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Motorised lens positioning appts. for microscope - changes between dark-field illumination and differential interference contrast and stress positions using computer system

机译:电动镜头定位装置。用于显微镜-使用计算机系统在暗场照明和微分干涉对比以及应力位置之间进行转换

摘要

A number of optical viewing objectives (15) brings via manual rotation various lenses into a viewing line (G). A motor (4) brings a Wollaston Prism into the same viewing line. Another motor (2) moves the changeover frame (1) up or down to bring one of the optical elements (11, 12, 13) into viewing line (G). Through a microprocessor controlled steering system (14) which has or may have its own observational feedback unit (8). Commands for viewing type desired are given which the steering system executes to bring the necessary optical ingredients into viewing line (G). Also, the Wollaston prism will move along the viewing line to its correct viewing focus in that a tension spring (9) draws the slide (7) towards a stop plate on the transfer element (6) which turns following tension spring (10) when the changeover unit (1) is moved. ADVANTAGE - Cumbersome re-adjustments are avoided when microscope viewing is to change method from dark-field illumination to differential interference contrasting. Required re-positioning of essential optical elements are computer-stored, with or without processors being associated with their own feedback sensors.
机译:多个光学观察物镜(15)通过手动旋转将各种镜头带入观察线(G)。电机(4)将Wollaston Prism带入同一视线。另一个电动机(2)上下移动转换框架(1),以使一个光学元件(11、12、13)进入视线(G)。通过微处理器控制的转向系统(14),该系统具有或可以具有自己的观察反馈单元(8)。给出期望的观看类型的命令,转向系统执行该命令以将必要的光学成分带入观看线(G)。而且,沃拉斯顿棱镜将沿着视线移动到正确的视点,因为拉伸弹簧(9)将滑块(7)朝着传递元件(6)上的止动板拉动,当滑动板(7)转换单元(1)被移动。优势-显微镜观察将方法从暗视场照明改为微分干涉对比时,避免了繁琐的重新调整。必需的基本光学元件的重新放置都存储在计算机中,无论​​处理器是否与它们自己的反馈传感器相关联。

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