LM5008AEVAL/NOPB National Semiconductor, LM5008AEVAL/NOPB Datasheet - Page 13

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LM5008AEVAL/NOPB

Manufacturer Part Number
LM5008AEVAL/NOPB
Description
BOARD EVAL LM5008
Manufacturer
National Semiconductor
Datasheets

Specifications of LM5008AEVAL/NOPB

Main Purpose
DC/DC, Step Down
Outputs And Type
1, Non-Isolated
Voltage - Output
5V
Current - Output
300mA
Voltage - Input
8 ~ 75 V
Regulator Topology
Buck
Frequency - Switching
130kHz
Board Type
Fully Populated
Utilized Ic / Part
LM5008A
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Power - Output
-
b) Minimum ripple configuration: If the application requires
a lower value of ripple (<10 mVp-p), the circuit of Figure 8 can
be used. R3 is removed, and the resulting output ripple volt-
age is determined by the inductor’s ripple current and C2’s
characteristics. RA and CA are chosen to generate a saw-
tooth waveform at their junction, and that voltage is AC-
coupled to the FB pin via CB. To determine the values for RA,
CA and CB, use the following procedure:
where V
during the off-time (typically 1V). VA is the DC voltage at the
RA/CA junction, and is used in the next equation.
where t
age), and ΔV is the desired ripple amplitude at the RA/CA
junction (typically 40-50 mV). RA and CA are then chosen
from standard value components to satisfy the above product.
Typically CA is 1000 pF to 5000 pF, and RA is 10 kΩ to 300
kΩ. CB is then chosen large compared to CA, typically 0.1 µF.
FIGURE 8. Minimum Output Ripple Using Ripple Injection
Calculate V
- Calculate RA x CA = (V
ON
FIGURE 7. Reduced Ripple Configuration
SW
is the maximum on-time (at minimum input volt-
is the absolute value of the voltage at the SW pin
A
= V
OUT
- (V
SW
IN(min)
x (1 - (V
- V
OUT
A
) x t
/V
ON
IN(min)
/ΔV
)))
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c) Alternate minimum ripple configuration: The circuit in
Figure 9 is the same as that in the Block Diagram, except the
output voltage is taken from the junction of R3 and C2. The
ripple at V
and C2’s characteristics. However, R3 slightly degrades the
load regulation. This circuit may be suitable if the load current
is fairly constant.
FIGURE 9. Alternate Minimum Output Ripple
OUT
is determined by the inductor’s ripple current
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