本帖最后由 l63t89 于 2023-8-20 14:27 编辑
运放(运算放大器,Operational Amplifier,简称 Op-Amp)是一种常用的电子器件,用于放大电压信号。在电流检测中,运放可以被用来测量电流,其中一种常见的电流检测方法是使用电流检测电阻和运放组成的电流检测电路。
以下是运放电流检测的基本原理和一些相关信息:
运放电流检测原理:
运放可以被用来测量电流,其中一种常见的方法是使用欧姆定律(Ohm's Law)和运放的虚短输入原则。
基本的思路是,将要测量的电流通过一个电流检测电阻 R,产生电压降,然后通过连接到运放输入端的电阻网络将该电压转换为电压信号,最后通过运放进行放大。
运放电流检测电路示意图:
![](data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAQcAAACdCAYAAAC5Ib02AAAGhElEQVR4nO3dMW8iZwLG8cenlFyye0W0Y8kF3RKJWDkpxUENvUMxkk9KuXyBSeq3RpMP4G1PexIF2XqhXpqLkBwK0rmI5DmlySaZflJ4wdh+drk92cDA/yeN5FkGeBeJv5mX3XkPJBUCgFv+sukBANhOxAGARRwAWMQBgEUcAFjEAYBFHABYxAGARRwAWMQBgEUcAFjEAYBFHABYxAGARRwAWMQBgEUcAFjEAYBFHABY5Y1Db6IiG+h00+PYFa2uQhKrvulxYGuUNw4AHhRxAGAdqEyXpu9NVHzzhb/th+908GVy9fNxrOSkpsr8tsuxwvPh0sF1xUlHtcUBmcbhTMtHqNVVaEaL3Xw2UNqfXt++8jmk9rOgxuHiETR7map/rg94jAce56373mD+Ptg/RSm33qQoskFxuulx7MrW6hYhiYv6psfBtjUbpxUALOIAwCrXnAOAteGTAwCLOACwiAMAizgAsIgDAIs4ALCIAwCLOACwiAMAizgAsIgDAIs4ALCIAwCLOACwShiHVJOi0KS36XHsCl5PeCWMA4B1IA4ALOIAwCIOACziAMAiDgAs4gDAIg4ALOIAwCIOACxWvAJg8ckBgEUcAFjEAYBFHABYxAGARRwAWMQBgEUcAFjEAYBFHABYxAGARRwAWB+tPKI3UfHNF/62H77TwZfJPQ9plba6oSG9Djobfdg963GiTq1y609zzV6m6p/f2wBL5v9/PbHbVsfh27/r4NurH0+/z/TiH2P9M+ro3w88sAeTzzRI+5q+3a3HiToniWLtcyCAu/b+tGLaf6VZXtGjTzc9EmC77H0cpEiPKtJf/1bf9ECArbL3cajHnytSrp9/mq4+GNgjq+cc7k1dcdLR9XxgpnE403D5kFZXoRktdvPZQGn/nt+0lZo6Iahz/Sx7PiEJeGuMw1T9dMUbfXSm8NAz5vMJyeNYyUlNf7wmDICzv6cV5329muWKml21Nz0WYAvtbxw0/6YiUiOJxXQkcNPqOPQmKopCRVHoxckT6clXevF2v/hPuoYhPqSp+qOZ8kpNHQIB3PBB/wiq7Kb9VHdmPc77SplzAO5g3QoA1l7POQB4N+IAwCIOACziAMAiDgAs4gDAIg4ALOIAwCIOACziAMAiDgAs4gDAKmEcUk2KQpPepsexK8r8etYVJ0HB/Xf7VlchJIqPNzGu3VDCOABzU/XPM6lypM9uRaBdjaTLH+/5EoBtdUNQt3Wfj7m9iAPKbXShTBUdPV3+7NBW9VDKLobvvBtWW+MFZoGHMNTFZUONTyJpfimfVlWRMo2XL1b89oLCi4ufX44Vns/jYZYEbHUVmrq6Qvrt+zaDQtM9zm4hDii94UWmRrOqtqSh5qcU4+tlDxZXGg9KR9I8BuGZ/rc39uJqYfu1rihxwHu1nwU1Dud7Zo2P9/5GltayXsnoQlmzoWpL0qiuxx9L2fn1M9SfHqmSz/Rq8YYe6ux1VWEpKLiLOOC9hs/D+988K6/BuY71St6eWlTb0vFjHVUy/bj0eNEnFen3X29eP/SXN8p1pMfHkriGqMWEJHbC8CKTDquKnx6pcnlxI2jZb7n08eObX3d++kgV/aFfCcM7EQfshtGFMkWq1Sp3vqWY/vSz8kpNjcVXkG11m5G0iEimN7kUVe**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)
![](data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAUAAAAC4CAYAAACSJjVqAAALz0lEQVR4nO3dbWwb9QHH8Z8dOy6pSR9AbV1IIRuIBkhSijqtibSpk5LRIZhKXhiVbVIZNLA3SJ***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)
在这个电路中,I 是要测量的电流,R 是电流检测电阻,Vout 是通过运放放大的电压信号。
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