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MIC2104 数据表(PDF) 30 Page - Microchip Technology

部件名 MIC2104
功能描述  75V Synchronous Buck Controllers Featuring Adaptive ON-Time Control
PDF  42 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MIC2104 数据表(HTML) 30 Page - Microchip Technology

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MIC2103/4
DS20005899A-page 30
 2017 Microchip Technology Inc.
subjected to high inrush currents, caused by turning the
input supply on. A tantalum input capacitor’s voltage
rating should be at least two times the maximum input
voltage to maximize reliability. Aluminum electrolytic,
OS-CON, and multilayer polymer film capacitors can
handle the higher inrush currents without voltage
de-rating.
The input voltage ripple will primarily depend on the
input capacitor’s ESR. The peak input current is equal
to the peak inductor current, so:
EQUATION 5-19:
The input capacitor must be rated for the input current
ripple. The RMS value of input capacitor current is
determined at the maximum output current. Assuming
the peak-to-peak inductor current ripple is low:
EQUATION 5-20:
The power dissipated in the input capacitor is:
EQUATION 5-21:
5.6
Voltage Setting Components
The MIC2103/4 requires two resistors to set the output
voltage as shown in Figure 5-3:
FIGURE 5-3:
Voltage-Divider
Configuration.
The output voltage is determined by the following
equation:
EQUATION 5-22:
A typical value of R1 can be between 3 kΩ and 10 kΩ.
If R1 is too large, it may allow noise to be introduced
into the voltage feedback loop. If R1 is too small in
value, it will decrease the efficiency of the buck
converter, especially at light loads. Once R1 is
selected, R2 can be calculated using Equation 5-23:
EQUATION 5-23:
V
IN
I
LPK

ESR
CIN
=
I
CIN RMS

I
OUT MAX

D
1 D

P
DISS CIN

I
CIN RMS

2
ESR
CIN
=
V
OUT
V
FB
1
R1
R2
-------
+


=
Where:
VFB = 0.8V.
R2
V
FB
R1
V
OUT
V
FB
-----------------------------
=



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