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PDF NB6381 Data sheet ( Hoja de datos )

Número de pieza NB6381
Descripción High Efficiency Fast Transient 7A 28V Synchronous Step-down Converter
Fabricantes MPS 
Logotipo MPS Logotipo



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No Preview Available ! NB6381 Hoja de datos, Descripción, Manual

Sy
The Future of Analog IC Technology
NB6381
High Efficiency, Fast Transient, 8A, 28V
nchronous Step-down Converter
in a Tiny QFN20 (3x4mm) Package
DESCRIPTION
The NB63 81 is a fully integrated, high
frequency synchronous rectified step-down
switch mode converter. It offers a very compact
solution to achieve 8A continu ous output
current over a wide input supply range with
excellent load and line regulation. The NB6381
operates at high e fficiency over a wide output
current load range.
Constant-On-Time (COT) co
ntrol mod e
provides fast transient response and eases loop
stabilization.
Full protection features include SCP, OCP, OVP,
UVP and thermal shutdown.
The NB 6381 re quires a min imum numbe r of
readily available sta ndard ext ernal components
and is ava ilable in a spa ce-saving QFN2 0
(3x4mm) package.
FEATURES
Wide 4.5V to 28V Operating Input Range
8A Output Current
Internal 30m High-Si de, 12m L ow-Side
Power MOSFETs
Proprietary Switching Loss Reduction
Technique
1% Reference Voltage
Programmable Soft Start Time
Soft Shutdown
200kHz to 1MHz Switching Frequency
SCP, OCP , OVP, UVP Protection and
Thermal Shutdown
Output Adjustable from 0.8V to 13V
Available in a QFN20 (3x4mm) Package
APPLICATIONS
Notebook Systems and I/O Power
Networking Systems
Optical Communication Systems
Distributed Power and POL Systems
All MPS parts are lead-free and adhere to the RoHS directive. For MPS green
status, please visit MPS website under Products, Quality Assurance page.
. “MPS” and “The Future of Analog IC Technology” are Registered Trademarks
of Monolithic Power Systems, Inc.
TYPICAL APPLICATION
VIN
R7
8,19 IN
BST 7
NB6381 SW
2 FREQ
9,10,17,18
20 VCC
PGOOD
EN
5 EN
FB 3
C4
220pF
VOUT 1.05V
SS AGND PGND
41
CSS
33nF
11-16
NB6381 Rev. 1.15
www.MonolithicPower.com
4/18/2012
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
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NB6381 pdf
NB6381–HIGH EFFICIENCY, FAST TRANSIENT SYNCHRONOUS STEP-DOWN CONVERTER
TYPICAL PERFORMANCE CHARACTERISTICS
VIN=12V, VOUT =1.05V, L=1µH, TA=+25°C, unless otherwise noted.
NB6381 Rev. 1.15
www.MonolithicPower.com
4/18/2012
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
5

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NB6381 arduino
NB6381–HIGH EFFICIENCY, FAST TRANSIENT SYNCHRONOUS STEP-DOWN CONVERTER
RESR
TSTW
0.7 ×π
+
COUT
ON
2
(4)
Tsw is the switching period.
Ramp with small ESR Cap
When the output capa citors are ceramic ones,
the ESR ripple is not high enough t o stabilize the
system, an d external ramp co mpensation is
needed. Skip to application information sectio n
for design steps with small ESR caps.
SW L
Vo
R4 C4
IR4
R9
IC4
IFB
FB
R1
R2
Ceramic
limitation fr om equation 5, then we can only
reduce R4. For a stable PWM o peration, th e
Vslope1 should be design follow equation 9.
-Vslope1
TSTW
0.7 ×
π
+
ON
2
-RESRCOUT
2L×× COUT
VO
+
Io ×10-3
TSW -Ton
(9)
Io is the load current.
In skip mode, the downward slope of the V FB
ripple is almost the same wheth er the external
ramp is use d or not. Fig.8 shows t he simplifie d
circuit of th e skip mod e when both the HS-FET
and LS-FET are off.
Vo
FB R1
Cout Ro
R2
Figure 7—Simplified Circuit in PWM Mode
with External Ramp Compensation
In PWM mode, an equivalent circu it with HS-FET
off and the use of an external ramp
compensation circuit ( R4, C4) is simplified in
Figure 7. The external ramp is derived from th e
inductor rip ple current. If one chooses C4, R9,
R1 and R2 to meet the following condition:
2Fπ×
11
SW × C4 5
⎛⎜⎝⎞⎟⎠RR11
×
+
R2
R2
+ R9
Where:
(5)
IRI 4 =+C4 IFIB C4
(6)
And the ra mp on the VFB can the n be est imated
as:
VRTAMP
VRIN4
VO
×+C4
ON
×
R1/ / R2
R1 // R2 R9
(7)
The downward slope of the V FB ri pple t hen
follows
VSLOPE1
=
VRAMP
ToRff
=
VOUT
4 × C4
(8)
As can be seen from equation 8, if there is
instability in PWM mod e, we can r educe eith er
R4 or C4. If C4 can not be reduced further due to
Figure 8—Simplified Circuit in skip Mode
The downward slope o f the V FB ripple in skip
mode can be determined as follow:
( )VSLOPE2
=
(
R1
VREF
R2 // Ro)
COUT
Where Ro is the equivalent load resistor.
(10)
As described in Fig.6, V SLOPE2 in the skip mode is
lower than that is in t he PWM mode, so it is
reasonable that the jitt er in the skip mode is
larger. If o ne wants a system wi th less jitter
during ultra light load co ndition, the values of the
VFB resistors should not be too big, however, that
will decrease the light load efficiency.
Soft Start/Stop
The NB63 81 employs soft sta rt/stop (SS)
mechanism to ensure smooth o utput during
power-up and power shutdown. When the EN pin
becomes high, an inter nal current source (8.5μA)
charges up the SS CAP. The SS CAP voltag e
takes over the REF voltage t
o the PWM
comparator. The output voltage smoothly ramp s
up with the SS voltage. Once the SS voltage
NB6381 Rev. 1.15
www.MonolithicPower.com
4/18/2012
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2012 MPS. All Rights Reserved.
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