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MOS6020 数据表(PDF) 21 Page - Microchip Technology

部件名 MOS6020
功能描述  24V Input, 1A/2A Output, High Efficiency Synchronous Buck Regulator with Power Good Indication
PDF  34 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MOS6020 数据表(HTML) 21 Page - Microchip Technology

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© 2011 Microchip Technology Inc.
DS22285A-page 21
MCP16321/2
5.0.7
BOOST CAPACITOR
The boost capacitor is used to supply current for the
internal high-side drive circuitry that is above the input
voltage. The boost capacitor must store enough energy
to completely drive the high-side switch on and off. A
22 nF X5R or X7R capacitor is recommended for all
applications. The boost capacitor maximum voltage is
5.5V, so a 6.3V or 10V rated capacitor is
recommended.
5.0.8
THERMAL CALCULATIONS
The MCP16321/2 is available in a 3x3 QFN-16
package. By calculating the power dissipation and
applying the package thermal resistance (θJA), the
junction temperature is estimated. The maximum
continuous junction temperature rating for the
MCP16321/2 is +125°C.
To quickly estimate the internal power dissipation for
the switching step-down regulator, an empirical
calculation using measured efficiency can be used.
Given the measured efficiency, the internal power
dissipation is estimated in Equation 5-4. This power
dissipation
includes
all
internal
and
external
component losses. For a quick internal estimate,
subtract the estimated inductor ESR loss from the PDIS
calculation in Equation 5-4.
EQUATION 5-4:
TOTAL POWER
DISSIPATION ESTIMATE
The difference between the first term, input power, and
the second term, power delivered, is the total system
power dissipation. The inductor losses are estimated
by PL =IOUT2 xLESR.
EXAMPLE 5-5:
POWER DISSIPATION –
MCP16321
EXAMPLE 5-6:
POWER DISSIPATION –
MCP16322
P
DIS
V
OUT
I
OUT
×
Efficency
-------------------------------V
OUT
I
OUT
×
()
=
VIN =12V
VOUT =5.0V
IOUT =1A
Efficiency = 92.5%
Total System Dissipation = 405 mW
LESR =0.04 Ω
PL =40 mW
MCP16321
internal power dissipation estimate:
PDIS –PL =365 mW
θJA =38.5°C/W
Estimated Junction = +14.052°C
Note 1:
θJA = 38.5°C/W for a 4-layer FR4 Printed
Circuit Board with a 13.5 in2, 1 oz internal
copper ground plane.
2:
A smaller ground plane will result in a
larger
θJA temperature rise.
VIN =12V
VOUT =3.3V
IOUT =2A
Efficiency = 87.5%
Total System Dissipation = 943 mW
LESR =0.04 Ω
PL = 160 mW
MCP16322
internal power dissipation estimate:
PDIS –PL =783 mW
θJA =38.5°C/W
Estimated Junction = +30.14°C



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