LT1937
APPLICATIO S I FOR ATIO
LED Current Control
The LED current is controlled by the feedback resistor (R1
in Figure 1). The feedback reference is 95mV. The LED
current is 95mV/R1. In order to have accurate LED current,
precision resistors are preferred (1% is recommended).
The formula and table for R1 selection are shown below.
Dimming Control
There are four different types of dimming control circuits:
1. Using a PWM Signal to SHDN Pin
With the PWM signal applied to the SHDN pin, the LT1937
is turned on or off by the PWM signal. The LEDs operate
R1 = 95mV/I LED
Table 4. R1 Resistor Value Selection
I LED (mA)
5
10
12
15
20
R1 ( ? )
19.1
9.53
7.87
6.34
4.75
(1)
at either zero or full current. The average LED current
increases proportionally with the duty cycle of the PWM
signal. A 0% duty cycle will turn off the LT1937 and
corresponds to zero LED current. A 100% duty cycle
corresponds to full current. The typical frequency range of
the PWM signal is 1kHz to 10kHz. The magnitude of the
PWM signal should be higher than the minimum SHDN
voltage high. The switching waveforms of the SHDN pin
PWM control are shown in Figures 6a and 6b.
Open-Circuit Protection
LT1937
In the cases of output open circuit, when the LEDs are
disconnected from the circuit or the LEDs fail, the feed-
back voltage will be zero. The LT1937 will then switch at
a high duty cycle resulting in a high output voltage, which
may cause the SW pin voltage to exceed its maximum 36V
rating. A zener diode can be used at the output to limit the
voltage on the SW pin (Figure 5). The zener voltage should
be larger than the maximum forward voltage of the LED
string. The current rating of the zener should be larger than
0.1mA.
FB
100mV/DIV
SHDN
2V/DIV
SHDN
PWM
200 μ s/DIV
1937 F06a
V IN
C IN
1 μ F
V IN
L
22 μ H
SW
D
C OUT
0.22 μ F
FB
100mV/DIV
(6a) 1kHz
LT1937
SHDN
GND
FB
R2
1k
R1
6.34 ?
1937 F05
SHDN
2V/DIV
20 μ s/DIV
1937 F06b
(6b) 10kHz
Figure 5. LED Driver with Open-Circuit Protection
Figure 6. PWM Dimming Control Using the SHDN Pin
1937f
6
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