Device Information
 
 
ISL6326B Printer Friendly Version
 
4-Phase PWM Controller with 8-Bit DAC Code Capable of Precision DCR Differential Current Sensing
 
Datasheets,
Related Docs
& Simulations
DescriptionKey
Features
Parametric
Data
Application
Diagrams
Related
Devices
 
 
Ordering Information
Green/Pb(Lead free) Device  Available in RoHS/Pb-Free
 Buy direct from Intersil  Check distributor inventory  Request samples
Part No. Design-In
Status
Temp. Package MSL Price
US $
PB Free
ISL6326BCRZ Active Comm 40 Ld QFN 3   PB Free iBuy Disti-Buy Sample
ISL6326BCRZ-T Active Comm 40 Ld QFN T+R 3   PB Free iBuy Disti-Buy  
ISL6326BIRZ Active Ind 40 Ld QFN 3   PB Free iBuy Disti-Buy Sample
ISL6326BIRZ-T Active Ind 40 Ld QFN T+R 3   PB Free iBuy Disti-Buy  
ISL6326BEVAL2Z Coming
Soon
  Eval Board N/A   PB Free iBuy    
The price listed is the manufacturer's suggested retail price for quantities of 1K units. However, prices in today's market are fluid and may change without notice.
MSL = Moisture Sensitivity Level - per IPC/JEDEC J-STD-020
SMD = Standard Microcircuit Drawing
 
  Description

The ISL6326B controls microprocessor core voltage regulation by driving up to 4 synchronous-rectified buck channels in parallel. Multiphase buck converter architecture uses interleaved timing to multiply channel ripple frequency and reduce input and output ripple currents. Lower ripple results in fewer components, lower component cost, reduced power dissipation, and smaller implementation area.

Microprocessor loads can generate load transients with extremely fast edge rates. The ISL6326B utilizes Intersil’s proprietary Active Pulse Positioning (APP) and Adaptive Phase Alignment (APA) modulation scheme to achieve the extremely fast transient response with fewer output capacitors.

Today’s microprocessors require a tightly regulated output voltage position versus load current (droop). The ISL6326B senses the output current continuously by utilizing patented techniques to measure the voltage across the dedicated current sense resistor or the DCR of the output inductor. The sensed current flows out of FB pin to develop the precision voltage drop across the feedback resistor for droop control. Current sensing also provides the needed signals for channel-current balancing, and overcurrent protection. A programmable integrated temperature compensation function is implemented to effectively compensate for the temperature coefficient of the current sense element. The current limit function provides the overcurrent protection for the individual phase.

A unity gain, differential amplifier is provided for remote voltage sensing. Any potential difference between remote and local grounds can be completely eliminated using the remote-sense amplifier. Eliminating ground differences improves regulation and protection accuracy. The thresholdsensitive enable input is available to accurately coordinate the start up of the ISL6326B with any other voltage rail. Dynamic-VID™ technology allows seamless on-the-fly VID changes. The offset pin allows accurate voltage offset settings that are independent of VID setting.

 
  Key Features
 
  • Proprietary Active Pulse Positioning and Adaptive Phase Alignment Modulation Scheme
  • Precision Multiphase Core Voltage Regulation
    • Differential Remote Voltage Sensing
    • ±0.5% System Accuracy Over Life, Load, Line and Temperature
    • Adjustable Precision Reference-Voltage Offset
  • Precision resistor or DCR Current Sensing
    • Accurate Load-Line Programming
    • Accurate Channel-Current Balancing
    • Differential Current Sense
  • Microprocessor Voltage Identification Input
    • Dynamic VID™ Technology
    • 8-Bit VID Input with Selectable VR11 Code and Extended VR10 Code at 6.25mV Per Bit
  • Thermal Monitoring
  • Integrated Programmable Temperature Compensation
  • Overcurrent Protection and Channel Current Limit
  • Load Current Indicator and External Overcurrent Protection Threshold Setup
  • Overvoltage Protection
  • 2, 3 or 4 Phase Operation
  • Adjustable Switching Frequency up to 1MHz Per Phase
  • Package Option
    • QFN Compliant to JEDEC PUB95 MO-220 QFN - Quad Flat No Leads - Product Outline
    • QFN Near Chip Scale Package Footprint; Improves PCB Efficiency, Thinner in Profile
  • Pb-Free Plus Anneal Available (RoHS Compliant)
Related Documentation
 
Datasheet(s)   Datasheet(s):
 
  Parametric Data
VIN (min) (V)3
VIN (max) (V)12
VOUT (min) (V).5
VOUT (max) (V)1.6
IOUT (max) (A)>130
VBIAS (V)5
ApplicationsVR11 DT, Servers
 
  Application Block Diagrams
 
 
  Related DevicesParametric Table   Parametric Table
 
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 ISL6307A Ultra-high bandwidth 6-Phase PWM Controller with 8 Bit VID Code Capable of Precision RDS(ON) or DCR Differential Current Sensing 
 ISL6307B 6-Phase VR11 PWM Controller with 8-Bit VID Code Capable of Precision RDS(ON) or DCR Differential Current Sensing for Applications in Which Supply Voltage is Higher than 5V 
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 ISL6312A Four-Phase Buck PWM Controller with Integrated MOSFET Drivers for Intel VR10, VR11, and AMD Applications 
 ISL6313 Two-Phase Buck PWM Controller with Integrated MOSFET Drivers for Intel VR11 and AMD Applications 
 ISL6313B Two-Phase Buck PWM Controller with Integrated MOSFET Drivers for Intel VR11 and AMD Applications 
 ISL6314 Single-Phase Buck PWM Controller with Integrated MOSFET Drivers for Intel VR11 and AMD Applications 
 ISL6315 Two-Phase Multiphase Buck PWM Controller with MOSFET Drivers Integrated (No Droop) 
 ISL6322 Four-Phase Buck PWM Controller with Integrated MOSFET Drivers and I2C Interface for Intel VR10, VR11, and AMD Applications 
 ISL6322G Two-Phase Buck PWM Controller with Integrated MOSFET Drivers, I2C Interface, and Phase Dropping 
 ISL6326 4-Phase PWM Controller with 8-Bit DAC Code Capable of Precision DCR Differential Current Sensing 
 ISL6327 Enhanced 6-Phase PWM Controller with 8-Bit VID Code and Differential Inductor DCR or Resistor Current Sensing 
 ISL6563 Two-Phase Multiphase Buck PWM Controller with Integrated MOSFET Drivers 

 

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