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A1225LLTTR-T 参数 Datasheet PDF下载

A1225LLTTR-T图片预览
型号: A1225LLTTR-T
PDF下载: 下载PDF文件 查看货源
内容描述: [Analog Circuit]
分类和应用:
文件页数/大小: 13 页 / 280 K
品牌: SANKEN [ SANKEN ELECTRIC ]
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A1225, A1227  
and A1229  
Hall Effect Latch for High Temperature Operation  
Functional Description and Application Information  
Switching Behavior  
Application Information  
The output of the A1225, A1227, and A1229 devices switches  
low (turns on) when a magnetic field perpendicular to the Hall  
element exceeds the operate point threshold, BOP (see figure 1).  
After turn-on, the output is capable of sinking 25 mA and the  
output voltage is VOUT(sat). Notice that the device latches; that is,  
a south pole of sufficient strength towards the branded surface  
of the device turns the device on, and the device remains on with  
removal of the south pole.  
The simplest form of magnet that will operate these devices is a  
ring magnet, as shown in figure 2. Other methods of operation  
are possible.  
In three-wire applications the device output is connected through  
a pull-up resistor to the supply pin or separate battery voltage  
(figure 3). Switching of the output signal indicates sufficient  
change of the magnetic field.  
When the magnetic field is reduced below the release point, BRP  
the device output goes high (turns off). The difference between  
the magnetic operate point and release point is the hysteresis,  
BHYS, of the device. This built-in hysteresis allows clean switch-  
ing of the output, even in the presence of external mechanical  
vibration and electrical noise.  
,
When the device is powered-on in the hysteresis range, less than  
BOP and higher than BRP, the device output goes high. The correct  
output state is attained after the first excursion beyond BOP or  
BRP  
.
V+  
VCC  
Figure 2. Typical magnetic target configuration using a ring magnet  
VPULLUP  
V+  
RPULLUP  
VOUT(sat)  
Device  
Output  
A122x  
0
VOUT  
VCC  
B–  
B+  
CL  
(Optional)  
GND  
CBYPASS  
BHYS  
Figure 1. Output switching characteristics  
Figure 3. Typical 3-wire application circuit  
Allegro MicroSystems, Inc.  
115 Northeast Cutoff  
9
Worcester, Massachusetts 01615-0036 U.S.A.  
1.508.853.5000; www.allegromicro.com