Park Sung-Jin, Petzold Bryan C, Goodman Miriam B, Pruitt Beth L
Department of Mechanical Engineering, Stanford University, Stanford, California 94305, USA.
Rev Sci Instrum. 2011 Apr;82(4):043703. doi: 10.1063/1.3574362.
We present a microelectromechanical device-based tool, namely, a force-clamp system that sets or "clamps" the scaled force and can apply designed loading profiles (e.g., constant, sinusoidal) of a desired magnitude. The system implements a piezoresistive cantilever as a force sensor and the built-in capacitive sensor of a piezoelectric actuator as a displacement sensor, such that sample indentation depth can be directly calculated from the force and displacement signals. A programmable real-time controller operating at 100 kHz feedback calculates the driving voltage of the actuator. The system has two distinct modes: a force-clamp mode that controls the force applied to a sample and a displacement-clamp mode that controls the moving distance of the actuator. We demonstrate that the system has a large dynamic range (sub-nN up to tens of μN force and nm up to tens of μm displacement) in both air and water, and excellent dynamic response (fast response time, <2 ms and large bandwidth, 1 Hz up to 1 kHz). In addition, the system has been specifically designed to be integrated with other instruments such as a microscope with patch-clamp electronics. We demonstrate the capabilities of the system by using it to calibrate the stiffness and sensitivity of an electrostatic actuator and to measure the mechanics of a living, freely moving Caenorhabditis elegans nematode.
我们展示了一种基于微机电装置的工具,即一种力钳系统,它能够设定或“钳制”缩放后的力,并能施加所需大小的设计加载曲线(例如,恒定、正弦曲线)。该系统采用压阻式悬臂作为力传感器,压电致动器的内置电容式传感器作为位移传感器,这样就可以根据力和位移信号直接计算样品的压痕深度。一个工作在100kHz反馈频率的可编程实时控制器计算致动器的驱动电压。该系统有两种不同模式:一种是控制施加到样品上力的力钳模式,另一种是控制致动器移动距离的位移钳模式。我们证明该系统在空气和水中都具有大动态范围(力从亚纳牛到几十微牛,位移从纳米到几十微米)以及出色的动态响应(快速响应时间,<2毫秒,大带宽,1赫兹到1千赫兹)。此外,该系统经过专门设计,可与其他仪器集成,如带有膜片钳电子设备的显微镜。我们通过使用该系统校准静电致动器的刚度和灵敏度以及测量活的、自由移动的秀丽隐杆线虫的力学特性,展示了该系统的功能。