Zoom lens
11914124 ยท 2024-02-27
Assignee
Inventors
Cpc classification
G02B13/18
PHYSICS
International classification
G02B15/14
PHYSICS
Abstract
The present disclosure relates to optical lens, and provides a zoom lens including, from an object side to an image side in sequence: a first lens having a negative refractive power, a second lens having a positive refractive power, a third lens having a negative refractive power, a fourth lens having a positive refractive power, a fifth lens group having a negative refractive power; distances between adjacent lenses of the first lens, the second lens, the third lens and the fourth lens or between the fourth lens and the fifth lens group vary in the direction of the optical axis; the fifth lens group including a fifth lens having a positive refractive power and a sixth lens having a negative refractive power; wherein the zoom lens satisfies conditions of: f_Tele/f_Wide>1.8; 10.00D12_Wide/D12_Tele20.00; and 15.00d9_Wide/d9_Tele22.50.
Claims
1. A zoom lens consisting of, from an object side to an image side in sequence: a first lens having a negative refractive power, a second lens having a positive refractive power, a third lens having a negative refractive power, a fourth lens having a positive refractive power, a fifth lens group having a negative refractive power; wherein distances between adjacent two of the first lens, the second lens, the third lens, the fourth lens and the fifth lens group are variable in the direction of an optical axis; the fifth lens group consists of a fifth lens having a positive refractive power and a sixth lens having a negative refractive power; the total number of lenses with refractive power is 6; and the zoom lens satisfies conditions of:
f_Tele/f_Wide>1.8;(1)
10.00D12_Wide/D12_Tele20.00; and(2)
15.00d9_Wide/d9_Tele22.50;(3)
3.20f1/f22.50;(6) where f_Wide denotes a focal length of the zoom lens at the wide angle end; f_Tele denotes a focal length of the zoom lens at the telephoto end; D12_Wide denotes an on-axis distance from an image-side surface of the first lens to an object-side surface of the second lens at the wide angle end; D12_Tele denotes an on-axis distance from an image-side surface of the first lens to an object-side surface of the second lens at the telephoto end; d9_Wide denotes an on-axis distance from an image-side surface of the fourth lens to an object-side surface of the fifth lens at the wide angle end; d9_Tele denotes an on-axis distance from an image-side surface of the fourth lens to an object-side surface of the fifth lens at the telephoto end; f1 denotes a focal length of the first lens; and f2 denotes a focal length of the second lens.
2. The zoom lens according to claim 1, wherein the zoom lens further satisfies a condition of:
0.68d5_Wide/d5_Tele1.20;(4) where d5_Wide denotes an on-axis distance from an image-side surface of the second lens to an object-side surface of the third lens at the wide angle end; and d5_Tele denotes an on-axis distance from an image-side surface of the second lens to an object-side surface of the third lens at the telephoto end.
3. The zoom lens according to claim 1, wherein the zoom lens further satisfies a condition of:
0.55d7_Wide/d7_Tel0.75;(5) where d7_Wide denotes an on-axis distance from an image-side surface of the third lens to an object-side surface of the fourth lens at the wide angle end; and d7_Tele denotes an on-axis distance from an image-side surface of the third lens to an object-side surface of the fourth lens at the telephoto end.
4. The zoom lens according to claim 1, wherein the zoom lens further satisfies a condition of:
1.85f3/f21.20;(7) where f2 denotes a focal length of the second lens; and f3 denotes a focal length of the third lens.
5. The zoom lens according to claim 1, wherein the zoom lens further satisfies a condition of:
2.00f4/f23.00;(8) where f2 denotes a focal length of the second lens; and f4 denotes a focal length of the fourth lens.
6. The zoom lens according to claim 1, wherein the zoom lens further satisfies a condition of:
5.00fG5/f22.50; and(9)
3.10f5/f62.00;(10) where f2 denotes a focal length of the second lens; fG5 denotes a combined focal length of the fifth lens group; f5 denotes a focal length of the fifth lens; and f6 denotes a focal length of the sixth lens.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) To illustrate the technical solutions according to the embodiments of the present disclosure or in the prior art more clearly, the accompanying drawings for describing the embodiments or the prior art are introduced briefly in the following. Apparently, the accompanying drawings in the following description are only some embodiments of the present disclosure, and persons of ordinary skill in the art can derive other drawings from the accompanying drawings without creative efforts.
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DETAILED DESCRIPTION OF EMBODIMENTS
(17) To make the objectives, technical solutions, and advantages of the present disclosure clearer, embodiments of the present disclosure are described in detail with reference to accompanying drawings in the following. A person of ordinary skill in the art can understand that, in the embodiments of the present disclosure, many technical details are provided to make readers better understand the present disclosure. However, even without these technical details and any changes and modifications based on the following embodiments, technical solutions required to be protected by the present disclosure can be implemented.
(18) Embodiments of a zoom lens in the present disclosure will be described. The zoom lens is a lens system which includes five groups of lenses having six lenses. The lens system includes, from an object side to an image side, a first lens L1, a second lens L2, a third lens L3, a fourth lens L4, a fifth lens group G5, where the fifth lens group includes a fifth lens L5 and a sixth lens L6. A glass plate GF is disposed between the sixth lens L6 and an image surface S1. The glass plate GF may include glass cover plates, various filters, and the like. In the present disclosure, the glass plate GF may be disposed at different positions or may be omitted.
(19) In this embodiment, the first lens L1 has a negative refractive power, the second lens L2 has a positive refractive power, the third lens L3 has a negative refractive power, the fourth lens L4 has a positive refractive power, and the fifth lens group G5 has a negative refractive power. The fifth lens group G5 includes the fifth lens L5 and the sixth lens L6, where the fifth lens L5 has a positive refractive power, and the sixth lens L6 has a negative refractive power. For better correction to various distortions, all the surfaces of the six lenses are set as aspheric.
(20) The zoom lens LA satisfies a condition of:
f_Tele/f_Wide>1.8(1)
(21) Condition (1) specifies a zoom ratio of the zoom lens LA. Within the condition (1), correction to various distortions is facilitated, and meanwhile the zoom ratio is sufficient.
(22) The zoom lens LA satisfies a condition of:
10.00D12_Wide/D12_Tele20.00(2)
(23) Condition (2) specifies a ratio of an on-axis distance D12_Wide from an image-side surface S2 of the first lens L1 to an object-side surface S3 of the second lens L2 at the wide angle end to an on-axis distance D12_Tele from an image-side surface S2 of the first lens L1 to an object-side surface S3 of the second lens L2 at the telephoto end. Within the condition (2), miniaturization of the zoom lens when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(24) The zoom lens LA satisfies a condition of:
15.00d9_Wide/d9_Tele22.50(3)
(25) Condition (3) specifies a ratio of an on-axis distance d9_Wide from an image-side surface S8 of the fourth lens L4 to an object-side surface S9 of the fifth lens L5 at the wide angle end to an on-axis distance d9_Tele from an image-side surface S8 of the fourth lens L4 to an object-side surface S9 of the fifth lens L5 at the telephoto end. Within the condition (3), miniaturization of the zoom lens when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(26) The zoom lens LA satisfies a condition of:
0.68d5_Wide/d5_Tele1.20(4)
(27) Condition (4) specifies a ratio of an on-axis distance d5_Wide from an image-side surface S4 of the second lens L2 to an object-side surface S5 of the third lens L3 at the wide angle end to an on-axis distance d5_Tele from an image-side surface S4 of the second lens L2 to an object-side surface S5 of the third lens L3 at the telephoto end. Within the condition (4), miniaturization of the zoom lens when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(28) The zoom lens LA satisfies a condition of:
0.55d7_Wide/d7_Tele0.75(5)
(29) Condition (5) specifies a ratio of an on-axis distance d7_Wide from an image-side surface S6 of the third lens L3 to an object-side surface S7 of the fourth lens L4 at the wide angle end to an on-axis distance d7_Tele from an image-side surface S6 of the third lens L3 to an object-side surface S7 of the fourth lens L4 at the telephoto end. Within the condition (5), miniaturization of the zoom lens when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(30) The zoom lens LA satisfies a condition of:
3.20f1/f22.50(6)
(31) Condition (6) specifies a ratio of a focal length f1 of the first lens L1 to a focal length f2 of the second lens L2. Within the condition (6), miniature when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(32) The zoom lens LA satisfies a condition of:
1.85f3/f21.20(7)
(33) Condition (7) specifies a ratio of a focal length f3 of the third lens L3 to a focal length f2 of the second lens L2. Within the condition (7), miniature when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(34) The zoom LA satisfies a condition of:
2.00f4/f23.00(8)
(35) Condition (8) specifies a ratio of a focal length f4 of the fourth lens L4 to a focal length f2 of the second lens L2. Within the condition (8), miniature when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(36) The zoom lens LA satisfies a condition of:
5.00fG5/f22.50(9)
(37) Condition (9) specifies a ratio of a combined focal length fG5 of the first lens L1 to a focal length f2 of the second lens L2. Within the condition (9), miniature when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(38) The zoom LA satisfies a condition of:
3.10f5/f62.00(10)
(39) Condition (10) specifies a ratio of a focal length f5 of the fifth lens L5 to a focal length f6 of the six lens L6. Within the condition (10), miniature when contracted is facilitated, and meanwhile correction to various distortions is facilitated when Fno is less than 2.0 and the zoom ratio is more than 1.8 at the wide angle end.
(40) With the five groups of lenses having six lenses included in the zoo lens LA satisfying the above structure and conditions respectively, the zoom lens LA is obtained which has TTL of less than 9.00 mm and becomes miniature when contracted, which becomes bright when an Fno at the wide angle end is of less than 2.0 at the time of photographing, which has excellent optical performance and a zoom ratio of more than 1.8 and which includes five groups of lenses having six lenses.
Embodiments
(41) The zoom lens LA will be further described with reference to the following examples. Symbols used in various examples are shown as follows. It should be noted that the distance, central curvature radius, and on-axis thickness are all in units of mm. f: focal length of the zoom lens; f1: focal length of the first lens L1; f2: focal length of the second lens L2; f3: focal length of the third lens L3; f4: focal length of the fourth lens L4; f5: focal length of the fifth lens L5; f6: focal length of the sixth lens L6; fG5: combined focal length of the fifth lens group G5; FNO: ratio of an effective focal length and an entrance pupil diameter of the zoom lens; 2: full viewing angle; STOP: aperture; R: curvature radius of an optical surface (central curvature radius in the condition of the lens); R1: central curvature radius of the object-side surface S1 of the first lens L1; R2: central curvature radius of the image-side surface S2 of the first lens L1; R3: central curvature radius of the object-side surface S3 of the second lens L2; R4: central curvature radius of the image-side surface S4 of the second lens L2; R5: central curvature radius of the object-side surface S5 of the third lens L3; R6: central curvature radius of the image-side surface S6 of the third lens L3; R7: central curvature radius of the object-side surface S7 of the fourth lens L4; R8: central curvature radius of the image-side surface S8 of the fourth lens L4; R9: central curvature radius of the object-side surface S9 of the fifth lens L5; R10: central curvature radius of the image-side surface S10 of the fifth lens L5; R11: central curvature radius of the object-side surface S11 of the sixth lens L6; R12: central curvature radius of the image-side surface S12 of the sixth lens L6; R13: central curvature radius of an object-side surface S13 of the glass plate GF; R14: central curvature radius of an image-side surface S14 of the glass plate GF; d: on-axis thickness of a lens or an on-axis distance between lenses; d1: on-axis thickness of the first lens L1; D12: on-axis distance from the image-side surface S2 of the first lens L1 to the object-side surface S3 of the second lens L2; d2: on-axis distance from the image-side surface S2 of the first lens L1 to the aperture STOP; d3: on-axis distance from the aperture STOP to the object-side surface S3 of the second lens L2; d4: on-axis thickness of the second lens L2; d5: on-axis distance from the image-side surface S4 of the second lens L2 to the object-side surface S5 of the third lens L3; d6: on-axis thickness of the third lens L3; d7: on-axis distance from the image-side surface S6 of the third lens L3 to the object-side surface S7 of the fourth lens L4; d8: on-axis thickness of the fourth lens L4; d9: on-axis distance from the image-side surface S8 of the fourth lens L4 to the object-side surface S9 of the fifth lens L5; d10: on-axis thickness of the fifth lens L5; d11: on-axis distance from the image-side surface S10 of the fifth lens L5 to the object-side surface S11 of the sixth lens L6; d12: on-axis thickness of the sixth lens L6; d13: on-axis distance from the image-side surface S12 of the sixth lens L6 to the object-side surface S13 of the glass plate GF; d14: on-axis thickness of the glass plate GF; d15: on-axis distance from the image-side surface S14 of the glass plate GF to the object-side surface S15 of the image surface; nd: refractive index of the d line; nd1: refractive index of the d line of the first lens L1; nd2: refractive index of the d line of the second lens L2; nd3: refractive index of the d line of the third lens L3; nd4: refractive index of the d line of the fourth lens L4; nd5: refractive index of the d line of the fifth lens L5; nd6: refractive index of the d line of the sixth lens L6; ndg: refractive index of the d line of the glass plate GF; d: abbe number; 1: abbe number of the first lens L1; 2: abbe number of the second lens L2; 3: abbe number of the third lens L3; 4: abbe number of the fourth lens L4; 5: abbe number of the fifth lens L5; 6: abbe number of the sixth lens L6; g: abbe number of the glass plate GF; TTL: Total optical length (on-axis distance from the object side surface S1 of the first lens L1 to the image surface of the zoom lens) in mm; LB: on-axis distance from the image-side surface S12 of the sixth lens L6 to the image surface.
Embodiment 1
(42)
(43) The design data of the zoom LA in Embodiment 1 of the present disclosure are shown in Table 1.
(44) TABLE-US-00001 TABLE 1 effective R d nd vd radius (mm) S1 R1 9.61540 d1 0.848 nd1 1.4959 v1 81.655 4.789 S2 R2 4.78994 D12 d2 A 4.201 Stop d3 0.875 3.058 S3 R3 5.43455 d4 1.945 nd2 1.5806 v2 60.079 3.085 S4 R4 10.30283 d5 B 3.068 S5 R5 4.22326 d6 0.418 nd3 1.6700 v3 19.392 2.804 S6 R6 2.37762 d7 C 2.792 S7 R7 72.30089 d8 0.643 nd4 1.5438 v4 56.029 2.792 S8 R8 6.42171 d9 D 2.768 S9 R9 422.21458 d10 0.687 nd5 1.6700 v5 19.392 3.482 S10 R10 16.16554 d11 0.050 3.599 S11 R11 6.61558 d12 0.507 nd6 1.4959 v6 81.655 3.617 S12 R12 2.97312 d13 0.380 3.798 S13 R13 d14 0.210 ndg 1.5168 vg 64.167 3.868 S14 R14 d15 E 3.890 Reference wavelength = 587.6 nm
(45) TABLE-US-00002 TABLE 2 Photographing Wide Tele Contracted A 6.374 1.150 1.075 B 1.292 1.087 0.200 C 1.511 2.391 0.654 D 4.498 0.200 0.200 E 1.114 9.960 0.890
(46) TABLE-US-00003 TABLE 3 Conic coefficient Aspheric surface coefficients k A4 A6 A8 A10 S1 0.0000E+00 3.7161E03 2.1150E04 8.6464E06 3.2195E07 S2 0.0000E+00 5.0043E03 2.7486E04 2.2796E05 1.9983E06 S3 4.1073E01 4.8828E04 2.6565E05 1.2402E05 2.4815E06 S4 0.0000E+00 2.6570E03 5.5477E05 7.0596E06 5.7191E06 S5 0.0000E+00 4.3942E02 1.0026E02 2.0167E03 2.9806E04 S6 4.1210E+00 2.6213E02 7.1515E03 1.6809E03 2.8826E04 S7 0.0000E+00 3.2293E03 8.8623E04 3.9750E04 1.3776E04 S8 2.1814E01 1.7419E03 3.3061E04 5.2942E05 1.0663E05 S9 0.0000E+00 9.8434E03 4.1050E03 1.0649E03 1.7264E04 S10 0.0000E+00 1.4996E02 7.5983E03 2.0379E03 2.9367E04 S11 5.0000E+01 1.8444E02 5.4669E04 6.5146E04 1.1815E04 S12 1.0143E+01 1.4135E02 2.5607E03 2.9863E04 1.8766E05 Conic coefficient Aspheric surface coefficients k A12 A14 A16 S1 0.0000E+00 9.9365E09 2.2247E10 2.7730E12 S2 0.0000E+00 1.4272E07 6.0406E09 1.1574E10 S3 4.1073E01 1.6043E07 6.0347E09 9.7092E10 S4 0.0000E+00 1.0816E06 8.7358E08 2.3508E09 S5 0.0000E+00 2.9519E05 1.6781E06 4.0053E08 S6 4.1210E+00 3.2808E05 2.1394E06 5.9001E08 S7 0.0000E+00 1.8645E05 1.0372E06 1.9847E08 S8 2.1814E01 7.9451E06 1.2973E06 5.9210E08 S9 0.0000E+00 1.6328E05 8.4011E07 1.8139E08 S10 0.0000E+00 2.3324E05 9.9462E07 1.8163E08 S11 5.0000E+01 8.3999E06 2.6527E07 3.0971E09 S12 1.0143E+01 6.0983E07 9.6600E09 5.9281E11
(47) Herein, k denotes a conic coefficient, A4, A6, A8, A10, A12, A14, A16 denote aspheric surface coefficients.
y=(x.sup.2/R)/[1+{1(k+1)(x.sup.2/R.sup.2)}.sup.1/2]+A4x.sup.4+A6x.sup.6+A8x.sup.8+A10x.sup.10+A12x.sup.12+A14x.sup.14+A16x.sup.16(11)
(48) Herein, x denotes a vertical distance between a point in the aspheric curve and the optical axis, and y denotes an aspheric depth (i.e. a vertical distance between the point having a distance of x from the optical axis and a plane tangent to the vertex on the optical axis of the aspheric surface).
(49) For convenience, an aspheric surface of each lens surface uses the aspheric surfaces shown in the above formula (11). However, the present disclosure is not limited to the aspherical polynomials form shown in the formula (11).
(50) TABLE-US-00004 TABLE 4 Wide Tele Fno 1.94 3.11 2 () 46.96 24.13 f (mm) 9.252 18.503 Wide Tele Contracted TTL (mm) 19.600 19.600 7.831 LB (mm) 1.704 10.550 1.480 f1 (mm) 20.436 f2 (mm) 6.419 f3 (mm) 8.931 f4 (mm) 12.915 fG5 (mm) 22.052 f5 (mm) 25.069 f6 (mm) 11.415 IH (mm) 4.000 Zoom ratio 2.000
(51) In the subsequent Table 21, various parameters of Embodiments 1, 2, 3, 4 and 5 and values corresponding to the parameters specified in the above conditions (1) to (10) are shown.
(52) As shown in Table 21, Embodiment 1 satisfies the conditions (1) to (10).
(53)
Embodiment 2
(54)
(55) TABLE-US-00005 TABLE 5 effective R d nd vd radius (mm) S1 R1 11.54916 d1 0.980 nd1 1.4959 v1 81.655 4.604 S2 R2 4.52385 D12 d2 A 3.947 Stop d3 1.131 3.190 S3 R3 4.79882 d4 2.206 nd2 1.5806 v2 60.079 3.202 S4 R4 12.36368 d5 B 3.127 S5 R5 8.18784 d6 0.400 nd3 1.6700 v3 19.392 2.689 S6 R6 3.84986 d7 C 2.500 S7 R7 8.58565 d8 0.770 nd4 1.5438 v4 56.029 2.990 S8 R8 65.64031 d9 D 3.025 S9 R9 16.92466 d10 0.557 nd5 1.6700 v5 19.392 3.481 S10 R10 8.47675 d11 0.309 3.476 S11 R11 85.55021 d12 0.500 nd6 1.4959 v6 81.655 3.705 S12 R12 4.55212 d13 0.340 3.741 S13 R13 d14 0.210 ndg 1.5168 vg 64.167 3.845 S14 R14 d15 E 3.871 Reference wavelength = 587.6 nm
(56) TABLE-US-00006 TABLE 6 Photographing Wide Tele Contracted A 5.904 1.533 1.333 B 1.301 1.884 0.200 C 2.951 3.988 0.620 D 3.315 0.221 0.200 E 0.989 6.835 0.890
(57) TABLE-US-00007 TABLE 7 Conic coefficient Aspheric surface coefficients k A4 A6 A8 A10 S1 0.0000E+00 4.3273E03 3.0195E04 1.3551E05 3.9245E07 S2 0.0000E+00 6.2743E03 3.7607E04 2.5241E05 1.4655E06 S3 5.5335E01 2.6661E04 2.7405E05 1.8364E05 4.2766E06 S4 0.0000E+00 1.3787E03 1.5428E04 6.0202E05 1.0644E05 S5 0.0000E+00 2.6907E02 6.5909E03 1.3197E03 2.1250E04 S6 3.8955E+00 2.5433E02 7.8649E03 1.9084E03 3.7605E04 S7 0.0000E+00 3.6049E03 1.8631E04 7.8918E05 2.1912E05 S8 4.6350E+01 2.9343E04 4.3523E04 3.9347E05 1.0555E05 S9 0.0000E+00 4.3758E03 1.5179E03 1.7440E04 3.8823E06 S10 0.0000E+00 1.1313E02 3.6859E03 4.3334E04 8.7735E06 S11 4.3256E+01 1.0058E02 7.6167E04 4.6670E04 1.6076E04 S12 1.5106E+01 6.3607E03 2.8458E04 1.8017E05 1.1228E05 Conic coefficient Aspheric surface coefficients k A12 A14 A16 S1 0.0000E+00 4.3114E09 9.6807E11 2.4063E12 S2 0.0000E+00 9.2753E08 4.2407E09 1.0222E10 S3 5.5335E01 5.2175E07 3.1865E08 7.6092E10 S4 0.0000E+00 1.0830E06 5.9866E08 1.4064E09 S5 0.0000E+00 2.3490E05 1.5289E06 4.3300E08 S6 3.8955E+00 5.0004E05 3.8761E06 1.2844E07 S7 0.0000E+00 3.5289E06 3.3353E07 1.0855E08 S8 4.6350E+01 1.8938E06 1.5287E07 6.3304E09 S9 0.0000E+00 1.9526E06 1.1519E07 1.7113E09 S10 0.0000E+00 5.5236E06 3.8284E07 7.6534E09 S11 4.3256E+01 2.2796E05 1.4432E06 3.3666E08 S12 1.5106E+01 2.0799E06 1.4161E07 3.2697E09
(58) TABLE-US-00008 TABLE 8 Wide Tele Fno 1.96 3.10 2 () 47.21 24.65 f (mm) 9.261 18.525 Wide Tele Contracted TTL (mm) 19.600 19.600 8.383 LB (mm) 1.539 7.385 1.440 f1 (mm) 15.723 f2 (mm) 6.249 f3 (mm) 11.261 f4 (mm) 14.013 fG5 (mm) 16.384 f5 (mm) 24.692 f6 (mm) 9.715 IH (mm) 4.000 Zoom ratio 2.000
(59) As shown in Table 21, Embodiment 2 satisfies the conditions (1) to (10).
(60)
Embodiment 3
(61)
(62) TABLE-US-00009 TABLE 9 effective R d nd vd radius (mm) S1 R1 10.58008 d1 1.042 nd1 1.4959 v1 81.655 4.784 S2 R2 4.52948 D12 d2 A 4.108 Stop d3 1.107 3.177 S3 R3 5.07855 d4 2.168 nd2 1.5806 v2 60.079 3.187 S4 R4 8.45974 d5 B 3.062 S5 R5 16.45587 d6 0.400 nd3 1.6700 v3 19.392 2.563 S6 R6 3.65515 d7 C 2.441 S7 R7 25.36114 d8 0.613 nd4 1.5438 v4 56.029 2.530 S8 R8 9.03460 d9 D 2.557 S9 R9 133.73082 d10 0.738 nd5 1.6700 v5 19.392 3.429 S10 R10 21.13099 d11 0.050 3.532 S11 R11 6.66943 d12 0.563 nd6 1.4959 v6 81.655 3.551 S12 R12 3.24530 d13 0.410 3.791 S13 R13 d14 0.210 ndg 1.5168 vg 64.167 3.825 S14 R14 d15 E 3.848 Reference wavelength = 587.6 nm
(63) TABLE-US-00010 TABLE 10 Photographing Wide Tele Contracted A 6.273 1.440 1.310 B 1.444 1.413 0.200 C 1.018 1.425 0.643 D 4.656 0.207 0.200 E 1.122 10.028 0.890
(64) TABLE-US-00011 TABLE 11 Conic coefficient Aspheric surface coefficients k A4 A6 A8 A10 S1 0.0000E+00 4.4095E03 2.0708E04 3.9038E06 1.9264E07 S2 0.0000E+00 6.3328E03 2.7470E04 1.7528E05 1.1901E06 S3 3.6269E01 4.9698E04 9.1645E06 5.8361E06 1.8648E06 S4 0.0000E+00 5.7932E03 4.6315E04 4.4802E05 4.1143E06 S5 0.0000E+00 1.0829E02 3.3479E03 8.3487E04 1.3433E04 S6 4.0285E+00 1.4720E02 4.4418E03 1.0849E03 1.7666E04 S7 0.0000E+00 6.8090E03 4.4941E04 1.9025E04 5.2820E07 S8 4.1694E+00 5.6632E04 2.3946E04 2.1157E04 1.1785E05 S9 0.0000E+00 3.6015E03 2.2196E03 8.3091E04 1.6445E04 S10 0.0000E+00 7.2986E03 2.0443E03 1.4646E04 9.7643E05 S11 7.2588E+00 4.4240E02 1.2333E02 1.9295E03 1.8668E04 S12 7.5252E+00 1.5700E02 3.2886E03 4.7529E04 4.0819E05 Conic coefficient Aspheric surface coefficients k A12 A14 A16 S1 0.0000E+00 2.0604E08 7.4463E10 9.9131E12 S2 0.0000E+00 8.9260E08 4.3084E09 1.0036E10 S3 3.6269E01 3.0197E07 2.3163E08 7.0698E10 S4 0.0000E+00 3.2966E07 1.9572E08 6.0139E10 S5 0.0000E+00 1.3718E05 8.2984E07 2.2114E08 S6 4.0285E+00 1.9160E05 1.2721E06 3.6712E08 S7 0.0000E+00 7.6718E06 9.7243E07 4.1555E08 S8 4.1694E+00 1.0882E06 3.6653E08 7.6618E09 S9 0.0000E+00 1.7312E05 9.4394E07 2.0940E08 S10 0.0000E+00 1.2379E05 6.9673E07 1.5505E08 S11 7.2588E+00 1.2020E05 4.7200E07 8.0207E09 S12 7.5252E+00 2.0251E06 5.3252E08 5.6470E10
(65) TABLE-US-00012 TABLE 12 Wide Tele Fno 1.94 3.06 2 () 47.74 24.12 f (mm) 9.237 18.455 Wide Tele Contracted TTL (mm) 19.600 19.600 8.331 LB (mm) 1.742 10.648 1.510 f1 (mm) 16.937 f2 (mm) 5.808 f3 (mm) 7.102 f4 (mm) 12.327 fG5 (mm) 28.472 f5 (mm) 27.286 f6 (mm) 13.481 IH (mm) 4.000 Zoom ratio 1.998
(66) As shown in Table 21, Embodiment 3 satisfies the conditions (1) to (10).
(67)
Embodiment 4
(68)
(69) TABLE-US-00013 TABLE 13 effective R d nd vd radius (mm) S1 R1 14.98234 d1 1.013 nd1 1.4959 v1 81.655 4.634 S2 R2 5.26985 D12 d2 A 4.122 Stop d3 1.047 3.153 S3 R3 5.04601 d4 2.161 nd2 1.5806 v2 60.079 3.162 S4 R4 9.92541 d5 B 3.081 S5 R5 5.74344 d6 0.400 nd3 1.6700 v3 19.392 2.653 S6 R6 2.98243 d7 C 2.555 S7 R7 32.32706 d8 0.589 nd4 1.5438 v4 56.029 2.734 S8 R8 7.62534 d9 D 2.712 S9 R9 17.33172 d10 0.759 nd5 1.6700 v5 19.392 3.439 S10 R10 34.53207 d11 0.205 3.552 S11 R11 5.78882 d12 0.625 nd6 1.4959 v6 81.655 3.559 S12 R12 3.30504 d13 0.390 3.810 S13 R13 d14 0.210 ndg 1.5168 vg 64.167 3.838 S14 R14 d15 E 3.860 Reference wavelength = 587.6 nm
(70) TABLE-US-00014 TABLE 14 Photographing Wide Tele Contracted A 6.050 1.297 1.247 B 1.240 1.194 0.200 C 1.581 2.678 0.660 D 4.383 0.200 0.200 E 1.042 8.927 0.890
(71) TABLE-US-00015 TABLE 15 Conic coefficient Aspheric surface coefficients k A4 A6 A8 A10 S1 0.0000E+00 3.7536E03 2.2036E04 1.0070E05 4.2179E07 S2 0.0000E+00 5.1108E03 2.7540E04 1.8794E05 1.1984E06 S3 5.1704E01 3.5277E04 3.0334E05 9.5870E06 2.3186E06 S4 0.0000E+00 2.5600E03 4.2044E05 4.4946E05 8.1661E06 S5 0.0000E+00 3.3766E02 8.2127E03 1.7569E03 2.7773E04 S6 4.8937E+00 2.2706E02 7.0416E03 1.7633E03 3.2056E04 S7 0.0000E+00 4.7585E04 6.9018E04 7.4376E06 7.4010E06 S8 1.1589E+01 1.1854E04 9.4606E04 7.7468E06 1.1519E06 S9 0.0000E+00 3.4171E03 1.3641E03 4.1669E04 8.5975E05 S10 0.0000E+00 5.7698E03 1.7512E03 1.8602E04 5.6310E06 S11 4.0247E+00 4.3700E02 1.0875E02 1.7947E03 2.0457E04 S12 7.4985E+00 1.8283E02 4.0547E03 6.2900E04 6.4181E05 Conic coefficient Aspheric surface coefficients k A12 A14 A16 S1 0.0000E+00 1.3804E08 2.8803E10 2.7601E12 S2 0.0000E+00 6.1311E08 1.9359E09 2.8147E11 S3 5.1704E01 3.3809E07 2.5780E08 8.4890E10 S4 0.0000E+00 8.5217E07 4.8947E08 1.2589E09 S5 0.0000E+00 2.8852E05 1.7428E06 4.5614E08 S6 4.8937E+00 3.7570E05 2.5214E06 7.1912E08 S7 0.0000E+00 8.7561E07 1.0308E07 1.0630E08 S8 1.1589E+01 1.9139E06 4.8498E07 2.7389E08 S9 0.0000E+00 9.3294E06 5.2187E07 1.1906E08 S10 0.0000E+00 2.2998E06 1.7674E07 4.8751E09 S11 4.0247E+00 1.5144E05 6.1970E07 1.0232E08 S12 7.4985E+00 4.0456E06 1.3823E07 1.9138E09
(72) TABLE-US-00016 TABLE 16 Wide Tele Fno 1.96 3.10 2 () 46.99 24.12 f (mm) 9.253 18.526 Wide Tele Contracted TTL (mm) 19.600 19.600 8.501 LB (mm) 1.642 9.527 1.490 f1 (mm) 16.979 f2 (mm) 6.084 f3 (mm) 9.831 f4 (mm) 18.198 fG5 (mm) 27.090 f5 (mm) 51.027 f6 (mm) 16.945 IH (mm) 4.000 Zoom ratio 2.002
(73) As shown in Table 21, Embodiment 4 satisfies the conditions (1) to (10).
(74)
Embodiment 5
(75)
(76) TABLE-US-00017 TABLE 17 effective R d nd vd radius (mm) S1 R1 14.54031 d1 0.932 nd1 1.5264 v1 76.860 4.584 S2 R2 5.48677 D12 d2 A 4.128 Stop d3 1.020 3.134 S3 R3 5.00546 d4 2.099 nd2 1.5264 v2 76.860 3.144 S4 R4 11.41165 d5 B 3.107 S5 R5 4.72445 d6 0.400 nd3 1.6700 v3 19.392 2.680 S6 R6 2.80958 d7 C 2.648 S7 R7 28.21289 d8 0.639 nd4 1.5438 v4 56.029 2.747 S8 R8 6.01316 d9 D 2.724 S9 R9 35.22355 d10 0.847 nd5 1.6700 v5 19.392 3.413 S10 R10 11.12353 d11 0.050 3.516 S11 R11 6.55954 d12 0.725 nd6 1.5264 v6 76.860 3.517 S12 R12 2.95172 d13 0.430 3.811 S13 R13 d14 0.210 ndg 1.5168 vg 64.167 3.843 S14 R14 d15 E 3.865 Reference wavelength = 587.6 nm
(77) TABLE-US-00018 TABLE 18 Photographing Wide Tele Contracted A 6.028 1.271 1.221 B 2.355 2.272 0.200 C 1.155 1.876 0.680 D 3.713 0.200 0.200 E 1.037 8.668 0.890
(78) TABLE-US-00019 TABLE 19 Conic coefficient Aspheric surface coefficients k A4 A6 A8 A10 S1 0.0000E+00 3.4372E03 1.9939E04 8.9861E06 3.3833E07 S2 0.0000E+00 4.5696E03 2.3843E04 1.4091E05 6.7722E07 S3 6.1134E01 1.2020E04 4.7405E05 1.4912E05 3.4106E06 S4 0.0000E+00 1.5507E03 1.2703E05 2.3469E06 2.9676E07 S5 0.0000E+00 2.9557E02 4.9607E03 7.3211E04 7.3824E05 S6 4.0488E+00 1.8215E02 3.6392E03 5.8151E04 5.8514E05 S7 0.0000E+00 3.2762E03 6.4781E04 1.1358E04 7.8336E05 S8 8.8647E+00 4.1463E03 9.4507E04 2.3621E05 3.4675E06 S9 0.0000E+00 9.1110E03 2.6888E03 6.0171E04 8.8958E05 S10 0.0000E+00 8.4438E03 3.4629E03 9.4445E04 1.3749E04 S11 5.7915E+00 3.2471E02 4.9171E03 3.0991E04 9.4133E07 S12 6.7555E+00 1.7289E02 3.2197E03 4.1572E04 3.5257E05 Conic coefficient Aspheric surface coefficients k A12 A14 A16 S1 0.0000E+00 9.3236E09 1.6970E10 1.5497E12 S2 0.0000E+00 2.7519E08 8.1238E10 1.2348E11 S3 6.1134E01 4.4619E07 3.0616E08 8.9323E10 S4 0.0000E+00 6.9638E08 8.0230E09 3.6431E10 S5 0.0000E+00 5.1003E06 2.6712E07 8.2591E09 S6 4.0488E+00 3.4616E06 1.3256E07 2.9525E09 S7 0.0000E+00 1.2556E05 7.3534E07 1.3887E08 S8 8.8647E+00 6.8276E06 1.2375E06 5.8817E08 S9 0.0000E+00 7.5377E06 3.4555E07 6.7229E09 S10 0.0000E+00 1.0482E05 4.1404E07 6.8885E09 S11 5.7915E+00 4.1863E07 3.3193E09 4.5789E10 S12 6.7555E+00 1.9038E06 5.7222E08 6.9007E10
(79) TABLE-US-00020 TABLE 20 Wide Tele Fno 1.96 3.13 2 () 46.73 23.91 f (mm) 9.254 18.635 Wide Tele Contracted TTL (mm) 19.600 19.600 8.503 LB (mm) 1.677 9.308 1.530 f1 (mm) 17.356 f2 (mm) 6.914 f3 (mm) 11.292 f4 (mm) 13.911 fG5 (mm) 21.439 f5 (mm) 23.926 f6 (mm) 10.954 IH (mm) 4.000 Zoom ratio 2.014
(80) As shown in Table 21, Embodiment 5 satisfies the conditions (1) to (10).
(81)
(82) Table 21 shows various parameters of Embodiments 1, 2, 3, 4 and 5 and values corresponding to the parameters specified in the above conditions (1) to (10).
(83) TABLE-US-00021 TABLE 21 Embodiment 1 Embodiment 2 Embodiment 3 Embodiment 4 Embodiment 5 Memo f_Tele/ 2.000 2.000 1.998 2.002 2.014 Condition f_Wide (1) D12_Wide/ 19.992 11.876 15.480 19.990 19.991 Condition D12_Tele (2) d9_Wide/ 22.490 15.011 22.490 21.914 18.565 Condition d9_Tele (3) d5_Wide/ 1.189 0.691 1.021 1.038 1.036 Condition d5_Tele (4) d7_Wide/ 0.632 0.740 0.715 0.591 0.616 Condition d7_Tele (5) f1/f2 3.183 2.516 2.916 1.727 2.510 Condition (6) f3/f2 1.391 1.802 1.223 1.616 1.633 Condition (7) f4/f2 2.012 2.242 2.123 2.991 2.012 Condition (8) fG5/f2 3.435 2.622 4.903 4.452 3.101 Condition (9) f5/f6 2.196 2.542 2.024 3.011 2.184 Condition (10)
(84) It will be understood by those of ordinary skill in the art that the embodiments described above are specific embodiments realizing the present disclosure, and that in practical applications, various changes may be made thereto in form and in detail without departing from the range and scope of the disclosure.