Optical system
An optical system disclosed to an embodiment of the invention includes 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 sequentially arranged along an optical axis from an object side to an image side, wherein the first lens has a positive refractive power and has a convex object-side surface, the second lens has a negative refractive power and has a concave image-side surface, and at least one of an object-side surface and an image-side surface of the sixth lens has an inflection point, the seventh lens has a positive refractive power and has a convex image-side surface, the eighth lens has a negative refractive power and has an object-side surface and an image-side surface which have at least one inflection point, a center thickness of the seventh lens may be the thickest among thicknesses of centers of the first to eighth lenses.
1 . An optical system 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 sequentially arranged along an optical axis from an object side to an image side,
wherein the first lens has a positive refractive power and has a convex object-side surface,
wherein the second lens has a negative refractive power and has a concave image-side surface,
wherein at least one of an object-side surface and an image-side surface of the sixth lens has an inflection point,
wherein the seventh lens has a positive refractive power and has a convex image-side surface,
wherein the eighth lens has a negative refractive power and has an object-side surface and an image-side surface each having at least one inflection point,
wherein a center thickness of the seventh lens is greatest among center thicknesses of the first to eighth lenses,
wherein one or more lenses among the first to eighth lenses has a refractive index at 587 nm of 1.6 or greater, and seven or less lenses among the first to eighth lenses have a refractive index at 587 nm of less than 1.6, and
wherein a refractive index of the second lens is greater than refractive indices of the first and third to eighth lenses, and
wherein the optical system satisfies at least one condition of:
1) Abbe numbers of the first, third, fifth, seventh, and eighth lenses are 50 or more, and an Abbe number of the second lens is less than 30,
2) at least two of the third to sixth lenses have positive refractive power and at most two of the third to sixth lenses have negative refractive power,
3) a first interval between the second lens and the third lens along the optical axis is less than a second interval between the sixth lens and the seventh lens along the optical axis and an interval between the seventh lens and the eighth lens along the optical axis is smaller than the first and second intervals and the first and second intervals are 0.4 mm or more, or
4) the center thickness of the seventh lens is in a range of 2 to 4 times the center thickness of each of the fourth, fifth, and sixth lenses, and the seventh lens has a convex object-side surface.
2 . The optical system of claim 1 , wherein the center thickness of the first lens is thicker than the center thickness of each of the second to sixth lenses and the eighth lens.
3 . The optical system of claim 1 , wherein a radius of curvature of the object-side surface of the first lens is L1R1, and an absolute value of a radius of curvature of an image-side surface of the first lens is defined as |L1R2|, and wherein the optical system is satisfied: 0<L1R1/|L1R2|<1.
4 . The optical system of claim 1 , wherein an absolute value of a radius of curvature of an object-side surface of the second lens is |L2R1| and a radius of curvature of the image-side surface of the second lens is L2R2, and wherein the following relationship is satisfied: 0<L2R2/|L2R1|<1.
5 . The optical system of claim 1 , wherein a refractive index of the first lens at 587 nm is G1, a refractive index of the second lens at 587 nm is G2, and refractive indices of the sixth and seventh lenses at 587 nm are G6 and G7, respectively, and wherein the following relationship is satisfied: 0.8<G1/G2<1.2 and 0.8<G7/G6<1.2.
6 . The optical system of claim 1 , wherein when the center thickness of the first, second, sixth, and seventh lenses is T1, T2, T6, and T7, respectively, the following relationship is satisfied: 0.1<T2/T1<0.8 and 0.1<T6/T7<1.
7 . An optical system 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 sequentially arranged along an optical axis from an object side to an image side,
wherein the first lens has a positive refractive power and has a convex object-side surface,
wherein the second lens has a negative refractive power and has a concave image-side surface,
wherein at least one of an object-side surface and an image-side surface of the sixth lens has an inflection point,
wherein the seventh lens has a positive refractive power and has a convex image-side surface,
wherein the eighth lens has a negative refractive power and has an object-side surface and an image-side surface having at least one inflection point,
wherein five or more among the first to eighth lenses are lenses having a convex object-side surface, two or more among the first to eighth lenses are lenses having a concave object-side surface, three or more among the first to eighth lenses are lenses having a convex image-side surface, and five or more are lenses having a concave image-side surface,
wherein one or more lenses among the first to eighth lenses has a refractive index at 587 nm of 1.6 or greater, and seven or less lenses among the first to eighth lenses have a refractive index at 587 nm of less than 1.6, and
wherein a refractive index of the second lens is greater than refractive indices of the first and third to eighth lenses,
wherein the optical system satisfies at least one condition of:
1) a number of lenses having an Abbe number of 50 or more is 5 or more, and a number of lenses having an Abbe number of less than 50 is 3 or less, among the first to eighth lenses, or
2) among the first to eighth lenses three or more are lenses having the center thickness of 0.6 mm or more, five or less are lenses having the center thickness of 0.6 mm or less, and the center thickness of the seventh lens is the greatest of all, and the seventh lens has a convex object-side surface.
8 . The optical system of claim 7 , wherein, the second lens has a refractive index of 1.6 or more at 587 nm, and each of the seventh and eighth lenses has a refractive index of less than 1.6 at 587 nm.
9 . The optical system of claim 7 ,
wherein an image side surface of the third lens is concave,
wherein the image-side surface of the eighth lens is concave, and
wherein the object-side surface of the eighth lens is concave.
10 . The optical system of claim 1 ,
wherein an image side surface of the third lens is concave,
wherein the image-side surface of the eighth lens is concave, and
wherein the object-side surface of the eighth lens is concave.
11 . An optical system 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 sequentially arranged along an optical axis from an object side to an image side, an image sensor on an image side of the eighth lens; and an optical filter between the image sensor and the eighth lens,
wherein the first lens has a positive refractive power and has a convex object-side surface,
wherein the second lens has a negative refractive power and has a concave image-side surface,
wherein at least one of an object-side surface and an image-side surface of the sixth lens has an inflection point,
wherein the seventh lens has a positive refractive power and has a convex image-side surface,
wherein the eighth lens has a negative refractive power and has an object-side surface and an image-side surface each having at least one inflection point,
wherein a center thickness of the seventh lens is greatest among center thicknesses of the first to eighth lenses,
wherein one or more lenses among the first to eighth lenses has a refractive index at 587 nm of 1.6 or greater, and seven or less lenses among the first to eighth lenses have a refractive index at 587 nm of less than 1.6,
wherein a refractive index of the second lens is greater than refractive indices of the first and third to eighth lenses, and
wherein the optical system satisfies at least one condition of:
Equations 1 and 2 being satisfied:
0<BFL/TTL<0.3 [Equation 1]
0<BFL/Img<0.3 [Equation 1]
where BFL is a distance from an apex of the image-side surface of the eighth lens to the image sensor, TTL is a distance from an apex of the object-side first surface of the first lens to the image sensor, and Img is a vertical distance from the optical axis to 1.0 F, which is a diagonal end on the image sensor, or
2) Equations 3, 4, and 5 being satisfied:
0.5<F/TTL<1.2 [Equation 3]
0.5<TTL/(Img×2)<0.8 [Equation 4]
0.5<TTL/(D82×2)<1.2 [Equation 5]
where TTL is a distance from an apex of the object-side first surface of the first lens to the image sensor, F is a total effective focal length of the optical system, and Img is a vertical distance from the optical axis to 1.0 F, which is a diagonal end on the image sensor, and D82 is a distance from an apex of the image-side surface of the eighth lens to an effective diameter with respect to the optical axis.