Optical imaging lens assembly including eight lenses of +−++−−+−, +−++−++−, +−−+−−+−, +−++−+−−, +−++−−−−or ++++−−+− refractive powers
The present disclosure discloses an optical imaging lens assembly including, sequentially from an object side to an image side along an optical axis, a first lens, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, a seventh lens, and an eighth lens having refractive power. A center thickness CT6 of the sixth lens along the optical axis and a spaced interval T56 between the fifth lens and the sixth lens along the optical axis satisfy: 1.5<CT6/T56<2.6. A relative F number Fno of the optical imaging lens assembly satisfies: Fno≤1.7.
1. An optical imaging lens assembly, comprising: a first lens, a second lens, a third lens, a fourth lens, a fifth lens, a sixth lens, a seventh lens and an eighth lens, which are sequentially arranged from an object side to an image side of the optical imaging lens assembly along an optical axis,
wherein each of the first lens to the eighth lens has refractive power,
wherein 1.5<CT6/T56<2.6,
Fno≤1.7,
where CT6 is a center thickness of the sixth lens along the optical axis, T56 is a spaced interval between the fifth lens and the sixth lens along the optical axis, and Fno is a relative F number of the optical imaging lens assembly; and
1.31≤TTL/ImgH≤1.39,
where TTL is a distance along the optical axis from an object-side surface of the first lens to an imaging plane of the optical imaging lens assembly,
ImgH is half of a diagonal length of an effective pixel area on the imaging plane of the optical imaging lens assembly; and
wherein 1.16≤f5/R9≤1.56,
where f5 is an effective focal length of the fifth lens, and R9 is a radius of curvature of an object-side surface of the fifth lens.
2. The optical imaging lens assembly according to claim 1 , wherein 2.0<f1/R1<3.6,
where f1 is an effective focal length of the first lens, and R1 is a radius of curvature of an object-side surface of the first lens.
3. The optical imaging lens assembly according to claim 1 , wherein 0.5<R2/R5<2.5,
where R2 is a radius of curvature of an image-side surface of the first lens, and R5 is a radius of curvature of an object-side surface of the third lens.
4. The optical imaging lens assembly according to claim 1 , wherein 1.0<R3/R4<2.0,
where R3 is a radius of curvature of an object-side surface of the second lens, and R4 is a radius of curvature of an image-side surface of the second lens.
5. The optical imaging lens assembly according to claim 1 , wherein 0.5<CT7/T78<2.5,
where CT7 is a center thickness of the seventh lens along the optical axis, and T78 is a spaced interval between the seventh lens and the eighth lens along the optical axis.
6. The optical imaging lens assembly according to claim 1 , wherein 1.5<CT1/CT3<4.0,
where CT1 is a center thickness of the first lens along the optical axis, and CT3 is a center thickness of the third lens along the optical axis.
7. The optical imaging lens assembly according to claim 1 , wherein a refractive index of the second lens and a refractive index of the fifth lens are both greater than 1.65.
8. The optical imaging lens assembly according to claim 1 , wherein 1.0<CT4/T34<2.0,
where CT4 is a center thickness of the fourth lens along the optical axis, and T34 is a spaced interval between the third lens and the fourth lens along the optical axis.
9. The optical imaging lens assembly according to claim 1 , wherein 1.5<(CT8+T67)/CT5<4.0,
where CT5 is a center thickness of the fifth lens along the optical axis, CT8 is a center thickness of the eighth lens along the optical axis, and T67 is a spaced interval between the sixth lens and the seventh lens along the optical axis.
10. The optical imaging lens assembly according to claim 1 , wherein the fourth lens has positive refractive power, an object-side surface of the fourth lens is a concave surface, and an image-side surface of the fourth lens is a convex surface.
11. The optical imaging lens assembly according to claim 1 , wherein an object-side surface of the fifth lens is a concave surface, and an image-side surface of the fifth lens is a concave surface.
12. The optical imaging lens assembly according to claim 1 , wherein 0.8≤T34/(T45+T67)<3.0,
where T34 is a spaced interval between the third lens and the fourth lens along the optical axis, T45 is a spaced interval between the fourth lens and the fifth lens along the optical axis, and T67 is a spaced interval between the sixth lens and the seventh lens along the optical axis.
13. The optical imaging lens assembly according to claim 1 , wherein −4.5<R15/R3<−1.0,
where R3 is a radius of curvature of an object-side surface of the second lens, and R15 is a radius of curvature of an object-side surface of the eighth lens.
14. The optical imaging lens assembly according to claim 1 , wherein 1.5<T78/T67<7.0,
where T67 is a spaced interval between the sixth lens and the seventh lens along the optical axis, and T78 is a spaced interval between the seventh lens and the eighth lens along the optical axis.
15. The optical imaging lens assembly according to claim 1 ,
wherein 0.8≤T34/(T45+T67)<3.0, and
where T34 is a spaced interval between the third lens and the fourth lens along the optical axis, T45 is a spaced interval between the fourth lens and the fifth lens along the optical axis, and T67 is a spaced interval between the sixth lens and the seventh lens along the optical axis.
16. The optical imaging lens assembly according to claim 15 , wherein 2.0<f1/R1<3.6,
where f1 is an effective focal length of the first lens, and R1 is a radius of curvature of an object-side surface of the first lens.
17. The optical imaging lens assembly according to claim 15 , wherein 1.0<f5/R9<2.0,
where f5 is an effective focal length of the fifth lens, and R9 is a radius of curvature of an object-side surface of the fifth lens.
18. The optical imaging lens assembly according to claim 15 , wherein 1.5<(CT8+T67)/CT5<4.0,
where CT5 is a center thickness of the fifth lens along the optical axis, CT8 is a center thickness of the eighth lens along the optical axis, and T67 is the spaced interval between the sixth lens and the seventh lens along the optical axis.