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MAX17548EVKIT#

Description
Power management IC development tool EV KIT for MAX17548
CategoryEmbedded solution    Engineering tools    Power management IC development tools   
File Size917KB,14 Pages
ManufacturerMaxim
Websitehttps://www.maximintegrated.com/en.html
Environmental Compliance
Download Datasheet Parametric View All

MAX17548EVKIT# Overview

Power management IC development tool EV KIT for MAX17548

MAX17548EVKIT# Parametric

Parameter NameAttribute value
MakerMaxim
Product CategoryPower Management IC Development Tools
productEvaluation Kits
typeVoltage Regulators - Switching Regulators
Tools for assessmentMAX17548
Input voltage6 V to 42 V
The output voltage3.3 V, 5 V
Description/FunctionEvaluates the MAX17548 DC-DC converter
Output current10 A
seriesMAX17548
Factory packaging quantity1
MAX17548 Evaluation Kit
Evaluates: MAX17548
General Description
The MAX17548 EV kit provides a proven design to evalu-
ate the MAX17548 wide 4.5V to 42V input, dual-output,
synchronous step-down DC-DC controller. The EV kit
provides 5V/5A and 3.3V/10A at the outputs from a 6V to
42V input supply. The switching frequency of the EV kit
is preset to 350kHz for optimal efficiency and component
size. The EV kit features adjustable input undervoltage-
lockout and soft-start time, selectable PWM/DCM modes,
180° out-of-phase/0° in-phase operation, current-limit
threshold, and independent open-drain PGOOD signals.
Quick Start
Required Equipment
MAX17548 EV kit
4.5V to 42V, 15A DC power supply
Loads capable of sinking 5A and 10A
Two digital voltmeters (DVM)
Procedure
Features
The EV kit is fully assembled and tested. Follow the steps
below to verify board operation.
Caution: Do not turn on
the power supply until all connections are completed.
1)
2)
Ensure that the DC power supply is disabled. Set the
power supply voltage to 24V.
Set one of the loads to 5A and the other to 10A. Disable
the load in the case of an electronic load. Leave the
load unconnected in the case of a resistor load and
ensure that the resistor power rating is high enough
to dissipate the output power.
Connect the positive terminal of the power supply to
the VIN connector and the negative terminal of the
power supply to PGND connector, which is nearest
to VIN connector.
Connect one digital voltmeter across VOUT1 con-
nector and the nearest PGND connector with the
positive terminal of the DVM connected to VOUT1
connector.
Connect the other digital voltmeter across VOUT2
connector and the nearest PGND connector with the
positive terminal of the DVM connected to VOUT2
connector.
Verify the shunts on jumpers, as described in
Table 1,
to select default settings of the EV kit.
Turn on the DC power supply.
Verify that the digital voltmeters display the expected
voltages (5V±1% on VOUT1 and 3.3V±1% on
VOUT2).
Enable the electronic load (connect the load in the
case of resistor load).
6V to 42V Input Range
Output Rails: V
OUT1
: 5V/5A, V
OUT2
: 3.3V/10A
350kHz Switching Frequency
Independent Enable Inputs
Independent Adjustable Soft-Start Time
Configurable Tracking Operation
Selectable PWM/DCM Modes of Operation
Selectable 180° Out-of-Phase/0° In-Phase Operation
Selectable Current-Limit Threshold
Independent PGOOD Outputs
Overcurrent, Overvoltage, and Overtemperature
Protection
Proven PCB Layout
Fully Assembled and Tested
3)
4)
5)
Ordering Information
appears at end of data sheet.
6)
7)
8)
9)
10) Verify that the voltmeters display the expected voltages
(5V±1% on V
OUT1
and 3.3V±1% on V
OUT2
).
319-100066; Rev 0; 8/17
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