首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Single-chip mechatronic microsystem for surface imaging and force response studies.
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Single-chip mechatronic microsystem for surface imaging and force response studies.

机译:用于表面成像和力响应研究的单芯片机电微系统。

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We report on a stand-alone single-chip (7 x 10 mm) atomic force microscopy unit including a fully integrated array of cantilevers, each of which has an individual actuation, detection, and control unit so that standard atomic force microscopy operations can be performed by means of the chip only without any external controller. The system offers drastically reduced overall size and costs as well as increased scanning speed and can be fabricated with standard complementary metal oxide semiconductor technology with some subsequent micromachining steps to form the cantilevers. Full integration of microelectronic and micromechanical components on the same chip allows for the controlling and monitoring of all system functions. The on-chip circuitry, which includes analog signal amplification and filtering stages with offset compensation, analog-to-digital converters, a powerful digital signal processor, and an on-chip digital interface for data transmission, notably improves the overall system performance. The microsystem characterization evidenced a vertical resolution of < 1 nm and a force resolution of < 1 nN as shown in the measurement results. The monolithic system represents a paradigm of a mechatronic microsystem that allows for precise and fully controlled mechanical manipulation in the nanoworld.
机译:我们报告了一个独立的单芯片(7 x 10 mm)原子力显微镜单元,包括一个完全集成的悬臂阵列,每个单元都有一个单独的致动,检测和控制单元,因此可以进行标准的原子力显微镜操作。仅通过芯片来执行,无需任何外部控制器。该系统可显着减小总体尺寸和成本,并提高扫描速度,并且可以使用标准的互补金属氧化物半导体技术以及随后的一些微加工步骤来制造悬臂,从而制造出该系统。微电子和微机械组件完全集成在同一芯片上,可以控制和监视所有系统功能。片上电路包括带偏移补偿的模拟信号放大和滤波级,模数转换器,功能强大的数字信号处理器以及用于数据传输的片上数字接口,可显着提高整体系统性能。如测量结果所示,微系统表征证明垂直分辨率<1 nm和力分辨率<1 nN。整体系统代表了机电微系统的范例,该系统允许在纳米世界中进行精确且完全受控的机械操纵。

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