久久视频-国产欧美日韩另类在线-中文不卡视频-97精品久久久久久久久2020-九一国产在线-亚洲 中文 欧美-成人国产精品久久-91精品国产高清91久久久久久-青草精品-久久99影视-精品国产网站-国产精品日韩在线观看-亚洲综合精品第一页-久久久久电影网站-在线免费a视频-欧美日本色-欧美日韩在线亚洲综合国产人-麻豆影视大全高清免费追剧-欧美第一页在线-97资源视频总站老师-欧美精品99久久-国产亚洲av每日更新-久久久久久99精品久久久-91yy在线影院免费看-久久免费久久-国产日韩理论片-久久91-一区二区三区视频在线免费观看-日韩免费片-久久精品观看

撥號18861759551

你的位置:首頁 > 技術文章 > 使用塑料混合非球面透鏡的優點

技術文章

使用塑料混合非球面透鏡的優點

技術文章

Advantages of Using Plastic Hybrid Aspheric Lenses

TECHSPEC® Plastic Hybrid Aspheric Lenses are low cost optical components that lack both spherical and chromatic aberrations. These aspheric lenses provide optical designers with unique, single element solutions for achieving diffraction-limited focusing performance at high numerical apertures with broadband light sources. These aspheric lenses consist of a diffractive surface that has been added to a molded aspheric lens. The aspheric lens eliminates all spherical aberration, while the diffractive surface has a net effect of introducing negative dispersion – when properly tuned to the refractive index and wavelength design of the lens, chromatic aberration is eliminated as well.

 

Spherical and Chromatic Aberrations

There are two major forms of axial optical aberrations inherent in common optical lenses: spherical aberration and chromatic aberration. Spherical aberration is an inherent characteristic of any lens whose surface is a section of a sphere. Light originating from the same object point comes to a focus at slightly different points (P and P’), depending on whether the rays pass through the center of the lens or the periphery (Figure 1).

Figure 1: Spherical Aberration in a Single Positive Lens

 

igure 2.1: Transverse Chromatic Aberration of a Single Positive Lens

 

Figure 2.2: Longitudinal Chromatic Aberration of a Single Positive Lens

 

Chromatic aberration results from material dispersion. Because different colors of light refract by different amounts, an image point formed by light of one color does not coincide with the corresponding image point formed by light of a different color (Figures 2.1 and 2.2).

 

Important Equations

Spherical aberration is typically eliminated by substituting an aspherical surface for the more common spherical surface. The surface profile (sag) is given by Equation 1:

Where

Z = sag of surface parallel to the optical axis

s = radial distance from the optical axis

C = curvature, inverse of radius

k = conic constant

A4, A6, A8 = 4th, 6th, 8th… order aspheric terms

 

However, this does not correct chromatic aberration. Therefore, for a monochromatic light source, the aspheric surface will provide diffraction limited focusing at a single wavelength, but will suffer a large spot size over a broader wavelength.

 

A diffractive surface will correct the spherical aberration, as shown in Equation 2.

Where
Y = radial position from center of lens (for instance, if 0 is the center of the lens, 12.5mm will be the edge of a 25mm diameter lens, etc.)
nd = index of refraction of the material at 587.6nm
Step Height = λ/nd-1
λ = the wavelength of interest

By combining the two features onto a single element, a component that eliminates both chromatic and spherical aberration is created. That surface is described simply as the sum of the Zasph and Zdiff coefficients.

For tips on modeling diffractives in Zemax and Code V, visit the Optics Realm blog.

 

Customer Benefits

Optical designers often need to focus light at very short distances, or collect and collimate as much light as possible from very divergent light sources. Basic optical principles dictate that a high numerical aperture optical lens is required for either of these scenarios. A high numerical aperture optical lens will typically have a focal length equal to or shorter than the clear aperture of the optical system, allowing the designer to maintain as compact of an optical train as possible.

For example, an optical designer has multiple options for achieving a focal length that is equal to his clear aperture (a scenario known as an F/1 lens, or a lens with a numerical aperture of 0.50). The simplest option is to use a standard plano-convex lens, available from a number of distributors. Spot diagram, chromatic focal shift graph, polychromatic diffraction MTF, and transverse ray fan plot for the wavelength range of 486 - 656nm are provided for #45-097 25mm Diameter x 25mm FL PCX lens.

 

PCX Lens

Figure 3.1: Spot Diagram for #45-097 25mm Dia. x 25mm FL PCX Lens

Figure 3.2: Chromatic Focal Shift Graph for #45-097 25mm Dia. x 25mm FL PCX Lens

Figure 3.3: Polychromatic Diffraction MTF Graph for #45-097 25mm Dia. x 25mm FL PCX Lens

Figure 3.4: Transverse Ray Fan Plot for #45-097 25mm Dia. x 25mm FL PCX Lens

 

For improved performance, the optical designer could consider an achromatic lens of the same form factor, for example #65-553 25mm Diameter x 25mm Focal Length Achromatic Lens. Again, the same characteristics are shown over the same wavelength range. A 74% decrease in spot size with a 73% decrease in chromatic focal shift can be seen, yielding an MTF of 13 lp/mm at 40% contrast, a substantial gain versus the aforementioned singlet lens.

Figure 4.1: pot Diagram for #65-553 25mm Dia. x 25mm FL Achromatic Lens

Figure 4.2: Chromatic Focal Shift Graph for #65-553 25mm Dia. x 25mm FL Achromatic Lens

Figure 4.3: Polychromatic Diffraction MTF Graph for #65-553 25mm Dia. x 25mm FL Achromatic Lens

Figure 4.4: Transverse Ray Fan Plot for #65-553 25mm Dia. x 25mm FL Achromatic Lens

For maximum performance, the optical designer should choose a plastic hybrid aspheric lens. In this scenario, the exact same form factor and wavelength range are used, this time with #65-992 25mm Diameter x 25mm FL Hybrid Aspheric Lens. As shown, this lens provides diffraction limited focusing performance, yielding the optimum performance for the designer.

 

Plastic Hybrid Lens

Figure 5.1: Spot Diagram for #65-992 25mm Dia. x 25mm FL Hybrid Aspheric Lens

Figure 5.2: Chromatic Focal Shift Graph for #65-992 25mm Dia. x 25mm FL Hybrid Aspheric Lens

Figure 5.3: Polychromatic Diffraction MTF Graph for #65-992 25mm Dia. x 25mm FL Hybrid Aspheric Lens

Figure 5.4: Transverse Ray Fan Plot for #65-992 25mm Dia. x 25mm FL Hybrid Aspheric Lens

Comparing the spot diagrams, chromatic focal shift graphs, polychromatic diffraction MTFs, and transverse ray fan plots of a plano-convex (PCX) lens, achromatic lens, and hybrid aspheric lens, it is easy to see the advantages of using plastic hybrid aspheric lenses for achieving diffraction-limited focusing performance at high numerical apertures with broadband light sources.

 

Selection Guide

Edmund Optics® TECHSPEC® Plastic Aspheres and TECHSPEC® Plastic Hybrid Aspheres families are both manufactured utilizing Zeon Chemical’s Zeonex E48R material. Zeonex materials feature high transparency, low fluorescence, low birefrengence, low water absorption, and high heat and chemical resistance, making it a superior material vs. other commonly available plastics. Zeonex is a Cylco Olefin Polymer (COP) material.

Plastic Materials Selection Guide

Property

Glass

Zeonex E48R

PMMA

Polycarbonate

Polystyrene

Arton®

Transmission

Excellent

Excellent

Excellent

Good

Very Good

Excellent

Low Refractive Index

Excellent

Excellent

Excellent

Poor

Poor

Good

Low Birefringence

Excellent

Excellent

Excellent

Poor

Poor

Excellent

Low Water Absorption

Excellent

Excellent

Poor

Good

Excellent

Excellent

Impact Resistance

Poor

Good

Good

Excellent

Good

Excellent

Moldability

Fair

Excellent

Good

Excellent

Excellent

Good

Heat Resistance

Excellent

Good

Poor

Good

Poor

Very Good

Coating Adhesion

Excellent

Good

Fair

Fair

Fair

Good

聯系我們

地址:江蘇省江陰市人民東路1091號1017室 傳真:0510-68836817 Email:sales@rympo.com
24小時在線客服,為您服務!

版權所有 © 2026 江陰韻翔光電技術有限公司 備案號:蘇ICP備16003332號-1 技術支持:化工儀器網 管理登陸 GoogleSitemap

在線咨詢
QQ客服
QQ:17041053
電話咨詢
0510-68836815
關注微信
主站蜘蛛池模板: av再线观看 | 91精品在线免费观看视频 | 天天射综合网视频 | 久久综合九色欧美综合狠狠 | 国产在线观看99 | 久久久91精品国产 | 97超碰人人澡人人爱 | 午夜精品婷婷 | 91精彩视频在线观看 | 日韩欧美在线一区二区 | 精品二区久久 | 婷婷六月丁 | 99久久精品一区二区成人 | 久久三级毛片 | av女优中文字幕在线观看 | 在线观看亚洲精品 | 欧美一区二区三区四区夜夜大片 | 精品国产电影一区二区 | 日本在线观看一区二区三区 | 99久久婷婷国产一区二区三区 | 中文字幕91在线 | 中国老女人日b | 色成人亚洲网 | 欧美日韩99 | av电影在线观看完整版一区二区 | 岛国精品一区二区 | 日韩精品免费一区二区在线观看 | 成人在线播放视频 | 欧美激情奇米色 | 精品国产乱码久久久久久1区2匹 | 中文字幕在线观看视频一区二区三区 | www.色的| 亚洲欧美日韩一区二区三区在线观看 | 中文字幕亚洲高清 | 国产美女在线免费观看 | 成人久久亚洲 | 天天色综合天天 | 欧美日本国产在线观看 | 涩五月婷婷 | 亚洲a色| 91日韩在线视频 | 久久免费中文视频 | 天天爽网站 | 亚洲日日夜夜 | 日日干美女 | 97在线看 | 808电影免费观看三年 | 国产精品亚洲片夜色在线 | 日韩在线观看中文字幕 | 69欧美视频 | 亚洲精品午夜久久久久久久 | 高清在线一区 | 午夜丁香网 | 午夜成人免费影院 | 免费av在线网站 | 正在播放国产一区二区 | 亚洲成aⅴ人片久久青草影院 | 久久天| 99久久久久免费精品国产 | 国产精品久久久影视 | 久操伊人 | 婷婷 中文字幕 | 久久免费视频一区 | 二区在线播放 | 国产精品国产三级国产不产一地 | 人人插超碰 | 日本韩国精品一区二区在线观看 | 国产精品久久久久免费观看 | 中文字幕字幕中文 | 亚洲视频精品在线 | 五月婷婷av| 视频一区二区免费 | 大片网站久久 | 日韩免费观看视频 | 日韩在线观看 | 蜜臀aⅴ精品一区二区三区 久久视屏网 | 精品国产乱码一区二区三区在线 | 91超国产| 欧美日本高清视频 | 91视频在线免费看 | 亚洲a在线观看 | 国产精品成人一区二区 | 成人av播放| 人人澡人人爽欧一区 | 欧美大片在线观看一区 | 亚洲电影网站 |