MAX8831

High Efficiency White LED Step-Up Converter with I²C Interface in 2mm x 2mm WLP

Easily Drives Five Banks of 9 LEDs with Over 90% Efficiency Using an I²C Interface in a 2mm x 2mm WLP

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Status Explanations for product status codes

Active: In Production.

Description

The MAX8831 integrates a 60mA, 28V PWM DC-DC step-up converter with five low-dropout LED current regulators for display and keypad backlighting in cell phones, PDAs, and other portable devices. The IC provides up to 90% efficiency over the entire input voltage range of 2.7V to 5.5V. The step-up converter operates at a fixed 2MHz switching frequency, enabling the use of very small external components to achieve a compact circuit area. For improved efficiency, the step-up converter automatically transitions to pulse-skipping mode at light loads.

Each of the five current regulators accommodates up to 9 series LEDs (depending on LED string forward voltage), and is independently programmed using an I²C interface. Two of the current regulators (LED1, LED2) are intended to support display backlight functions and are programmable up to 25mA using a 128-step logarithmic dimming scheme. The other three regulators (LED3, LED4, LED5) are suitable for keyboard backlight functions or for driving signal indicators, and are programmable up to 5mA using a 32-step logarithmic dimming scheme. The low-current regulators (LED3, LED4, LED5) can be operated from the step-up converter or from a separate low-voltage source.

The I²C interface controls all operational aspects of the current regulators, including: on/off state, LED current, ramp-up/ramp-down timers, and blink rate timers (LED3, LED4, LED5). The MAX8831 write/read addresses are factory programmed at 0x9A/0x9B (contact the factory for other address options).

The MAX8831 features open/short LED fault detection, output overvoltage protection, thermal shutdown, and open-circuit Schottky diode detection, with the status of each fault monitored continually for readback through the I²C interface.

The MAX8831 is available in a tiny 2mm x 2mm, 16-bump WLP package.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 1 (PDF, 428kB)
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An evaluation kit is available: MAX8831EVKIT

Key Features

  • 28V Step-Up DC-DC Converter
    • Integrated NMOS Power Switch
    • > 90% Efficiency
    • Fixed 2MHz Switching
    • Pulse Skipping for Improved Light-Load Efficiency
    • Tiny External Components
  • I²C Programmable (0x9A Write/0x9B Read), Compatible with 1.8V Logic
  • Two 25mA Regulators for Display Backlighting
    • I²C-Programmable Output Current (50µA to 25.25mA)
    • 128-Step Logarithmic Dimming
    • Individually Programmable Ramp (Up/Down) Timers
    • Low Dropout (200mV max)
  • Three 5mA Current Regulators for Keypad Lighting
    • I²C-Programmable Output Current (50µA to 5.0mA)
    • 32-Step Logarithmic Dimming
    • Individually Programmable Ramp (Up/Down) Timers
    • Individual Blink Rate and Duty Cycle Timers
    • Low Dropout (150mV max)
  • Open/Short LED and Open-Circuit Diode Detection
  • Thermal-Shutdown and Output Overvoltage Protection
  • Ultra-Low 0.1µA Shutdown Current
  • Tiny 2mm x 2mm, 16-Bump WLP Package
 

Applications/Uses

  • Cell Phones
  • PDAs
  • Smartphones
   

Key Specifications:

White LED Drivers
Part Number Topology LEDs Config. Dimming Control VDROPOUT
(mV)
VCURR_SENSE
(mV)
POUT
(W)
ILED
(mA)
VIN
(V)
VIN
(V)
ICC
(mA)
VOUT
(V)
Oper. Freq.
(kHz)
Package/Pins Budgetary Price
max num. of typ max min max max max See Notes
MAX8831  Inductor Based 45 Series-Parallel
Digital
I2C Serial
150 150 5 25 2.7 5.5 1.5 28 2000
WLP/16
$1.51 @1k
See All White LED Drivers (47)
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

MAX8831: Typical Operating Circuit
Typical Operating Circuit

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Information Index

Document Ref.: 19-4370 Rev 1; 2009-11-05
This page last modified: 2009-11-05




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