手机照相镜头的光学设计

手机照相镜头的光学设计


2024年5月15日发(作者:华为荣耀8x处理器)

手机照相镜头的光学设计

本科毕业设计论文

手机照相镜头的光学设计

摘要

随着市场的发展,可拍照手机逐渐取代普通手机,而手机的小型超薄化也是

必然趋势,手机的照相功能的提升和小型超薄化应并进,而二者又是相互制约的,

因此尽量减小手机照相镜头的体积并提高其性能成为必然趋势。

本文后半部分运用ZEMAX对所设计的镜头进行了调整和优化,用缩放法对

初始模型反复调试和修改,并根据课题要求进行了数据分析,最终得出了符合设

计要求的结果.最终设计结果为:镜头总长:10.07mm,后焦距:1.27mm。畸变

范围-1.07到1。76 之间.中心视场MTF@160lp/mm值为0.52.边缘视场MTF@

120lp/mm值为0.53。

关键字:可拍照手机 镜头 小型化 ZEMAX 优化。

目录

摘要 ········································································ (Ⅰ)

Abstract ······································································· (Ⅱ)

目录 ·········································································· (1)

1 绪论 ········································································· (1)

1。1 研究的目的和意义…………………………………………………(1)

1。2 可拍照手机和镜头设计的国内外发展 ………………………… (1)

1。 2。 1 可拍照手机国内外发展状况···································· (1)

1。2。2 现今镜头设计的国内外发展状况 ·········· (2)

2 手机照相镜头的成像原理介绍 ······································ (3)

2.1 可拍照手机照相原理………………………………… ………… (3)

2。2 感光元件简介 ……………………………………… ……………(3)

/ 32

手机照相镜头的光学设计

2。 3 镜头结构分类及选择 ……………………… ……………………(3)

2.4手机镜头的性能指标和相关术语…………………………………(4)

2.4。1镜头类型选择的依据[7] ············· (4)

2.4.2数码镜头鉴别率 ·················· (4)

2。4。3光圈范围 ···················· (4)

2. 4. 4影响像质的几个因素 ················································· (5)

3光学系统设计 ···························································· (6)

3。1光学设计软件简介…………………………………………………(6)

3.1.1 ZEMAX MTF函数 ·················· (6)

3。1.2缺省的评价函数及优化 ·············· (6)

3。 1. 3归一化的视场和光瞳坐标 ········································ (7)

3。2设计要求及分析……………………………………………………(7)

3.3初始结构的选择……………………………………………………(8)

3。 3。 1 视场角的确定 ··················································· (10)

3.3.2 F数的确定 ··················· (10)

3。3。3 工作波长的选择 ················ (10)

3.3.4调制传递函数图如下 ················ (11)

3.3.5七种塞得像差分别为 ················ (11)

3。3.6场曲和畸变图 ················· (12)

3.3。7点列图如下 ·················· (12)

3.3.8光线特性曲线图 ·················· (13)

3。4 像差的初步校正…………………………………………………(13)

3.4.1初步校正后的数据 ················ (13)

3.4。2二维光路图如下 ················· (15)

3.4。3调制传递函数图如下: ············· (15)

3.4。4场曲畸变图 ··················· (16)

3。4.5点列图 ···················· (17)

3.4.6光线特性曲线图 ················· (17)

3。5系统优化…………………………………………………………(18)

3.5。1优化数据 ···················· (18)

3. 5。 2二维光路图 ·························································· (19)

3.5.3 点列图 ····················· (20)

3。5。4场曲畸变示意图 ················· (20)

3.5.5 MTF分析图 ··················· (21)

3.5。6光线特性曲线图 ················· (23)

3。6公差分析…………………………………………………………(24)

3. 6. 1公差分析的一般过程 ···················································· (24)

I / 32


发布者:admin,转转请注明出处:http://www.yc00.com/num/1715778050a2670202.html

相关推荐

发表回复

评论列表(0条)

  • 暂无评论

联系我们

400-800-8888

在线咨询: QQ交谈

邮件:admin@example.com

工作时间:周一至周五,9:30-18:30,节假日休息

关注微信