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SPC560P50L5 Datasheet(PDF) 51 Page - STMicroelectronics

Part # SPC560P50L5
Description  Fail safe protection
PDF  112 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

SPC560P50L5 Datasheet(HTML) 51 Page - STMicroelectronics

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SPC560P44Lx, SPC560P50Lx
Electrical characteristics
Doc ID 14723 Rev 9
51/112
Figure 5 shows the constraints of the different power supplies.
VINAN0
SR
ADC0 and shared ADC0/1 analog
input voltage(6)
VDD_HV_REG >
2.7 V
VSS_HV_ADV0
0.3
VDD_HV_ADV0 +
0.3
V
VDD_HV_REG <
2.7 V
VSS_HV_ADV0
VDD_HV_ADV0
V
VINAN1
SR ADC1 analog input voltage(7)
VDD_HV_REG >
2.7 V
VSS_HV_ADV1
0.3
VDD_HV_ADV1 +
0.3
V
VDD_HV_REG <
2.7 V
VSS_HV_ADV1
VDD_HV_ADV1
V
IINJPAD
SR
Injected input current on any pin
during overload condition
—–10
10
mA
IINJSUM
SR
Absolute sum of all injected input
currents during overload condition
—–50
50
mA
IVDD_LV
SR
Low voltage static current sink
through VDD_LV
——
155
mA
TSTG
SR Storage temperature
–55
150
°C
TJ
SR Junction temperature under bias
–40
150
°C
1.
Functional operating conditions are given in the DC electrical characteristics. Absolute maximum ratings are stress ratings
only, and functional operation at the maxima is not guaranteed. Stress beyond the listed maxima may affect device
reliability or cause permanent damage to the device.
2.
Absolute maximum voltages are currently maximum burn-in voltages. Absolute maximum specifications for device stress
have not yet been determined.
3.
The difference between each couple of voltage supplies must be less than 300 mV,
|VDD_HV_IOy – VDD_HV_IOx | < 300 mV.
4.
The difference between ADC voltage supplies must be less than 100 mV, |VDD_HV_ADC1 – VDD_HV_ADC0| < 100 mV.
5.
Guaranteed by device validation
6.
Not allowed to refer this voltage to VDD_HV_ADV1, VSS_HV_ADV1
7.
Not allowed to refer this voltage to VDD_HV_ADV0, VSS_HV_ADV0
Table 9.
Absolute maximum ratings(1) (continued)
Symbol
Parameter
Conditions
Value
Unit
Min
Max(2)



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