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LM3464 датащи(PDF) 5 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor. Click here to check the latest version.
номер детали LM3464
подробное описание детали  4 Channel LED Driver Evaluation Board
PDF  14 Pages
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производитель  NSC [National Semiconductor (TI)]
домашняя страница  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM3464 датащи(HTML) 5 Page - National Semiconductor (TI)

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Selection of AC/DC Power Supply
The LM3464 evaluation can be powered by an AC/DC power
supply through the banana-plug type connectors on the board
as shown in figure 2. The component values of this evaluation
board is designed to drive 4 LED strings of 12 High Brightness
LEDs (HBLEDs) (V
f = 3.5V(typ)) per strings.
As this evaluation board is set to drive 48 pieces of HBLEDs
at 350mA, which is around 50W power consumption, the pri-
mary AC/DC power supply must be able to deliver no less
than 50W continuous output power. On the other hand, as
every LED strings includes 12 serial LEDs with total forward
voltage around 40V, the AC/DC power supply should be able
to supply no less than 41V (with around 1V current regulator
dropout) to power up the LEDs. In order to cover variations of
LED forward voltage under different ambient temperatures, a
50W AC/DC power supply with 48V nominal output voltage is
recommended.
In order to facilitate Dynamic Headroom Control (DHC), the
output voltage of the AC/DC power supply is pushed up to
48V under control of the LM3464 without violating the rated
output voltage of the AC/DC converter. The required voltage
headroom is obtained by reducing the nominal 48V output
voltage of a AC/DC converter. For example: adjusting the
nominal output voltage of a AC/DC converter from 48V
(nom.)
to 36V
(nom.).
Prior to connect the AC/DC power supply to the LM3464 eval-
uation board, the nominal output voltage of the AC/DC power
supply has to be adjusted down to allow DHC to take place.
To reduce the nominal output voltage of the AC/DC converter,
the output voltage feedback circuit of the selected AC/DC
converter has to be located and the reference voltage for out-
put voltage sensing should be identified. Figure 2 shows the
voltage feedback circuit with LM431 that has been widely
used in typical AC/DC power supplies as an example.
Assume the output voltage of the AC/DC power supply is 48V
and is going to be adjusted down to 36V, the resistance of
R
2 has to be increased without changing the value of R1. The
output voltage and value of R
2 are related by the following
equation:
(1)
For V
REF(AC/DC) = 2.5V
And V
RAIL(nom) = 36V:
(2)
After the modification, the AC/DC power supply will have a
36V nominal output voltage (V
RAIL(nom)). As the output of the
AC/DC converter is connected to the power rail to supply
power to the LEDs, the rail voltage (V
RAIL) is pushed up by the
LM3464 up to certain level (V
DHC_READY) that is adequate to
drive 12 serial LEDs with current regulation before turning on
the LEDs. In this evaluation board, V
DHC_READY is set at 48V
which is adequate for most situations with 12 serial LEDs
driving at 350mA per channel. Figure 3 shows the changes of
V
RAIL upon the AC/DC power supply powers up until the sys-
tem enters steady state operation.
30127103
FIGURE 3. Changes of Rail Voltage Upon Power Up
5
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