MAX15023

Wide 4.5V to 28V Input, Dual-Output Synchronous Buck Controller

Low-Cost, Dual DC-DC Controller Operates from 4.5V to 28V Suitable for Multiple Applications

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Active: In Production.

Description

  Create a design and simulate with EE-Sim: [MAX15023]

The MAX15023 dual, synchronous step-down controller operates from a 5.5V to 28V or 5V ±10% input voltage range and generates two independent output voltages. Each output is adjustable from 85% of the input voltage down to 0.6V and supports loads of 12A or higher. Input voltage ripple and total RMS input ripple current are reduced by interleaved 180° out-of-phase operation.

The MAX15023 offers the ability to adjust the switching frequency from 200kHz to 1MHz with an external resistor. The MAX15023's adaptive synchronous rectification eliminates the need for external freewheeling Schottky diodes. The device also utilizes the external low-side MOSFET's on-resistance as a current-sense element, eliminating the need for a current-sense resistor. This protects the DC-DC components from damage during output overloaded conditions or output short-circuit faults without requiring a current-sense resistor. Hiccup-mode current limit reduces power dissipation during short-circuit conditions. The MAX15023 includes two independent power-good outputs and two independent enable inputs with precise turn-on/turn-off thresholds, which can be used for supply monitoring and for power sequencing.

Additional protection features include cycle-by-cycle, low-side, sink peak current limit, and thermal shutdown. Cycle-by-cycle, low-side, sink peak current limit prevents reverse inductor current from reaching dangerous levels when the device is sinking current from the output. The MAX15023 also allows prebiased startup without discharging the output and features adaptive internal digital soft-start. This new proprietary feature enables monotonic charging of externally large output capacitors at startup, and achieves good control of the peak inductor current during hiccup-mode short-circuit protection.

The MAX15023 is available in a space-saving and thermally enhanced 4mm x 4mm, 24-pin TQFN-EP package. The device operates over the -40°C to +85°C extended temperature range.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 2 (PDF, 484kB)
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An evaluation kit is available: MAX15023EVKIT

Key Features

  • 5.5V to 28V or 5V ±10% Input Supply Range
  • 0.6V to (0.85 x VIN) Adjustable Outputs
  • Adjustable 200kHz to 1MHz Switching Frequency
  • Guaranteed Monotonic Startup into a Prebiased Load
  • Lossless, Cycle-by-Cycle, Low-Side, Source Peak Current Limit with Adjustable, Temperature-Compensated Threshold
  • Cycle-by-Cycle, Low-Side, Sink Peak Current-Limit Protection
  • Proprietary Adaptive Internal Digital Soft-Start
  • ±1% Accurate Voltage Reference
  • Internal Boost Diodes
  • Adaptive Synchronous Rectification Eliminates External Freewheeling Schottky Diodes
  • Hiccup-Mode Short-Circuit Protection and Thermal Shutdown
  • Power-Good Outputs and Analog Enable Inputs for Power Sequencing
 

Applications/Uses

  • DSP Power Supplies
  • LCD TV Secondary Supplies
  • Point-of-Load Regulators
  • Power Modules
  • Set-Top Boxes
  • Switches/Routers
   

Key Specifications:

Step-Down Switching Regulators
Part Number VIN
(V)
VIN
(V)
VOUT
(V)
VOUT
(V)
Max. IOUT
(A)
Max. IOUT
(A)
Output Adjust. Method DC-DC Outputs Oper. Freq.
(kHz)
Design Tools Package/Pins Smallest Available Pckg.
(mm2)
Budgetary Price
min max min max max w/pins See Notes
MAX15023  4.5 28 0.6 28 15 15 Resistor 2 1000 EE-Sim
TQFN/24
16.8 $2.99 @1k
See All Step-Down Switching Regulators (284)
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

MAX15023: Typical Application Circuit
Typical Application Circuit

More Information

New Product Press Release 2009-01-26 ]

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Information Index

Document Ref.: 19-4219 Rev 2; 2011-03-22
This page last modified: 2011-03-22




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