142
EPSON
S1C63666 TECHNICAL MANUAL
CHAPTER 7: ELECTRICAL CHARACTERISTICS
CHAPTER
7 E
LECTRICAL
C
HARACTERISTICS
7.1 Absolute Maximum Rating
Item
Supply voltage
Input voltage (1)
Input voltage (2)
Permissible total output current
∗
1
Operating temperature
Storage temperature
Soldering temperature / time
Permissible dissipation
∗
2
∗
1
∗
2
(V
SS
=0V)
Symbol
V
DD
V
I
V
IOSC
Σ
I
VDD
Topr
Tstg
Tsol
P
D
Rated value
-0.5 to 4.5
-0.5 to V
DD
+ 0.3
-0.5 to V
D1
+ 0.3
10
-20 to 70
-65 to 150
260
°
C, 10sec (lead section)
250
Unit
V
V
V
mA
°
C
°
C
–
mW
The permissible total output current is the sum total of the current (average current) that simultaneously flows from the
output pin (or is drawn in).
In case of plastic package (QFP20-144pin).
7.2 Recommended Operating Conditions
Item
Supply voltage
Oscillation frequency
SVD terminal input voltage
(Ta=-20 to 70
°
C)
Symbol
V
DD
f
OSC1
f
OSC3
SVD
Unit
V
V
V
kHz
kHz
kHz
kHz
V
Max.
3.6
3.6
3.6
–
1,430
2,000
4,000
3.6
Typ.
3.0
3.0
3.0
32.768
1,100
Min.
1.5
2.4
2.4
–
770
200
Condition
V
SS
=0V
Normal mode, OSC3 OFF
Normal mode, OSC3=4MHz (Max.)
Halver mode, OSC3 OFF
Crystal oscillation
CR oscillation (built-in R), V
DD
=2.4 to 3.6V
CR oscillation (external R), V
DD
=2.4 to 3.6V
Ceramic oscillation, V
DD
=2.4 to 3.6V
SVD
≤
V
DD
, V
SS
=0V
7.3 DC Characteristics
Item
High level input voltage (1)
High level input voltage (2)
Low level input voltage (1)
Low level input voltage (2)
High level input current (1)
High level input current (2)
High level input current (3)
Low level input current (1)
Low level input current (2)
Low level input current (3)
High level output current (1)
High level output current (2)
Low level output current (1)
Low level output current (2)
Common output current
Segment output current
(during LCD output)
Segment output current
(during DC output)
R/f converter transistor ON
resistance
Unless otherwise specified:
V
DD
=3.0V, V
SS
=0V, f
OSC1
=32.768kHz, Ta=25
°
C, V
D1
–V
D2
/V
C1
–V
C3
are internal voltage, C
1
–C
8
=0.2
µ
F
Symbol
V
IH1
V
IH2
V
IL1
V
IL2
I
IH1
I
IH2
I
IH3
I
IL1
I
IL2
I
IL3
I
OH1
I
OH2
I
OL1
I
OL2
I
OH3
I
OL3
I
OH4
I
OL4
I
OH5
I
OL5
R
RFINTr
R
REFTr
R
SEN0Tr
R
SEN1Tr
Unit
V
V
V
V
µ
A
µ
A
µ
A
µ
A
µ
A
µ
A
mA
mA
mA
mA
µ
A
µ
A
µ
A
µ
A
µ
A
µ
A
Ω
Ω
Ω
Max.
V
DD
V
DD
0.2·V
DD
0.1·V
DD
0.5
0.5
20
0
0
0
-0.5
-0.5
-10
-10
-300
40
100
100
Typ.
12
20
50
50
Min.
0.8·V
DD
0.9·V
DD
0
0
0
0
8
-0.5
-0.5
-0.5
0.5
0.5
10
10
300
Condition
K00–03, K10–13,
P00–03, P10–13
RESET, TEST
K00–03, K10–13,
P00–03, P10–13
RESET, TEST
V
IH1
=3.0V
CMPP0, CMPM0
V
IH2
=3.0V
K00–03, K10–13,
No pull down
P00–03, P10–13, RESET, TEST
V
IH2
=3.0V
K00–03, K10–13,
With pull down
P00–03, P10–13, RESET, TEST
V
IL1
=V
SS
CMPP0, CMPM0
V
IL2
=V
SS
K00–03, K10–13,
No pull down
P00–03, P10–13, RESET, TEST
V
IL3
=V
SS
K00–03, K10–13,
With pull down
P00–03, P10–13, RESET, TEST
V
OH1
=0.9·V
DD
R00–03, R10–13,
P00–03, P10–13
V
OH2
=0.9·V
DD
BZ, BZ
V
OL1
=0.1·V
DD
R00–03, R10–13,
P00–03, P10–13
V
OL2
=0.1·V
DD
BZ, BZ
V
OH3
=V
C3
-0.05V COM0–7
V
OL3
=V
SS
+0.05V
V
OH4
=V
C3
-0.05V SEG0–63
V
OL4
=V
SS
+0.05V
V
OH5
=0.9·V
DD
SEG0–63
V
OL5
=0.1·V
DD
V
DS
=0.1V
,
V
DD
=1.5V
V
DS
=0.1V
,
V
DD
=1.5V
V
DS
=0.1V
,
V
DD
=1.5V
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