Product data

134
Item Symbol Min Typ Max Unit Test Conditions
Three-state
leakage
current
(off state)
Ports 1 to 6 I
TSI
1.0 µA V
in
= 0.5 to
V
CC
– 0.5 V
Input
pull-up
MOS
Ports 1 to 3 –I
P
50 300 µA V
in
= 0 V,
V
CC
= 4.5 V to
5.5 V
current
30 200 µA V
in
= 0 V,
V
CC
< 4.5 V
Input
capacitance
RES (4) C
in
80 pF V
in
= 0 V,
f = 1 MHz,
NMI 50 pF
T
a
= 25°C
P52, P47,
P24, P23
20 pF
Input pins
except (4) above
15 pF
Current Normal operation I
CC
55 75 mA f = 16 MHz
dissipation
*
5
Sleep mode 42 62 mA f = 16 MHz
Standby mode
*
6
0.01 5.0 µA T
a
50°C
20.0 µA 50°C < T
a
Analog
power
During A/D
conversion
Al
CC
1.5 3.0 mA
supply
current
Idle 0.01 5.0 µA AV
CC
=
2.0 V to 5.5 V
Analog power supply voltage
*
1
AV
CC
4.0 5.5 V Operating
2.0 5.5 V Idle/not used
RAM standby voltage V
RAM
2.0 V
Notes: *1 Do not leave the AV
CC
, and AV
SS
pins open even if the A/D converter is not used.
Even if the A/D converter is not used, apply a value in the range 2.0 V to 5.5 V to AV
CC
by connection to the power supply (V
CC
), or some other method.
*2 P67 to P60 include supporting module inputs multiplexed on those pins.
*3 IRQ2 includes the ADTRG signal multiplexed on that pin.
*4 The upper limit of the port 6 applied voltage is V
CC
+ 0.3 V when CIN input is not
selected, and the lower of V
CC
+ 0.3 V and AV
CC
+ 0.3 V when CIN input is selected.
When a pin is in output mode, the output voltage is equivalent to the applied voltage.
*5 Current dissipation values are for V
IH
min = V
CC
– 0.5 V and V
IL
max = 0.5 V with all
output pins unloaded and the on-chip pull-up MOSs in the off state.
*6 The values are for V
RAM
V
CC
< 4.0 V, V
IH
min = V
CC
× 0.9, and V
IL
max = 0.3 V.