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SP7652 Datasheet(PDF) 9 Page - Sipex Corporation

Part # SP7652
Description  Wide Input Voltage Range 6A, 600kHz, Buck Regulator
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Manufacturer  SIPEX [Sipex Corporation]
Direct Link  http://www.sipex.com
Logo SIPEX - Sipex Corporation

SP7652 Datasheet(HTML) 9 Page - Sipex Corporation

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9
Rev F: /0/06
SP7652 Wide Input Voltage Range 6A, 600kHz, Buck Regulator
© Copyright 2006 Sipex Corporation
APPLICATIONS INFORMATION
tors. However, exercise additional caution
whentantalumcapacitorsareused.Tantalum
capacitors are known for catastrophic failure
when exposed to surge current, and input
capacitors are prone to such surge current
when power supplies are connected “live”
to low impedance power sources.
Loop Compensation Design
The open loop gain of the whole system can
be divided into the gain of the error ampli-
fier, PWM modulator, buck converter output
stage,andfeedbackresistordivider.Inorder
tocrossoverattheselectedfrequencyFCO,
the gain of the error amplifier compensates
for the attenuation caused by the rest of the
loop at this frequency.
Thegoalofloopcompensationistomanipu-
late loop frequency response such that its
gain crosses over 0db at a slope of -20db/
dec. The first step of compensation design
is to pick the loop crossover frequency.
High crossover frequency is desirable for
fasttransientresponse,butoftenjeopardizes
the system stability. Crossover frequency
should be higher than the ESR zero but
less than /5 of the switching frequency.
The ESR zero is contributed by the ESR
associated with the output capacitors and
can be determined by:
ƒz(ESR) =

.
2π COUT RESR
The next step is to calculate the complex
conjugate poles contributed by the LC
output filter,
ƒP(LC) =

2π L COUT
When the output capacitors are of a Ceramic
Type,theSP7652EvaluationBoardrequires
aTypeIIIcompensationcircuittogiveaphase
boostof180°inordertocounteracttheeffects
of an underdamped resonance of the output
filter at the double pole frequency.
SP7652 Voltage Mode Control Loop with Loop
(sRz2Cz2+1)(sR1Cz3+1)
(sR esR CoUT + 1)
[s^2LC
oUT +s(R esR +R DC) C oUT +1]
vin
sR1Cz2(sRz3Cz3+1)(sRz2Cp1+1)
vRAMP_PP
voUT
(volts)
+
_
vReF
(volts)
notes: R
esR = output Capacitor equivalent series Resistance.
R
DC = output inductor DC Resistance.
v
RAMP_PP = sP6132 internal RA
MP Amplitude Peak to Peak v oltage.
Condition: Cz2 >> Cp1 & R1 >> Rz3
output Load Resistance >> R
esR & R DC
R 2
vReF
(R 1 + R2)
or
voUT
vFBK
(volts)
Type iii v oltage Loop
Compensation
G
AMP (s) Gain Block
PWM stage
G
PWM Gain
Block
output stage
G
oUT (s) Gain
Block
voltage Feedback
G
FBK Gain Block
Definitions:
RESR = Output Capacitor Equivalent Series Resistance
RDC = Output Inductor DC Resistance
RRAMP_PP = SP7652 internal RAMP Amplitude Peak to Peak Voltage
Conditions:
CZ2 >> Cp and R >> RZ3
Output Load Resistance >>
RESR and RDC
∆Vin=iOut(max) RESR(cin)+
IOut(max) VOut (Vin-VOut)
FScinVin2
The capacitor type suitable for the output ca-
pacitorscanalsobeusedfortheinputcapaci-


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