Camera shooting optical lens
A technology of optical lens and optical total length, applied in the field of optical lens, can solve the problems of unreasonable setting of large aperture, ultra-thin, wide-angle, focal power, lens distance and lens shape, etc.
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no. 1 approach )
[0033] Referring to the accompanying drawings, the present invention provides an imaging optical lens 10 . figure 1 Shown is the imaging optical lens 10 of the first embodiment of the present invention, and the imaging optical lens 10 includes nine lenses. Specifically, the imaging optical lens 10, from the object side to the image side in sequence: aperture S1, first lens L1, second lens L2, third lens L3, fourth lens L4, fifth lens L5, sixth lens Lens L6, seventh lens L7, eighth lens L8, and ninth lens L9. An optical element such as an optical filter (filter) GF may be disposed between the ninth lens L9 and the image plane Si.
[0034]In this embodiment, the first lens L1 has positive refractive power, the second lens L2 has negative refractive power, the third lens L3 has positive refractive power, the fourth lens L4 has negative refractive power, and the fifth lens L5 has negative refractive power , the sixth lens L6 has positive refractive power, the seventh lens L7 has...
no. 2 approach )
[0168] Figure 5 Shown is a schematic structural view of the imaging optical lens 20 according to the second embodiment of the present invention. The second embodiment is basically the same as the first embodiment, and the meanings of the symbols are the same as those of the first embodiment. Only the differences are listed below.
[0169] In this embodiment, the image side of the first lens L1 is concave at the paraxial position, the image side of the third lens L3 is concave at the paraxial position, the object side of the ninth lens L9 is convex at the paraxial position, and the sixth lens L9 is convex at the paraxial position. L6 has negative refractive power, and seventh lens L7 has positive refractive power.
[0170] Table 5 and Table 6 show design data of the imaging optical lens 20 according to the second embodiment of the present invention.
[0171] 【table 5】
[0172]
[0173] Table 6 shows the aspheric surface data of each lens in the imaging optical lens 20 acc...
no. 3 approach )
[0185] Figure 9 Shown is a schematic structural diagram of the imaging optical lens 30 of the third embodiment of the present invention. The third embodiment is basically the same as the first embodiment, and the meanings of symbols are the same as those of the first embodiment. Only the differences are listed below.
[0186] In this embodiment, the image side of the first lens L1 is concave at the paraxial position, the image side of the third lens L3 is concave at the paraxial position, the object side of the fifth lens L5 is convex at the paraxial position, and the ninth lens L3 is convex at the paraxial position. The object side of lens L9 is convex at the paraxial position, the fourth lens L4 has positive refractive power, the fifth lens L5 has positive refractive power, the sixth lens L6 has negative refractive power, and the seventh lens L7 has positive refractive power.
[0187] Table 9 and Table 10 show design data of the imaging optical lens 30 according to the thir...
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