CN107678133A - Camera optical camera lens - Google Patents

Camera optical camera lens Download PDF

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Publication number
CN107678133A
CN107678133A CN201710975227.1A CN201710975227A CN107678133A CN 107678133 A CN107678133 A CN 107678133A CN 201710975227 A CN201710975227 A CN 201710975227A CN 107678133 A CN107678133 A CN 107678133A
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CN
China
Prior art keywords
lens
camera
curvature
radius
focal length
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Granted
Application number
CN201710975227.1A
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Chinese (zh)
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CN107678133B (en
Inventor
生沼健司
张磊
王燕妹
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AAC Technologies Pte Ltd
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AAC Technologies Pte Ltd
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Priority to CN201710975227.1A priority Critical patent/CN107678133B/en
Priority to JP2017227424A priority patent/JP6393820B1/en
Priority to US15/840,015 priority patent/US10451848B2/en
Publication of CN107678133A publication Critical patent/CN107678133A/en
Application granted granted Critical
Publication of CN107678133B publication Critical patent/CN107678133B/en
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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B13/00Optical objectives specially designed for the purposes specified below
    • G02B13/001Miniaturised objectives for electronic devices, e.g. portable telephones, webcams, PDAs, small digital cameras
    • G02B13/0015Miniaturised objectives for electronic devices, e.g. portable telephones, webcams, PDAs, small digital cameras characterised by the lens design
    • G02B13/002Miniaturised objectives for electronic devices, e.g. portable telephones, webcams, PDAs, small digital cameras characterised by the lens design having at least one aspherical surface
    • G02B13/0045Miniaturised objectives for electronic devices, e.g. portable telephones, webcams, PDAs, small digital cameras characterised by the lens design having at least one aspherical surface having five or more lenses
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B13/00Optical objectives specially designed for the purposes specified below
    • G02B13/06Panoramic objectives; So-called "sky lenses" including panoramic objectives having reflecting surfaces
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B13/00Optical objectives specially designed for the purposes specified below
    • G02B13/18Optical objectives specially designed for the purposes specified below with lenses having one or more non-spherical faces, e.g. for reducing geometrical aberration

Abstract

The present invention relates to field of optical lens, discloses a kind of camera optical camera lens, and the camera optical camera lens sequentially includes from thing side to image side:First lens, the second lens, the 3rd lens, the 4th lens, the 5th lens, the 6th lens, and the 7th lens;And meet following relationship:‑3≤f1/f≤‑1,1.7≤n2≤2.2,1≤f6/f7≤10;1.2≤(R1+R2)/(R1‑R2)≤10;0.01≤d3/TTL≤0.2.While the camera optical camera lens can obtain high imaging performance, low TTL is obtained.

Description

Camera optical camera lens
Technical field
It is more particularly to a kind of to be applied to the hand-held terminals such as smart mobile phone, digital camera the present invention relates to field of optical lens Equipment, and the camera optical camera lens of the camera device such as monitor, PC camera lenses.
Background technology
In recent years, with the rise of smart mobile phone, the demand for minimizing phtographic lens increasingly improves, and general phtographic lens Sensor devices nothing more than being that photosensitive coupled apparatus (Charge Coupled Device, CCD) or Complimentary Metal-Oxide are partly led Two kinds of body device (Complementary Metal-OxideSemicondctor Sensor, CMOS Sensor), and due to half Conductor manufacturing process technology progresses greatly so that the Pixel Dimensions of sensor devices reduce, along with electronic product is good with function now And compact external form is development trend, therefore, the miniaturization pick-up lens for possessing good image quality becomes at present The main flow of in the market.To obtain preferable image quality, the camera lens that tradition is equipped on mobile phone camera uses three-chip type or four more Formula lens arrangement.Also, with the development of technology and increasing for users on diversity, sensor devices elemental area not It is disconnected to reduce, and in the case that requirement of the system to image quality improves constantly, five chips, six chips, seven chip lens arrangements by Gradually appear among lens design.The wide-angle that there is outstanding optical signature, ultra-thin and chromatic aberation fully to make corrections for active demand is taken the photograph As camera lens.
The content of the invention
In view of the above-mentioned problems, it is an object of the invention to provide a kind of camera optical camera lens, high imaging performance can obtained While, meet the requirement of ultrathin and wide angle.
In order to solve the above technical problems, embodiments of the present invention provide a kind of camera optical camera lens, the shooting light Camera lens is learned, is sequentially included from thing side to image side:First lens, the second lens, the 3rd lens, the 4th lens, the 5th lens, the 6th Lens, and the 7th lens;
The focal length of the camera optical camera lens is f, and the focal length of first lens is f1, the first lens thing side Radius of curvature is R1, and the radius of curvature of the first lens image side surface is R2, and the refractive index of second lens is n2, described Thickness is d3 on the axle of two lens, and the focal length of the 6th lens is f6, and the focal lengths of the 7th lens is f7, the shooting light The optics overall length for learning camera lens is TTL, meets following relationship:
-3≤f1/f≤-1,1.7≤n2≤2.2,1≤f6/f7≤10;
1.2≤(R1+R2)/(R1-R2)≤10;
0.01≤d3/TTL≤0.2。
Embodiment of the present invention in terms of existing technologies, by the configuration mode of said lens, using in focal length, folding Penetrate rate, the optics overall length of camera optical camera lens, have in the data of thickness and radius of curvature on axle particular kind of relationship lens it is common Coordinate, camera optical camera lens is met the requirement of ultrathin and wide angle while high imaging performance is obtained.
Preferably, first lens have a negative refracting power, its thing side in it is paraxial be convex surface, its image side surface is in paraxial Concave surface;Thickness is d1 on the axle of first lens, and meets following relationship:0.1≤d1≤0.33.
Preferably, second lens have positive refracting power, its thing side in it is paraxial be convex surface;The camera optical camera lens Focal length be f, the focal length of second lens is f2, and the radius of curvature of the second lens thing side is R3, and described second is saturating The radius of curvature of mirror image side is R4, and thickness is d3 on the axle of second lens, and meets following relationship:0.38≤f2/f ≤1.42;-2.27≤(R3+R4)/(R3-R4)≤-0.53;0.26≤d3≤1.38.
Preferably, the 3rd lens have positive refracting power, its thing side in it is paraxial be convex surface;The camera optical camera lens Focal length be f, the focal length of the 3rd lens is f3, and the radius of curvature of the 3rd lens thing side is R5, and the described 3rd is saturating The radius of curvature of mirror image side is R6, and thickness is d5 on the axle of the 3rd lens, and meets following relationship:1.29≤f3/f ≤127.96;-213.47≤(R5+R6)/(R5-R6)≤-0.61;0.15≤d5≤0.76.
Preferably, the 4th lens have a negative refracting power, its image side surface in it is paraxial be concave surface;The camera optical camera lens Focal length be f, the focal length of the 4th lens is f4, and the radius of curvature of the 4th lens thing side is R7, and the described 4th is saturating The radius of curvature of mirror image side is R8, and thickness is d7 on the axle of the 4th lens, and meets following relationship:-4.01≤f4/ f≤-1.17;0.03≤(R7+R8)/(R7-R8)≤2.24;0.10≤d7≤0.89.
Preferably, the 5th lens have positive refracting power, its thing side in it is paraxial be concave surface, its image side surface is in paraxial Convex surface;The focal length of the camera optical camera lens is f, and the focal length of the 5th lens is f5, the song of the 5th lens thing side Rate radius is R9, and the radius of curvature of the 5th lens image side surface is R10, and thickness is d9 on the axle of the 5th lens, and full Sufficient following relationship:0.26≤f5/f≤1.15;0.63≤(R9+R10)/(R9-R10)≤2.46;0.37≤d9≤1.53.
Preferably, the 6th lens have a negative refracting power, its thing side in it is paraxial be convex surface, its image side surface is in paraxial Concave surface;The focal length of the camera optical camera lens is f, and the focal length of the 6th lens is f6, the song of the 6th lens thing side Rate radius is R11, and the radius of curvature of the 6th lens image side surface is R12, and thickness is d11 on the axle of the 6th lens, and Meet following relationship:-10.48≤f6/f≤-1.49;0.85≤(R11+R12)/(R11-R12)≤7.24;0.15≤d11 ≤0.86。
Preferably, the 7th lens have a negative refracting power, its thing side in it is paraxial be convex surface, its image side surface is in paraxial Concave surface;The focal length of the camera optical camera lens is f, and the focal length of the 7th lens is f7, the song of the 7th lens thing side Rate radius is R13, and the radius of curvature of the 7th lens image side surface is R14, and thickness is d13 on the axle of the 7th lens, and Meet following relationship:0.88≤(R13+R14)/(R13-R14)≤7.07;-3.08≤f7/f≤-0.52;0.12≤d13≤ 0.84。
Preferably, the optics overall length TTL of the camera optical camera lens is less than or equal to 6.66 millimeters.
Preferably, the aperture F numbers of the camera optical camera lens are less than or equal to 2.11.
The beneficial effects of the present invention are:Outstanding optical characteristics is had according to the camera optical camera lens of the present invention, it is ultra-thin, Wide-angle and chromatic aberation fully makes corrections, be particularly suitable for use in the cell-phone camera mirror being made up of photographing elements such as CCD, CMOS of high pixel Head assembly and WEB pick-up lens.
Brief description of the drawings
Fig. 1 is the structural representation of the camera optical camera lens of first embodiment of the invention;
Fig. 2 is the axial aberration schematic diagram of camera optical camera lens shown in Fig. 1;
Fig. 3 is the ratio chromatism, schematic diagram of camera optical camera lens shown in Fig. 1;
Fig. 4 is the curvature of field and distortion schematic diagram of camera optical camera lens shown in Fig. 1;
Fig. 5 is the structural representation of the camera optical camera lens of second embodiment of the invention;
Fig. 6 is the axial aberration schematic diagram of camera optical camera lens shown in Fig. 5;
Fig. 7 is the ratio chromatism, schematic diagram of camera optical camera lens shown in Fig. 5;
Fig. 8 is the curvature of field and distortion schematic diagram of camera optical camera lens shown in Fig. 5;
Fig. 9 is the structural representation of the camera optical camera lens of third embodiment of the invention;
Figure 10 is the axial aberration schematic diagram of camera optical camera lens shown in Fig. 9;
Figure 11 is the ratio chromatism, schematic diagram of camera optical camera lens shown in Fig. 9;
Figure 12 is the curvature of field and distortion schematic diagram of camera optical camera lens shown in Fig. 9.
Embodiment
To make the object, technical solutions and advantages of the present invention clearer, each reality below in conjunction with accompanying drawing to the present invention The mode of applying is explained in detail.However, it will be understood by those skilled in the art that in each embodiment of the present invention, In order that reader more fully understands the present invention and proposes many ins and outs.But even if without these ins and outs and base Many variations and modification in following embodiment, can also realize claimed technical solution of the invention.
(first embodiment)
Refer to the attached drawing, the invention provides a kind of camera optical camera lens 10.Fig. 1 show first embodiment of the invention Camera optical camera lens 10, the camera optical camera lens 10 include seven lens.Specifically, the camera optical camera lens 10, by thing side Sequentially include to image side:Aperture S1, the first lens L1, the second lens L2, the 3rd lens L3, the 4th lens L4, the 5th lens L5, 6th lens L6 and the 7th lens L7.Optical filtering piece (filter) GF etc. is may be provided between 7th lens L7 and image planes Si Optical element.First lens L1 is plastic material, and the second lens L2 is glass material, and the 3rd lens L3 is plastic material, the 4th Lens L4 is plastic material, and the 5th lens L5 is plastic material, and the 6th lens L6 is plastic material, and the 7th lens L7 is plastics material Matter.
Here, the focal length for defining overall camera optical camera lens 10 is f, the focal lengths of first lens is f1, described first The radius of curvature of lens thing side is R1, and the radius of curvature of the first lens image side surface is R2, the refraction of second lens Rate is n2, and thickness is d3 on the axle of second lens, and the focal length of the 6th lens is f6, and the focal length of the 7th lens is F7, the optics overall length of the camera optical camera lens is TTL.The camera optical camera lens 10 meets following relationship:-3≤f1/f ≤-1,1.7≤n2≤2.2,1≤f6/f7≤10;1.2≤(R1+R2)/(R1-R2)≤10;0.01≤d3/TTL≤0.2.
- 3≤f1/f≤- 1 is, it is specified that the first lens L1 negative refracting power.During more than upper limit setting, although being advantageous to mirror Head develops to ultrathin, but the first lens L1 negative refracting power can be too strong, it is difficult to make corrections aberration the problems such as, while be unfavorable for mirror Head develops to wide angle.On the contrary, when exceeding lower limit setting, the negative refracting power of the first lens can become weak, and camera lens is difficult to super Thinning develops.Preferably, -3≤f1/f≤- 1.1 are met
1.7≤n2≤2.2 are more beneficial for developing to ultrathin within this range, it is specified that the second lens L2 refractive index, Simultaneously beneficial to amendment aberration.Preferably, 1.7≤n2≤2.0 are met.
1≤f6/f7≤10 can have, it is specified that the 6th lens L6 focal length f6 and the 7th lens L7 focal length f7 ratio Effect reduces the susceptibility of optical imaging lens group, further lifts image quality.Preferably, 1.4≤f6/f7≤8.5 are met.
1.2≤(R1+R2)/(R1-R2)≤10 are, it is specified that the first lens L1 shape, when outside scope, with to ultra-thin Wide angle develops, it is difficult to the problems such as drawing the aberration at angle outside the axle that makes corrections.Preferably, 1.2≤(R1+R2)/(R1-R2)≤7.5 are met.
0.01≤d3/TTL≤0.2 is, it is specified that the optics of thickness and camera optical camera lens 10 is total on the second lens L2 axle Long TTL ratio, is advantageously implemented ultrathin.Preferably, 0.05≤d7/TTL≤0.18 is met.
When the focal length of camera optical camera lens 10 of the present invention, the focal length of each lens, the refractive index of associated lens, shooting light Learn the optics overall length of camera lens, when thickness and radius of curvature meet above-mentioned relation formula on axle, can have videography optical lens first 10 High-performance, and meet low TTL design requirement.
In present embodiment, the first lens L1 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is negative refracting power;The focal length of overall camera optical camera lens is f, the first lens L1 focal lengths f1, thickness d 1 on the first lens L1 axle Meet following relationship:0.1≤d1≤0.33, it is advantageously implemented ultrathin.Preferably, 0.16≤d1≤0.26.
In present embodiment, the second lens L2 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is positive refracting power;The focal length of overall camera optical camera lens 10 is f, the second lens L2 focal lengths f2, the song of the second lens L2 things side Rate radius R3, the radius of curvature R 4 of the second lens L2 image side surfaces, and thickness d 3 meets following relationship on the second lens L2 axle Formula:0.38≤f2/f≤1.42, by by the control of the second lens L2 positive light coke in zone of reasonableness, with reasonable and effective Horizon Weighing apparatus curvature of field amount of spherical aberration and system as caused by the first lens L1 with negative power;-2.27≤(R3+R4)/(R3-R4) ≤ -0.53, it is specified that the second lens L2 shape, when outside scope, as camera lens develops to ultra-thin wide angle, it is difficult to which make corrections axle Colouring Aberration Problem;0.26≤d3≤1.38, it is advantageously implemented ultrathin.Preferably, 0.6≤f2/f≤1.14;-1.42≤ (R3+R4)/(R3-R4)≤-0.66;0.42≤d3≤1.1.
In present embodiment, the 3rd lens L3 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is positive refracting power;The focal length of overall camera optical camera lens 10 is f, the 3rd lens L3 focal length f3, the song of the 3rd lens L3 things side Rate radius R5, the radius of curvature R 6 of the 3rd lens L3 image side surfaces, and thickness d 5 meets following relationship on the 3rd lens L3 axle Formula:1.29≤f3/f≤127.96, be advantageous to the ability that system obtains the good balance curvature of field, effectively to be lifted as matter;- 213.47≤(R5+R6)/(R5-R6)≤- 0.61, can effectively control the 3rd lens L3 shape, be advantageous to the 3rd lens L3 into Type, and avoid causing to be molded the generation of bad and stress because the 3rd lens L3 surface curvature is excessive;0.15≤d5≤0.76, have Beneficial to realizing ultrathin.Preferably, 2.06≤f3/f≤102.37;-133.42≤(R5+R6)/(R5-R6)≤-0.76;0.24 ≤d5≤0.61。
In present embodiment, the 4th lens L4 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is negative refracting power;The focal length of overall camera optical camera lens 10 is f, the 4th lens L4 focal length f4, the song of the 4th lens L4 things side Rate radius R7, the radius of curvature R 8 of the 4th lens L4 image side surfaces, and thickness d 7 meets following relationship on the 4th lens L4 axle Formula:- 4.01≤f4/f≤- 1.17, pass through the reasonable distribution of focal power so that system has preferable image quality and relatively low Sensitiveness;0.03≤(R7+R8)/(R7-R8)≤2.24) as defined in be the 4th lens L4 shape, when outside scope, with The development of ultra-thin wide angle, it is difficult to the problems such as drawing the aberration at angle outside the axle that makes corrections;0.1≤d7≤0.89, it is advantageously implemented ultrathin. Preferably, -2.51≤f4/f≤- 1.47;0.05≤(R7+R8)/(R7-R8)≤1.79;0.16≤d7≤0.72.
In present embodiment, the 5th lens L5 thing side is concave surface in paraxial place, and image side surface is convex surface in paraxial place, tool There is positive refracting power;The focal length of overall camera optical camera lens 10 is f, the 5th lens L5 focal length f5, the song of the 5th lens L5 things side Rate radius R9, the radius of curvature R 10 of the 5th lens L5 image side surfaces, and thickness d 9 meets following relationship on the 5th lens L5 axle Formula:0.26≤f5/f≤1.15, the light angle of pick-up lens is gentle can effectively to be caused to limiting for the 5th lens L5, is reduced Tolerance sensitivities;0.63≤(R9+R10)/(R9-R10)≤2.46, it is specified that be the 5th lens L5 shape, in condition and range When outer, as ultra-thin wide angle develops, it is difficult to the problems such as drawing the aberration at angle outside the axle that makes corrections;0.37≤d9≤1.53, be advantageous to reality Existing ultrathin.Preferably, 0.42≤f5/f≤0.92;1.01≤(R9+R10)/(R9-R10)≤1.97;0.59≤d9≤ 1.22。
In present embodiment, the 6th lens L6 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is negative refracting power;The focal length of overall camera optical camera lens 10 is f, the 6th lens L6 focal length f6, the song of the 6th lens L6 things side Rate radius R11, the radius of curvature R 12 of the 6th lens L6 image side surfaces, and thickness d 11 meets following pass on the 6th lens L6 axle It is formula:- 10.48≤f6/f≤- 1.49, pass through the reasonable distribution of focal power so that system have preferable image quality and compared with Low sensitiveness;0.85≤(R11+R12)/(R11-R12)≤7.24, it is specified that be the 6th lens L6 shape, in condition model When enclosing outer, as ultra-thin wide angle develops, it is difficult to the problems such as drawing the aberration at angle outside the axle that makes corrections;0.15≤d11≤0.86, be advantageous to Realize ultrathin.Preferably, -6.55≤f6/f≤- 1.86;1.36≤(R11+R12)/(R11-R12)≤5.79;0.24≤ d11≤0.69。
In present embodiment, the 7th lens L7 thing side is convex surface in paraxial place, and image side surface is concave surface in paraxial place, tool There is negative refracting power;The focal length of overall camera optical camera lens 10 is f, and the radius of curvature of the 7th lens L7 things side is R13, institute The radius of curvature for stating the 7th lens image side surface is R14, the 7th lens L7 focal length f7, and thickness d 13 on the 7th lens L7 axle Meet following relationship:0.88≤(R13+R14)/(R13-R14)≤7.07, it is specified that be the 7th lens L7 shape, in bar When outside part scope, as ultra-thin wide angle develops, it is difficult to the problems such as drawing the aberration at angle outside the axle that makes corrections;-3.08≤f7/f≤- 0.52, pass through the reasonable distribution of focal power so that system has preferable image quality and relatively low sensitiveness;0.12≤d13 ≤ 0.84, it is advantageously implemented ultrathin.Preferably, -1.93≤f7/f≤- 0.64;1.42≤(R13+R14)/(R13-R14)≤ 5.65;0.2≤d13≤0.67.
In present embodiment, the optics overall length TTL of camera optical camera lens 10 is less than or equal to 6.66 millimeters, is advantageously implemented Ultrathin.Preferably, the optics overall length TTL of camera optical camera lens 10 is less than or equal to 6.35.
In present embodiment, the aperture F numbers of camera optical camera lens 10 are less than or equal to 2.11.Large aperture, imaging performance are good. Preferably, the aperture F numbers of camera optical camera lens 10 are less than or equal to 2.07.
It is so designed that, enables to the optics overall length TTL of overall camera optical camera lens 10 to shorten as far as possible, maintain miniaturization Characteristic.
The camera optical camera lens 10 of the present invention will be illustrated with example below.The described following institute of symbol in each example Show.The unit of distance, radius and center thickness is mm.
TTL:Optical length (distance on the 1st lens L1 thing side to the axle of imaging surface);
Preferably, the point of inflexion and/or stationary point are also provided with the thing side of the lens and/or image side surface, with full The imaging demand of sufficient high-quality, specifically can embodiment, join lower described.
Shown below according to first embodiment of the invention camera optical camera lens 10 design data, focal length, distance, The unit of radius and center thickness is mm.
Table 1, table 2 show the design data of the camera optical camera lens 10 of first embodiment of the invention.
【Table 1】
Wherein, the implication of each symbol is as follows.
S1:Aperture;
R:Radius of curvature centered on when the radius of curvature of optical surface, lens;
R1:The radius of curvature of first lens L1 thing side;
R2:The radius of curvature of first lens L1 image side surface;
R3:The radius of curvature of second lens L2 thing side;
R4:The radius of curvature of second lens L2 image side surface;
R5:The radius of curvature of 3rd lens L3 thing side;
R6:The radius of curvature of 3rd lens L3 image side surface;
R7:The radius of curvature of 4th lens L4 thing side;
R8:The radius of curvature of 4th lens L4 image side surface;
R9:The radius of curvature of 5th lens L5 thing side;
R10:The radius of curvature of 5th lens L5 image side surface;
R11:The radius of curvature of 6th lens L6 thing side;
R12:The radius of curvature of 6th lens L6 image side surface;
R13:The radius of curvature of 7th lens L7 thing side;
R14:The radius of curvature of 7th lens L7 image side surface;
R15:The radius of curvature of optical filtering piece GF thing side;
R16:The radius of curvature of optical filtering piece GF image side surface;
d:Distance on axle on the axle of lens between thickness and lens;
d0:Aperture S1 is to distance on the axle of the first lens L1 thing side;
d1:Thickness on first lens L1 axle;
d2:First lens L1 image side surface is to distance on the axle of the second lens L2 thing side;
d3:Thickness on second lens L2 axle;
d4:Second lens L2 image side surface is to distance on the axle of the 3rd lens L3 thing side;
d5:Thickness on 3rd lens L3 axle;
d6:3rd lens L3 image side surface is to distance on the axle of the 4th lens L4 thing side;
d7:Thickness on 4th lens L4 axle;
d8:4th lens L4 image side surface is to distance on the axle of the 5th lens L5 thing side;
d9:Thickness on 5th lens L5 axle;
d10:5th lens L5 image side surface is to distance on the axle of the 6th lens L6 thing side;
d11:Thickness on 6th lens L6 axle;
d12:6th lens L6 image side surface is to distance on the axle of the 7th lens L7 thing side;
d13:Thickness on 7th lens L7 axle;
d14:7th lens L7 image side surface is to distance on the axle of optical filtering piece GF thing side;
d15:Thickness on optical filtering piece GF axle;
d16:Optical filtering piece GF image side surface is to distance on the axle of image planes;
nd:The refractive index of d lines;
nd1:The refractive index of first lens L1 d lines;
nd2:The refractive index of second lens L2 d lines;
nd3:The refractive index of 3rd lens L3 d lines;
nd4:The refractive index of 4th lens L4 d lines;
nd5:The refractive index of 5th lens L5 d lines;
nd6:The refractive index of 6th lens L6 d lines;
nd7:The refractive index of 7th lens L7 d lines;
ndg:The refractive index of optical filtering piece GF d lines;
vd:Abbe number;
v1:First lens L1 Abbe number;
v2:Second lens L2 Abbe number;
v3:3rd lens L3 Abbe number;
v4:4th lens L4 Abbe number;
v5:5th lens L5 Abbe number;
v6:6th lens L6 Abbe number;
v7:7th lens L7 Abbe number;
vg:Optical filtering piece GF Abbe number.
Table 2 shows the aspherical surface data of each lens in the camera optical camera lens 10 of embodiment of the present invention 1.
【Table 2】
Wherein, k is circular cone coefficient, and A4, A6, A8, A10, A12, A14, A16 are asphericity coefficients.
IH:Image height
Y=(x2/R)/[1+ { 1- (k+1) (x2/R2) } 1/2]+A4x4+A6x6+A8x8+A10x10+A12x12+A14x14 +A16x16 (1)
For convenience, each lens face is aspherical using aspherical shown in above-mentioned formula (1).But this hair The bright aspherical polynomial form for being not limited to the formula (1) expression.
Table 3, table 4 show that the point of inflexion of each lens and stationary point are set in the camera optical camera lens 10 of embodiment of the present invention 1 Count.Wherein, R1, R2 represent the first lens L1 thing side and image side surface respectively, and R3, R4 represent the second lens L2's respectively Thing side and image side surface, R5, R6 represent the 3rd lens L3 thing side and image side surface respectively, and R7, R8 represent the 4th lens respectively L4 thing side and image side surface, R9, R10 represent the 5th lens L5 thing side and image side surface respectively, and R11, R12 represent respectively Six lens L6 thing side and image side surface, R13, R14 represent the 7th lens L7 thing side and image side surface respectively." point of inflexion position Put " field corresponding data be each lens surface set by the point of inflexion to the optical axis of camera optical camera lens 10 vertical range." stationary point Position " field corresponding data is vertical range of the stationary point set by each lens surface to the optical axis of camera optical camera lens 10.
【Table 3】
Point of inflexion number Point of inflexion position 1 Point of inflexion position 2 Point of inflexion position 3
R1 1 0.675
R2 2 0.705 0.805
R3 3 0.725 1.005
R4 1 0.175
R5 0
R6 0
R7 2 0.105 1.125
R8 2 0.435 1.225
R9 1 1.085
R10 1 1.225
R11 3 0.775 1.565 1.965
R12 1 2.285
R13 0
R14 1 1.015
【Table 4】
Stationary point number Stationary point position 1 Stationary point position 2
R1 0
R2 0
R3 0
R4 1 0.285
R5 0
R6 0
R7 1 0.165
R8 2 0.785 1.415
R9 1 1.445
R10 0
R11 0
R12 0
R13 0
R14 0
Fig. 2, Fig. 3 respectively illustrate shooting light of light of the wavelength for 470nm, 555nm and 650nm Jing Guo first embodiment Learn axial aberration and ratio chromatism, schematic diagram after camera lens 10.Fig. 4 then shows that the light that wavelength is 555nm is real by first The curvature of field after the camera optical camera lens 10 of mode and distortion schematic diagram are applied, Fig. 4 curvature of field S is the curvature of field in sagitta of arc direction, and T is meridian The curvature of field in direction.
The table 13 occurred afterwards is shown in each example 1,2,3 in various numerical value and conditional corresponding to defined parameter Value.
As shown in table 13, first embodiment meets each conditional.
In the present embodiment, the Entry pupil diameters of the camera optical camera lens are 1.952mm, and full filed image height is 2.994mm, the angle of visual field of diagonal are 74.00 °, wide-angle, ultra-thin, and on its axle, the outer chromatic aberation of axle fully makes corrections, and have Outstanding optical signature.
(second embodiment)
Second embodiment is essentially identical with first embodiment, and symbol implication is identical with first embodiment, below only List difference.
Table 5, table 6 show the design data of the camera optical camera lens 20 of second embodiment of the invention.
【Table 5】
Table 6 shows the aspherical surface data of each lens in the camera optical camera lens 20 of second embodiment of the invention.
【Table 6】
Table 7, table 8 show the point of inflexion of each lens and stationary point in the camera optical camera lens 20 of second embodiment of the invention Design data.
【Table 7】
Point of inflexion number Point of inflexion position 1 Point of inflexion position 2 Point of inflexion position 3
R1 1 0.565
R2 2 0.665 0.855
R3 1 0.6985
R4 1 0.205
R5 0
R6 0
R7 2 0.155 1.145
R8 2 0.435 1.205
R9 1 0.905
R10 1 1.135
R11 3 0.645 1.415 1.915
R12 1 2.085
R13 0
R14 2 1.165 1.905
【Table 8】
Stationary point number Stationary point position 1 Stationary point position 2
R1 0
R2 0
R3 0
R4 1 0.335
R5 0
R6 0
R7 1 0.265
R8 2 0.785 1.395
R9 1 1.275
R10 0
R11 2 1.255 1.535
R12 0
R13 0
R14 0
Fig. 6, Fig. 7 respectively illustrate shooting light of light of the wavelength for 470nm, 555nm and 650nm Jing Guo second embodiment Learn axial aberration and ratio chromatism, schematic diagram after camera lens 20.Fig. 8 then shows that the light that wavelength is 555nm is real by second Apply the curvature of field after the camera optical camera lens 20 of mode and distortion schematic diagram.
As shown in table 13, second embodiment meets each conditional.
In the present embodiment, the Entry pupil diameters of the camera optical camera lens are 1.963mm, and full filed image height is 2.994mm, the angle of visual field of diagonal are 74.33 °, wide-angle, ultra-thin, and on its axle, the outer chromatic aberation of axle fully makes corrections, and have Outstanding optical signature.
(the 3rd embodiment)
3rd embodiment and first embodiment are essentially identical, and symbol implication is identical with first embodiment, below only List difference.
Table 9, table 10 show the design data of the camera optical camera lens 30 of third embodiment of the invention.
【Table 9】
Table 10 shows the aspherical surface data of each lens in the camera optical camera lens 30 of third embodiment of the invention.
【Table 10】
Table 11, table 12 show the point of inflexion of each lens in the camera optical camera lens 30 of third embodiment of the invention and stayed Point design data.
【Table 11】
Point of inflexion number Point of inflexion position 1 Point of inflexion position 2
R1 2 0.395 0.795
R2 0
R3 1 0.705
R4 0
R5 0
R6 2 0.105 0.925
R7 0
R8 2 0.585 0.985
R9 1 0.585
R10 2 0.895 1.535
R11 0
R12 1 1.335
R13 1 0.975
R14 1 0.925
【Table 12】
Stationary point number Stationary point position 1 Stationary point position 2
R1 0
R2 0
R3 0
R4 0
R5 0
R6 2 0.175 1.165
R7 0
R8 0
R9 1 1.025
R10 0
R11 0
R12 1 2.045
R13 1 1.885
R14 1 2.295
Figure 10, Figure 11 respectively illustrate shooting of light of the wavelength for 470nm, 455nm and 650nm Jing Guo the 3rd embodiment Axial aberration and ratio chromatism, schematic diagram after optical lens 30.Figure 12 then shows that the light that wavelength is 555nm passes through the 3rd The curvature of field and distortion schematic diagram after the camera optical camera lens 30 of embodiment.
Table 13 below lists the numerical value that each conditional is corresponded in present embodiment according to above-mentioned condition formula.Obviously, this reality The imaging optical system for applying mode meets above-mentioned conditional.
In the present embodiment, the Entry pupil diameters of the camera optical camera lens are 1.928mm, and full filed image height is 2.994mm, the angle of visual field of diagonal are 73.97 °, wide-angle, ultra-thin, and on its axle, the outer chromatic aberation of axle fully makes corrections, and have Outstanding optical signature.
【Table 13】
Parameter and conditional Embodiment 1 Embodiment 2 Embodiment 3
f 4.006 4.024 3.952
f1 -12.018 -8.058 -4.952
f2 3.798 3.503 2.980
f3 341.733 88.639 10.189
f4 -7.415 -8.074 -6.958
f5 2.123 2.304 3.035
f6 -20.991 -8.975 -18.789
f7 -3.096 -5.129 -6.091
f6/f7 6.781 1.750 3.085
(R1+R2)/(R1-R2) 4.964 2.626 1.200
(R3+R4)/(R3-R4) -1.101 -1.135 -0.796
(R5+R6)/(R5-R6) -106.733 -23.341 -0.915
(R7+R8)/(R7-R8) 1.174 1.495 0.065
(R9+R10)/(R9-R10) 1.263 1.257 1.638
(R11+R12)/(R11-R12) 3.726 1.702 4.828
(R13+R14)/(R13-R14) 1.769 2.494 4.712
f1/f -3.000 -2.002 -1.253
f2/f 0.948 0.871 0.754
f3/f 85.305 22.027 2.578
f4/f -1.851 -2.006 -1.761
f5/f 0.530 0.573 0.768
f6/f -5.240 -2.230 -4.754
f7/f -0.773 -1.274 -1.541
d1 0.220 0.200 0.200
d3 0.552 0.525 0.918
d5 0.295 0.317 0.510
d7 0.597 0.500 0.200
d9 1.019 0.916 0.734
d11 0.575 0.440 0.296
d13 0.244 0.557 0.302
Fno 2.052 2.050 2.050
TTL 5.995 6.050 5.988
d3/TTL 0.092 0.087 0.153
n1 1.6713 1.6713 1.6713
n2 1.7432 1.8062 1.8610
n3 1.6713 1.6509 1.6355
n4 1.6713 1.6713 1.6713
n5 1.5352 1.5352 1.5352
n6 1.5352 1.5352 1.5352
n7 1.5352 1.5352 1.5352
It will be understood by those skilled in the art that the respective embodiments described above are to realize the specific embodiment party of the present invention Formula, and in actual applications, can to it, various changes can be made in the form and details, without departing from the spirit and model of the present invention Enclose.

Claims (10)

1. a kind of camera optical camera lens, it is characterised in that the camera optical camera lens, sequentially included from thing side to image side:First Lens, the second lens, the 3rd lens, the 4th lens, the 5th lens, the 6th lens, and the 7th lens;
The focal length of the camera optical camera lens is f, and the focal length of first lens is f1, the curvature of the first lens thing side Radius is R1, and the radius of curvature of the first lens image side surface is R2, and the refractive index of second lens is n2, and described second is saturating Thickness is d3 on the axle of mirror, and the focal length of the 6th lens is f6, and the focal lengths of the 7th lens is f7, the videography optical lens The optics overall length of head is TTL, meets following relationship:
-3≤f1/f≤-1,1.7≤n2≤2.2,1≤f6/f7≤10;
1.2≤(R1+R2)/(R1-R2)≤10;
0.01≤d3/TTL≤0.2。
2. camera optical camera lens according to claim 1, it is characterised in that first lens have negative refracting power, its Thing side in it is paraxial be convex surface, its image side surface in it is paraxial be concave surface;
Thickness is d1 on the axle of first lens, and meets following relationship:
0.1≤d1≤0.33。
3. camera optical camera lens according to claim 1, it is characterised in that second lens have positive refracting power, its Thing side in it is paraxial be convex surface;
The focal length of the camera optical camera lens is f, and the focal length of second lens is f2, the curvature of the second lens thing side Radius is R3, and the radius of curvature of the second lens image side surface is R4, and thickness is d3 on the axle of second lens, and under meeting Row relational expression:
0.38≤f2/f≤1.42;
-2.27≤(R3+R4)/(R3-R4)≤-0.53;
0.26≤d3≤1.38。
4. camera optical camera lens according to claim 1, it is characterised in that the 3rd lens have positive refracting power, its Thing side in it is paraxial be convex surface;
The focal length of the camera optical camera lens is f, and the focal length of the 3rd lens is f3, the curvature of the 3rd lens thing side Radius is R5, and the radius of curvature of the 3rd lens image side surface is R6, and thickness is d5 on the axle of the 3rd lens, and under satisfaction Row relational expression:
1.29≤f3/f≤127.96;
-213.47≤(R5+R6)/(R5-R6)≤-0.61;
0.15≤d5≤0.76。
5. camera optical camera lens according to claim 1, it is characterised in that the 4th lens have negative refracting power, its Image side surface in it is paraxial be concave surface;
The focal length of the camera optical camera lens is f, and the focal length of the 4th lens is f4, the curvature of the 4th lens thing side Radius is R7, and the radius of curvature of the 4th lens image side surface is R8, and thickness is d7 on the axle of the 4th lens, and under satisfaction Row relational expression:
-4.01≤f4/f≤-1.17;
0.03≤(R7+R8)/(R7-R8)≤2.24;
0.10≤d7≤0.89。
6. camera optical camera lens according to claim 1, it is characterised in that the 5th lens have positive refracting power, its Thing side in it is paraxial be concave surface, its image side surface in it is paraxial be convex surface;
The focal length of the camera optical camera lens is f, and the focal length of the 5th lens is f5, the curvature of the 5th lens thing side Radius is R9, and the radius of curvature of the 5th lens image side surface is R10, and thickness is d9 on the axle of the 5th lens, and is met Following relationship:
0.26≤f5/f≤1.15;
0.63≤(R9+R10)/(R9-R10)≤2.46;
0.37≤d9≤1.53。
7. camera optical camera lens according to claim 1, it is characterised in that the 6th lens have negative refracting power, its Thing side in it is paraxial be convex surface, its image side surface in it is paraxial be concave surface;
The focal length of the camera optical camera lens is f, and the focal length of the 6th lens is f6, the curvature of the 6th lens thing side Radius is R11, and the radius of curvature of the 6th lens image side surface is R12, and thickness is d11 on the axle of the 6th lens, and full Sufficient following relationship:
-10.48≤f6/f≤-1.49;
0.85≤(R11+R12)/(R11-R12)≤7.24;
0.15≤d11≤0.86。
8. camera optical camera lens according to claim 1, it is characterised in that the 7th lens have negative refracting power, its Thing side in it is paraxial be convex surface, its image side surface in it is paraxial be concave surface;
The focal length of the camera optical camera lens is f, and the focal length of the 7th lens is f7, the curvature of the 7th lens thing side Radius is R13, and the radius of curvature of the 7th lens image side surface is R14, and thickness is d13 on the axle of the 7th lens, and full Sufficient following relationship:
0.88≤(R13+R14)/(R13-R14)≤7.07;
-3.08≤f7/f≤-0.52;
0.12≤d13≤0.84。
9. camera optical camera lens according to claim 1, it is characterised in that the optics overall length of the camera optical camera lens TTL is less than or equal to 6.66 millimeters.
10. camera optical camera lens according to claim 1, it is characterised in that the aperture F numbers of the camera optical camera lens are small In or equal to 2.11.
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WO2021128185A1 (en) * 2019-12-26 2021-07-01 诚瑞光学(常州)股份有限公司 Camera optical lens
WO2021128120A1 (en) * 2019-12-26 2021-07-01 诚瑞光学(常州)股份有限公司 Photographic optical lens
US11686922B2 (en) 2020-02-14 2023-06-27 Largan Precision Co., Ltd. Imaging optical lens assembly, image capturing unit and electronic device
US11719911B2 (en) 2020-02-14 2023-08-08 Largan Precision Co., Ltd. Imaging optical lens assembly, image capturing unit and electronic device

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JP2003140042A (en) * 2001-11-02 2003-05-14 West Electric Co Ltd Zoom lens
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WO2021128185A1 (en) * 2019-12-26 2021-07-01 诚瑞光学(常州)股份有限公司 Camera optical lens
WO2021128120A1 (en) * 2019-12-26 2021-07-01 诚瑞光学(常州)股份有限公司 Photographic optical lens
US11686922B2 (en) 2020-02-14 2023-06-27 Largan Precision Co., Ltd. Imaging optical lens assembly, image capturing unit and electronic device
US11719911B2 (en) 2020-02-14 2023-08-08 Largan Precision Co., Ltd. Imaging optical lens assembly, image capturing unit and electronic device

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