长春理工大学学报(自然科学版)
長春理工大學學報(自然科學版)
장춘리공대학학보(자연과학판)
JOURNAL OF CHANGCHUN UNIVERSITY OF SCIENCE AND TECHNOLOGY(NATURAL SCIENCE EDITION)
2015年
2期
18-20,24
,共4页
电子内窥镜%反远距物镜%长工作距%非球面
電子內窺鏡%反遠距物鏡%長工作距%非毬麵
전자내규경%반원거물경%장공작거%비구면
electronic endoscope%inverted telephoto objective%long working distance%aspheric surface
内窥镜观察范围大,并且观察系统多与手术器械相配合,具有广角长工作距的特点,因此物镜采用非对称反远距结构。设计的光学系统采用尺寸为3.30mm×2.95mm CCD接收成像,像元大小为3.275μm,实现了短焦距(1.7mm)、细径化(Φ=5.5mm)、大视场(100°)、长工作距(50mm)的光学特性。由于该系统为大视场光学系统,会有较大畸变,针对反远距物镜分析了其结构特点和像差特性,通过计算得出系统各个参数,并合理的引用非球面,达到了提高系统成像质量并且降低系统畸变的目的,利用ZEMAX光学设计软件给出了设计实例,并已经应用到实际生产中。
內窺鏡觀察範圍大,併且觀察繫統多與手術器械相配閤,具有廣角長工作距的特點,因此物鏡採用非對稱反遠距結構。設計的光學繫統採用呎吋為3.30mm×2.95mm CCD接收成像,像元大小為3.275μm,實現瞭短焦距(1.7mm)、細徑化(Φ=5.5mm)、大視場(100°)、長工作距(50mm)的光學特性。由于該繫統為大視場光學繫統,會有較大畸變,針對反遠距物鏡分析瞭其結構特點和像差特性,通過計算得齣繫統各箇參數,併閤理的引用非毬麵,達到瞭提高繫統成像質量併且降低繫統畸變的目的,利用ZEMAX光學設計軟件給齣瞭設計實例,併已經應用到實際生產中。
내규경관찰범위대,병차관찰계통다여수술기계상배합,구유엄각장공작거적특점,인차물경채용비대칭반원거결구。설계적광학계통채용척촌위3.30mm×2.95mm CCD접수성상,상원대소위3.275μm,실현료단초거(1.7mm)、세경화(Φ=5.5mm)、대시장(100°)、장공작거(50mm)적광학특성。유우해계통위대시장광학계통,회유교대기변,침대반원거물경분석료기결구특점화상차특성,통과계산득출계통각개삼수,병합리적인용비구면,체도료제고계통성상질량병차강저계통기변적목적,이용ZEMAX광학설계연건급출료설계실례,병이경응용도실제생산중。
The objective in this paper is an electronic endoscope,to meet the requestment of wide range for endoscopic obser-vation and observation system more compatible with surgical instruments, thus it is characterized by a wide-angle and long working distance, so the objective lens adopt structure of asymmetrical inverse distance. The optical system adopts 3.30 × 2.95mm CCD as receiver. The pixel size is 3.275μm,which realizes the optical properties of short focal length(1.7mm),small diameter,a large field of view(100 degrees)and long working distance(50mm). Since the system is a large field optics sys-tem, there will be a larger distortion. For the inverted telephoto objective in this paper, the structure characteristics and the optical aberration are analyzed,and the example is presented by ZEMAX software,through the calculation,system parame-ters are obtained,Adopting the aspheric surface reasonably can enhance the imaging quality of system,reduce the system dis-tortion,and the example has been applied to actual production.