LM3424BSTEVAL/NOPB National Semiconductor, LM3424BSTEVAL/NOPB Datasheet - Page 28

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LM3424BSTEVAL/NOPB

Manufacturer Part Number
LM3424BSTEVAL/NOPB
Description
BOARD EVAL BOOST LM3424
Manufacturer
National Semiconductor
Series
PowerWise®r
Datasheets

Specifications of LM3424BSTEVAL/NOPB

Current - Output / Channel
1A
Outputs And Type
1, Non-Isolated
Features
Dimmable
Voltage - Input
10 ~ 26 V
Utilized Ic / Part
LM3424
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Output
-
Other names
LM3424BSTEVAL
www.national.com
The current rating should be at least 10% higher than the
maximum average NFET current (I
Buck
Boost and Buck-boost
Approximate the nominal RMS transistor current (I
Buck
Boost and Buck-boost
Given an NFET with on-resistance (R
nominal power dissipation (P
12. DIODE
The Schottky diode voltage rating should be at least 15%
higher than the maximum blocking voltage (V
Buck
Boost
Buck-boost
The current rating should be at least 10% higher than the
maximum average diode current (I
Buck
Boost and Buck-boost
Replace D
average diode current (I
(V
FD
), solve for the nominal power dissipation (P
MAX
with D in the I
D
). Given a diode with forward voltage
T
D-MAX
):
D-MAX
T-MAX
equation to solve for the
DS-ON
):
):
), solve for the
RD-MAX
D
):
T-RMS
):
) :
28
13. OUTPUT OVLO
For boost and buck-boost regulators, output OVLO is pro-
grammed with the turn-off threshold voltage (V
the desired hysteresis (V
To set V
Boost
Buck-boost
A small filter capacitor (C
the OVP pin to ground to reduce coupled switching noise.
14. INPUT UVLO
For all topologies, input UVLO is programmed with the turn-
on threshold voltage (V
(V
Method #1: If no PWM dimming is required, a two resistor
network can be used. To set V
To set V
Method #2: If PWM dimming is required, a three resistor net-
work is suggested. To set V
and solve for R
R
UVH
HYS
:
).
TURN-OFF
TURN-ON
UV1
, solve for R
, solve for R
as in Method #1. To set V
TURN-ON
HYSO
OVP
UV1
OV1
TURN-ON
= 47 pF) should be added from
). To set V
HYS
:
) and the desired hysteresis
:
, solve for R
, assume R
HYSO
, solve for R
UV2
TURN-OFF
HYS
UV2
:
, solve for
= 10 kΩ
) and
OV2
:

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