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MIC2133 Datenblatt(PDF) 36 Page - Microchip Technology

Teilenummer MIC2133
Bauteilbeschribung  75V Dual Phase, Advanced COT Buck Controller with Selectable Droop Feature and Phase Shedding
PDF  50 Pages
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Hersteller  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MIC2133 Datenblatt(HTML) 36 Page - Microchip Technology

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DS20006653B-page 36
MIC2133
The maximum duty cycle of each phase channel is
calculated in the equation below:
EQUATION 5-25:
The RMS current rating of the low-side power MOSFET
in each phase channel is calculated in the equation
below.
EQUATION 5-26:
The conduction loss of the high-side power MOSFET in
each phase channel is calculated in the equation below.
EQUATION 5-27:
The conduction loss of the low-side power MOSFET in
each phase channel is calculated in the equation below.
EQUATION 5-28:
The switching loss of the high-side power MOSFET in
each phase channel is estimated in the equation below.
EQUATION 5-29:
The high-side MOSFET output capacitance discharge
loss can be calculated in the equation below.
EQUATION 5-30:
The total power dissipation of the high-side power
MOSFET in each phase channel is the sum of the
conduction loss, the switching loss and the MOSFET
output capacitance discharge loss, as shown in the
equation below.
EQUATION 5-31:
The high-side power MOSFET in each phase channel
selected must be capable of handling the total power
dissipation. To improve efficiency and minimize the
power loss, it is recommended that the power MOSFET
be selected with low on-resistance and optimum gate
charge. On the other hand, the power dissipation in the
DMAX
VOUT MAX

Eff VIN MIN

------------------------------------
=
Where:
VOUT(MAX) = Maximum Output Voltage
VIN(MIN) = Minimum Input Voltage
Eff = Efficiency of Buck Converter
ISWLS RMS

IOUT MAX

n
--------------------------
1 D
– MAX
=
Where:
DMAX = Maximum Duty Cycle
Where:
RDSON(HS) = High-Side MOSFET On-Resistance
PCOND HS

ISWHS RMS

2
RDSON HS

=
PCOND LS

ISWLS RMS

2
RDSON LS

=
Where:
RDSON(LS) = Low-Side MOSFET On-Resistance
PSWL HS

VIN MAX

IOUT MAX

2n
--------------------------
tR tF
+

fSW
=
Where:
tR = High-Side MOSFET Turn-On Transition
Time
tF = High-Side MOSFET Turn-Off Transition
Time
QG(HS) = Switching Gate Charge of High-Side
MOSFET
QGSHS = Gate-to-Source Charge of High-Side
MOSFET
QGDHS = Gate-to-Drain Charge of High-Side
MOSFET
RONDHH = High-Side Gate Driver Pull-up Resistance
RONDHL = High-Side Gate Driver Pull-Down
Resistance
RG(HS) = Gate Resistance of High-Side MOSFET
VTH(HS) = High-Side MOSFET Gate-to-Source
Threshold Voltage
tR
QGHS

RONDHH RGHS

+

VDD VTH HS

---------------------------------------------------
=
tF
QGHS

RONDHL RGHS

+

VTH HS

-------------------------------------------------
=
QGHS

0.5 QGSHS QGDHS
+
=
PCOSS HS

0.5 COSS HS
 VIN MAX


2
fSW
=
Where:
COSS(HS) = High-Side MOSFET Output Capacitance
PDHS

PCOND HS

PSWL HS

PCOSS HS

++
=



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