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MAX16833 Datasheet PDF

Part Series:MAX16833 Series
Category:LED Drivers
Description:LED Driver 9V/12V/15V/18V/24V Automotive 16Pin TSSOP EP
Document:MAX16833AUE+ Datasheet PDF (25 Pages)

MAX16833 LED Drivers Datasheet PDF

MAX16833 Datasheet PDF LED Drivers

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MAX16833AUE+ - Maxim Integrated Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Frequency
100kHz ~ 1MHz
Number of Pins
16 Pin
Case/Package
TSSOP-16
Number of Outputs
1 Output
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MAX16833AUE+ - Maxim Integrated Function Overview

The MAX16833AUE+ is a high voltage HB LED driver with integrated high side current sense in 16 pin TSSOP package. It is a peak current mode controlled LED drivers for boost, buck-boost, SEPIC, flyback and high side buck topologies. A dimming driver designed to drive an external P-channel in series with LED string provides wide range dimming control. This feature provides extremely fast PWM current switching to LEDs with no transient overvoltage or undervoltage conditions. In addition to PWM dimming, the IC provides analogue dimming using DC input at ICTRL. It senses LED current at high side of LED string. A single resistor from RT/SYNC to ground sets the switching frequency from 100KHz to 1MHz while an external clock signal capacitively coupled to RT/SYNC allows the IC to synchronize to an external clock. The IC operates over wide 5V to 65V supply range and include 3A sink/source gate driver for driving power MOSFET in high power LED driver applications.
Supply current of 1.5mA (PWMDIM = 0, no switching) and 2.5mA (switching)
Operating temperature range from -40°C to 125°C
Fault indicator output (active-low FLT) and overvoltage protection sense input (OVP)
Integration minimizes BOM for high brightness LED driver with wide input range saving space and cost
Integrated high side PMOS dimming MOSFET driver (allows single wire connection to LEDs)
ICTRL pin for analogue dimming and integrated high side current sense amplifier
Full scale, high side, current sense voltage of 200mV and maximum duty cycle of 88.5%
Simple to optimize for efficiency, board space and input operating range
Frequency dithering for spread spectrum applications
Protection features and wide temperature range increases system reliability
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