MPS MP3429GL 21a high efficiency fully-integrated synchronous boost converter ev board Datasheet

EV3429-L-00A
21A High Efficiency Fully-Integrated
Synchronous Boost Converter EV Board
The Future of Analog IC Technology
DESCRIPTION
FEATURES
EV3429-L-00A Evaluation Board is designed to
demonstrate the capability of MP3429. The
MP3429 is a 600kHz fixed frequency, wide
input range, highly integrated boost converter. It
starts from an input voltage as low as 2.7V, and
supports up to 30W load power from 1-cell
battery.
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MP3429 adopts constant-off-time (COT) control
topology providing fast transient response. One
MODE pin supports mode selection of PSM,
FCCM and USM in light load condition. And the
integrated LS and HS MOSFET simplify the
design and save BOM cost.
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The MP3429 is available in a 13-pin 3mmx4mm
QFN package.
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Electrical Specification
Parameter
Input Voltage
Output Voltage
Symbol
VIN
VOUT
S
P
Output Current
Iout
Note:
Value
2.7-8.4
9
Units
V
V
A
3.5(1)
1) When VIN=2.7V, IOUT=3.5A, the case temperature should be
high, It is limited by PCB size. Please decrease the load based
the permitted temperature performance.
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EV3429-L-00A EVALUATION BOARD
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(L x W x H) 6.35cm x 6.35cm x 0.6cm
Board Number
EV3429-L-00A
EV3429-L-00A Rev.1.0
9/14/2016
MPS IC Number
MP3429GL
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The MP3429 also features with programmable
input UVLO and over temperature protection.
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2.7V-to-13V Startup Voltage
0.8V-to-13V Operation Voltage
Up to 16V Output Voltage
Support 30W Average Power Load and
40W Peak Power Load from 3.3V
21.5A Internal Switch Current Limit
Integrated 6.5mΩ & 10mΩ Power MOSFET
>95% Efficiency for 3.6V VIN to 9V/3A
Selectable PSM, >23kHz USM, and FCCM
Mode in Light Load Condition
600kHz Fixed Switching Frequency
Adaptive COT for Fast Transient Response
External Soft Start and Compensation Pin
Programmable UVLO and Hysteresis
150℃ Over Temperature Protection
Available in 3x4mm QFN-13 Package
APPLICATIONS
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Notebook
Bluetooth Speaker
Portable POS System
Quick Charger Power Bank
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All MPS parts are lead-free and adhere to the RoHS directive. For MPS green
status, please visit MPS website under Products, Quality Assurance page.
“MPS” and “The Future of Analog IC Technology” are Registered Trademarks of
Monolithic Power Systems, Inc.
100
95
90
85
80
75
70
65
60
55
50
1
10
100
1000 10000
LOAD CURRENT (mA)
www.MonolithicPower.com
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
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EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
EVALUATION BOARD SCHEMATIC
2.7V~8.4V
VIN
1.5uH
C1A
22uF
C1B
22uF
0.1uF
C1C
22uF
VIN
R5
NS
J1
OUT
U1
FB
MP3429
EN
N
C6
COMP
R7
20k
R6
130k
E
VDD
C3
4.7uF
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C2D
0.1uF
R4
30k
MODE
1
2
3
L
C5
L1
SS
C4
22nF
FTY
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6.8nF
A
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6
2
1
1
1
1
1
1
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Ref
C1A, C1B,
C1C, C2A,
C2B, C2C
C2D,C5
C3
C4
C6
R1
R2
R3
S
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Value
C2C
22uF
VOUT
R3
6.8k
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Description
Package
Manufacturer
Part Number
22μF
Ceramic Cap,25V,X5R
1210
MuRata
GRM32ER61E226KE15L
0.1uF
4.7uF
22nF
6.8nF
750K
93.1K
6.8K
Ceramic Cap,25V,X7R
Ceramic Cap,6.3V,X5R
Ceramic Cap,16V,X7R
Ceramic Cap,50V,X7R
Film Res,1%
Film Res,1%
Film Res,1%
0603
0603
0603
0603
0603
0603
0603
MuRata
MuRata
MuRata
MuRata
ROYAL
ROYAL
ROYAL
0603
ROYAL
RL0603FR-0730KL
0603
0603
ROYAL
ROYAL
11.5x10mm
Sumida
RL0603FR-07130KL
RL0603FR-0720KL
104CDMCCDS-1R5MCND
Jumper
QFN
3X4mm
MPS
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1
R4
30K
Film Res,1%
0
1
1
R5
R6
R7
NC
130K
20K
Film Res,1%
Film Res,1%
1
L1
1.5uH
IRMS=19A, RDC=3.3mΩ
1
J1
Jumper
Short Jumper, 2.54mm
1
U1
MP3429
Boost converter
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EV3429-L-00A Rev.1.0
9/14/2016
C2B
22uF
R2
93.1k
EV3429-L-00A BILL OF MATERIALS
Qty
C2A
22uF
R1
750k
[email protected]
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GRM188R71E104KA01D
GRM188R71J475KA01D
GRM188R71C223KA01D
GRM188R71H682KA01D
RL0603FR-07750KL
RL0603FR-0793K1L
RL0603FR-076K8L
www.MonolithicPower.com
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
MP3429GL
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EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
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EVB TEST RESULTS
VIN = 3.3V, VOUT= 9V, L=1.5μH, IOUT= 3.5A, PSM, TA = 25°C, unless otherwise noted.
0.5
95
0.4
90
0.3
85
0.2
80
0.1
75
0
70
-0.1
65
-0.2
60
-0.3
55
-0.4
50
-0.5
1
10
100
1000 10000
LOAD CURRENT (mA)
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40
20
0
S
P
-20
-40
-60
1000
M
10000
100000
100
1000
0.3
0.2
0.1
0
-0.1
-0.2
-0.3
-0.4
-0.5
10000
2
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180
120
80
70
60
60
0
-60
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50
40
30
20
-120
10
-180
1000000
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EV3429-L-00A Rev.1.0
9/14/2016
10
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1
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0.4
Case Temperature Rising
Bode Plot
60
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0.5
REGULATION (%)
100
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0
0
1
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2
3
3
4
5
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8
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9
4
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MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
.
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EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
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EVB TEST RESULTS (continued)
VIN = 3.3V, VOUT= 9V, L=1.5μH, IOUT= 3.5A, PSM, TA = 25°C, unless otherwise noted.
Steady State
IOUT=0A, USM
IOUT=0A, PSM
CH1:
CH1:
VOUT/AC
VOUT/AC
10mV/div.
20mV/div.
CH2: VIN
2V/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
CH3: VSW
5V/div.
CH4: IL
500mA/div.
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Steady State
IOUT=0A, FCCM
CH1:
VOUT/AC
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10mV/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
CH4: IL
2A/div.
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VIN Start‐Up
IOUT=0A
CH1: VOUT
5V/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
CH4: IL
2A/div.
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EV3429-L-00A Rev.1.0
9/14/2016
CH4: IL
2A/div.
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4ms/div.
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4ms/div.
Steady State
IOUT=3.5A
CH1:
VOUT/AC
100mV/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
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CH4: IL
10A/div..
1µs/div.
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10µs/div.
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Steady State
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2µs/div.
VIN Start‐Up
IOUT=3.5A
CH1: VOUT
5V/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
CH4: IL
10A/div.
4ms/div.
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MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
4
EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
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EVB TEST RESULTS (continued)
VIN = 3.3V, VOUT= 9V, L=1.5μH, IOUT= 3.5A, PSM, TA = 25°C, unless otherwise noted.
VIN Shutdown
IOUT=3.5A
CH1: VOUT
CH1: VOUT
5V/div.
5V/div.
CH2: VIN
2V/div.
CH2: VIN
2V/div.
CH3: VSW
5V/div.
CH3: VSW
5V/div.
CH4: IL
10A/div.
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1s/div.
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EN Start‐Up
IOUT=0A
CH1: VOUT
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CH2: VEN
2V/div.
CH3: VSW
5V/div.
CH4: IL
2A/div.
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EN Shutdown
IOUT=0A
CH1: VOUT
5V/div.
CH2: VEN
2V/div.
CH3: VSW
5V/div.
CH4: IL
2A/div.
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EV3429-L-00A Rev.1.0
9/14/2016
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1s/div.
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10ms/div.
EN Start‐Up
IOUT=3.5A
CH1: VOUT
5V/div.
CH2: VEN
2V/div.
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CH3: VSW
5V/div.
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CH4: IL
10A/div.
2ms/div.
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CH4: IL
1A/div.
5V/div.
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VIN Shutdown
IOUT=0A
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2ms/div.
EN Shutdown
IOUT=3.5A
CH1: VOUT
5V/div.
CH2: VEN
2V/div.
CH3: VSW
5V/div.
CH4: IL
10A/div.
400µs/div.
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MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
5
EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
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EVB TEST RESULTS (continued)
VIN = 3.3V, VOUT= 9V, L=1.5μH, IOUT= 3.5A, PSM, TA = 25°C, unless otherwise noted.
Load Transient
IOUT=3.5A—1.75A, IRAMP=25mA/µs
CH1:
CH1:
VOUT/AC
VOUT/AC
500mV/div.
500mV/div.
CH4: IOUT
2A/div.
CH4: IOUT
2A/div.
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Load Transient
VOUT/AC
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500mV/div.
CH4: ILOAD
2A/div.
S
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400µs/div.
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EV3429-L-00A Rev.1.0
9/14/2016
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400µs/div.
Load Transient
IOUT=0A—1.75A, IRAMP=25mA/µs, PSM
CH1:
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400µs/div.
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Load Transient
IOUT=0A—1.75A, IRAMP=25mA/µs, USM
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IOUT=0A—1.75A, IRAMP=25mA/µs, FCCM
CH1:
VOUT/AC
500mV/div.
CH4: ILOAD
2A/div.
S
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400µs/div.
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MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
6
EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
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PRINTED CIRCUIT BOARD LAYOUT
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Figure 3—Inner Layer 1
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EV3429-L-00A Rev.1.0
9/14/2016
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Figure 1—Top Silk Layer
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Figure 2—Top Layer
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Figure 4—Inner Layer 2
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Figure 5—Bottom Layer
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© 2016 MPS. All Rights Reserved.
7
EV3429-L-00A, 21A High Efficiency Fully-Integrated Synchronous Boost Converter EVB
QUICK START GUIDE
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The output voltage of this board is set to 9V. The board layout accommodates most commonly used
components. Following blew steps to quick start EV3429-L-00A.
1. Preset Power Supply to 2.7V ≤ VIN ≤ 8.4V.
2. Turn Power Supply off.
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3. Connect Power Supply terminals to:
a. Positive (+): VIN
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b. Negative (–): GND
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4. Connect Load to:
a. Positive (+): VOUT
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b. Negative (–): GND
A
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5. Turn Power Supply on after making connections.
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6. The MP3429 is enabled on the evaluation board once VIN is applied.
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7. The output voltage VOUT can be changed by varying R2. Calculate the new value using the
formula:
VOUT
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R1
 VFB  (1 
)
R2
Where VFB = 1V and R1=750kΩ.
8. If USM and FCCM is needed, following below steps:
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a. Turn Power Supply off.
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b. Change J1 connection. Connect 1 to 2 for FCCM, connect 2 to 3 for PSM, and float 2 for USM.
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c. Turn the power on. IC will work with the mode which is set by step b.
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NOTICE: The information in this document is subject to change without notice. Please contact MPS for current specifications.
Users should warrant and guarantee that third party Intellectual Property rights are not infringed upon when integrating MPS
products into any application. MPS will not assume any legal responsibility for any said applications.
EV3429-L-00A Rev.1.0
9/14/2016
www.MonolithicPower.com
MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited.
© 2016 MPS. All Rights Reserved.
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