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HMC6042CUTTAPE PDF预览

HMC6042CUTTAPE

更新时间: 2024-02-25 08:58:24
品牌 Logo 应用领域
霍尼韦尔 - HONEYWELL 传感器
页数 文件大小 规格书
7页 158K
描述
2-Axis Magnetic Sensor Circuit

HMC6042CUTTAPE 技术参数

生命周期:ActiveReach Compliance Code:unknown
风险等级:5.75其他特性:SENSITIVITY MAX IS 1.25MV/V/GAUSS
主体宽度:3.6 mm主体高度:1.06 mm
主体长度或直径:5 mm最大磁场范围:0.6 mT
最小磁场范围:-0.6 mT安装特点:SURFACE MOUNT
最大工作电流:7 mA最高工作温度:125 °C
最低工作温度:-40 °C输出范围:0.15-2.85V
输出类型:VOLTAGE OUTPUT封装形状/形式:RECTANGULAR
电阻:6 Ω传感器/换能器类型:MAGNETIC FIELD SENSOR,MAGNETORESISTIVE
最大供电电压:3.6 V最小供电电压:2.4 V
表面贴装:YES端接类型:SOLDER
Base Number Matches:1

HMC6042CUTTAPE 数据手册

 浏览型号HMC6042CUTTAPE的Datasheet PDF文件第1页浏览型号HMC6042CUTTAPE的Datasheet PDF文件第2页浏览型号HMC6042CUTTAPE的Datasheet PDF文件第3页浏览型号HMC6042CUTTAPE的Datasheet PDF文件第4页浏览型号HMC6042CUTTAPE的Datasheet PDF文件第6页浏览型号HMC6042CUTTAPE的Datasheet PDF文件第7页 
HMC6042  
substrate. Irons with a tip temperature no greater than 315°C should be used. Excessive rework risks the copper pads  
pulling away into the molten solder.  
SCHEMATIC DIAGRAM  
HMC6042  
VDD1  
VDD1  
HMC6042  
GND  
IN X+  
GND  
OUT X  
CLK  
AN0  
AN1  
G
AMR  
IN X-  
SERIAL  
I/O  
TXD  
RXD  
DO0  
FB X  
GND  
AN2  
Host µC  
IN Y+  
IN Y-  
OUT Y  
FB Y  
Vdd  
Vss  
AMR  
G
G
VDD  
GND  
GND  
IN Z+  
IN Z-  
OUT Z  
FB Z  
2.2µF  
+
C1  
S/R IN  
VDD2  
SET/RESET  
S/R+  
S/R-  
S/R C  
0.22µF  
C2  
BASIC DEVICE OPERATION  
The Honeywell HMC6042 magnetoresistive sensor circuit is a pair of sensor and analog support circuits to measure  
magnetic fields. With power supply applied, the sensor converts any incident magnetic field in the sensitive axis direction  
to a differential voltage output. In addition to the bridge circuit, the sensors have two on-chip magnetically coupled straps;  
the offset strap and the set/reset strap. These straps are Honeywell patented features for incident field adjustment and  
magnetic domain alignment; and eliminate the need for external coils positioned around the sensors.  
The magnetoresistive sensors are made of a nickel-iron (Permalloy) thin-film deposited on a silicon wafer and patterned  
as a resistive strip element. In the presence of a magnetic field, a change in the bridge resistive elements causes a  
corresponding change in voltage across the bridge outputs.  
www.honeywell.com  
5

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