Optoelectronics

Synchronous 4-switch buck-boost LED driver features spread spectrum

7th April 2016
Jordan Mulcare
0

Linear Technology announces the LT8391, a synchronous buck-boost DC/DC LED controller that regulates LED current from input voltages above, below and equal to the output voltage. Its 4 to 60V input voltage range makes it suitable for a wide variety of applications, including automotive, industrial and architectural lighting.

Similarly, its output voltage can be set from 0 to 60V, enabling it to drive a wide range of LEDs in a single string. Its internal 4-switch buck-boost controller, combined with four external N-channel MOSFETs, can deliver from 10 to over 100W of LED power. Its buck-boost capability makes it well suited for applications such as automotive, where the input voltage can vary dramatically during stop/start, cold crank and load dump scenarios.

Transitions between buck, pass-through and boost operating modes are seamless, offering a well regulated output in spite of wide variations of supply voltage. The LT8391 provides both internal (128:1) and external (2,000:1) LED current PWM dimming using an external high side PMOS switch. It is offered in either a 28-lead 4x5mm QFN or thermally enhanced TSSOP to provide a very compact solution footprint.

The LT8391 uses four external N-channel MOSFETs to deliver up to 100W of continuous LED power with efficiencies up to 98%. LED current accuracy of ±3% ensures constant lighting. The proprietary peak-buck, peak-boost current mode control scheme allows adjustable and synchronisable 150 to 650kHz fixed frequency operation or internal spread spectrum operation for low EMI. Additional features include integrated bootstrap diodes and open and short LED protection with fault reporting.

The LT8391EFE is available in 28-lead thermally enhanced TSSOP package, and the LT8391EUFD is offered in a 28-lead 4x5mm QFN package. Industrial grade versions, the LT8391IFE and LT8391IUFD, are also available. Pricing starts at $4.65 each in 1,000-piece quantities.

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