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- A Method and Its Programming for Calculating the Light Path of Aspheric Optical System 非球面光学系统的光路计算方法与编程实现
- The optical system of the eye stimulate cell of the retina. 眼睛的视觉系统刺激视网膜内的细胞。
- The optical system of the eye stimulates cells of the retina. 眼睛的视觉系统刺激视网膜内的细胞。
- Modern Practical Optical System II. 现代实用光学系统2。
- aspheric optical system 非球面光学系统
- A lens is an optical system including two refracting surfaces. 一个透镜是包含两个折射面的光学系统。
- Aspheric optical parts manufacturing is an acknowledged difficulty and it is uneconomical. 非球面光学零件加工是当前国内外公认的难题。
- This study is devoted to investigating the use of the Be-Cu alloy mold insert in plastic injection molds for aspheric optic lens. 本研究探讨铍铜材料用于射出成型模仁的适用性评估及非球面镜片射出成型制程技术。
- Mirrors attached to the rollers form part of an optical system. 装在圆筒上的小镜是光学系统的一部分。
- Comprehensive consideration on aspherical optical system design, fabrication and testing 非球面光学系统设计、加工及检验的综合考虑
- Design of four-mirror reflective anastigmat optic system[J]. 引用该论文 丁学专;王欣;兰卫华;刘银年.
- Application of Zemax software in alignment of three-mirror off-axis aspherical optical system Zemax软件在离轴三反射镜系统计算机辅助装调中的应用
- Alignment of a Three-Mirror Off-Axis Aspherical Optical System by Using Gradual Abberration Optimization 用像差逐项优化法装调离轴三反射镜光学系统
- Abstract: he optical system is an important part of star sensors. 文摘:光学系统是星敏感器的重要组成部分。
- The optical system consists of glass reflector and divergent lens. 光学系统包括用玻璃精制而成的反光镜和发散透镜。
- A flare is an unwanted reflection in an optical system. 光斑是光学系统中出现的多余光反射。
- Aspheric optics is important in national defence, industry and other fields of application. 摘要非球面光学在工业、国防和商业等领域的应用中具有十分重要的意义。
- The abrasive disk's dimension is a key parameter that surface shape error converges effectively in aspheric optics lapping and polishing. 在光学非球面研抛加工中,研抛盘尺寸的合理选择是面形误差有效收敛的关键参数之一。
- Bonnet tool polishing with novel polishing tool and special motion trait is anew polishing method with bright future, for it provides a highprecision,efficient way for aspheric optical components'machining. 气囊抛光是一种新颖的抛光方法,该方法采用了新型的抛光工具和独特的运动形式,是一种高精度、高效率的加工光学元件的方法,具有广阔的应用前景。
