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HAL805UT-E 参数 Datasheet PDF下载

HAL805UT-E图片预览
型号: HAL805UT-E
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  
5. Programming of the Sensor  
Read a register (see Fig. 53)  
After evaluating this command, the sensor answers  
with the Acknowledge Bit, 14 Data Bits, and the  
Data Parity Bit on the output.  
5.1. Definition of Programming Pulses  
The sensor is addressed by modulating a serial tele-  
gram on the supply voltage. The sensor answers with  
a serial telegram on the output pin.  
Programming the EEPROM cells (see Fig. 54)  
After evaluating this command, the sensor answers  
with the Acknowledge Bit. After the delay time tw,  
the supply voltage rises up to the programming volt-  
age.  
The bits in the serial telegram have a different bit time  
for the VDD-line and the output. The bit time for the  
V
DD-line is defined through the length of the Sync Bit  
Activate a sensor (see Fig. 55))  
at the beginning of each telegram. The bit time for the  
output is defined through the Acknowledge Bit.  
If more than one sensor is connected to the supply  
line, selection can be done by first deactivating all  
sensors. The output of all sensors will be pulled to  
ground by the internal 10 kresistors. With an Acti-  
vate pulse on the appropriate output pin, an individ-  
ual sensor can be selected. All following commands  
will only be accepted from the activated sensor.  
A logical 0is coded as no voltage change within the  
bit time. A logical 1is coded as a voltage change  
between 50% and 80% of the bit time. After each bit, a  
voltage change occurs.  
5.2. Definition of the Telegram  
t
t
f
r
V
DDH  
Each telegram starts with the Sync Bit (logical 0), 3  
bits for the Command (COM), the Command Parity Bit  
(CP), 4 bits for the Address (ADR), and the Address  
Parity Bit (AP).  
t
t
p0  
p0  
logical 0  
or  
V
V
DDL  
DDH  
There are 4 kinds of telegrams:  
t
p1  
Write a register (see Fig. 52)  
t
t
p0  
After the AP Bit, follow 14 Data Bits (DAT) and the  
Data Parity Bit (DP). If the telegram is valid and the  
command has been processed, the sensor answers  
with an Acknowledge Bit (logical 0) on the output.  
p0  
logical 1  
or  
t
V
p1  
DDL  
Fig. 51: Definition of logical 0 and 1 bit  
Table 51: Telegram parameters  
Symbol  
Parameter  
Pin  
Min.  
Typ.  
Max.  
Unit  
Remarks  
V
Supply Voltage for Low Level  
during Programming  
1
5
5.6  
6
V
DDL  
DDH  
V
Supply Voltage for High Level  
during Programming  
1
6.8  
8.0  
8.5  
V
t
t
t
t
Rise time  
Fall time  
1
1
1
3
0.05  
0.05  
1.8  
4
ms  
ms  
ms  
ms  
r
f
Bit time on V  
1.7  
2
1.75  
3
t
is defined through the Sync Bit  
p0  
p0  
DD  
Bit time on output pin  
t
is defined through the  
pOUT  
pOUT  
Acknowledge Bit  
t
Voltage Change for logical 1  
1, 3  
1
50  
65  
12  
80  
%
V
% of t or t  
p1  
p0  
pOUT  
V
Supply Voltage for  
11.95  
12.1  
DDPROG  
Programming the EEPROM  
t
Programming Time for EEPROM  
1
95  
100  
105  
ms  
PROG  
Micronas  
19  
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