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AN1828 bảng dữ liệu(PDF) 12 Page - STMicroelectronics

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AN1828 bảng dữ liệu(HTML) 12 Page - STMicroelectronics

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PIR (PASSIVE INFRARED) DETECTOR USING ST7FLITE05/09/SUPERLITE
2.1 SIGMA-DELTA IMPLEMENTATION
Sigma-Delta (as shown in Figure 7) needs an integrator, comparator and digital filter for 1 bit
DAC.
Figure 7. Sigma-Delta Conversion concept
Note: Refer to AN1827 for more details on Sigma-Delta implementation
These components are implemented in the application as follows:
– Comparator: On-chip ADC is used
– 1-Bit DAC: I/O Port PB2 is used
– Integrator: External Resistor and capacitor.
The Sigma-Delta software procedure is as follows:
1. Fix a threshold level for the transistor output (measured by the microcontroller’s ADC
input). This is selected as 3V (96h) in our application.
2. Configure the AR Timer to generate an overflow interrupt every 52 µs.
3. Read the value of the transistor Q1 output signal in ISR (interrupt service routine) using the
microcontroller’s ADC input.
4. Make the PWM signal HIGH if the ADC input is less than the threshold level.
5. Make the PWM signal LOW if the ADC input is greater than the threshold level.
By reading the output signal of transistor Q1 with the on-chip ADC, the biasing signal (1-bit
DAC) is adjusted by software.
On motion detection, the signal from the sensor tries to change the threshold voltage level. But
as the threshold voltage is kept at a fixed level by the biasing signal, this leads to a change in
the duty cycle of the biasing signal. This variation in the duty cycle can be detected by calcu-
lating the number of times the biasing signal (calculated by variable low_var as also shown in
flow chart) is made LOW in a fixed time, 52msec (1000 times the periodic interrupt) in our soft-
ware.
Digital
Filter
VREF
1 Bit DAC
+
+
-
-
Integrator
Comparator



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