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S9S08SG8E2MSC Datasheet, PDF (294/320 Pages) Freescale Semiconductor, Inc – MC9S08SG8 MC9S08SG4 Data Sheet Addendum
Appendix A Electrical Characteristics
Table A-6. DC Characteristics (continued)
Temp Rated2
Num C
Characteristic
Symbol
Condition
Min
Typ1
Max
Unit
Stand
ard
AEC
Grade
0
23
T
Low-voltage inhibit reset/recover
hysteresis
Vhys
5V
3V
—
100
—
x
x
mV
—
60
—
x
x
24 P Bandgap Voltage Reference11
VBG
1.18
1.20
1.21
V
x
1.17
1.20
1.22
V
x
1 Typical values are measured at 25C. Characterized, not tested.
2 Electrical characteristics only apply to the temperature rated devices marked with x.
3 When a pin interrupt is configured to detect rising edges, pulldown resistors are used in place of pullup resistors.
4 The specified resistor value is the actual value internal to the device. The pullup value may measure higher when measured externally on
the pin.
5 Power supply must maintain regulation within operating VDD range during instantaneous and operating maximum current conditions. If
positive injection current (VIn > VDD) is greater than IDD, the injection current may flow out of VDD and could result in external power supply
going out of regulation. Ensure external VDD load will shunt current greater than maximum injection current. This will be the greatest risk
when the MCU is not consuming power. Examples are: if no system clock is present, or if clock rate is very low (which would reduce overall
power consumption).
6 All functional non-supply pins are internally clamped to VSS and VDD.
7 Input must be current limited to the value specified. To determine the value of the required current-limiting resistor, calculate resistance
values for positive and negative clamp voltages, then use the larger of the two values.
8 The RESET pin does not have a clamp diode to VDD. Do not drive this pin above VDD.
9 Maximum is highest voltage that POR will occur.
10 Simulated, not tested
11 Factory trimmed at VDD = 5.0 V
2
150°C
25°C
–40°C
1.5
1
0.5
Max 1.5V@20mA
1.0
150°C
25°C
–40°C
0.8
0.6
0.4
0.2
Max 0.8V@5mA
0
0
5
10
15
20
25
IOL (mA)
a) VDD = 5V, High Drive
0
0
2
4
6
8
10
IOL (mA)
b) VDD = 3V, High Drive
Figure A-1. Typical VOL vs IOL, High Drive Strength
MC9S08SG8 MCU Series Data Sheet, Rev. 7
290
Freescale Semiconductor