Page 2
March 1999 TOKO, Inc.
TK111xxM
ABSOLUTE MAXIMUM RATINGS TK111xxMCL (V
OUT
≥
2.0 V)
Supply Voltage ......................................................... 16 V
Noise Bypass Terminal Voltage ................................. 5 V
Power Dissipation (Note 1) ................................ 600 mW
Reverse Bias............................................................ 10 V
Storage Temperature Range ................... -55 to +150
°
C
Operating Temperature Range ...................-30 to +80
°
C
Operating Voltage Range............................... 1.8 to 12 V
Junction Temperature ...........................................150
°
C
Lead Soldering Temperature (10 s) ......................235
°
C
TK111xxMCL ELECTRICAL CHARACTERISTICS
Test conditions: V
IN
= V
OUT(TYP)
+ 1 V, T
A
= 25
°
C, unless otherwise specified.
Note 1: Power dissipation is 600 mW when mounted as recommended. Derate at 4.8 mW/
°
C for operation above 25
°
C.
Note 2: Refer to “Definition of Terms.”
Note 3: Ripple rejection and noise voltage are affected by the value and characteristics of the capacitor used.
Note 4: Output noise voltage can be reduced by connecting a capacitor to the noise bypass terminal.
Gen. Note: Parameters with min. or max. values are 100% tested at T
= 25
°
C.
Gen. Note: Exceeding the “Absolute Maximum Ratings” can damage the device.
L
O
B
M
Y
S
R
E
T
E
M
A
R
A
P
S
N
O
I
D
N
O
C
T
S
E
T
N
I
M
P
Y
T
X
A
M
S
T
N
U
I
Q
t
e
C
t
e
c
s
e
Q
I
T
U
O
I
g
n
u
x
E
,
A
m
0
=
T
N
O
C
0
4
1
0
0
2
A
μ
I
Y
B
T
S
t
e
C
y
b
d
n
a
S
V
N
I
F
F
O
t
p
O
,
V
6
=
1
A
μ
V
T
U
O
e
g
a
V
t
p
O
I
T
U
O
V
,
A
m
0
1
=
N
I
V
=
)
P
Y
T
(
T
U
O
V
1
+
1
e
a
T
e
e
S
V
g
e
R
e
n
n
o
g
e
R
e
n
V
N
V
I
V
=
)
V
P
Y
6
T
(
T
+
U
O
o
V
e
N
1
(
+
)
P
Y
T
(
T
U
O
)
,
8
8
1
V
m
g
e
R
d
a
o
L
n
o
g
e
R
d
a
o
L
I
T
U
O
)
e
N
(
,
A
m
0
6
o
1
=
8
0
3
V
m
I
T
U
O
)
e
N
(
,
A
m
0
0
1
o
1
=
4
1
5
5
V
m
V
P
O
R
D
e
g
a
V
t
o
p
o
D
I
T
U
O
)
e
N
(
,
A
m
0
6
=
0
2
1
0
0
2
V
m
I
T
U
O
t
e
C
t
p
O
s
u
o
u
n
o
C
)
e
N
(
0
0
1
A
m
I
)
E
S
L
U
P
(
T
U
O
t
e
C
t
p
O
e
s
P
,
y
c
y
d
%
5
1
,
s
p
)
s
m
e
N
5
(
0
3
1
A
m
R
R
n
o
e
R
e
p
R
C
,
μ
m
,
H
k
1
0
2
s
1
=
=
=
f
C
N
V
R
N
(
L
,
μ
V
O
7
=
I
m
=
V
r
N
I
)
P
Y
1
T
(
T
=
U
,
V
,
2
A
+
V
0
T
U
O
m
0
)
e
0
7
B
d
V
O
N
e
g
a
V
e
s
N
t
p
O
z
H
0
=
=
0
0
4
C
N
I
O
≤
f
≤
1
m
0
C
,
=
H
k
0
V
N
(
8
L
,
μ
V
2
7
=
,
μ
A
N
e
I
V
s
)
P
Y
T
(
T
U
O
,
+
T
U
)
,
1
0
3
s
m
r
V
μ
V
f
l
n
m
r
T
s
s
a
p
y
B
e
e
s
N
a
V
g
5
2
V
V
T
U
O
/
T
t
e
o
C
e
p
m
e
T
I
T
U
O
A
m
0
1
=
5
2
C
°
m
p
p
S
N
O
I
A
C
I
C
E
P
S
L
A
N
I
M
R
E
T
L
O
R
T
N
O
C
I
T
N
O
C
t
e
C
l
o
C
V
T
N
O
C
N
O
t
p
O
,
V
8
=
2
4
A
μ
V
)
N
O
(
T
N
O
C
N
O
e
g
a
V
l
o
C
N
O
t
p
O
5
V
V
)
F
F
O
(
T
N
O
C
F
F
O
e
g
a
V
l
o
C
F
F
O
t
p
O
5
3
V