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MIC2133 数据表(PDF) 21 Page - Microchip Technology

部件名 MIC2133
功能描述  75V Dual Phase, Advanced COT Buck Controller with Selectable Droop Feature and Phase Shedding
PDF  50 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MIC2133 数据表(HTML) 21 Page - Microchip Technology

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 2022 Microchip Technology Inc. and its subsidiaries
DS20006653B-page 21
MIC2133
4.4
Ripple Injection Circuit
Components Selection
Follow the steps below for selecting the ripple injection
circuit components if low-ESR output capacitors are
used. The below procedures provide a good starting
point for selecting the ripple injection components. It is
recommended that the final values be confirmed by
laboratory measurements.
1.
Calculate the product of RINJ and CFF for a given
injected Feedback Ripple Voltage, ΔVFB, using
the equation below. Choose ΔVFB in the range
from 40 mV to 500 mV. A good starting point for
ΔVFB is 50 mV.
EQUATION 4-4:
2.
Choose CFF in the range from 0.47 nF to 10 nF.
3.
Calculate RINJ using the equation above.
4.
Calculate the Top Feedback Resistor, RFB(TOP),
value using the equation below:
EQUATION 4-5:
5.
Calculate the Bottom Feedback Resistor,
RFB(BOT), value using the equation below:
EQUATION 4-6:
6.
Estimate the crossover frequency using the fol-
lowing equation. If fCO(EST) is above fSW/5,
lower the CFF value and repeat procedure 6.
EQUATION 4-7:
7a) Select CINJ using the below equation if fCO(EST)
calculated above meets Equation 5-11.
EQUATION 4-8:
Add a resistor in parallel with the soft start
capacitor, connected to the SS pin, if
CINJ > CFF × (RFB(TOP)/RFB(BOT)).
This ensures that there is no overshoot at the
end of the soft start. Use the equation below to
select the parallel resistor value.
EQUATION 4-9:
7b) Select CINJ using the below guidelines if
fCO(EST) is low (typically below fSW/15) when fCO
is limited by the minimum ΔVFB required in lower
VOUT applications. Assume fCO = fSW/10.
Calculate the maximum Equivalent Series
Resistance (ESR) of the output capacitor using
the following equation.
EQUATION 4-10:
Calculate the output capacitance using the fol-
lowing equation.
EQUATION 4-11:
RINJ CFF
5V 100ns
V
FB
----------------------------
=
Where:
ΔVFB = Injected Feedback Ripple Voltage
RFB TOP

1
2
CFF 0.8
fLC
---------------------------------------------------------
Where:
fLC = LC Resonant Frequency = 1/(2 xx sqrt (L x COUT))
RFB BOT

RFB TOP

VOUT
VREF
------------- 1
----------------------------
=
Where:
VOUT = Target Output Voltage
VREF = Reference Voltage = 0.6V for MIC2133
fCO EST

RINJ CFF
 L
COUT
---------------------------------
VOUT 10
6
fSW
----------------------------
=
Where:
L = Inductance
COUT = Output Capacitance
VOUT = Output Voltage
fSW = Switching Frequency
CINJ
1
0.8 RINJ fCO EST

----------------------------------------------------
RSS
0.8V
ISS
-----------
Where:
ISS = Soft Start Current Source = 1.2 µA
ESRCOUT
V
OUT_TRANS
I
LOAD_STEP
----------------------------------
Where:
∆ILOAD_STEP = Magnitude of the Load Transient
∆VOUT_TRANS = Acceptable Output Voltage Deviation
during Load Transient
COUT
1
 f
CO
ESRCOUT
-------------------------------------------------



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