LC7153, 7153M
No.4160–4/11
Electrical Characteristics at Ta = –40 to +85C, VDD=4.0 to 5.5V, VSS=0V, unless otherwise noted.
r
e
t
e
m
a
r
a
Pl
o
b
m
y
Ss
n
o
i
t
i
d
n
o
C
s
g
n
i
t
a
R
t
i
n
U
n
i
mp
y
tx
a
m
t
n
e
r
u
c
y
l
p
u
SI D
D
V D
D
f
,
V
5
.
4
=
I
.
1
e
t
o
n
e
S
.
z
H
M
0
6
=0
.
90
.
8
1A
m
V D
D
f
,
V
5
.
5
=
I
.
1
e
t
o
n
e
S
.
z
H
M
0
6
1
=0
.
0
20
.
0
4A
m
V D
D
f
,
V
5
.
4
=
I
.
2
e
t
o
n
e
S
.
z
H
M
0
6
=0
.
50
.
0
1A
m
V D
D
f
,
V
5
.
5
=
I
.
2
e
t
o
n
e
S
.
z
H
M
0
6
1
=0
.
1
10
.
2
2A
m
e
g
a
t
l
o
v
t
u
p
n
i
l
e
v
e
l
-
w
o
l
I
D
d
n
a
L
C
,
E
CV 1
L
I
08
.
0V
e
g
a
t
l
o
v
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
I
D
d
n
a
L
C
,
E
CV
1
H
I
2
.
25
.
5V
e
g
a
t
l
o
v
t
u
p
t
u
o
l
e
v
e
l
-
w
o
l
1
B
D
P
d
n
a
1
A
D
PV
1
L
O
IO
A
m
1
=
0
.
1V
e
g
a
t
l
o
v
t
u
p
t
u
o
l
e
v
e
l
-
w
o
l
2
B
D
P
d
n
a
2
A
D
PV
2
L
O
IO
A
m
2
=
0
.
1V
t
u
p
t
u
o
l
e
v
e
l
-
w
o
l
B
T
U
O
d
n
a
A
T
U
O
,
B
D
L
,
A
D
L
e
g
a
t
l
o
v
V
3
L
O
IO
A
m
2
=0
0
.
1V
e
g
a
t
l
o
v
t
u
p
t
u
o
l
e
v
e
l
-
w
o
l
B
O
A
d
n
a
A
O
AV
4
L
O
IO
V
,
A
m
5
.
0
=
A
I
A
V
=
B
I
A
V
2
.
1
=0
5
.
0V
IO
V
,
A
m
1
=
A
I
A
V
=
B
I
A
V
3
.
1
=0
5
.
0V
e
g
a
t
l
o
v
t
u
p
u
o
l
e
v
e
l
-
h
g
i
h
1
B
D
P
d
n
a
1
A
D
PV
1
H
O
IO
A
m
1
=V D
D
1
–V
e
g
a
t
l
o
v
t
u
p
u
o
l
e
v
e
l
-
h
g
i
h
2
B
D
P
d
n
a
2
A
D
PV
2
H
O
IO
A
m
2
=V D
D
1
–V
e
g
a
t
l
o
v
t
u
p
t
u
o
B
D
L
d
n
a
A
D
LV 1
O
05
.
5V
e
g
a
t
l
o
v
t
u
p
t
u
o
B
T
U
O
d
n
a
A
T
U
O
,
B
O
A
,
A
O
AV 2
O
00
.
3
1V
e
g
a
t
l
o
v
t
u
p
t
u
o
B
C
d
n
a
A
CV 3
O
0V D
D
V
e
g
a
t
l
o
v
d
l
o
h
s
e
r
h
t
l
e
v
e
l
-
w
o
l
B
C
d
n
a
A
CVT
–
V
2
.
0
D
V
e
g
a
t
l
o
v
d
l
o
h
s
e
r
h
t
l
e
v
e
l
-
h
g
i
h
B
C
d
n
a
A
CVT
+
V
5
.
0
D
V
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
w
o
l
I
D
d
n
a
L
C
,
E
CI 1
L
I
VI V
0
=
0
.
5A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
w
o
l
N
I
XI 2
L
I
VI
V
,
V
0
=
D
V
0
.
5
=5
.
31
1A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
w
o
l
B
I
P
d
n
a
A
I
PI 3
L
I
VI
V
,
V
0
=
D
V
0
.
5
=0
.
60
.
8
1A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
w
o
l
B
I
A
d
n
a
A
I
AI 4
L
I
VI V
0
=1
0
.
00
.
0
1A
n
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
w
o
l
T
S
E
TI 5
L
I
VI
V
,
V
0
=
D
V
0
.
5
=0
.
5A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
I
D
d
n
a
L
C
,
E
CI
1
H
I
VI
V
5
.
5
=
0
.
5A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
N
I
XI
2
H
I
VI
V
,
V
0
.
5
=
D
V
0
.
5
=5
.
30
.
1
1A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
B
I
P
d
n
a
A
I
PI
3
H
I
VI
V
,
V
0
.
5
=
D
V
0
.
5
=0
.
60
.
8
1A
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
B
I
A
d
n
a
A
I
AI
4
H
I
VI
V
0
.
5
=1
0
.
00
.
0
1A
n
t
n
e
r
u
c
t
u
p
n
i
l
e
v
e
l
-
h
g
i
h
T
S
E
TI
5
H
I
VI
V
,
V
0
.
5
=
D
V
0
.
5
=0
6
1A
t
n
e
r
u
c
e
g
a
k
a
e
l
t
u
p
t
u
o
B
D
L
d
n
a
A
D
LI
1
F
O
VO
V
5
.
5
=
0
.
5A
e
g
a
k
a
e
l
t
u
p
t
u
o
2
B
D
P
d
n
a
2
A
D
P
,
1
B
D
P
,
1
A
D
P
t
n
e
r
u
c
I
2
F
O
VO
V
5
.
5
r
o
0
=1
0
.
00
.
0
1A
n
e
g
a
k
a
e
l
t
u
p
t
u
o
B
T
U
O
d
n
a
A
T
U
O
,
B
O
A
,
A
O
A
t
n
e
r
u
c
I
3
F
O
VO
V
3
1
=
0
.
5A
t
n
e
r
u
c
e
g
a
k
a
e
l
t
u
p
t
u
o
B
C
d
n
a
A
CI
4
F
O
VO
V
r
o
V
0
=
D
0
1A
n
t
n
e
r
u
c
e
c
r
u
o
s
B
C
d
n
a
A
CI 1
S
VO
V
,
V
0
=
D
V
0
.
5
=5
9
–0
9
1
–0
8
3
–A
t
n
e
r
u
c
k
n
i
s
B
C
d
n
a
A
C
0
e
d
o
m
p
u
-
k
c
o
l
t
s
a
FI
)
0
(
2
S
VO
V
,
V
0
.
3
=
D
V
0
.
5
=l
5
.
3
)
3
(
2
s
l
0
.
4
)
3
(
2
s
l
5
.
4
)
3
(
2
s
A
t
n
e
r
u
c
k
n
i
s
B
C
d
n
a
A
C
1
e
d
o
m
p
u
-
k
c
o
l
t
s
a
FI
)
1
(
2
S
VO
V
,
V
0
.
3
=
D
V
0
.
5
=l
5
.
2
)
3
(
2
s
l
0
.
3
)
3
(
2
s
l
4
.
3
)
3
(
2
s
A
t
n
e
r
u
c
k
n
i
s
B
C
d
n
a
A
C
2
e
d
o
m
p
u
-
k
c
o
l
t
s
a
FI
)
2
(
2
S
VO
V
,
V
0
.
3
=
D
V
0
.
5
=l
5
.
1
)
3
(
2
s
l
0
.
2
)
3
(
2
s
l
4
.
2
)
3
(
2
s
A
t
n
e
r
u
c
k
n
i
s
B
C
d
n
a
A
C
3
e
d
o
m
p
u
-
k
c
o
l
t
s
a
FI
)
3
(
2
S
VO
V
,
V
0
.
3
=
D
V
0
.
5
=8
15
30
7A
y
c
n
e
u
q
e
r
f
t
u
p
n
i
N
I
Xf 1
I
e
v
a
w
e
n
i
s
d
e
l
p
u
o
c
y
l
e
v
i
t
i
c
a
p
a
C1
3
1z
H
M
y
c
n
e
u
q
e
r
f
t
u
p
n
i
B
I
P
d
n
a
A
I
Pf 2
I
V
,
e
v
a
w
e
n
i
s
d
e
l
p
u
o
c
y
l
e
v
i
t
i
c
a
p
a
C
D
V
0
.
5
=5
.
10
6
1z
H
M
e
d
u
t
il
p
m
a
t
u
p
n
i
s
m
r
N
I
XV 1
I
e
v
a
w
e
n
i
s
d
e
l
p
u
o
c
y
l
e
v
i
t
i
c
a
p
a
C0
0
10
0
8V
m
e
d
u
t
il
p
m
a
t
u
p
n
i
s
m
r
B
I
P
d
n
a
A
I
PV 2
I
e
v
a
w
e
n
i
s
d
e
l
p
u
o
c
y
l
e
v
i
t
i
c
a
p
a
C0
70
0
8V
m
y
c
n
e
u
q
e
r
f
r
o
t
a
ll
i
c
s
o
l
a
t
s
y
r
Cf
L
A
T
X
CI≤ 0
5
.
3
e
t
o
n
e
S
.0
.
44
2
.
0
10
.
3
1z
H
M
r
o
t
s
i
s
e
r
k
c
a
b
d
e
f
l
a
n
r
e
t
n
i
N
I
XR 1
f
V D
D
V
0
.
5
=7
.
0M
r
o
t
s
i
s
e
r
k
c
a
b
d
e
f
l
a
n
r
e
t
n
i
B
I
P
d
n
a
A
I
PR 2
f
V D
D
V
0
.
5
=0
3
4k
r
o
t
s
i
s
e
r
n
w
o
d
-
ll
u
p
l
a
n
r
e
t
n
i
T
S
E
TRd
V D
D
V
0
.
5
=0
3k
e
c
n
a
t
i
c
a
p
a
c
t
u
p
n
i
B
I
P
d
n
a
A
I
P
,
N
I
XCI
0
.
6F
p
Notes
1. Dual PLL, both PLLA and PLLB operating, SB=0, fXTAL=10.24MHz, VPIA=VPIB=70mV, all other inputs=0V, all
outputs open.
2. Standby mode, PLLB stopped, SB=1, fXTAL=10.24MHz, VPIA=70mV, all other inputs=0V, all outputs open.
3. CI in the crystal impedance. Contact Nihon Denpa Kogyo for further information.