CN106873130A - A kind of parsing imaging lens group and imaging system high - Google Patents

A kind of parsing imaging lens group and imaging system high Download PDF

Info

Publication number
CN106873130A
CN106873130A CN201710170890.4A CN201710170890A CN106873130A CN 106873130 A CN106873130 A CN 106873130A CN 201710170890 A CN201710170890 A CN 201710170890A CN 106873130 A CN106873130 A CN 106873130A
Authority
CN
China
Prior art keywords
lens
optical surface
side optical
thing side
image side
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201710170890.4A
Other languages
Chinese (zh)
Inventor
马庆鸿
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huizhou City Star Poly Optical Co Ltd
Original Assignee
Huizhou City Star Poly Optical Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huizhou City Star Poly Optical Co Ltd filed Critical Huizhou City Star Poly Optical Co Ltd
Priority to CN201710170890.4A priority Critical patent/CN106873130A/en
Publication of CN106873130A publication Critical patent/CN106873130A/en
Pending legal-status Critical Current

Links

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
    • G02B13/18Optical objectives specially designed for the purposes specified below with lenses having one or more non-spherical faces, e.g. for reducing geometrical aberration

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Lenses (AREA)

Abstract

The present invention relates to the technical field of optical imagery, there is provided a kind of parsing imaging lens group high.It is included along five, thing side to image side direction successively interval setting lens, each lens are set into different refractive powers and male and fomale(M&F), and the thing side optical surface and image side optical surface of the 5th lens are set to have an at least point of inflexion, the ratio between the thickness value on optical axis of first lens and thickness value on optical axis of second lens are more than or equal to 2.So, the parsing imaging lens group high that the present invention is provided, set by the point of inflexion for changing the 5th lens, so that five lens are successively to separately setting, so as to the high-quality for realizing optical lens group is imaged, ensure that simultaneously the optical lens simple structure is compact small and thinner thickness, and with good market prospects.

Description

A kind of parsing imaging lens group and imaging system high
Technical field
The present invention relates to the technical field of optical imagery, it is more particularly, to a kind of parsing imaging lens group high and imaging System.
Background technology
At present, with electronic product gradually lightness and miniaturization development trend, the parts inside electronic product It is required to make smaller size, to meet the demand in market, and the also inevitable trend miniaturization of the size of imaging system.Due to half The progress of conductor technology, the elemental area for promoting photosensory assembly diminishes, and what imaging system certainly will be toward pixel quality high will Seek development.
Because tradition is carried more than the optical imaging system of electronic product using based on three-chip type quadruple lenses structure, but Such optical imaging system structure cannot meet the imaging system of higher order.Although making further progress general tradition at present The optical system of five chips, but its lens refractive power configuration, easily produce larger aberration, and be also unfavorable for overall optics The adjustment of system sensitivity, and then influence the image quality of optical system.
Therefore, design and develop a small-sized slimming and with the imaging system of image quality high, be necessary in fact.
The content of the invention
In consideration of it, the present invention provides a kind of parsing imaging lens group and imaging system high, deficiency of the prior art is solved, Miniaturization, the slimming of optical lens group are realized, and has good image quality simultaneously.
In order to solve the above technical problems, the technical solution adopted in the present invention is:
A kind of parsing imaging lens group high, the first lens, the second lens, the 3rd are sequentially arranged at intervals with along thing side to image side direction Lens, the 4th lens and the 5th lens;
Each lens are respectively provided with the thing side optical surface and image side optical surface being oppositely arranged;
The thing side optical surface and image side optical surface of each lens, are aspherical;
First lens have positive refractive power, and the thing side optical surface of first lens is convex surface, the picture of first lens Side optical surface is convex surface;
Second lens have negative refractive power, and the thing side optical surface of second lens is convex surface, second lens Image side optical surface is concave surface;
3rd lens have positive refractive power, and the thing side optical surface of the 3rd lens is convex surface, the picture of the 3rd lens Side optical surface is concave surface;
4th lens have positive refractive power, and the thing side optical surface of the 4th lens is concave surface, the picture of the 4th lens Side optical surface is convex surface;
5th lens have negative refractive power, and the thing side optical surface of the 5th lens is convex surface, the picture of the 5th lens Side optical surface is concave surface, and the thing side optical surface and image side optical surface of the 5th lens are respectively provided with an at least point of inflexion;
The ratio between the thickness value on optical axis of first lens and thickness value on optical axis of second lens more than etc. In 2.
Preferably, refractive power of the refractive power of first lens more than or equal to the 4th lens.
Preferably, each lens are made by plastic cement material.
Preferably, the focal length of the first lens, the second lens, the 3rd lens, the 4th lens and the 5th lens is respectively 2.56mm, -3.85 mm, 13.59 mm, 2.91 mm and -2.45 mm.
Preferably, the refractive index of the first lens, the 3rd lens, the 4th lens and the 5th lens is 1.545;Second lens Refractive index be 1.651.
Preferably, the abbe number of the first lens, the 3rd lens, the 4th lens and the 5th lens is 55.987;Second The abbe number of lens is 21.514.
Preferably, the thickness on optical axis of the first lens, the second lens, the 3rd lens, the 4th lens and the 5th lens Respectively 0.511mm, 0.306mm, 0.398mm, 0.409mm and 0.417mm;Wherein, first lens and the second lens it Between spacing be 0.060mm, spacing between second lens and the 3rd lens is 0.306mm, the 3rd lens It is 0.406mm with the spacing between the 4th lens, the spacing between the 4th lens and the 5th lens is 0.351mm。
Preferably, the reflectivity of the image side optical surface of first lens is anti-with the thing side optical surface of second lens Penetrate rate opposite.
Preferably, the thing side of the first lens and the reflectivity of image side surface are respectively 1.622 and -9.000;Second lens The reflectivity of thing side and image side surface is respectively 10.000 and 1.997;The thing side of the 3rd lens and the reflectivity of image side surface point Wei 4.376 and 10.316;The thing side of the 4th lens and the reflectivity of image side surface are respectively -2.150 and -0.976 and the 5th The thing side of lens and the reflectivity of image side surface are respectively 11.445 and 1.181.
Present invention also offers a kind of imaging system, the imaging system includes a kind of any of the above-described parsing imaging len high Group.
It is compared with the prior art, the parsing imaging lens group high that the present invention is provided, by causing five lens successively along Direction initialization is separately set, and each lens are set into different refractive powers and male and fomale(M&F), and by the thing side optical surface of the 5th lens It is set to that there is an at least point of inflexion with image side optical surface, the thickness value on optical axis of first lens is saturating with described second The ratio between thickness value on optical axis of mirror is more than or equal to 2.In this way, the parsing imaging lens group high that the present invention is provided, by changing The point of inflexion of the 5th lens is set, so as to the high-quality for realizing optical lens group is imaged, while ensure that the knot of the optical lens The simple compact small and thinner thickness of structure, with good market prospects.
Brief description of the drawings
Fig. 1 is a kind of principle schematic diagram. of parsing imaging lens group high provided in an embodiment of the present invention.
The mark of each part is as follows in accompanying drawing:
1st, the first lens;2nd, the second lens;3rd, the 3rd lens;4th, the 4th lens;5th, the 5th lens;6th, the image side light of the first lens Face;7th, the thing side optical surface of the first lens.
Specific embodiment
In order that the technical problems to be solved by the invention, technical scheme and beneficial effect become more apparent, below tie Drawings and Examples are closed, the present invention will be described in further detail.It should be appreciated that specific embodiment described herein is only used To explain the present invention, it is not intended to limit the present invention.
For sake of convenience, hereinafter alleged " left side " " right side " " on " D score and accompanying drawing left and right, upper and lower in itself is to one Cause, but not to structure of the invention restriction effect.
Realization of the invention is described in detail below in conjunction with specific accompanying drawing.
As shown in figure 1, being the structure principle chart of the parsing imaging lens group a kind of high for providing of the invention.
One kind parsing imaging lens group high that the present embodiment is provided, first is sequentially arranged at intervals with along thing side to image side direction Lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5;
Each lens are respectively provided with the thing side optical surface and image side optical surface being oppositely arranged;
First lens 1 have positive refractive power, and the thing side optical surface 7 of first lens is convex surface, first lens Image side optical surface 6 is convex surface, and the thing side optical surface 7 of first lens and the image side optical surface 6 of first lens are non- Sphere;
Second lens 2 have negative refractive power, and the thing side optical surface of second lens 2 is convex surface, second lens 2 Image side optical surface be concave surface, the image side optical surface of the thing side optical surface of second lens 2 and second lens 2 is non- Sphere;
3rd lens 3 have positive refractive power, and the thing side optical surface of the 3rd lens 3 is convex surface, the 3rd lens 3 Image side optical surface is concave surface, and the thing side optical surface of the 3rd lens 3 and the image side optical surface of the 3rd lens 3 are aspheric Face;
4th lens 4 have positive refractive power, and the thing side optical surface of the 4th lens 4 is concave surface, the 4th lens 4 Image side optical surface is convex surface, and the thing side optical surface of the 4th lens 4 and the image side optical surface of the 4th lens 4 are aspheric Face;
5th lens 5 have negative refractive power, and the thing side optical surface of the 5th lens 5 is convex surface, the 5th lens 5 Image side optical surface is concave surface, and the thing side optical surface and image side optical surface of the 5th lens 5 are respectively provided with an at least point of inflexion;.
That is, the thing side optical surface and image side optical surface of each lens, are aspherical;
The ratio between the thickness value on optical axis of first lens 1 and thickness value on optical axis of second lens 2 are more than Equal to 2.
It is namely as shown in the table:
It is compared with the prior art, the parsing imaging lens group high that the present invention is provided, each lens is set into different refractive power and recessed Convex surface, and the thing side optical surface and image side optical surface of the 5th lens 5 are set to have an at least point of inflexion, first lens The ratio between 1 thickness value on optical axis and thickness value on optical axis of second lens 2 are more than or equal to 2.In this way, of the invention The parsing imaging lens group high of offer, is set by the point of inflexion for changing the 5th lens 5 so that five lens are successively along a setting Direction is separately set, by by the different refractive power of different lens configurations, and by the thing side optical surface of each lens and Image side optical surface is arranged to corresponding concave surface or convex surface, so as to the high-quality for realizing optical lens group is imaged, while ensure that this The simple structure of optical lens is compact small and thinner thickness, with good market prospects.
Preferably, in the present embodiment, the thing center side flange of the 3rd lens 3 has at least 2 times points of inflexion;3rd lens There is at least 1 time point of inflexion at 3 image side surface central fovea edge.
Preferably, each lens are made by plastic cement material.In the parsing imaging lens group high that the present invention is provided, Lens selection plastic cement is made, the free degree of the refracting power configuration of optical lens group can be increased.And lens are also easy to add Work, for cutting down aberration, such that it is able to reduce the use number of lens, effectively reduces the total of lens group into aspheric profile Length, and with good image quality.
Preferably, in the present embodiment, the first lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 Focal length be respectively 2.56mm, -3.85 mm, 13.59 mm, 2.91 mm and -2.45 mm.
Preferably, it is in the present embodiment that the refractive index of the first lens 1, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 is equal It is set to 1.545;The refractive index of the second lens 2 is set to 1.651.
Preferably, the abbe number of the first lens 1, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 is disposed as 55.987;The abbe number of the second lens 2 is set to 21.514.So, it is ensured that the quality of optical imagery, while maximizing Reduction this component spatial volume, be allowed to more compact, range of application is more extensive.
For purposes of illustration only, in the present embodiment, by first lens 1, second lens 2, the 3rd lens 3, institute The thickness on optical axis for stating the 4th lens 4 and the 5th lens 5 is respectively defined as CT1, CT2, CT3, CT4 and CT5.By institute State the spacing between the first lens 1 and the second lens 2 and be defined as AC12, between second lens 2 and the 3rd lens 3 Spacing is defined as AC23, and the spacing between the 3rd lens 3 and the 4th lens 4 is defined as AC34, the 4th lens 4 AC45 is defined as with the spacing between the 5th lens 5.
Preferably, the first lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 on optical axis Thickness CT1, CT2, CT3, CT4 and CT5 are respectively 0.511mm, 0.306mm, 0.398mm, 0.409mm and 0.417mm.Also It is, CT1/CT2>= 2.
Wherein, the spacing AC12 between the lens 2 of first lens 1 and second be 0.060mm, second lens 2 with Spacing AC23 between 3rd lens 3 is 0.306mm, the spacing between the 3rd lens 3 and the 4th lens 4 AC34 is 0.406mm, and the spacing AC45 between the 4th lens 4 and the 5th lens 5 is 0.351mm.
Specifically, the ratio of the AC34 and the AC45 is between 1.0 and 1.3.It is, 1.0<= AC34/AC45 <= 1.3。
Preferably, the thing side of the first lens 1 and the reflectivity of image side surface are respectively 1.622 and -9.000;Second lens 2 Thing side and the reflectivity of image side surface be respectively 10.000 and 1.997;The thing side of the 3rd lens 3 and the reflectivity of image side surface Respectively 4.376 and 10.316;The thing side of the 4th lens 4 and the reflectivity of image side surface are respectively -2.150 and -0.976 and the The thing side of five lens 5 and the reflectivity of image side surface are respectively 11.445 and 1.181.
That is, in the present embodiment, the reflectivity of the image side surface of the first lens 1 is anti-with the thing side of the second lens 2 Penetrate rate reverse.
Present invention also offers a kind of imaging system, the imaging system includes a kind of parsing imaging lens group high, its edge Thing side to image side direction is sequentially arranged at intervals with the first lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5;
Each lens are respectively provided with the thing side optical surface and image side optical surface being oppositely arranged;
First lens 1 have positive refractive power, and the thing side optical surface 7 of first lens is convex surface, first lens Image side optical surface 6 is convex surface, and the thing side optical surface 7 of first lens and the image side optical surface 6 of first lens are non- Sphere;
Second lens 2 have negative refractive power, and the thing side optical surface of second lens 2 is convex surface, second lens 2 Image side optical surface be concave surface, the image side optical surface of the thing side optical surface of second lens 2 and second lens 2 is non- Sphere;
3rd lens 3 have positive refractive power, and the thing side optical surface of the 3rd lens 3 is convex surface, the 3rd lens 3 Image side optical surface is concave surface, and the thing side optical surface of the 3rd lens 3 and the image side optical surface of the 3rd lens 3 are aspheric Face;
4th lens 4 have positive refractive power, and the thing side optical surface of the 4th lens 4 is concave surface, the 4th lens 4 Image side optical surface is convex surface, and the thing side optical surface of the 4th lens 4 and the image side optical surface of the 4th lens 4 are aspheric Face;
5th lens 5 have negative refractive power, and the thing side optical surface of the 5th lens 5 is convex surface, the 5th lens 5 Image side optical surface is concave surface, and the thing side optical surface and image side optical surface of the 5th lens 5 are respectively provided with an at least point of inflexion;.
That is, the thing side optical surface and image side optical surface of each lens, are aspherical;
The ratio between the thickness value on optical axis of first lens 1 and thickness value on optical axis of second lens 2 are more than Equal to 2.
Preferably, in the present embodiment, the thing center side flange of the 3rd lens 3 has at least 2 times points of inflexion;3rd lens There is at least 1 time point of inflexion at 3 image side surface central fovea edge.
Preferably, each lens are made by plastic cement material.In the parsing imaging lens group high that the present invention is provided, Lens selection plastic cement is made, the free degree of the refracting power configuration of optical lens group can be increased.And lens are also easy to add Work, for cutting down aberration, such that it is able to reduce the use number of lens, effectively reduces the total of lens group into aspheric profile Length, and with good image quality.
Preferably, in the present embodiment, the first lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 Focal length be respectively 2.56mm, -3.85 mm, 13.59 mm, 2.91 mm and -2.45 mm.
Preferably, it is in the present embodiment that the refractive index of the first lens 1, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 is equal It is set to 1.545;The refractive index of the second lens 2 is set to 1.651.
Preferably, the abbe number of the first lens 1, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 is disposed as 55.987;The abbe number of the second lens 2 is set to 21.514.So, it is ensured that the quality of optical imagery, while maximizing Reduction this component spatial volume, be allowed to more compact, range of application is more extensive.
For purposes of illustration only, in the present embodiment, by first lens 1, second lens 2, the 3rd lens 3, institute The thickness on optical axis for stating the 4th lens 4 and the 5th lens 5 is respectively defined as CT1, CT2, CT3, CT4 and CT5.By institute State the spacing between the first lens 1 and the second lens 2 and be defined as AC12, between second lens 2 and the 3rd lens 3 Spacing is defined as AC23, and the spacing between the 3rd lens 3 and the 4th lens 4 is defined as AC34, the 4th lens 4 AC45 is defined as with the spacing between the 5th lens 5.
Preferably, the first lens 1, the second lens 2, the 3rd lens 3, the 4th lens 4 and the 5th lens 5 on optical axis Thickness CT1, CT2, CT3, CT4 and CT5 are respectively 0.511mm, 0.306mm, 0.398mm, 0.409mm and 0.417mm.Also It is, CT1/CT2>= 2.
Wherein, the spacing AC12 between the lens 2 of first lens 1 and second be 0.060mm, second lens 2 with Spacing AC23 between 3rd lens 3 is 0.306mm, the spacing between the 3rd lens 3 and the 4th lens 4 AC34 is 0.406mm, and the spacing AC45 between the 4th lens 4 and the 5th lens 5 is 0.351mm.
Specifically, the ratio of the AC34 and the AC45 is between 1.0 and 1.3.It is, 1.0<= AC34/AC45 <= 1.3。
Preferably, the thing side of the first lens 1 and the reflectivity of image side surface are respectively 1.622 and -9.000;Second lens 2 Thing side and the reflectivity of image side surface be respectively 10.000 and 1.997;The thing side of the 3rd lens 3 and the reflectivity of image side surface Respectively 4.376 and 10.316;The thing side of the 4th lens 4 and the reflectivity of image side surface are respectively -2.150 and -0.976 and the The thing side of five lens 5 and the reflectivity of image side surface are respectively 11.445 and 1.181.
That is, in the present embodiment, the reflectivity of the image side surface of the first lens 1 is anti-with the thing side of the second lens 2 Penetrate rate reverse.
It should be noted that preferably implementation method of the invention is given in specification of the invention and its accompanying drawing, but It is that the present invention can be realized by many different forms, however it is not limited to the implementation method described by this specification, these realities Mode is applied not as the extra limitation to present invention, there is provided the purpose of these implementation methods is made in disclosure of the invention The understanding of appearance is more thorough comprehensive.Also, above-mentioned each technical characteristic continues to be mutually combined, the various realities that formation is not enumerated above Mode is applied, the scope of description of the invention record is accordingly to be regarded as;Further, for those of ordinary skills, can be with root Improved according to described above or converted, and all these modifications and variations should all belong to the protection of appended claims of the present invention Scope.

Claims (10)

1. a kind of height parses imaging lens group, it is characterised in that
It is saturating the first lens, the second lens, the 3rd lens, the 4th lens and the 5th to be sequentially arranged at intervals with along thing side to image side direction Mirror;
Each lens are respectively provided with the thing side optical surface and image side optical surface being oppositely arranged;
The thing side optical surface and image side optical surface of each lens, are aspherical;
First lens have positive refractive power, and the thing side optical surface of first lens is convex surface, the picture of first lens Side optical surface is convex surface;
Second lens have negative refractive power, and the thing side optical surface of second lens is convex surface, second lens Image side optical surface is concave surface;
3rd lens have positive refractive power, and the thing side optical surface of the 3rd lens is convex surface, the picture of the 3rd lens Side optical surface is concave surface;
4th lens have positive refractive power, and the thing side optical surface of the 4th lens is concave surface, the picture of the 4th lens Side optical surface is convex surface;
5th lens have negative refractive power, and the thing side optical surface of the 5th lens is convex surface, the picture of the 5th lens Side optical surface is concave surface, and the thing side optical surface and image side optical surface of the 5th lens are respectively provided with an at least point of inflexion;
The ratio between the thickness value on optical axis of first lens and thickness value on optical axis of second lens more than etc. In 2.
2. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the refractive power of first lens is big In or equal to the 4th lens refractive power.
3. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that each lens are by plastic cement material It is made.
4. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the first lens, the second lens, the 3rd The focal length of lens, the 4th lens and the 5th lens is respectively 2.56mm, -3.85 mm, 13.59 mm, 2.91 mm and -2.45 mm。
5. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the first lens, the 3rd lens, the 4th The refractive index of lens and the 5th lens is 1.545;The refractive index of the second lens is 1.651.
6. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the first lens, the 3rd lens, the 4th The abbe number of lens and the 5th lens is 55.987;The abbe number of the second lens is 21.514.
7. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the first lens, the second lens, the 3rd The thickness on optical axis of lens, the 4th lens and the 5th lens is respectively 0.511mm, 0.306mm, 0.398mm, 0.409mm And 0.417mm;Wherein, the spacing between first lens and the second lens is 0.060mm, second lens and described the Spacing between three lens is 0.306mm, and the spacing between the 3rd lens and the 4th lens is 0.406mm, described Spacing between 4th lens and the 5th lens is 0.351mm.
8. a kind of height as claimed in claim 1 parses imaging lens group, it is characterised in that the image side optics of first lens The reflectivity in face is opposite with the reflectivity of the thing side optical surface of second lens.
9. a kind of height as claimed in claim 8 parses imaging lens group, it is characterised in that the thing side of the first lens and image side The reflectivity in face is respectively 1.622 and -9.000;The thing side of the second lens and the reflectivity of image side surface are respectively 10.000 Hes 1.997;The thing side of the 3rd lens and the reflectivity of image side surface are respectively 4.376 and 10.316;The thing side of the 4th lens and The reflectivity of image side surface be respectively -2.150 and -0.976 and the 5th lens thing side and the reflectivity of image side surface be respectively 11.445 and 1.181.
10. a kind of imaging system, it is characterised in that a kind of imaging system includes one kind parsing high described in any of the above-described Imaging lens group.
CN201710170890.4A 2017-03-21 2017-03-21 A kind of parsing imaging lens group and imaging system high Pending CN106873130A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710170890.4A CN106873130A (en) 2017-03-21 2017-03-21 A kind of parsing imaging lens group and imaging system high

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710170890.4A CN106873130A (en) 2017-03-21 2017-03-21 A kind of parsing imaging lens group and imaging system high

Publications (1)

Publication Number Publication Date
CN106873130A true CN106873130A (en) 2017-06-20

Family

ID=59171767

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710170890.4A Pending CN106873130A (en) 2017-03-21 2017-03-21 A kind of parsing imaging lens group and imaging system high

Country Status (1)

Country Link
CN (1) CN106873130A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021097851A1 (en) * 2019-11-22 2021-05-27 天津欧菲光电有限公司 Optical imaging system, image capture apparatus, and electronic device

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203965713U (en) * 2014-07-15 2014-11-26 浙江舜宇光学有限公司 The slim camera lens of high pixel
CN104793319A (en) * 2014-01-17 2015-07-22 先进光电科技股份有限公司 five-piece imaging lens group
KR20150089135A (en) * 2014-01-27 2015-08-05 엘지이노텍 주식회사 Image pickup lens
CN105974563A (en) * 2016-03-25 2016-09-28 玉晶光电(厦门)有限公司 Optical imaging lens and electronic device applying same

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104793319A (en) * 2014-01-17 2015-07-22 先进光电科技股份有限公司 five-piece imaging lens group
KR20150089135A (en) * 2014-01-27 2015-08-05 엘지이노텍 주식회사 Image pickup lens
CN203965713U (en) * 2014-07-15 2014-11-26 浙江舜宇光学有限公司 The slim camera lens of high pixel
CN105974563A (en) * 2016-03-25 2016-09-28 玉晶光电(厦门)有限公司 Optical imaging lens and electronic device applying same

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021097851A1 (en) * 2019-11-22 2021-05-27 天津欧菲光电有限公司 Optical imaging system, image capture apparatus, and electronic device

Similar Documents

Publication Publication Date Title
CN106802468B (en) Camera optical camera lens
TWI622795B (en) Optical imaging lens
TWI519808B (en) Image capturing optical lens assembly, image capturing device and electronic device
TWI493217B (en) Photographic optical lens assembly, image capturing unit and mobile device
CN104035184B (en) Imaging lens
CN107065135A (en) The high definition lens group and imaging system of a kind of miniaturization
TWI593999B (en) Optical image capturing system
CN108227145A (en) Optical imaging lens
CN103676107B (en) Six chip optical imaging lens and apply the electronic installation of this camera lens
CN109324398B (en) Optical imaging lens and imaging device
CN106468824B (en) Wide-angle optical lens
TW201734542A (en) Optical imaging lens
US20170192203A1 (en) Imaging Zoom Lens
CN104777594B (en) Ultra-wide angle large aperture image quality optical lens component high
CN106772956A (en) One kind miniaturization high resolution aspheric lens group and imaging system
CN106802473A (en) A kind of ultrahigh resolution ultra thin optical lens group and imaging system
CN106980168B (en) Camera optical camera lens
TW201728943A (en) Optical imaging lens
TW201437677A (en) Mobile device and optical imaging lens thereof
TWI620956B (en) Wide angle imaging lens assembly
CN106526792B (en) Optical mirror slip group
CN109270664B (en) Optical imaging lens and camera device using same
CN106873130A (en) A kind of parsing imaging lens group and imaging system high
US9804360B2 (en) Lens assembly
CN107065134A (en) A kind of high pixel ultra-thin mobile lens group and imaging system

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20170620