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AN4451 Scheda tecnica(PDF) 4 Page - STMicroelectronics

Il numero della parte AN4451
Spiegazioni elettronici  Signal conditioning for a UV sensor
PDF  15 Pages
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Produttore elettronici  STMICROELECTRONICS [STMicroelectronics]
Homepage  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

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How does the UV sensor work
AN4451
4/15
DocID025985 Rev 1
1.2
Application example
The UV sensor under consideration in this application note is the GUVA-C22SD from the
Genuv Company (see Figure 2).
Figure 2: UV sensor application
The GUVA-
C22SD sensor delivers a current of 26 nA/UV index. Rf is set @ 8.2 MΩ.
Consequently, this sensor receives UV radiation with an index of 4 (Vout = 26 nA * 4 *
8.2 MΩ = 852.8 mV).
1.3
Input offset voltage (Vio)
As the ideal op-amp does not exist, it must be accepted that the op-amp itself has an
impact. For example, an op-amp adds a DC offset on the output which is directly linked to
the input voltage offset (see formula (3)).
Consequently, it is better to choose an op-amp with a low input voltage offset (Vio). The
OA1MPA is a good op-amp in this respect as it offers a maximum Vio of 200 µV. By taking
the Vio into account, the Vout becomes: Vout = 26 nA * 4 * 8.2 MΩ ± 200 µV. Thus, Vout is
in the range [852.6 mV:853 mV] which is an error of 234 ppm!
1.4
Feedback resistance
As the current generated by the UV sensor is extremely small, it is advised to use the
largest feedback resistor possible to benefit from the ADC performance. Even though it
may seem paradoxical, a large feedback resistor also helps to improve the SNR.
Effectively, resistance noise is thermal noise which is defined as: en_Rf = √4*K*T*Rf,
where K is the Boltzmann’s constant (1.38x10
-23 J/K) and T is Temperature ºK (T ºC +
273.15). The SNR is expressed in formula (4).
By using a large feedback resistor, the SNR is improved by √Rf.
UV radiation
Index 4
104nA
GUVA-C22SD
+
-
Vcc
8.2M
Ω
Vout
10pF
Uv sensor
OA1MPA



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