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SPC56EC64L8 Datasheet(PDF) 91 Page - STMicroelectronics

Part # SPC56EC64L8
Description  32-bit MCU family built on the Power Architecture® for automotive body electronics applications
PDF  118 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

SPC56EC64L8 Datasheet(HTML) 91 Page - STMicroelectronics

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SPC564Bxx - SPC56ECxx
Electrical Characteristics
Doc ID 17478 Rev 4
91/118
RSW1
CC
Internal resistance
of analog source
—1
k
Ω
RSW2
CC
Internal resistance
of analog source
—2
k
Ω
RAD
CC
Internal resistance
of analog source
—0.3
k
Ω
IINJ
SR
Input current
Injection
Current
injection
on one
ADC_1
input,
different
from the
converted
one
VDD = 3.3
V ± 10%
−5—
5
mA
VDD = 5.0
V ± 10%
−5—
5
INLP
CC
Absolute Integral
non-linearity-
Precise channels
No overload
1
3
LSB
INLS
CC
Absolute Integral
non-linearity-
Standard channels
No overload
1.5
5
LSB
DNL
CC
Absolute
Differential non-
linearity
No overload
0.5
1
LSB
OFS
CC
Absolute Offset
error
—2
LSB
GNE
CC
Absolute Gain
error
—2
LSB
TUEP(9)
CC
Total Unadjusted
Error for precise
channels, input
only pins
Without current
injection
−66
With current injection
−88
TUES(9)
CC
Total Unadjusted
Error for standard
channel
Without current
injection
−10
10
LSB
With current injection
−12
12
LSB
1.
VDD = 3.3 V ± 10% / 5.0 V ± 10%, TA = −40 to 125 °C, unless otherwise specified.
2.
Analog and digital VSS_HV must be common (to be tied together externally).
3.
PA3, PA7, PA10, PA11 and PE12 ADC_1 channels are coming from VDD_HV_B domain hence VDD_HV_ADC1 should be
within ±100 mV of VDD_HV_B when these channels are used for ADC_1.
4.
VDD_HV_ADC1 can operate at 5V condition while VDD_HV_B can operate at 3.3V provided that ADC_1 channels coming
from VDD_HV_B domain are limited in max swing as VDD_HV_B.
Table 44.
Conversion characteristics (12-bit ADC_1) (continued)
Symbol
Parameter
Conditions(1)
Value
Unit
Min
Typ
Max



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