STM32F038x6
T
(cycles)
s
28.5
41.5
55.5
71.5
239.5
1. Guaranteed by design, not tested in production.
Symbol
ET
Total unadjusted error
EO
Offset error
EG
Gain error
ED
Differential linearity error
EL
Integral linearity error
ET
Total unadjusted error
EO
Offset error
EG
Gain error
ED
Differential linearity error
EL
Integral linearity error
ET
Total unadjusted error
EO
Offset error
EG
Gain error
ED
Differential linearity error
EL
Integral linearity error
1. ADC DC accuracy values are measured after internal calibration.
2. ADC Accuracy vs. Negative Injection Current: Injecting negative current on any of the standard (non-robust) analog input
pins should be avoided as this significantly reduces the accuracy of the conversion being performed on another analog
input. It is recommended to add a Schottky diode (pin to ground) to standard analog pins which may potentially inject
negative current.
Any positive injection current within the limits specified for I
accuracy.
3. Better performance may be achieved in restricted V
4. Data based on characterization results, not tested in production.
Table 50. R
max for f
AIN
Table 51. ADC accuracy
Parameter
f
f
V
T
f
f
V
T
f
f
V
T
= 14 MHz (continued)
ADC
t
(µs)
S
2.04
2.96
3.96
5.11
17.1
(1)(2)(3)
Test conditions
= 48 MHz,
PCLK
= 14 MHz, R
< 10 kΩ
ADC
AIN
= 3 V to 3.6 V
DDA
= 25 °C
A
= 48 MHz,
PCLK
= 14 MHz, R
< 10 kΩ
ADC
AIN
= 2.7 V to 3.6 V
DDA
−
=
40 to 105 °C
A
= 48 MHz,
PCLK
= 14 MHz, R
< 10 kΩ
ADC
AIN
= 2.4 V to 3.6 V
DDA
= 25 °C
A
and ΣI
INJ(PIN)
INJ(PIN)
, frequency and temperature ranges.
DDA
DocID026079 Rev 3
Electrical characteristics
R
max (kΩ)
AIN
25.2
37.2
50
NA
NA
Typ
Max
±1.3
±1
±1.5
±0.5
±1.5
±0.7
±0.8
±1.5
±3.3
±1.9
±2.8
±2.8
±0.7
±1.3
±1.2
±1.7
±3.3
±1.9
±2.8
±2.8
±0.7
±1.3
±1.2
±1.7
in
Section 6.3.13
does not affect the ADC
(1)
(4)
Unit
±2
LSB
±1
±4
±3
LSB
±4
±3
LSB
71/102
79
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