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MAX8523
High-Speed, Dual-Phase Gate Driver for Multiphase, Step-Down Converters

Highest Accuracy, Scalable, VRD/VRM-10 Power Chipset Reduces Capacitance by 60% in Servers and Desktops


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Status
Active: In Production.

Description
FULL DATA SHEET (PDF, 220kB)
Download this datasheet in PDF formatDownload   Send this datasheet to any email addressE-Mail
The MAX8523 dual-phase gate driver, along with the MAX8524/MAX8525 multiphase controllers, provides flexible 2- to 8-phase CPU core-voltage supplies. The 0.5Ω/0.95Ω driver resistance allows up to 30A output current per phase.

Each MOSFET driver in the MAX8523 can drive 3000pF capacitive loads with only 15ns propagation delay and 11ns typical rise and fall times, allowing operations up to 1.2MHz per phase. Adaptive dead time controls low-side MOSFET turn-on, and user-programmable dead time controls high-side MOSFET turn-on. This maximizes converter efficiency while allowing operation with a variety of MOSFETs and controller ICs. An undervoltage lockout (UVLO) circuit allows proper power-on sequencing. PWM_ signal inputs are TTL and CMOS compatible.

The MAX8523 is available in a space-saving 16-pin QSOP package and specified for -40°C to +85°C operation.

Key Features   Applications/Uses
  • 6A Peak Gate-Drive Current
  • Up to 1.2MHz Operation
  • Up to 6.5V Gate-Drive Voltage
  • 0.5Ω /0.95Ω Low-Side Drivers
  • Capable of 30A Output per Phase
  • Adaptive Shoot-Through Protection
  • User-Programmable Delay Time
  • TTL and CMOS Input Compatible
  • UVLO for Proper Sequencing
  • Flexible 2- to 8-Phase Implementation with MAX8524 and MAX8525
  • Space-Saving (4.9mm x 6mm) 16-Pin QSOP Package
 

Key Specifications:  Step-Down Switching Regulators
Part Number VIN
(V)
VIN
(V)
Max. IOUT
(A)
Max. IOUT
(A)
DC-DC Outputs Package/Pins Smallest Available Pckg.
(mm2)
Price
min max max w/pins See Notes
MAX8523  4.5 13.2 60 60 2
QSOP/16
30.9 $0.78 @1k
See All Step-Down Switching Regulators (264)

Diagram
MAX8523: Typical Operating Circuit
Typical Operating Circuit

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    Document Ref.: 19-2860; Rev 0; 2003-05-19
    This page last modified: 2008-02-21


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