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A1183LUA 参数 Datasheet PDF下载

A1183LUA图片预览
型号: A1183LUA
PDF下载: 下载PDF文件 查看货源
内容描述: 灵敏双线现场可编程稳定斩波型单极霍尔效应开关 [Sensitive Two-Wire Field-Programmable Chopper-Stabilized Unipolar Hall-Effect Switches]
分类和应用: 开关
文件页数/大小: 16 页 / 356 K
品牌: ALLEGRO [ ALLEGRO MICROSYSTEMS ]
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A1180/81/82/83  
Sensitive Two-Wire Field-Programmable Chopper-Stabilized Unipolar Hall Effect Switches  
Chopper Stabilization Technique  
A limiting factor for switchpoint accuracy when using Hall  
effect technology is the small signal voltage developed across  
the Hall element. This voltage is proportionally small relative to  
the offset that can be produced at the output of the Hall sensor  
device. This makes it difcult to process the signal and maintain  
an accurate, reliable output over the specied temperature and  
voltage range.  
technique is used, where the sampling is performed at twice  
the chopper frequency (400KHz). The sampling demodulation  
process produces higher accuracy and faster signal processing  
capability. Using this chopper stabilization approach, the chip is  
desensitized to the effects of temperature and stress. This tech-  
nique produces devices that have an extremely stable quiescent  
Hall output voltage, is immune to thermal stress, and has precise  
recoverability after temperature cycling. This technique is made  
possible through the use of a BiCMOS process which allows the  
use of low-offset and low-noise ampliers in combination with  
high-density logic integration and sample-and-hold circuits.  
Chopper stabilization is a unique approach used to minimize  
Hall offset on the chip. The Allegro patented technique, dynamic  
quadrature offset cancellation, removes key sources of the output  
drift induced by temperature and package stress. This offset  
reduction technique is based on a signal modulation-demodula-  
tion process. The undesired offset signal is separated from the  
magnetically induced signal in the frequency domain through  
modulation. The subsequent demodulation acts as a modulation  
process for the offset causing the magnetically induced signal  
to recover its original spectrum at base band while the dc offset  
becomes a high frequency signal. Then, using a low-pass lter,  
the signal passes while the modulated dc offset is suppressed.  
The repeatability of switching with a magnetic eld is slightly  
affected using a chopper technique. The Allegro high frequency  
chopping approach minimizes the affect of jitter and makes it  
imperceptible in most applications. Applications that may notice  
the degradation are those that require the precise sensing of alter-  
nating magnetic elds such as ring magnet speed sensing. For  
those applications, Allegro recommends the “low jitter” family  
of digital sensors.  
The chopper stabilization technique uses a 200 kHz high fre-  
quency clock. For demodulation process, a sample-and-hold  
Regulator  
Clock/Logic  
Low-Pass  
Filter  
Hall Element  
Amp  
Figure 2. Chopper stabilization circuit (dynamic quadrature offset cancellation)  
Allegro MicroSystems, Inc.  
9
115 Northeast Cutoff, Box 15036  
A1180-DS, Rev. 2  
Worcester, Massachusetts 01615-0036 (508) 853-5000  
www.allegromicro.com  
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