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HAL805UT-K 参数 Datasheet PDF下载

HAL805UT-K图片预览
型号: HAL805UT-K
PDF下载: 下载PDF文件 查看货源
内容描述: 可编程线性霍尔效应传感器 [Programmable Linear Hall Effect Sensor]
分类和应用: 传感器
文件页数/大小: 24 页 / 356 K
品牌: MICRONAS [ MICRONAS ]
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PRELIMINARY DATA SHEET  
HAL805  
2.2. Digital Signal Processing and EEPROM  
The DSP is the main part of this sensor and performs  
the signal conditioning. The parameters for the DSP  
are stored in the EEPROM registers. The details are  
shown in Fig. 23.  
Filter = 2 kHz  
2000  
1500  
ADC-  
READOUT  
Terminology:  
1000  
SENSITIVITY: name of the register or register value  
Sensitivity:  
name of the parameter  
500  
0
The EEPROM registers consist of three groups:  
Group 1 contains the registers for the adaption of the  
sensor to the magnetic system: MODE for selecting  
the magnetic field range and filter frequency, TC and  
TCSQ for the temperature characteristics of the mag-  
netic sensitivity.  
500  
1000  
1500  
2000  
Range 150 mT  
Range 90 mT  
Range 60 mT  
Range 30 mT  
Group 2 contains the registers for defining the output  
characteristics: SENSITIVITY, VOQ, CLAMP-LOW,  
and CLAMP-HIGH. The output characteristic of the  
sensor is defined by these 4 parameters (see Fig. 24  
and Fig. 25 for examples).  
200150100 50  
0
50 100 150 200 mT  
B
The parameter VOQ (Output Quiescent Voltage) cor-  
responds to the output voltage at B = 0 mT.  
Fig. 26: Typical ADC-READOUT  
versus magnetic field for filter = 2 kHz  
The parameter Sensitivity defines the magnetic sen-  
sitivity:  
VOUT  
Sensitivity =  
B  
The output voltage can be calculated as:  
VOUT Sensitivity × B + VOQ  
During further processing, the digital signal is multi-  
plied with the sensitivity factor, added to the quiescent  
output voltage and limited according to the clamping  
voltage. The result is converted to an analog signal  
and stabilized by a push-pull output transistor stage.  
The output voltage range can be clamped by setting  
the registers CLAMP-LOW and CLAMP-HIGH in order  
to enable failure detection (such as short-circuits to  
VDD or GND and open connections).  
The ADC-READOUT at any given magnetic field  
depends on the programmed magnetic field range but  
also on the filter frequency. Fig. 26 shows the typical  
ADC-READOUT values for the different magnetic field  
ranges with the filter frequency set to 2 kHz. The rela-  
tionship between the minimum and maximum ADC-  
READOUT values and the filter frequency setting is  
listed in the following table.  
Group 3 contains the Micronas registers and LOCK for  
the locking of all registers. The Micronas registers are  
programmed and locked during production and are  
read-only for the customer. These registers are used  
for oscillator frequency trimming, A/D converter offset  
compensation, and several other special settings.  
An external magnetic field generates a Hall voltage on  
the Hall plate. The ADC converts the amplified positive  
or negative Hall voltage (operates with magnetic north  
and south poles at the branded side of the package) to  
a digital value. Positive values correspond to a mag-  
netic north pole on the branded side of the package.  
The digital signal is filtered in the internal low-pass fil-  
ter and is readable in the ADC-READOUT register.  
Depending on the programmable magnetic range of  
the Hall IC, the operating range of the A/D converter is  
from 30 mT...+30 mT up to 150 mT...+150 mT.  
Filter Frequency  
80 Hz  
ADC-READOUT RANGE  
3968...3967  
160 Hz  
1985...1985  
500 Hz  
5292...5290  
1 kHz  
2646...2645  
2 kHz  
1512...1511  
Micronas  
7