SGM66052 [SGMICRO]

Efficient Synchronous Boost Converter with a 2.7A Switch;
SGM66052
型号: SGM66052
厂家: Shengbang Microelectronics Co, Ltd    Shengbang Microelectronics Co, Ltd
描述:

Efficient Synchronous Boost Converter with a 2.7A Switch

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SGM66052  
Efficient Synchronous  
Boost Converter with a 2.7A Switch  
GENERAL DESCRIPTION  
FEATURES  
The SGM66052 is an internally compensated, 1.1MHz  
switching frequency, current mode, synchronous Boost  
switching regulator, which is capable of generating 5V  
output at 1A load current from a 3.3V rail. This device  
also has the 5.1V fixed output version.  
2.2V to 5.2V Input Voltage Range  
5.1V Fixed Output Voltage  
6V Output Voltage Clamping  
Adjustable Output Voltage up to 5.2V  
Up to 90% Efficiency  
This device turns into power-saving mode to maintain  
high efficiency by lowering switching frequency. With its  
anti-ringing circuitry damping the charge in parasitic  
capacitor, it reduces EMI interference significantly. Its  
output is disconnected by the rectifier circuit during  
shutdown, with no input to output leakage.  
20µA (TYP) Device Quiescent Current  
1µA (MAX) Shutdown Current  
Improved Light Load Efficiency with Power-Save  
Mode (PSM)  
Load Disconnect during Shutdown  
Low Reverse Leakage Current when VOUT > VIN  
Over-Temperature Protection  
The SGM66052-5.1 is preset for outputting 5.1V, while  
the SGM66052-ADJ is output voltage programmable  
with an external resistor divider.  
Available in a Green UTDFN-2×1.5-6L Package  
-40to +85Operating Temperature Range  
The device is available in a Green UTDFN-2×1.5-6L  
package and operates over an ambient temperature  
range of -40to +85.  
APPLICATIONS  
Single-Cell Li-Ion Powered Products  
Portable Audio Players  
Mobile Phones  
Personal Medical Devices  
TYPICAL APPLICATION  
L
2.2μH  
VIN  
6
C1  
10μF  
SW  
1
2
Adjustable Output  
VCC  
VOUT  
C2  
22μF  
R1  
R2  
SGM66052  
ON  
4
3
EN  
FB  
OFF  
GND  
5
Figure 1. Typical Application Circuit  
SG Micro Corp  
MAY 2022REV. A. 3  
www.sg-micro.com  
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
PACKAGE/ORDERING INFORMATION  
SPECIFIED  
PACKAGE  
DESCRIPTION  
ORDERING  
NUMBER  
PACKAGE  
MARKING  
PACKING  
OPTION  
MODEL  
VOUT (V)  
TEMPERATURE  
RANGE  
G46  
XXXX  
5.1  
UTDFN-2×1.5-6L  
SGM66052-5.1YUDR6G/TR  
SGM66052-ADJYUDR6G/TR  
Tape and Reel, 3000  
Tape and Reel, 3000  
-40to +85℃  
-40to +85℃  
SGM66052  
G48  
XXXX  
Adjustable UTDFN-2×1.5-6L  
MARKING INFORMATION  
NOTE: XXXX = Date Code.  
Serial Number  
Y Y Y  
XX XX  
Date Code - Week  
Date Code - Year  
Green (RoHS & HSF): SG Micro Corp defines "Green" to mean Pb-Free (RoHS compatible) and free of halogen substances. If  
you have additional comments or questions, please contact your SGMICRO representative directly.  
OVERSTRESS CAUTION  
ABSOLUTE MAXIMUM RATINGS  
Input Voltage Range on SW, VOUT, VCC, FB, EN  
.............................................................................-0.3V to 6V  
Package Thermal Resistance  
Stresses beyond those listed in Absolute Maximum Ratings  
may cause permanent damage to the device. Exposure to  
absolute maximum rating conditions for extended periods  
may affect reliability. Functional operation of the device at any  
conditions beyond those indicated in the Recommended  
Operating Conditions section is not implied.  
UTDFN-2×1.5-6L, θJA ................................................75/W  
Junction Temperature ................................................+150℃  
Storage Temperature Range........................ -65to +150℃  
Lead Temperature (Soldering, 10s) ...........................+260℃  
ESD Susceptibility  
ESD SENSITIVITY CAUTION  
HBM............................................................................ 4000V  
MM................................................................................ 400V  
CDM ........................................................................... 1000V  
This integrated circuit can be damaged if ESD protections are  
not considered carefully. SGMICRO recommends that all  
integrated circuits be handled with appropriate precautions.  
Failureto observe proper handlingand installation procedures  
can cause damage. ESD damage can range from subtle  
performance degradation tocomplete device failure. Precision  
integrated circuits may be more susceptible to damage  
because even small parametric changes could cause the  
device not to meet the published specifications.  
RECOMMENDED OPERATING CONDITIONS  
Input Voltage Range ..........................................2.2V to 5.2V  
Operating Temperature Range ...................... -40to +85℃  
Operating Junction Temperature Range...... -40to +125℃  
DISCLAIMER  
SG Micro Corp reserves the right to make any change in  
circuit design, or specifications without prior notice.  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
2
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
PIN CONFIGURATION  
(TOP VIEW)  
VCC  
VOUT  
FB  
1
2
3
6
5
4
SW  
GND  
EN  
UTDFN-2×1.5-6L  
PIN DESCRIPTION  
PIN  
NAME  
FUNCTION  
1
VCC  
Supply Input.  
2
VOUT  
Boost Converter Output. Place a storage capacitor close to this pin.  
Output Voltage Feedback Input or Internally Connected Pin. Connect to tap  
of external resister divider for SGM66052-ADJ; leave it floating for  
SGM66052-5.1.  
3
FB  
Enable Input. Input logic high to enable this circuit and logic low to shut  
down. Do not leave this pin unconnected.  
4
5
6
EN  
GND  
SW  
Ground.  
Boost and Rectifying Switch Input.  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
3
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
ELECTRICAL CHARACTERISTICS  
(VIN = 3.6V. Full = -40to +85, typical values are at TA = +25, unless otherwise noted.)  
PARAMETER  
SYMBOL  
CONDITIONS  
TEMP  
MIN  
TYP  
MAX  
UNITS  
DC/DC Stage  
Output Voltage Range  
Input Voltage Range  
Feedback Voltage  
VOUT  
VIN  
VFB  
f
VIN < 0.9VOUT  
Full  
3.0  
2.2  
5.2  
5.2  
V
V
+25  
Full  
SGM66052-ADJ  
478  
850  
2.15  
495  
1100  
2.7  
510  
1300  
3.25  
mV  
kHz  
A
Switching Frequency  
Switch Current Limit  
Start-Up Current Limit  
Boost Switch On-Resistance  
Rectifying Switch On-Resistance  
Output Voltage  
Full  
IL  
+25℃  
+25℃  
+25℃  
+25℃  
Full  
500  
100  
110  
5.05  
0.5  
mA  
mΩ  
mΩ  
V
VOUT = 5.1V  
VOUT = 5.1V  
SGM66052-5.1  
VCC = 2.7V to VOUT - 0.5V  
4.86  
5.18  
Line Regulation  
%
+25℃  
+25℃  
+25℃  
+25℃  
Load Regulation  
0.5  
%
Quiescent Current  
IQ  
VEN = VCC = 3.6V, not switching  
VEN = 0V, VCC = 3.6V  
20  
35  
1
µA  
µA  
Shutdown Current  
Control Stage  
EN Input Low Voltage  
EN Input High Voltage  
EN Input Current  
VIL  
VIH  
Full  
Full  
Full  
0.4  
1
V
V
1.6  
Clamped on GND or VCC  
µA  
Over-Temperature Protection  
Over-Temperature Hysteresis  
150  
20  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
4
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
RECOMMENDED COMPONENTS OF TEST CIRCUITS  
Component  
Component  
10μF/08055C106KAT2A  
22μF/08055C226KAT2A  
Inductor  
2.2μH/CDRH5D28RHPNP-2R2NC  
Capacitor  
TYPICAL PERFORMANCE CHARACTERISTICS  
Line Transient Response  
Load Transient Response  
AC Coupled  
VIN  
IOUT  
AC Coupled  
AC Coupled  
VOUT  
VOUT  
VIN = 3V to 3.6V, VOUT = 5V, RL = 25Ω  
VIN = 3.6V, VOUT = 5V, IOUT = 200mA to 800mA  
Time (2ms/div)  
Time (2ms/div)  
Start-up after Enable  
Output Voltage in Continuous Mode  
EN  
AC Coupled  
VOUT  
VOUT  
SW  
IL  
VIN = 3.6V, VOUT = 5V, RL = 25Ω  
VIN = 3.6V, VOUT = 5V, RL = 10Ω  
IL  
Time (1ms/div)  
Time (1μs/div)  
Output Voltage in Power-Save Mode  
AC Coupled  
VOUT  
IL  
VIN = 3.6V, VOUT = 5V, RL = 2.5kΩ  
Time (20μs/div)  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
5
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
TYPICAL PERFORMANCE CHARACTERISTICS (continued)  
Output Voltage vs. Output Current  
Quiescent Current vs. Input Voltage  
80  
65  
50  
35  
20  
5.10  
5.05  
5.00  
4.95  
4.90  
VOUT = 5V, IOUT = 0mA  
VIN = 3.6V, VOUT = 5V  
1
10  
100  
1000  
2.2  
2.7  
3.2  
3.7  
4.2  
4.7  
Output Current (mA)  
Input Voltage (V)  
Efficiency vs. Output Current  
Efficiency vs. Input Voltage  
100  
90  
80  
70  
60  
50  
100  
80  
60  
40  
20  
0
VOUT = 5V  
VOUT = 5V  
VIN = 2.7V  
VIN = 3.6V  
VIN = 4.2V  
VIN = 4.5V  
IOUT = 5mA  
IOUT = 60mA  
IOUT = 200mA  
0.01  
0.1  
1
10  
100  
1000 10000  
2.2  
2.7  
3.2  
3.7  
4.2  
4.7  
Output Current (mA)  
Input Voltage (V)  
Maximum Output Current vs. Input Voltage  
VOUT = 5V  
2.0  
1.5  
1.0  
0.5  
0.0  
2.2  
2.7  
3.2  
3.7  
4.2  
4.7  
Input Voltage (V)  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
6
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
TYPICAL APPLICATION CIRCUITS  
L
2.2μH  
VIN  
6
C1  
2 × 4.7μF  
SW  
1
2
VCC  
VOUT  
VCC Boost Output  
C2  
22μF  
R1  
R2  
SGM66052  
ON  
4
3
EN  
FB  
OFF  
GND  
5
Figure 2. Power Supply Solution Having Small Total Solution Size  
L
2.2μH  
VIN  
6
C1  
2 × 4.7μF  
SW  
1
4
2
3
VCC  
VOUT  
FB  
C2  
22μF  
SGM66052  
LED Current  
Up to 30mA  
D1  
ON  
EN  
OFF  
GND  
5
R1  
Figure 3. Circuit of Powering White LEDs in Lighting Applications  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
7
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
FUNCTIONAL BLOCK DIAGRAM  
L
CIN  
2.2V to 5.2V  
VCC  
SW  
VIN  
Well  
Switch  
VOUT 3.0V to 5.2V  
Fixed  
Voltage  
Sync  
Drive  
Control  
PWM  
Control  
COUT  
Current  
Sense  
Σ
Slope  
COMP  
Ramp GEN  
1.1MHz  
PWM  
Comparator  
R1  
+
-
FB  
-
gm  
Error  
AMP  
Adjustable  
-
R2  
0.495V  
REF  
RC  
300kΩ  
+
CP2  
2.5pF  
CC  
80pF  
Power-Save Mode  
Operation  
Power Saving  
Control  
Shutdown  
Control  
EN  
Shutdown  
GND  
Figure 4. Block Diagram  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
8
 
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
APPLICATION INFORMATION  
Design  
compensated device with the loop response optimized for  
inductor in the range of 2.2µH to 10µH.  
The SGM66052 is a synchronous Boost converter capable of  
starting up from 2.2V input, which is suitable for majority of  
readily available input sources. The device is capable of  
providing up to 5.2V output, and the integrated power  
MOSFET has 2.7A (TYP) switch current limit.  
Input Capacitor  
Boost converter’s input capacitor sees continuous current  
throughout the entire switching cycle. A 10µF ceramic  
capacitor is recommended to place as close as possible  
between the VCC pin and GND pin of SGM66052. For the  
applications where the SGM66052 is located far away from  
the input source, a 47µF or higher capacitance capacitor is  
recommended to damp the wiring harness’s inductance.  
Output Voltage Configuration  
The SGM66052 supports output voltage up to 5.2V, and a  
resistor divider connected at FB pin is used to configure the  
output voltage. The resistive divider value is calculated via  
Equation 1.  
Output Capacitor  
V
V  
FB  
V
FB  
OUT  
The output capacitors of Boost converter dictate the output  
voltage ripple and load transient response. Equation 3 is used  
to estimate the necessary capacitance to achieve desired  
output voltage ripple. Where ΔV is the maximum allowed  
ripple.  
=
(1)  
R1  
R
2
For simplicity, 110kΩ is recommended for R2. A 1MΩ resistor  
for R1 configures the output voltage to 5V.  
IO × (VOUT VCC  
f × ΔV × VOUT  
)
Inductor Selection  
CMIN  
=
(3)  
Inductor is an essential element for today’s DC/DC switch  
mode power supplies regardless of topology. Inductor serves  
as the energy storage element for power conversion.  
Inductance and inductor’s saturation current are two most  
important criterions for inductor selection. For general rule of  
thumb, the selected inductance should provide a peak to  
peak ripple current that is around 30% of the average inductor  
current at full load and nominal input voltage. The average  
inductor current for a Boost converter is the input current.  
Equation 2 shows the calculation of inductance selection,  
where f is the switching frequency, ΔIL is the inductor ripple  
Again, the SGM66052 is an internally compensated device.  
The loop response is optimized for capacitor in the range of  
4.7µF to 22µF. Due to the DC bias nature of ceramic  
capacitors, care should be taken by verifying manufacture’s  
datasheet to ensure enough effective capacitance at desired  
output voltage.  
Layout Guidelines  
In addition to component selection, layout is a critical step to  
ensure the performance of any switch mode power supplies.  
Poor layout could result in system instability, EMI failure, and  
device damage. Thus, place the inductor, input and output  
capacitors as close to the IC as possible, and use wide and  
short traces for current carrying traces to minimize PCB  
inductance.  
current.  
VCC  
V
IN   
× 1 -  
L =  
(2)  
ΔIL × fSW  
VO  
The selected inductor should have a saturation current rating  
higher than the 2.7A current limit of SGM66052.  
For Boost converter, the output capacitor’s current loop from  
VOUT pin back to the GND pin of the device should be as  
small as possible.  
Lastly, the inductor affects the close loop response of the  
DC/DC converter. The SGM66052 is an internally  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
9
Efficient Synchronous  
SGM66052  
Boost Converter with a 2.7A Switch  
REVISION HISTORY  
NOTE: Page numbers for previous revisions may differ from page numbers in the current version.  
MAY 2022 ‒ REV.A.2 to REV.A.3  
Page  
Updated Application Information section..............................................................................................................................................................9  
NOVEMBER 2021 ‒ REV.A.1 to REV.A.2  
Page  
Added the Figure 2 Block Diagram and updated the Programming Output Voltage sections............................................................................ 8, 9  
FEBRUARY 2021 ‒ REV.A to REV.A.1  
Page  
Updated Features and Recommended Operating Conditions ..........................................................................................................................1, 2  
Changes from Original (MARCH 2016) to REV.A  
Page  
Changed from product preview to production data.............................................................................................................................................All  
SG Micro Corp  
www.sg-micro.com  
MAY 2022  
10  
PACKAGE INFORMATION  
PACKAGE OUTLINE DIMENSIONS  
UTDFN-2×1.5-6L  
N6  
N1  
e
D
b
b1  
TOP VIEW  
BOTTOM VIEW  
A
0.3  
0.65  
0.7  
A1  
A2  
2.1  
SIDE VIEW  
RECOMMENDED LAND PATTERN (Unit: mm)  
Dimensions  
Dimensions  
In Millimeters  
In Inches  
Symbol  
MIN  
MAX  
0.600  
0.050  
MIN  
0.020  
0.000  
MAX  
0.024  
0.002  
A
A1  
A2  
D
0.500  
0.000  
0.152 REF  
0.006 REF  
1.900  
1.400  
0.250  
2.100  
1.600  
0.350  
0.075  
0.055  
0.010  
0.083  
0.063  
0.014  
E
b
b1  
e
0.220 REF  
0.650 BSC  
0.009 REF  
0.026 BSC  
L
0.324  
0.476  
0.013  
0.019  
NOTE: This drawing is subject to change without notice.  
SG Micro Corp  
TX00108.000  
www.sg-micro.com  
PACKAGE INFORMATION  
TAPE AND REEL INFORMATION  
REEL DIMENSIONS  
TAPE DIMENSIONS  
P2  
P0  
W
Q2  
Q4  
Q2  
Q4  
Q2  
Q4  
Q1  
Q3  
Q1  
Q3  
Q1  
Q3  
B0  
Reel Diameter  
P1  
A0  
K0  
Reel Width (W1)  
DIRECTION OF FEED  
NOTE: The picture is only for reference. Please make the object as the standard.  
KEY PARAMETER LIST OF TAPE AND REEL  
Reel Width  
Reel  
Diameter  
A0  
B0  
K0  
P0  
P1  
P2  
W
Pin1  
Package Type  
W1  
(mm)  
(mm) (mm) (mm) (mm) (mm) (mm) (mm) Quadrant  
UTDFN-2×1.5-6L  
7″  
9.5  
1.75  
2.25  
0.65  
4.0  
4.0  
2.0  
8.0  
Q1  
SG Micro Corp  
TX10000.000  
www.sg-micro.com  
PACKAGE INFORMATION  
CARTON BOX DIMENSIONS  
NOTE: The picture is only for reference. Please make the object as the standard.  
KEY PARAMETER LIST OF CARTON BOX  
Length  
(mm)  
Width  
(mm)  
Height  
(mm)  
Reel Type  
Pizza/Carton  
7″ (Option)  
7″  
368  
442  
227  
410  
224  
224  
8
18  
SG Micro Corp  
www.sg-micro.com  
TX20000.000  

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