1-1-4 Linear Regulator ICs
SI-3000LSA Series
Surface-Mount, Low Current Consumption, Low Dropout Voltage
■Features
■Absolute Maximum Ratings
• Compact surface-mount package (SOP8)
Parameter
• Output current: 1 A
• Low circuit current at output OFF: Iq(OFF) ≤ 1
µA (VC = 0 V)
VDIF ≤1.2 V (IO = 1 A) for SI-3018LSA
• Output ON/OFF control terminal voltage
compatible with LS-TTL
Unit
VIN
16
V
Output control terminal voltage
VC
VIN
V
DC Output Current
IO
1
A
PD1*1
1.16
W
PD2*2
1.1
W
Tj*3
–30 to +150
°C
Operating Ambient Temperature
Top
–30 to +150
°C
Storage Temperature
Tstg
–30 to +150
°C
Thermal Resistance (Junction to Lead (pin 8))
θ j-L
36
°C/W
Thermal Resistance (Junction to Ambient Air)
θ j-a *2
100
°C/W
Junction Temperature
• 4 types of output voltages (1.8 V, 2.5 V, 3.3 V,
5.0 V) available
Ratings
DC Input Voltage
Power Dissipation
• Low dropout voltage: VDIF≤0.8 V (at IO = 1 A)
(Ta=25°C)
Symbol
*1: When mounted on glass-epoxy board 56.5 × 56.5 mm (copper laminate area 100%).
*2: When mounted on glass-epoxy board 40 × 40 mm (copper laminate area 100%).
*3: Thermal protection circuits may be activated if the junction temperature exceeds 135°C.
es
ig
ns
• Built-in foldback-type-overcurrent and thermal
protection circuits
■Applications
• Auxiliary power supplies for PC
■Recommended Operating Conditions
ew
D
• Battery-driven electronic equipment
Ratings
Symbol
VIN
DC Output Current Range
IO
Operating Junction Temperature
Tjop
Operating Ambient Temperature
Taop
3.1 to 3.5*1
SI-3018LSA
1.764
1.800
1.836
2.450
2.500
2.550
3.234
VIN=3.3V, IO=0.5A
2
max.
min.
3.300
3.366
4.90
VIN=5V, IO=0.5A
0.4
–
max.
5.00
5.10
0.4
IO≤0.5A
0.8
10
2
10
3
10
3
15
10
10
VIN=3.3V, IO=0 to 1A
VIN=3.3V, IO=0 to 1A
VIN=5V, IO=0 to 1A
VIN=6V, IO=0 to 1A
±0.3
±0.3
±0.3
±0.5
VIN=3.3V, IO=5mA, Tj=0 to 100°C
VIN=3.3V, IO=5mA, Tj=0 to 100°C
VIN=5V, IO=5mA, Tj=0 to 100°C
VIN=6V, IO=5mA, Tj=0 to 100°C
ot
RREJ
55
55
VIN=5V, f=100 to 120HZ
VIN=6V, f=100 to 120HZ
1.7
1.7
1.7
1.7
Control Voltage (Output OFF)*2
VC, IH
VIN=3.3V, IO=0A
2.5
VIN=3.3V, IO=0A
1
VIN=3.3V, IO=0A, VC=0V
1.2
1.2
VIN=3.3V
Conditions
VIN=5V, IO=0A, VC=0V
VIN=6V, IO=0A, VC=0V
1.2
2.0
40
80
40
80
0
–5
0
–5
0.8
0.8
40
80
40
80
0
–5
0
–5
VC=2V
VC=0V
*1: Is1 is specified at the 5% drop point of output voltage VO on the condition that VIN = 3.3 V (5 V for SI-3033LSA), and IO = 0.5 A.
*2: Output is OFF when the output control terminal VC is open. Each input level is equivalent to LS-TTL level. Therefore, the device can be driven directly by LS-TTLs.
*3: These products cannot be used in the following applications. Because these applications require a certain current at start-up and so the built-in foldback-type overcurrent
protection may cause errors during start-up stage.
(1) Constant current load (2) Positive and negative power supply (3) Series-connected power supply (4) VO adjustment by raising ground voltage
70
ICs
dB
mA
µA
A
VIN=6V
2.0
0.8
Conditions
IC, IL
1
VIN=5V
2.0
mV/ °C
VIN=6V, IO=0A
1.2
0.8
mV
2.5
1
VIN=3.3V
2.0
2.5
VIN=5V, IO=0A
1
VIN=3.3V, IO=0A, VC=0V
VC, IL
IC, IH
2.5
mV
30
57
Conditions
ON)*2
20
VIN=3.3V, f=100 to 120HZ
Conditions
IS1
20
60
Iq(OFF)
Conditions
20
VIN=3.3V, f=100 to 120HZ
Iq
V
0.8
IO≤1A
10
Conditions
V
VIN=6V, IO=0.5A
IO≤0.5A
0.8
Unit
typ.
0.4
IO≤0.5A
1.2
SI-3050LSA
typ.
10
Conditions
Control Current (Output OFF)
VIN=3.3V, IO=0.5A
–
∆VO/∆Ta
Control Current (Output ON)
SI-3033LSA
min.
∆VOLOAD
Overcurrent Protection
Starting Current*1,3
Terminal
SI-3025LSA
VIN=6 to 7V, IO=0.3A
Circuit Current at Output OFF
VC
(Ta=25°C, VC=2V, unless otherwise specified)
Ratings
VIN=4.5 to 5.5V, IO=0.3A
Quiescent Circuit Current
Control Voltage (Output
°C
VIN=3.1 to 3.5V, IO=0.3A
N
Ripple Rejection
–30 to +85
VIN=3.1 to 3.5V, IO=0.3A
Conditions
Temperature Coefficient of
Output Voltage
A
max.
ec
o
Load Regulation
V
R
Conditions
to 8.0
°C
typ.
∆VLINE
Line Regulation
*2
–20 to +125
min.
0.6
Conditions
Unit
SI-3050LSA
to 5.2*1
0 to 1
max.
m
Conditions
*2
typ.
VDIF
Dropout Voltage
SI-3033LSA
min.
m
VO
en
Symbol
Conditions
to 3.5*1
de
■Electrical Characteristics
Output Voltage
*2
d
*1: VIN (max) and IO (max) are restricted by the relation PD = (VIN – VO) × IO.
Please calculate these values referring to the reference data on page 71.
*2: Refer to the Dropout Voltage parameter.
Parameter
SI-3025LSA
rN
DC Input Voltage Range
SI-3018LSA
fo
Parameter
V
µA
µA
SI-3000LSA Series
■External Dimensions (SOP8)
(Unit : mm)
5.1±0.4
1.27
0.15+0.1
–0.05
6
5
1
2
3
4
6.2±0.3
7
4.4±0.2
8
Pin Assignment
q VIN
w NC (Leave open)
e VIN
r VC
t GND
y GND
u VO
i VO
0.5±0.1
0.4±0.1
10
°
1.27
es
ig
0.12 M
VIN 1
8
NC 2
7 VO
ew
D
■Block Diagram
rN
VO
6
VC 4
GND
5
7
3
de
6
GND
CO: Output capacitor (22 µF or larger)
CIN: Input capacitor (10 µF)
This capacitor is required in the case of an inductive input line or long
wiring.
Tantalum capacitors are recommended for CIN and CO, particularly at
low temperatures.
* Leave pin 2 open.
CO
ot
R
VC
+
5
ec
o
4
VIN
VO
Load
2
m
CIN
8
m
+
1
GND
en
■Typical Connection Diagram
VIN
d
TSD
fo
+
–
VIN 3
ns
1.5±0.1
Plastic Mold Package Type
Flammability: UL94V-0
Product Mass: Approx. 0.1g
0.05±0.05
0.10
0.4±0.1
1.55±0.15
0
to
0.995max.
■Reference Data
Allowable Output Current
(vs. VIN-VOUT Voltage Difference)
VIN-IO max
N
PCB Copper Laminate Area vs. Junction to
Ambient Air Thermal Resistance
150
140
1.2
PCB (glass-epoxy, 40×40mm)
160mm (40×40) mm
Tj = 120°C (20% derating of 150°C)
1.0
The inner frame stage, on which the PTr is mounted,
is directly connected to the VOUT pin.
Therefore, enlarging the copper laminate area
around the VOUT pin is really effective for a heat
radiation.
130
120
Iout (max) (A)
θ j-a (°C/W)
0.8
110
100
θ j-a=100°C/W
0.6
0.4
Ta=25°C
0.2
Ta=85°C
90
80
70
100
0
1000
Copper Laminate Area (mm2)
5000
1
2
3
4
VIN-VOUT Voltage Difference (V)
ICs
71