MP3438
2A, 16V, High-Efficiency, Fully Integrated,
Synchronous Boost Converter
DESCRIPTION
FEATURES
The MP3438 is a highly integrated boost
converter with a 1.2MHz fixed frequency and a
wide input voltage (V IN) range. The MP3438
starts up from a VIN as low as 2.7V, and can
support up to a 2A switching current limit with
integrated, low RDS(ON) power MOSFETs.
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The MP3438 adopts constant-off-time (COT)
control to provide fast transient response. The
cycle-by-cycle current limit on the low-side
MOSFET (LS-FET) prevents current runaway,
and the high-side MOSFET (HS-FET)
eliminates the need for an external Schottky
diode. The MP3438 supports an automatic
pass-through function when VIN exceeds the set
output voltage (VOUT-SET). This function supports
high efficiency, even when the input exceeds
the regulated output.
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Full protection features include configurable VIN
under-voltage lockout (UVLO) and overtemperature protection (OTP).
The MP3438 is available in an SOT583
(1.6mmx2.1mm) package.
2.7V to 16V Start-Up Input Voltage (VST)
0.8V to 16V Operating Input Voltage (VIN)
Up to 16V Output Voltage (VOUT)
2A Switching Current Limit
>91% Efficiency for 3.3V VIN to 12V/0.3A
1.2MHz Fixed Switching Frequency (fSW)
Adaptive Constant-Off-Time (COT) Control
for Fast Transient Response
Power-Save Mode (PSM) under Light Loads
Automatic Pass-Through Mode when VIN >
Set Output Voltage (VOUT-SET)
Internal Soft Start and Compensation
Configurable Under-Voltage Lockout
(UVLO) and Hysteresis
Over-Temperature Protection (OTP) and
Over-Voltage Protection (OVP)
Available in an SOT583 (1.6mmx2.1mm)
Package
Optimized Performance with
MPS Inductor MPL-AL4020 Series
APPLICATIONS
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LCD Bias Supplies
ADSLs/DSLs
Electronic Cigarettes
Instrumentation Equipment
Portable Applications
All MPS parts are lead-free, halogen-free, and adhere to the RoHS
directive. For MPS green status, please visit the MPS website under
Quality Assurance. “MPS”, the MPS logo, and “Simple, Easy Solutions” are
trademarks of Monolithic Power Systems, Inc. or its subsidiaries.
TYPICAL APPLICATION
L1
C4
0.1µF
MPL-AL4020-3R3
SW
VIN
C1
4.7µF
On / off
EN
VOUT 12V
100
VOUT
MP3438
VCC
GND
95
R1
750kΩ
FB
C3
1µF
Efficiency vs. Load Current
BST
R2
68kΩ
C2
10µF
EFFICIENCY (%)
VIN
90
85
VIN=3V
VIN=3.3V
VIN=4.2V
VIN=6V
VIN=6.6V
VIN=8.4V
80
75
70
65
60
1
MP3438 Rev. 1.0
3/23/2022
10
100
1000
LOAD CURRENT (mA)
MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2022 MPS. All Rights Reserved.
1
MP3438 – 2A, 16V, HIGH-EFFICIENCY SYNCHRONOUS BOOST CONVERTER
ORDERING INFORMATION
Part Number
Package
Top Marking
MSL Rating
MP3438GTL*
SOT583
See Below
1
* For Tape & Reel, add suffix -Z (e.g. MP3438GTL-Z).
TOP MARKING
BRU: Product code
Y: Year code
LLL: Lot number
PACKAGE REFERENCE
TOP VIEW
BST 1
8 VIN
6 EN
7
VOUT 2
1
SW 3
6 VCC
GND 4
5
FB
SOT583
MP3438 Rev. 1.0
3/23/2022
MonolithicPower.com
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2022 MPS. All Rights Reserved.
2
MP3438 – 2A, 16V, HIGH-EFFICIENCY SYNCHRONOUS BOOST CONVERTER
PIN FUNCTIONS
Pin #
Name
1
BST
2
VOUT
3
SW
4
5
GND
FB
6
VCC
7
EN
8
VIN
Description
Bootstrap. A capacitor between the BST and SW pins powers the synchronous high-side
MOSFET (HS-FET).
Output. The VOUT pin is connected to the drain of the HS-FET. VOUT powers VCC when
VOUT exceeds VIN, and when VIN is below 3.4V.
Converter switch. The SW pin is connected to the drain of the internal low-side MOSFET
(LS-FET) and the source of the internal HS-FET. Connect the power inductor to the SW pin.
Power ground.
Feedback input. Connect a resistor divider from VOUT to the FB pin.
Internal bias supply. Decouple the VCC pin with a 1μF ceramic capacitor, placed as close
to this pin as possible. When VIN exceeds 3.4V, VCC is powered by VIN. Otherwise, VCC is
powered by the greater voltage between VIN and VOUT. If the biased voltage connected to
VCC exceeds 3.4V, the regulators from VIN and VOUT are disabled. If EN is high, the VCC
regulator starts to operate when VIN exceeds 0.9V. To provide VCC with a sufficient power
voltage during VIN start-up, supply the VIN pin with a power source exceeding 2.7V.
Chip enable control. Connect the EN pin to VIN for automatic start-up. EN can configure the
VIN under-voltage lockout (UVLO) threshold. Do not float the EN pin. It must be externally
pulled up or down.
Input supply. The VIN pin must be bypassed locally. To provide VCC with a sufficient power
voltage during VIN start-up, supply VIN with a power source exceeding 2.7V.
ABSOLUTE MAXIMUM RATINGS
(1)
SW…………………………………………………..
..-0.3V (-2V for
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