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MAX17245

Description
the max17245 high-efficiency, synchronous step-down DC-DC converter with integrated mosfets operates over a 3.5V to 36v input voltage range with 42v input transient protection.
Categorysemiconductor    Power management   
File Size1MB,17 Pages
ManufacturerMaxim
Websitehttps://www.maximintegrated.com/en.html
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MAX17245 Overview

the max17245 high-efficiency, synchronous step-down DC-DC converter with integrated mosfets operates over a 3.5V to 36v input voltage range with 42v input transient protection.

EVALUATION KIT AVAILABLE
MAX17245
3.5V–36V, 3.5A, Synchronous Buck Converter
With 28μA Quiescent Current and Reduced EMI
General Description
The MAX17245 high-efficiency, synchronous step-down
DC-DC converter with integrated MOSFETs operates
over a 3.5V to 36V input voltage range with 42V input
transient protection. The MAX17245 can operate in drop-
out condition by running at 98% duty cycle. This converter
delivers up to 3.5A and generates fixed output voltages of
3.3V/5V, along with the ability to program the output voltage
between 1V to 10V.
The MAX17245 uses a current-mode control architecture
and can operate in the pulse-width modulation (PWM)
or pulse-frequency modulation (PFM) control schemes.
PWM operation provides constant frequency operation at
all loads and is useful in applications sensitive to switching
frequency. PFM operation disables negative inductor
current and additionally skips pulses at light loads for
high efficiency. Under light-load applications, the external
sync pin FSYNC logic input allows the device to operate
in either PFM mode for reduced current consumption or
fixed-frequency PWM (forced-PWM) mode to eliminate
frequency variation to minimize EMI. Fixed-frequency
PWM mode is extremely useful for power supplies
designed for RF transceivers where tight emission control
is necessary.
This device is available in a compact 16-pin (5mm x 5mm)
TQFN package with exposed pad and 16-pin TSSOP.
-40°C to +85°C operation.
Eliminates External Components and Reduces
Total Cost
• Integrated High-Side and Low-Side Switch Enables
Synchronous Operation for High Efficiency and
Reduced Cost
• All-Ceramic Capacitor Solution Allows
Ultra-Compact Solution Size
• 220kHz to 2.2MHz Adjustable Frequency with
External Synchronization
• Power Good Output and High-Voltage EN Input
Simplify Power Sequencing
Increases Design Flexibility
• 180° Out-of-Phase Clock Output at SYNCOUT
Enables Cascaded Power Supplies for Increased
Power Output
• Fixed Output Voltage with ±2% Accuracy (5V/3.3V)
or Externally Resistor Adjustable (1V to 10V)
Reduces Power Dissipation
>90% Peak Efficiency
• PWM and PFM Operation Optimizes Conversion
Efficiency From Heavy to Light Loads
• Automatic LX Slew-Rate Adjustment for Optimum
Efficiency Across Operating Frequency Range
Low 5μA (typ.) Shutdown Current
Low 28μA (typ.) Quiescent Current
Operates Reliably
• 42V Input Voltage Transient Protection
• Fixed 8ms Internal Software Start Reduces Input
Inrush Current
• Cycle-by-Cycle Current limit, Thermal Shutdown
with Automatic Recovery
• Reduced EMI Emission with Spread-Spectrum
Control
Distributed Supply Regulation
Wall Transformer Regulation
General-Purpose Point-of-Load
Benefits and Features
Typical Application Circuit
V
BAT
C
IN1
C
IN3
4.7µF
SUP
EN
OSC SYNC PULSE
FSYNC
COMP
C
COMP2
12pF
R
FOSC
12kI
FOSC
SUPSW
BST
LX
OUT
V
OUT
D1
R
SNUB*
C
SNUB*
V
BIAS
R
SYNCOUT
100I
C
BIAS
1µF
BIAS
PGND
*R
SNUB
= 1I and C
SNUB
= 220pF required for
the following operating conditions:
V
BAT
R
25V,
V
OUT
P
5V,
f
SW
R
1.8MHz,
FPWM mode enabled
PGOOD
SYNCOUT
AGND
R
PGOOD
10kI
POWER-GOOD OUTPUT
180° OUT-OF-PHASE OUTPUT
C
IN2
4.7µF
C
BST
0.1µF
L1
2.2µH
V
BIAS
V
OUT
5V AT 3.5A
C
OUT
22µF
R
___
0I
Applications
C
COMP1
1000pF
R
COMP
20kI
MAX17245
FB
V
OUT
Ordering Information/Selector Guide
appears at end of data
sheet.
19-8527; Rev 0; 4/16

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