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SP7606 Datasheet(PDF) 8 Page - Exar Corporation

Part # SP7606
Description  Wide Input Voltage Boost Controller
PDF  17 Pages
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Manufacturer  EXAR [Exar Corporation]
Direct Link  http://www.exar.com
Logo EXAR - Exar Corporation

SP7606 Datasheet(HTML) 8 Page - Exar Corporation

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SP7606
12/17/07 rev: A
SP7600
©Copyright 2007 Exar Corporation
EXAR RESERVES THE RIGHT TO MAKE CHANGES TO THIS DATASHEET. CALL FOR UPDATES: 1-510-668-7000
page
8 of 17
The MOSFET needs to be chosen based on
three main criteria. The drain to source voltage
needs to be higher than the output voltage of
the converter. The MOSFET needs to be able
to conduct the peak current that is calculated
in the inductor selection section. The Rdson of
the MOSFET needs to satisfy current limit
criteria. Picking a MOSFET with the lowest Qg
and Crss that meets the above requirement is
crucial to good efficiency. At 1.2MHz the
switching losses become a significant power
loss in the system even compared to the
Rdson of the MOSFET. For continuous
conduction mode the power loss in the
MOSFET is:
Where In max is the maximum input current
D is the duty cycle
Vo is the output voltage
Crss reverse transfer capacitance of MOSFET
fsw is the switching frequency
kt is the temperature dependency of RDSon
kg is the constant inversely proportional to gate
drive current a value of 1.5 should be used.
For discontinuous mode of operation the
power loss in the FET will is similar.
Crss reverse transfer capacitance of MOSFET
Fsw is the switching frequency
Ρ is the temperature dependency of RDSon
Z is the constant inversely proportional to gate drive
current
Where In max is the maximum input current
K is the duty cycle
Vo is the output voltage
Where Iinrms
The gate drive loss is associated with the FET
but it actually is lost in the driver IC. Below is
the formula for the gate charge loss Qg.
5V is the gate drive voltage
Qg is the total gate charge
Fsw is the switching frequency
Input capacitor selection
For both continuous and discontinuous mode
of operation the input capacitor needs to be
chosen based on maximum input voltage
rating and the RMS ripple current and
minimum input capacitance. For DCM mode
the RMS current is given by:
Where K is the conduction time constant
Ip is the peak inductor current
The minimum input capacitance that is
required is:
Ton is the calculated on time
Vin is the minimum input voltage
For CCM of operation the input capacitor ripple
current is:
Fsw is the switching frequency
Vo is the output voltage
Vinmin is the minimum input voltage
L inductor inductance



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