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Making a high-precision positioning apparatus by an optical pickup head module

机译:通过光学头模块制造高精度的定位装置

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A linear moving stage using a commercially available optical pickup head as the key element of the whole system was constructed. An additional object carrier was rigidly mounted to the lens module so that the carrier moved synchronically and consistently with the lens module. The carrier platform can carry light weight objects, such as bio-cells for manipulation or optical fiber in alignment application. A CD holder with a small part of the optical disk taken from a CD was located in front of the lens module. The focusing error signal from the photo diode was used to indicate the position between the carrier platform and the CD. A digital lead compensator with integrator was implemented to improve the transient response and positioning accuracy. Experimental results showed that the moving stage with the above arrangement can successfully achieve the positioning for micro, submicron and 50 nm position commands within the overall moving range of 10 /spl mu/m. The feasibility of creating a low cost accurate positioning system using an optical pickup head module was successfully demonstrated in the architecture. The cost of the precision positioning system is far cheaper than other precision positioning systems nowadays. The concept of the proposed positioning apparatus can be further extended into making a two stage of moving in X and Y directions by using focusing and radial error signals at the same time.
机译:使用市售的光学头作为整个系统的关键元件,构建了线性移动平台。另一个物体托架牢固地安装在镜头模块上,以便该托架与镜头模块同步且一致地移动。承载平台可以承载重量轻的物体,例如用于操纵的生物细胞或对准应用中的光纤。 CD支架的一部分是从CD取出的光盘,位于镜头模块的前面。来自光电二极管的聚焦误差信号用于指示载体平台和CD之间的位置。实施了带积分器的数字超前补偿器,以改善瞬态响应和定位精度。实验结果表明,具有上述布置的移动台可以在10 / spl mu / m的整个移动范围内成功实现对微米,亚微米和50 nm位置指令的定位。在架构中成功演示了使用光学头模块创建低成本精确定位系统的可行性。如今,精密定位系统的成本要比其他精密定位系统便宜得多。所提出的定位设备的概念可以进一步扩展为通过同时使用聚焦和径向误差信号在X和Y方向上进行两个阶段的移动。

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