推荐回答(3个)
霍尔效应从本质上讲是运动的带电粒子在磁场中受洛仑兹力作用引起的偏转。当带电粒子(电子或空穴)被约束在固体材料中,这种偏转就导致在垂直电流和磁场的方向上产生正负电荷的聚积,从而形成附加的横向电场。对于图一所示的半导体试样,若在X方向通以电流Is,在Z方向加磁场B,则在Y方向即试样A,A′电极两侧就开始聚积异号电荷而产生相应的附加电场。电场的指向取决定于试样的电类型。显然,该电场是阻止载流子继续向侧面偏移。
霍尔传感器在科研中作用:
霍尔器件具有许多优点,它们的结构牢固,体积小,重量轻,寿命长,安装方便,功耗小,频率高(可达1MHZ),耐震动,不怕灰尘、油污、水汽及盐雾等的污染或腐蚀。
霍尔线性器件的精度高、线性度好;霍尔开关器件无触点、无磨损、输出波形清晰、无抖动、无回跳、位置重复精度高(可达μm级)。取用了各种补偿和保护措施的霍尔器件的工作温度范围宽,可达-55℃~150℃。
按被检测的对象的性质可将它们的应用分为:直接应用和间接应用。前者是直接检测出受检测对象本身的磁场或磁特性,后者是检测受检对象上人为设置的磁场,用这个磁场来作被检测的信息的载体,通过它,将许多非电、非磁的物理量例如力、力矩、压力、应力、位置、位移、速度、加速度、角度、角速度、转数、转速以及工作状态发生变化的时间等,转变成电量来进行检测和控制
霍尔传感器可以作为开关传感器或者线性传感器。
1、霍尔传感器介绍
是根据霍尔效应制作的一种磁场传感器。霍尔效应是磁电效应的一种,这一现象是霍尔(A.H.Hall,1855—1938)于1879年在研究金属的导电机构时发现的。后来发现半导体、导电流体等也有这种效应,而半导体的霍尔效应比金属强得多,利用这现象制成的各种霍尔元件,广泛地应用于工业自动化技术、检测技术及信息处理等方面。霍尔效应是研究半导体材料性能的基本方法。
2、分类
霍尔传感器分为线型霍尔传感器和开关型霍尔传感器两种。
3、优点
I、霍尔传感器可以测量任意波形的电流和电压,如:直流、交流、脉冲波形等,甚至对瞬态峰值的测量。副边电流忠实地反应原边电流的波形。而普通互感器则是无法与其比拟的,它一般只适用于测量50Hz正弦波;
II、原边电路与副边电路之间有良好的电气隔离,隔离电压可达9600Vrms;
III、精度高:在工作温度区内精度优于1%,该精度适合于任何波形的测量;
IV、线性度好:优于0.1%
4、用途
I、位移测量:两块永久磁铁同极性相对放置,将线性型霍尔传感器置于中间,其磁感应强度为零,这个点可作为位移的零点,当霍尔传感器在Z轴上作△Z位移时,传感器有一个电压输出,电压大小与位移大小成正比。
II、力测量:如果把拉力、压力等参数变成位移,便可测出拉力及压力的大小,按这一原理可制成的力传感器。
III、角速度测量:在非磁性材料的圆盘边上粘一块磁钢,霍尔传感器放在靠近圆盘边缘处,圆盘旋转一周,霍尔传感器就输出一个脉冲,从而可测出转数(计数器),若接入频率计,便可测出转速。
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