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CS51033 Datasheet(PDF) 6 Page - ON Semiconductor

Part # CS51033
Description  Fast P?묬h FET Buck Controller
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

CS51033 Datasheet(HTML) 6 Page - ON Semiconductor

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CS51033
http://onsemi.com
6
Buck Regulator Operation
A block diagram of a typical buck regulator is shown in
Figure 4. If we assume that the output transistor is initially
off, and the system is in discontinuous operation, the
inductor current IL is zero and the output voltage is at its
nominal value. The current drawn by the load is supplied by
the output capacitor CO. When the voltage across CO drops
below the threshold established by the feedback resistors R1
and R2 and the reference voltage VREF, the power transistor
Q1 switches on and current flows through the inductor to the
output. The inductor current rises at a rate determined by
(VIN − VOUT)/Load. The duty cycle (or “on” time) for the
CS51033 is limited to 80%. If output voltage remains higher
than nominal during the entire COSC change time, the Q1
does not turn on, skipping the pulse.
Figure 4. Buck Regulator Block Diagram
R1
R2
CO
RLOAD
L
D1
Feedback
Control
Q1
CIN
VIN
Charge Pump Circuit
(Refer to the CS51033 Application Diagram on page 2).
An external charge pump circuit is necessary when the VC
input voltage is below 5.0 V to ensure that there is suffifient
gate drive voltage for the external FET. When VIN is applied,
capacitors C1 and C2 will be charged to a diodes drop below
VIN via diodes D2 and D4, respectively. When the P−Ch
FET turns on, it’s drain voltage will be approximately equal
to VIN. Since the voltage across C1 can not change
instantaneously, D2 is reverse biased and the anode voltage
rises to approximately 2.0
× 3.3 V − VD2. C1 transfers some
of its stored charge C2 via D3. After several cycles there is
sufficient gate drive voltage.


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