NCP1582DR2GEVB ON Semiconductor, NCP1582DR2GEVB Datasheet - Page 11

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NCP1582DR2GEVB

Manufacturer Part Number
NCP1582DR2GEVB
Description
EVAL BOARD FOR NCP1582DR2G
Manufacturer
ON Semiconductor
Datasheets

Specifications of NCP1582DR2GEVB

Design Resources
NCP1582 EVB BOM NCP1582 EVB Schematic NCP1582DR2GEVB Gerber Files
Main Purpose
DC/DC, Step Down
Outputs And Type
1, Non-Isolated
Voltage - Output
0.8V
Voltage - Input
4.5 ~ 12 V
Regulator Topology
Buck
Frequency - Switching
350kHz
Board Type
Fully Populated
Utilized Ic / Part
NCP1582
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-
Power - Output
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
NCP1582DR2G
Other names
NCP1582DR2GEVBOS
Design Example
Choose the loop gain crossover frequency;
The corner frequency of the output filter is calculated
below;
Check that the ESR zero frequency is not too high;
Zero of the compensation network is calculated as
follows;
capacitor. By adjusting the value of this compensation
capacitor, the soft start time can be adjusted.
F Z + F LC
C C +
+
Switching Frequency F
Output Capacitance C
Output Capacitance C
Output Inductance L
Input Voltage V
Output Voltage V
Let R
This condition is mandatory for loop stability.
The compensation capacitor also acts as the soft start
2 * p * 2.3 kHz * 1500
F LC +
C
2 * p * F Z * R C
= 1500
F ESR +
2 * p * 0.75 mH * 6630 mF
1
1
F CO + 1
in
out
= 12 V
2 * p @ CESR @ C O
= 3.3 V
out
10
ESR
out
SW
+ 46 nF
= 0.75 mH
1
* F SW + 35 kHz
= 6630 mF
= 45 mW/Each
1
= 350 KHZ
t
+ 2.3 kHz
F SW
5
http://onsemi.com
11
Pole of the compensation network is calculated as
follows;
R
analyzer is shown below.
C
The recommended compensation values are;
The NCP158x bode plot as measured from the network
= 1500, C
Figure 15. Typical Bode plot of the Open−loop
Top plot: Phase−Frequency (Phase Margin = 62.519°)
Bottom plot: Gain−Frequency (UGBW= 5 MHz)
Frequency Response of the NCP158x
+
C
2 * p * 175 kHz * 1500
= 46 nF, C
F P + 5 * F CO + 175 kHz
C P +
1
2 * p * F P * R C
P
= 700 pF
1
+ 700 pF

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