Renesas M16C/62P Hardware Manual page 293

Renesas 16-bit single-chip microcomputer
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M16C/62P Group (M16C/62P, M16C/62PT)
Table 23.10 Electrical Characteristics
Symbol
P6_0 to P6_7, P7_2 to P7_7, P8_0 to P8_4, P8_6, P8_7,
H I G H O u t p u t
V o l t a g e
P9_0 to P9_7, P10_0 to P10_7, P11_0 to P11_7, P14_0, P14_1
V
O H
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
P4_0 to P4_7, P5_0 to P5_7, P12_0 to P12_7, P13_0 to P13_7
H I G H O u t p u t
P6_0 to P6_7, P7_2 to P7_7, P8_0 to P8_4, P8_6, P8_7,
V o l t a g e
P9_0 to P9_7, P10_0 to P10_7, P11_0 to P11_7, P14_0, P14_1
V
O H
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
P4_0 to P4_7, P5_0 to P5_7, P12_0 to P12_7, P13_0 to P13_7
H I G H O u t p u t V o l t a g e
V
O H
H I G H O u t p u t V o l t a g e
P6_0 to P6_7, P7_0 to P7_7, P8_0 to P8_4, P8_6, P8_7,
L O W O u t p u t
V o l t a g e
P9_0 to P9_7, P10_0 to P10_7, P11_0 to P11_7, P14_0, P14_1
V
O L
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
P4_0 to P4_7, P5_0 to P5_7, P12_0 to P12_7, P13_0 to P13_7
P6_0 to P6_7, P7_0 to P7_7, P8_0 to P8_4, P8_6, P8_7,
L O W O u t p u t
P9_0 to P9_7, P10_0 to P10_7, P11_0 to P11_7, P14_0, P14_1
V o l t a g e
V
O L
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
P4_0 to P4_7, P5_0 to P5_7, P12_0 to P12_7, P13_0 to P13_7
V
L O W O u t p u t V o l t a g e
O L
L O W O u t p u t V o l t a g e
HOLD, RDY, TA0IN to TA4IN,
Hysteresis
T B 0 I N t o T B 5 I N , I N T 0 t o I N T 5 , N M I ,
V
V
T + -
T -
A D T R G , C T S 0 t o C T S 2 , S C L 0 t o S C L 2 ,
S D A 0 T O S D A 2 , C L K 0 t o C L K 4 , T A 0 O U T t o T A 4 O U T ,
KI0 to KI3, RXD0 to RXD2, SIN3, SIN4
V
V
H y s t e r e s i s
T + -
T -
R E S E T
V
V
H y s t e r e s i s
T + -
T -
X I N
HIGH Input
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
Current
P4_0 to P4_7, P5_0 to P5_7, P6_0 to P6_7, P7_0 to P7_7,
P8_0 to P8_7, P9_0 to P9_7, P10_0 to P10_7, P11_0 to P11_7,
I
I H
P12_0 to P12_7, P13_0 to P13_7, P14_0, P14_1,
XIN, RESET, CNVSS, BYTE
P 0 _ 0 t o P 0 _ 7 , P 1 _ 0 t o P 1 _ 7 , P 2 _ 0 t o P 2 _ 7 , P 3 _ 0 t o P 3 _ 7 ,
L O W I n p u t
P 4 _ 0 t o P 4 _ 7 , P 5 _ 0 t o P 5 _ 7 , P 6 _ 0 t o P 6 _ 7 , P 7 _ 0 t o P 7 _ 7 ,
C u r r e n t
P 8 _ 0 t o P 8 _ 7 , P 9 _ 0 t o P 9 _ 7 , P 1 0 _ 0 t o P 1 0 _ 7 , P 1 1 _ 0 t o P 1 1 _ 7 ,
I
IL
P 1 2 _ 0 t o P 1 2 _ 7 , P 1 3 _ 0 t o P 1 3 _ 7 , P 1 4 _ 0 , P 1 4 _ 1 ,
X I N , R E S E T , C N V S S , B Y T E
R
PULLUP
P0_0 to P0_7, P1_0 to P1_7, P2_0 to P2_7, P3_0 to P3_7,
Pull-Up
Resistance
P 4 _ 0 t o P 4 _ 7 , P 5 _ 0 t o P 5 _ 7 , P 6 _ 0 t o P 6 _ 7 , P 7 _ 2 t o P 7 _ 7 ,
P 8 _ 0 t o P 8 _ 4 , P 8 _ 6 , P 8 _ 7 , P 9 _ 0 t o P 9 _ 7 , P 1 0 _ 0 t o P 1 0 _ 7 ,
P 1 1 _ 0 t o P 1 1 _ 7 , P 1 2 _ 0 t o P 1 2 _ 7 , P 1 3 _ 0 t o P 1 3 _ 7 , P 1 4 _ 0 , P 1 4 _ 1
R
Feedback Resistance
fXIN
R
F e e d b a c k R e s i s t a n c e
f X C I N
V
RAM Retention Voltage
RAM
N O T E S :
1 . R e f e r e n c e d t o V
= V
C C 1
2 . W h e r e t h e p r o d u c t i s u s e d a t V
3 . T h e r e i s n o e x t e r n a l c o n n e c t i o n s f o r p o r t P 1 _ 0 t o P 1 _ 7 , P 4 _ 4 t o P 4 _ 7 , P 7 _ 2 t o P 7 _ 5 a n d P 9 _ 1 i n 8 0 - p i n v e r s i o n .
R
e
. v
2
3 .
0
S
e
p
0
, 1
2
0
0
4
R
E
J
0
9
B
0
1
8
5
0 -
2
3
0
Z
(1)
P a r a m e t e r
H I G H P O W E R
X O U T
L O W P O W E R
H I G H P O W E R
X C O U T
L O W P O W E R
HIGHPOWER
X O U T
L O W P O W E R
H I G H P O W E R
X C O U T
LOWPOWER
XIN
X C I N
= 0 V a t T o p r = - 2 0 t o 8 5 ° C / - 4 0 t o 8 5 ° C , f ( B C L K ) = 2 4 M H z u n l e s s o t h e r w i s e s p e c i f i e d .
= 4 . 2 t o 5 . 5 V , V
C C 2
S S
= 5 V a n d V
= 3 V , r e f e r t o t h e 3 V v e r s i o n v a l u e f o r t h e p i n s p e c i f i e d v a l u e o n t h e V
C C 1
C C 2
page 279
f o
3
6
4
23. Electrical Characteristics (M16C/62P)
V
CC1
M e a s u r i n g C o n d i t i o n
I
= - 5 m A
O H
( 2 )
I
= - 5 m A
O H
= - 2 0 0 µA
I
O H
= - 2 0 0 µ A
( 2 )
I
O H
I
= - 1 m A
O H
I
= - 0 . 5 m A
O H
W i t h n o l o a d a p p l i e d
W i t h n o l o a d a p p l i e d
I
= 5 m A
O L
( 2 )
I
= 5 m A
O L
= 2 0 0 µ A
I
O L
= 2 0 0 µ A
I
( 2 )
O L
I
=1mA
OL
I
= 0 . 5 m A
O L
W i t h n o l o a d a p p l i e d
With no load applied
V
= 5 V
I
V
=0V
I
V
=0V
I
At stop mode
= V
= 5V
CC2
S t a n d a r d
U n i t
M i n .
Typ.
M a x .
V
-2.0
V
CC1
C C 1
V
V
-2.0
V
CC2
C C 2
V
-0.3
V
CC1
C C 1
V
V
-0.3
V
CC2
C C 2
V
-2.0
V
CC1
C C 1
V
V
V
-2.0
C C 1
CC1
2.5
V
1 . 6
2 . 0
V
2 . 0
0 . 4 5
V
0 . 4 5
2.0
V
2 . 0
0
V
0
0 . 2
1 . 0
V
0 . 2
2 . 5
V
0 . 2
0 . 8
V
µ A
5 . 0
µA
-5.0
3 0
50
1 7 0
kΩ
1.5
MΩ
M Ω
1 5
2.0
V
p o r t s i d e .
C C 2

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