IP Library › Granted Patent US 11,860,342
Granted Patent B2
US 11,860,342 · App. 16/750,052 · Granted Jan 2, 2024

Optical imaging system including seven lenses of +-+-++- or +-+--+-refractive powers

Inventors: Il Yong Park (Suwon-si, KR); Hyo Jin Hwang (Suwon-si, KR); Yong Joo Jo (Suwon-si, KR); Min Hyuk Im (Suwon-si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
G02B13/0045G02B9/64
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Quick Facts
Patent No.
US 11,860,342
App. No.
16/750,052
Granted
Jan 2, 2024
Kind
B2
Abstract

An optical imaging system includes a first lens, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, and a seventh lens, sequentially arranged from an object side, wherein TTL/(2*Img HT)<0.7, where a distance on an optical axis from an object-side surface of the first lens to an imaging plane of an image sensor is TTL, and half of a diagonal length of the imaging plane of the image sensor is Img HT, and Fno<1.9, where an F-number of the optical imaging system is Fno.

Claims (31)

1. An optical imaging system, comprising:

a first lens, a second lens, a third lens, a fourth lens having negative refractive power, a fifth lens havmg negative refractive power, a sixth lens, and a seventh lens, sequentially arranged from an object side,

wherein f3/f>1.5, where a focal length of the third lens is f3, and an overall focal length of the optical imaging system is f,

the sixth lens has a concave image-side surface in a paraxial region,

TTL/(2*Img HT)<0.7, where a distance on an optical axis from an object-side surface of the first lens to an imaging plane of an image sensor is TTL, and half of a diagonal length of the imaging plane of the image sensor is Img HT,

Fno< 1 . 9 , where an F-number of the optical imaging system is Fno, and

|f4/f|>3.0 and f6/f>0, where a focal length of the fourth lens is f4, a focal length of the sixth lens is f6, and an overall focal length of the optical imaging system is f.

2. The optical imaging system of claim 1 , wherein 25<v1−v2<45, where an Abbe number of the first lens is v1, and an Abbe number of the second lens is v2.

3. The optical imaging system of claim 1 , wherein v1−v3<25, where an Abbe number of the first lens is v1, and an Abbe number of the third lens is v3.

4. The optical imaging system of claim 1 , wherein 15<v1−v5<35, where an Abbe number of the first lens is v1, and an Abbe number of the fifth lens is v5.

5. The optical imaging system of claim 1 , wherein 0<f1/f<2.0, where a focal length of the first lens is f1, and an overall focal length of the optical imaging system is f.

6. The optical imaging system of claim 1 , wherein −10.0<f2/f<0, where a focal length of the second lens is f2, and an overall focal length of the optical imaging system is f.

7. An optical imaging system, comprising:

a first lens, a second lens, a third lens, a fourth lens having negative refractive power, a fifth lens having negative refractive power, a sixth lens, and a seventh lens, sequentially arranged from an object side,

wherein f3/f>1.5, where a focal length of the third lens is f3, and an overall focal length of the optical imaging system is f,

the sixth lens has a concave image-side surface in a paraxial region,

TTL/(2*Img HT)<0.7, where a distance on an optical axis from an object-side surface of the first lens to an imaging plane of an image sensor is TTL, and half of a diagonal length of the imaging plane of the image sensor is Img HT,

Fno<1.9, where an F-number of the optical imaging system is Fno,

−2.0<f2/f3<0, where a focal length of the second lens is f2, and a focal length of the third lens is f3, and

f6/f>0, where a focal length of the sixth lens is f6, and an overall focal length of the optical imaging system is f.

8. The optical imaging system of claim 1 , wherein 1.0<f12/f<1.5, where a synthetic focal length of the first lens and the second lens is f12, and an overall focal length of the optical imaging system is f.

9. The optical imaging system of claim 1 , wherein TTL/f<1.4, where an overall focal length of the optical imaging system is f, and

BFL/f<0.4, where a distance on the optical axis from an image-side surface of the seventh lens to the imaging plane of the image sensor is BFL.

10. The optical imaging system of claim 1 , wherein D1/f<0.1, where a distance on the optical axis from an image-side surface of the first lens to an object-side surface of the second lens is D1, and an overall focal length of the optical imaging system is f.

11. The optical imaging system of claim 1 , wherein FOV<80°, where a field of view of the optical imaging system is FOV.

12. The optical imaging system of claim 1 , wherein the first lens comprises positive refractive power, the second lens comprises negative refractive power, the third lens comprises positive refractive power, the sixth lens comprises positive refractive power, and the seventh lens comprises negative refractive power.

13. An optical imaging system, comprising:

a first lens having positive refractive power, a convex object-side surface and a concave image-side surface, a second lens having negative refractive power, a convex object-side surface and a concave image-side surface, a third lens having positive refractive power, a fourth lens having negative refractive power, a fifth lens having negative refractive power; a sixth lens having positive refractive power, and a seventh lens having negative refractive power, sequentially arranged from an object side,

wherein the sixth lens has a concave image-side surface in a paraxial region,

TTL/(2*Img HT)<0.7, where a distance on an optical axis from an object-side surface of the first lens to an imaging plane of an image sensor is TTL, and half of a diagonal length of the imaging plane of the image sensor is Img HT, and

Fno<1.9, where an F-number of the optical imaging system is Fno.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2020
From: PARK, IL YONG; HWANG, HYO JIN; JO, YONG JOO; IM, MIN HYUK
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 051669/0258 →
Priority Claims (1)
KR 10-2019-0127853 · Oct 15, 2019 · national
Continuity (1)
Related Publication 20210109320A1 · Apr 15, 2021
Cited By (1)
US 12,687,700