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PDF NCP6151 Data sheet ( Hoja de datos )

Número de pieza NCP6151
Descripción Dual Output 4 Phase +1/0 Phase Controller
Fabricantes ON Semiconductor 
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No Preview Available ! NCP6151 Hoja de datos, Descripción, Manual

NCP6151/NCP6151A
Dual Output 4 Phase +1/0 Phase
Controller with single SVID Interface
for Desktop and Notebook CPU
Applications
http://onsemi.com
The NCP6151/NCP6151A dual output four plus one
phase buck solution is optimized for Intel VR12
compatible CPUs. The controller combines 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 modulation (PWM) combined with DCR
current sensing providing the fastest initial response to
dynamic load events and reduced system 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 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.
NCP6151A support coupled inductor operation. It
operates with 2 phases versus NCP6151 operating with
single phase during PS1 mode.
Features
Meets Intel VR12/IMVP7 Specifications
Current Mode Dual Edge Modulation for Fastest
Initial Response to Transient Loading
Dual High Performance Operational Error Amplifier
One Digital Soft Start Ramp for Both Rails
Dynamic Reference Injection® (Patent
#US07057381)
Accurate Total Summing Current Amplifier(Patent
#US006683441)
DAC with Droop Feed-forward Injection(Patent
Pending)
Dual High Impedance Differential Voltage and Total
Current Sense Amplifiers
Phase-to-Phase Dynamic Current Balancing
“Lossless” DCR Current Sensing for Current
Balancing
Summed Thermally Compensated Inductor Current
Sensing for Droop
True Differential Current Balancing Sense Amplifiers
for Each Phase
Adaptive Voltage Positioning (AVP)
52 50 48 46 44 42 40
51 49 47 45 43 41
VSP 1
39 CSN2
TSENSE
VR_HOT#
SD IO
SC LK
3
5
2
4
PIN 1
INDIC ATOR
38 CSP2
37 CSN3
36 CSP3
35 CSN1
ALERT#
VR_RDY
VR_RDYA
ENABLE
ROSC
VCC
7
9
11
6
8
10
NCP6 1 51
Top View
(not to scale)
34 CSP1
33 DRVON
32 PWM1/ADDR
31 PWM3 /IMAX
30 PWM2/VBOOT
29 PWM4
VR MP
12
28 PWMA/IMAXA
TSEN SEA 13
15 17 19 21 23 25
27 VBOOTA
14 16 18 20 22 24 26
QFN52 Dual Row Pin Package
Device
Package
Shipping
NCP6151D52MNR2G
QFN52
Dual Row
2500/Tape &
Reel
NCP6151AD52MNR2G
QFN52
Dual Row
2500/Tape &
Reel
NCP61510091MNR2G
QFN52
Dual Row
2500/Tape &
Reel
* Pb-free and Halide-free packages are available
Switching Frequency Range of 200KHz –
1.0MHz
Startup into Pre-Charged Loads While
Avoiding False OVP
Power Saving Phase Shedding
Vin Feed Forward Ramp Slope
Pin Programming for Internal SVID
parameters
Over Voltage Protection (OVP) & Under
Voltage Protection (UVP)
Over Current Protection (OCP)
Dual Power Good Output with Internal Delays
NCP6151A support coupled inductor operation
Applications
Desktop & Notebook Processors
Rev1, 032012 
Page 1 

1 page




NCP6151 pdf
Four Phase Plus One Phase Application Control Circuit
Rev1, 032012 
Page 5 

5 Page





NCP6151 arduino
ELECTRICAL CHARACTERISTICS:
Unless otherwise stated: -10oC<TA<100oC; Vcc=5V; CVCC=0.1μF
Parameter
RON
Test Condition
Buffer On Resistance (data line,
ALERT#, and VRHOT)
Leakage Current
Pad Capacitance, note 3
VR clock to data delay (Tco), note 3
Setup time (Tsu), note 3
Hold time (Thld), note 3
MIN
4
-100
4
7
14
TYP
MAX
13
100
4.0
8.3
Notes:
3) Guaranteed by design or characterization data, not in production test;
Units
μA
pF
ns
ns
ns
Rev1, 032012 
Page 11 

11 Page







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