1-1-3 Multi-Output Type Regulator ICs
SI-3000KWF Series
2-Output, Low Dropout Voltage Linear Regulator ICs
sFeatures
• Compact full-mold package (equivalent to
TO220F)
• Output current: 1.0A
×
2
• Low dropout voltage: V
DIF
0.6V (at I
O
= 1A)
• Built-in overcurrent and thermal protection
circuits
sAbsolute
Maximum Ratings
Ratings
Parameter
DC Input Voltage
Output Control Terminal Voltage
Output Current
*1
Power Dissipation (with two outputs ON)
Junction Temperature
Operating Ambient Temperature
Storage Temperature
Thermal Resistance (Junction to Ambient Air)
Thermal Resistance (Junction to Lead)
Symbol
V
IN*1
V
C
I
O1
I
O2
P
D*2
T
j
T
op
T
stg
SI-3002KWF/SI-3003KWF
18
6
1.0
1.0
14
–30 to +125
–30 to +85
–40 to +125
66.7
7
(T
a
=25°C)
Unit
V
V
A
W
°C
°C
°C
°C/W
°C/W
sApplications
• Secondary stabilized power supply (local
power supply)
θ
j-a
θ
j-c
*1: V
IN
(max), I
O1
(max) and I
O2
(max) are restricted by the relation P
D
= (V
IN
– V
O1
)
×
I
O1
+ (V
IN
- V
O2
)
×
I
O2
.
*2: T
C
= 25°C (With infinite heatsink)
Thermal protection may operate when the junction temperature exceeds 135°C.
sElectrical
Characteristics
Ratings
Parameter
Symbol
min.
V
O1
Output Voltage
Conditions
V
O2
Conditions
∆V
OLINE1
Line Regulation
Conditions
∆V
OLINE2
Conditions
∆V
OLOAD1
Load Regulation
Conditions
∆V
OLOAD2
Conditions
Dropout Voltage
V
DIF1
Conditions
∆V
O1
/∆T
a
Temperature Coefficient of
Output Voltage
Conditions
∆V
O2
/∆T
a
Conditions
R
REJ1
Ripple Rejection
Conditions
R
REJ2
Conditions
I
S1
1
Overcurrent Protection Starting
Current
*1
Conditions
I
S1
2
Conditions
Quiescent Circuit Current
Circuit Current at Output OFF
Control Voltage (Output ON)
*2
Control Voltage (Output OFF)
VC
Control Current
Control Current
(Output OFF)
Terminal (Output ON)
I
q
Conditions
I
q (OFF)
Conditions
V
C
, IH
V
C
, IL
I
C
, IH
Conditions
I
C
, IL
Conditions
–100
V
C
=0.4V
V
C
=2.7V
–100
V
C
=0.4V
2
0.8
5
V
C
=2.7V
V
IN
=5V, V
C
=0V
2
0.8
5
1.2
V
IN
=5V
1
V
IN
=5V, I
O
=0A, V
C
=2V
0.5
V
IN
=3.3V, V
C
=0V
1.5
1.2
V
IN
=5V
1.2
V
IN
=3.3V
1
V
IN
=3.3V, I
O
=0A, V
C
=2V
0.5
1.5
mA
mA
V
V
I
O
=1A
±0.3
T
j
=0 to 100°C
±0.3
T
j
=0 to 100°C
60
V
IN
=5V, f=100 to 120Hz
60
V
IN
=5V, f=100 to 120Hz
1.2
V
IN
=3.3V
A
V
IN
=5V, I
O
=0 to 1A
0.6
I
O
=1A
±0.3
T
j
=0 to 100°C
±0.3
T
j
=0 to 100°C
60
V
IN
=3.3V, f=100 to 120Hz
60
V
IN
=3.3V, f=100 to 120Hz
dB
mV/°C
V
IN
=5V, I
O
=0 to 1A
30
V
IN
=3.3V, I
O
=0 to 1A
0.6
V
V
IN
=4.5 to 10V, I
O
=10mA
30
V
IN
=3.3V, I
O
=0 to 1A
30
V
IN
=4.5 to 10V, I
O
=10mA
20
V
IN
=3.2 to 5V, I
O
=10mA
30
mV
2.450
3.234
SI-3002KWF
typ.
3.300
V
IN
=5V, I
O
=10mA
2.500
V
IN
=5V, I
O
=10mA
20
V
IN
=3.2 to 5V, I
O
=10mA
20
2.550
1.764
max.
3.366
min.
2.450
SI-3003KWF
typ.
2.500
V
IN
=3.3V, I
O
=10mA
1.800
V
IN
=3.3V, I
O
=10mA
20
mV
1.836
max.
2.550
V
Unit
µ
A
µ
A
*1: I
S1
1 and I
S1
2 are specified at the 5% drop points of output voltages V
O1
and V
O2
on the condition that V
IN
= the condition of overcurrent protection starting current, I
O
= 10 mA.
*2: Output is OFF when the output control terminal V
C
is open. Each input level is equivalent to LS-TTL. Therefore, the device can be driven directly by LS-TTLs.
Channels 1 and 2 are turned on or off at the same time.
90
ICs
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