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    • 5. 发明申请
    • Tube for a microscope
    • 管显微镜
    • US20070183028A1
    • 2007-08-09
    • US10589279
    • 2005-01-24
    • Peter EuteneuerKlaus Hermanns
    • Peter EuteneuerKlaus Hermanns
    • G02B21/00
    • G02B21/24G02B7/24
    • The invention relates to an ergonomic tube (30) for a microscope (1). A binocular head (20) is provided on the tube (30). A deflection element (15) is provided in the tube (30) and a deflection mirror (18) is assigned to said element, the mirror (18) being located behind the optical path (5) of the lens, when viewed from the user's (17) position. A single tube-lens system (11) is positioned in the optical path (16) of the tube. A modification to the inclination of the ocular optical path (21) in relation to the horizontal (H) by a value αcauses the position of the deflection mirror (18) to be modified by an angle α/2.
    • 本发明涉及一种用于显微镜(1)的符合人体工程学的管(30)。 在所述管(30)上设置双目头(20)。 偏转元件(15)设置在管(30)中,并且偏转镜(18)被分配给所述元件,反射镜(18)位于透镜的光路(5)的后面,当从用户的 (17)位置。 单个管透镜系统(11)位于管的光路(16)中。 对于光学路径(21)相对于水平(H)的倾斜值的改变,将偏转镜(18)的位置改变为角度α/ 2。
    • 7. 发明授权
    • Microscope eyepiece with 10× magnification
    • 显微镜目镜放大10倍
    • US06330115B1
    • 2001-12-11
    • US09529078
    • 2000-04-07
    • Klaus Hermanns
    • Klaus Hermanns
    • G02B300
    • G02B25/001
    • The invention relates to a microscope eyepiece with theoretically reduced astigmatism in a compensating optical system. The inventive eyepiece has 10× magnification, a sight field (SFZ)≦25 and a Petzval sum (SP) of 0.014≦SP≦0.021. Said eyepiece comprises a special field lens placed in front of a field stop and a negative lens in the eye lens section placed behind said field stop. The inventive field lens is embodied in the form of a simple, thick, positively diffracting meniscus which is convex in relation to the field stop and provided with the following field lens factor: 0.95≦beta′≦1.05. The eye lens section can be displaced in relation to the field stop to enable diotropic adjustment. Special, advantageous embodiments of the field lens and examples of embodiments of the microscope eyepiece, complete with structural data, are described.
    • 本发明涉及一种在补偿光学系统中理论上减少散光的显微镜目镜。 本发明的目镜具有10倍放大率,视场(SFZ)<= 25和0.014 <= SP <= 0.021的佩茨瓦尔和(SP)。 所述目镜包括放置在场地挡板前面的特殊场透镜和放置在所述场挡板后面的眼镜片部分中的负透镜。 本发明的场透镜以简单的,厚的,正衍射的弯月面的形式实现,该弯月面相对于场光阑凸起并具有以下场透镜因子:0.95 <=β'<= 1.05。 眼睛透镜部分可以相对于野外停止位移,以实现双向调节。 描述了具有结构数据的现场透镜的特殊的有利实施例和显微镜目镜的实施例的实例。