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NCP6153MNTWG Datasheet, PDF (1/29 Pages) ON Semiconductor – Dual Output 3/4 Phase +1/0 Phase Controller with Single SVID Interface for Desktop and Notebook CPU Applications
NCP6153
Dual Output 3/4 Phase +1/0
Phase Controller with
Single SVID Interface for
Desktop and Notebook CPU
Applications
http://onsemi.com
The NCP6153 dual output four plus one phase buck solution is
optimized for Intel VR12 compatible CPUs. The controller combines
MARKING
DIAGRAM
true differential voltage sensing, differential inductor DCR current
sensing, input voltage feed−forward, and adaptive voltage positioning
to provide accurately regulated power for both Desktop and Notebook
applications. The control system is based on Dual−Edge pulse−width
1 52
NCP6153
AWLYYWWG
modulation (PWM) combined with DCR current sensing providing
the fastest initial response to dynamic load events and reduced system
QFN−52
CASE 485BE
cost. It also sheds to single phase during light load operation and can
auto frequency scale in light load while maintaining excellent
transient performance.
Dual high performance operational error amplifiers are provided to
simplify compensation of the system. Patented Dynamic Reference
A = Assembly Location
WL = Wafer Lot
YY = Year
WW = Work Week
G = Pb−Free Package
Injection further simplifies loop compensation by eliminating the need
to compromise between closed−loop transient response and Dynamic
VID performance. Patented Total Current Summing provides highly
accurate current monitoring for droop and digital current monitoring.
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 28 of this data sheet.
Features
• Meets Intel VR12/IMVP7 Specifications
• Current Mode Dual Edge Modulation for Fastest Initial
• Switching Frequency Range of 200 kHz – 1.0 MHz
Response to Transient Loading
• Dual High Performance Operational Error Amplifier
• One Digital Soft Start Ramp for Both Rails
• Startup into Pre−Charged Loads While Avoiding False
OVP
• Power Saving Phase Shedding
• Dynamic Reference Injection
• Vin Feed Forward Ramp Slope
• Accurate Total Summing Current Amplifier
• DAC with Droop Feed−forward Injection
• Dual High Impedance Differential Voltage and Total
Current Sense Amplifiers
• Phase−to−Phase Dynamic Current Balancing
• Pin Programming for Internal SVID Parameters
• Over Voltage Protection (OVP) and Under Voltage
Protection (UVP)
• Over Current Protection (OCP)
• Dual Power Good Output with Internal Delays
• “Lossless” DCR Current Sensing for Current Balancing
• These Devices are Pb−Free and are RoHS Compliant
• Summed Thermally Compensated Inductor Current
Sensing for Droop
• True Differential Current Balancing Sense Amplifiers
for Each Phase
• Adaptive Voltage Positioning (AVP)
Applications
• Desktop & Notebook Processors
• Server Processors and Memory Power
© Semiconductor Components Industries, LLC, 2012
1
October, 2012 − Rev. 1
Publication Order Number:
NCP6153/D