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MAX15014, MAX15015, MAX15016, MAX15017

1A, 4.5V to 40V Input Buck Converters with 50mA Auxiliary LDO Regulators

Automotive Buck Regulators with 50mA Low IQ LDO Regulators Power Always-On Circuits and Operate from Cold Crank through Load Dump

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Status Explanations for product status codes

Active: In Production.

Description

The MAX15014–MAX15017 combine a step-down DCDC converter and a 50mA, low-quiescent-current low-dropout (LDO) regulator. The LDO regulator is ideal for powering always-on circuitry in automotive applications. The DC-DC converter input voltage range is 4.5V to 40V for the MAX15015/MAX15016, and 7.5V to 40V for the MAX15014/MAX15017.

The DC-DC converter output is adjustable from 1.26V to 32V and can deliver up to 1A of load current. These devices utilize a feed-forward voltage-mode control scheme for good noise immunity in the high-voltage switching environment and offer external compensation allowing for maximum flexibility with a wide selection of inductor values and capacitor types. The switching frequency is internally fixed at 135kHz and 500kHz, depending on the version chosen. Moreover, the switching frequency can be synchronized to an external clock signal through the SYNC input. Light load efficiency is improved by automatically switching to a pulse-skip mode. The soft-start time is adjustable with an external capacitor. The DC-DC converter can be disabled independent of the LDO, thus reducing the quiescent current to 47µA (typ).

The LDO linear regulators operate from 5V to 40V and deliver a guaranteed 50mA load current. The devices feature a preset output voltage of 5V (MAX1501_A) or 3.3V (MAX1501_B). Alternatively, the output voltage can be adjusted from 1.5V to 11V by using an external resistive divider. The LDO section also features an active-low RESET output with adjustable timeout period. Protection features include cycle-by-cycle current limit, hiccup-mode output short-circuit protection, and thermal shutdown. All devices are available in a space-saving, high-power (2.86W), 36-pin TQFN package and are rated for operation over the -40°C to +125°C automotive temperature range.

 

Data Sheet

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An evaluation kit is available: MAX15015AEVKIT

Key Features

  • Combined DC-DC Converters and Low-Quiescent-Current LDO Regulators
  • 1A DC-DC Converters Operate from 4.5V to 40V (MAX15015/MAX15016) or 7.5V to 40V (MAX15014/MAX15017)
  • Switching Frequency of 135kHz (MAX15014/MAX15016) or 500kHz (MAX15015/MAX15017)
  • 50mA LDO Regulator Operates from 5V to 40V Independent of the DC-DC Converter
  • 47µA Quiescent Current with DC-DC Converter Off and LDO On
  • 6µA System Shutdown Current
  • Frequency Synchronization Input
  • Shutdown/Enable Inputs
  • Adjustable Soft-Start Time
  • Open-Drain Active-Low RESET Output with Programmable Timeout Delay
  • Thermal Shutdown and Output Short-Circuit Protection
  • Space-Saving (6mm x 6mm) Thermally Enhanced 36-Pin TQFN Package
 

Applications/Uses

  • Automotive Body Control Modules
  • Automotive Instrument Cluster
  • Car Radios
  • Navigation Systems
   

Key Specifications:

Step-Down Switching Regulators
Part Number VIN
(V)
VIN
(V)
VOUT
(V)
VOUT
(V)
Max. IOUT
(A)
Output Adjust. Method DC-DC Outputs Oper. Freq.
(kHz)
Package/Pins Smallest Available Pckg.
(mm2)
Budgetary Price
min max min max max w/pins See Notes
MAX15014  7.5 40 1.26 32 1 Resistor 1 135
TQFN/36
37.2 $2.67 @1k
MAX15015  4.5 500
TQFN/36
$2.67 @1k
MAX15016  4.5 135
TQFN/36
$2.67 @1k
MAX15017  7.5 500
TQFN/36
$2.67 @1k
See All Step-Down Switching Regulators (288)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Diagram

MAX15014, MAX15015, MAX15016, MAX15017: Typical Application Circuit
Typical Application Circuit

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Information Index

Document Ref.: 19-0734 Rev 0; 2007-02-09
This page last modified: 2007-03-05




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