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MLX90821 Datasheet(PDF) 21 Page - Melexis Microelectronic Systems

Part # MLX90821
Description  Relative Pressure Sensor IC
PDF  40 Pages
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Manufacturer  MELEXIS [Melexis Microelectronic Systems]
Direct Link  http://www.melexis.com
Logo MELEXIS - Melexis Microelectronic Systems

MLX90821 Datasheet(HTML) 21 Page - Melexis Microelectronic Systems

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MLX90821
Relative Pressure Sensor IC
Page 21 of 40
REV 004 – 4 MAR 2021
3901090821
NTC Temperature Linearization
The linearization of the NTC temperature signal is split up in several stages. A schematic overview of these steps
can be seen in Figure 11.
VDDA
Rs
Rntc
VDDA/2
ADC
Vdiv
ADC_raw[15:0]
Calibration
&
Compensation
LUT
ADC_ROM
=>
Tntc
ADC_comp[15:0]
3 or 4 points
MLX calibration
@ 3 temp
Figure 11: Block diagram NTC linearization
The complete system can be divided into 5 separate stages.
1. A resistor divider with internal resistor Rs is used to linearize Rntc into a voltage.
2. A fully differential amplifier with unity gain is used to drive the ADC.
3. The 16-bit ADC is being used to convert the analog resistor divider output voltage into a digital signal
called ADC_raw.
4. With the help of calibration data saved in EEPROM the microcontroller will perform a first compensation
on ADC_raw converting in to ADC_comp. This new value is targeted to be as close as possible to the value
ADC_ROM.
5. Finally a look up table (LUT) will be used to convert the ADC_ROM values into the Tntc value which is the
desired linearized NTC temperature.
The default optional NTC characteristic can be found in Table 14. When using an NTC which does not match the
coefficients described above, it is advised to contact Melexis.
The EEPROM coefficients which are used for the conversion from ADC_raw to ADC_comp are N0 to N3,
N0_Diff_Low to N3_Diff_Low, N0_Diff_High to N3_Diff_High and TEMP1 to TEMP3.



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