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SC412AEVB датащи(PDF) 15 Page - Semtech Corporation

номер детали SC412AEVB
подробное описание детали  Synchronous Buck Controller
PDF  22 Pages
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производитель  SEMTECH [Semtech Corporation]
домашняя страница  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC412AEVB датащи(HTML) 15 Page - Semtech Corporation

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© 2006 Semtech Corp.
www.semtech.com
SC412A
POWER MANAGEMENT
Applications Information (continued)
by increasing the duty cycle (more time is spent drawing
energy from VBAT as losses increase). Since the on-time
is constant for a given VOUT/VBAT combination, the way
to increase duty cycle is to gradually shorten the off-time.
The net effect is that switching frequency increases slightly
with increasing load.
The typical operating frequency is 325kHz. It is possible to
raise the frequency by placing a resistor divider between
the output and the VOUT pin, see Figure 7. This reduces
the voltage at the VOUT pin which is used to generate the
on-time according to the previous equation. Note that
this places a small minimum load on the output. The new
frequency is approximated by the following equation:
FREQ (kHz) = 325 ∙ (1 + R1/R2)
L
COUT
ESR
+
VOUT
VLX
pin 10
(VOUT)
R2
R1
1nF
Power Output
Figure 7.
It is also possible to lower the frequency using a resistive
divider to the 5V bias supply, see Figure 3. This raises the
voltage at the VOUT pin which will increase the on-time.
Note that this results in a small leakage path from the 5V
supply to the output voltage. The resistor values should be
fairly large (>50kOhm) large to prevent the output voltage
from drifting up during shutdown conditions. Note that
the feedback resistors act as a dummy load to limit how
far the output can rise.
The new operating frequency is approximated by the
equation:
FREQ (kHz) = 325 ∙ ((R1 + R2) / (R1 + R2 ∙ VCC/VOUT))
L
COUT
ESR
+
VOUT
VLX
pin 10
(VOUT)
R1
R2
1nF
Power Output
VCC
Figure 8.



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