Shouding
SDB2F5
1.5A,up to 28V Output 1.2MHz Step-Up Converter
GENERAL DESCRIPTION
FEATURES
The SDB2F5 is a constant frequency, 5-pin SOT23
current mode step-up converter intended for small,
low power applications. The SDB2F5 switches at
1.2MHz and allows the use of tiny, low cost
capacitors and inductors 2mm or less in height.
Internal soft-start results in small inrush current
and extends battery life. The SDB2F5 operates
from an input voltage as low as 2.5V and can
generate 28V at up to 100mA from a 5V
supply.The SDB2F5 features automatic shifting to
pulse frequency modulation mode at light loads.
The SDB2F5 includes under-voltage lockout,
current limiting, and thermal overload protection to
prevent damage in the event of an output overload.
The SDB2F5 is available in a small 5-pin SOT-23
package.
Integrated 0.5Ω Power MOSFET
40μA Quiescent Current
2.5V to 5.5V Input Voltage
1.2MHz Fixed Switching Frequency
Internal 1.5A Switch Current Limit
Adjustable Output Voltage
Internal Compensation
Up to 28V Output Voltage
Automatic Pulse Frequency Modulation
Mode at Light Loads
Over 85% Efficiency
Available in a 5-Pin SOT23-5 Package
APPLICATIONS
OLED Biasing
LCD Bias Supply
White LED Driver
PDAs
Digital Still Cameras
TYPICAL APPLICATION
100
VOUT=10V
95
VIN
CIN
10μF
D
SW
SDB2F5
EN
GND
FB
R1
100k
1%
VOUT
90
Efficiency(%)
L 4.7μH
VIN
COUT
10μF
R2
14k
1%
85
80
VIN=3.6V
VIN=4.2V
75
VIN=5V
70
0
Figure 1. Basic Application Circuit
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50
100
150
200
Load Current(mA)
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SDB2F5 Ver1.0
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SDB2F5
ABSOLUTE MAXIMUM RATINGS (Note 1)
Input Supply Voltage………………...-0.3V to 6V
EN,FB Voltages……………………...-0.3V to 6V
SW Voltage………………………...-0.3V to 30V
Power Dissipation…………………………0.6W
Thermal Resistance θ JC ………………..130°C/W
Thermal Resistance θ JA ………………..250°C/W
Junction Temperature(Note2)…………...160°C
Operating Temperature Range......-40°C to 85°C
Lead Temperature(Soldering,10s)............300°C
Storage Temperature Range.......-65°C to 150°C
ESD HBM(Human Body Mode)…………….2kV
ESD MM(Machine Mode)………………...200V
PACKAGE
TOP VIEW
SW
1
GND
2
FB
3
5
VIN
4
EN
5-LEAD PLASTIC SOT-23
TJMAX = 160°C, θJA = 250°C/ W, θJC = 130°C/W
PIN DESCRIPTION
Pin Name
Pin Number
SW
1
GND
FB
2
3
EN
4
VIN
5
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Description
Power Switch Output. SW is the drain of the internal MOSFET switch.
Connect the power inductor and output rectifier to SW. SW can swing
between GND and 28V.
Ground Pin
Feedback Input. The FB voltage is 1.25V. Connect a resistor divider to FB.
Regulator On/Off Control Input. A high input at EN turns on the converter,
and a low input turns it off. When not used, connect EN to the input
supply for automatic startup.
Input Supply Pin. Must be locally bypassed.
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SDB2F5 Ver1.0
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SDB2F5
ELECTRICAL CHARACTERISTICS
(V IN =V EN =3.7V,T A = 25°C, unless otherwise noted.)
PARAMETER
CONDITIONS
Operating Input Voltage
Under Voltage Lockout
Under Voltage Lockout
Hysteresis
Current (Shutdown)
V EN = 0V
Quiescent Current (PFM) V FB =1.4V,No switch
Quiescent Current (PWM) V FB =1V,switch
Switching Frequency
Maximum Duty Cycle
V FB = 0V
EN Input High Voltage
EN Input Low Voltage
FB Voltage
FB Input Bias Current
V FB = 1.2V
SW On Resistance
SW Current Limit
V IN = 4.2V, Duty cycle=50%
SW Leakage
V SW = 20V
Thermal Shutdown
Operating Input Voltage
Under Voltage Lockout
(Note 3)
MIN
2.5
TYP
2.2
MAX
5.5
2.45
100
0.1
40
0.6
1.2
mV
1
60
1
90
1.5
1.225
-50
1.25
-10
0.5
1.5
0.4
1.275
1
155
2.5
2.2
UNIT
V
V
5.5
2.45
μA
μA
mA
MHz
%
V
V
V
nA
Ω
A
μA
℃
V
V
Note 1: Absolute Maximum Ratings are those values beyond which the life of a device may be impaired.
Note 2: T J is calculated from the ambient temperature T A and power dissipation P D according to the
following formula: T J = T A + (P D ) x (250°C/W).
Note 3: 100% production test at 25°C. Specifications over the temperature range are guaranteed by design
and characterization.
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SDB2F5 Ver1.0
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SDB2F5
TYPICAL PERFORMANCE CHARACTERISTICS
100
11
Line/Load Regulation
VOUT=10V
95
Efficiency(%)
VOUT(V)
10.5
10
VIN=3.6V
9.5
VIN=4.2V
VIN=5V
50
100
150
85
VIN=3.6V
80
VIN=4.2V
75
9
0
90
VIN=5V
70
200
0
Load Current(mA)
50
100
150
200
Load Current(mA)
Power On/Off from EN
Time (1ms/Div)
VIN=5V,VOUT=10V,IOUT=50mA
VIN=5V,VOUT=10V,IOUT=200mA
(CH1:VOUT(ripple) CH2:VSW)
(CH1:VOUT(ripple) CH2:VSW)
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SDB2F5 Ver1.0
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SDB2F5
FUNCTIONAL BLOCK DIAGRAM
SW
FB
Error
Amplifier
PWM
Compartor
+
Control Logic
+
VREF
Current Sense
Compartor
+
+
OSC
GND
Figure 2. SDB2F5 Block Diagram
FUNCTIONAL DESCRIPTION
The SDB2F5 uses a fixed frequency, peak
current mode boost regulator architecture to
regulate voltage at the feedback pin. The
operation of the SDB2F5 can be understood by
referring to the block diagram of Figure 2. At the
start of each oscillator cycle the MOSFET is
turned on through the control circuitry. To
prevent sub-harmonic oscillations at duty cycles
greater than 50 percent, a stabilizing ramp is
added to the output of the current sense amplifier
and the result is fed into the negative input of the
PWM comparator. When this voltage equals the
output voltage of the error amplifier the power
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MOSFET is turned off. The voltage at the output
of the error amplifier is an amplified version of
the difference between the bandgap reference
voltage and the feedback voltage. In this way the
peak current level keeps the output in regulation.
If the feedback voltage starts to drop, the output
of the error amplifier increases. This results in
more current to flow through the power MOSFET,
thus increasing the power delivered to the output.
The SDB2F5 has internal soft start to limit the
amount of input current at startup and to also
limit the amount of overshoot on the output.
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SDB2F5 Ver1.0
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SDB2F5
APPLICATIONS INFORMATION
Setting the Output Voltage
Layout Consideration
For best performance of the SDB2F5, the
following guidelines must be strictly followed.
Input and Output capacitors should be
placed close to the IC and connected to
ground plane to reduce noise coupling.
The GND should be connected to a strong
ground plane for heat sinking and noise
protection.
Keep the main current traces as possible as
short and wide.
SW node of DC-DC converter is with high
frequency voltage swing. It should be kept at
a small area.
Place the feedback components as close as
possible to the IC and keep away from the
noisy devices.
The internal reference V REF is 1.25V .
The output voltage is divided by a resistor
divider,R1 and R2 to the FB pin.The output
voltage is given by
R
VOUT = VREF × 1 + 1
R2
Inductor Selection
The recommended value of inductor are 4.7 to
22μH. Small size and better efficiency are the
major concerns for portable device, such as
SDB2F5 used for mobile phone. The inductor
should have low core loss at 1.2MHz and low
DCR for better efficiency. To avoid inductor
saturation current rating should be considered.
Capacitor Selection
Input and output ceramic capacitors of 1μF are
recommended for SDB2F5 applications. For
better voltage filtering, ceramic capacitors with
low ESR are recommended. X5R and X7R types
are suitable because of their wider voltage and
temperature ranges.
VOUT
D
VIN
L
COUT
PIN1
CIN
SDB2F5
R2
Diode Selection
Schottky diode is a good choice for SDB2F5
because of its low forward voltage drop and fast
reverse recovery. Using Schottky diode can get
better efficiency. The highspeed rectification is
also a good characteristic of Schottky diode for
high switching frequency. Current rating of the
diode must meet the root mean square of the
peak current and output average current
multiplication as following :
VIA TO VOUT
R1
VIA TO VIN
Figure 3. SDB2F5 Suggested Layout
ID (RMS) ≈ IOUT × IPEAK
The diode’ s reverse breakdown voltage should
be larger than the output voltage.
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SDB2F5 Ver1.0
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SDB2F5
PACKAGE DESCRIPTION
SOT23-5
e1
EXAMPLE
TOP MARK
YEAR WEEK
5LD SOT-23 PACKAGE OUTLINE DIMENSIONS
*
*B2F5 **
*
E
Dimension
A
A1
B
C
D
H
E
e
e1
L1
L
Q
H
PIN 1
Min.
1.05
0.04
0.3
0.09
2.8
2.5
1.5
Max.
1.35
0.15
0.5
0.2
3.0
3.1
1.7
0.95 REF.
1.90 REF.
0.2
0.35
0°
0.55
0.8
10°
TOP VIEW
D
L
A
SEATING PLANE
B
e
Q
L1
A1
FRONT VIEW
C
SIDE VIEW
NOTE:
1.DIMENSIONS ARE IN MILLIMETERS
2.DRAWING NOT TO SCALE
3.DIMENSIONS ARE INCLUSIVE OF PLATING
4 DIMENSIONS ARE EXCLUSIVE OF MOLD FLASH AND METAL BURR
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SDB2F5 Ver1.0
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