To: FUJINON CORPORATION
Reel/Frame 017858/0017 →