LT3465AES6#TRMPBF Linear Technology, LT3465AES6#TRMPBF Datasheet - Page 9

IC LED DRIVR WHITE BCKLGT TSOT-6

LT3465AES6#TRMPBF

Manufacturer Part Number
LT3465AES6#TRMPBF
Description
IC LED DRIVR WHITE BCKLGT TSOT-6
Manufacturer
Linear Technology
Type
Backlight, White LEDr
Datasheet

Specifications of LT3465AES6#TRMPBF

Topology
PWM, Step-Up (Boost)
Number Of Outputs
1
Internal Driver
Yes
Type - Primary
Backlight
Type - Secondary
White LED
Frequency
1.8MHz ~ 2.8MHz
Voltage - Supply
2.7 V ~ 16 V
Voltage - Output
30V
Mounting Type
Surface Mount
Package / Case
TSOT-23-6, TSOT-6
Operating Temperature
-40°C ~ 85°C
Current - Output / Channel
20mA
Internal Switch(s)
Yes
Efficiency
79%
No. Of Outputs
1
Output Current
340mA
Output Voltage
30V
Input Voltage
2.7V To 16V
Dimming Control Type
PWM
Operating Temperature Range
-40°C To +85°C
Driver Case Style
TSOT-23
Rohs Compliant
Yes
Operating Supply Voltage (typ)
3.3/5/9/12/15V
Number Of Segments
6
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Package Type
TSOT-23
Pin Count
6
Mounting
Surface Mount
Operating Supply Voltage (min)
2.7V
Operating Supply Voltage (max)
16V
Led Driver Application
Cell Phones, PDA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
LT3465AES6#TRMPBFTR

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APPLICATIO S I FOR ATIO
Soft-Start (LT3465)
The LT3465 has an internal soft-start circuit to limit the
input current during circuit start-up. The circuit start-up
waveforms are shown in Figure 5.
Inrush Current
The LT3465 and LT3465A have a built-in Schottky diode.
When supply voltage is applied to the V
difference between V
flowing from input through the inductor and the Schottky
diode to charge the output capacitor to V
current the Schottky diode in the LT3465 and LT3465A
can sustain is 1A. The selection of inductor and capacitor
value should ensure the peak of the inrush current to be
below 1A. The peak inrush current can be calculated
as follows:
where L is the inductance, r is the resistance of the
inductor and C is the output capacitance. For low DCR
V
I
α
ω
P
FB
I
CTRL 5V/DIV
IN
V
100mV/DIV
=
=
OUT
=
50mA/DIV
r
V
5V/DIV
2
IN
+
L C
L
1 5
– .
1
L
.
ω
V
4 LEDs, 20mA
L = 22µH
C = 0.22µF
0 6
IN
= 3.6V
(
• exp –
r
Figure 5. Start-Up Waveforms
4
+
1 5
U
L
.
2
IN
)
2
ω
α
and V
200µs/DIV
• arctan
U
OUT
generates inrush current
ω
W
α
IN
• sin arctan
IN
. The maximum
pin, the voltage
3465 F05
U
ω
α
inductors, which is usually the case for this application,
the peak inrush current can be simplified as follows:
Table 3 gives inrush peak currents for some component
selections.
Table 3. Inrush Peak Current
LED Current and Dimming Control
The LED current is controlled by the feedback resistor (R1
in Figure 1) and the feedback reference voltage.
The CTRL pin controls the feedback reference voltage as
shown in the Typical Performance Characteristics. For
CTRL higher than 1.8V, the feedback reference is 200mV,
which results in full LED current. CTRL pin can be used as
dimming control when CTRL voltage is between 200mV to
1.5V. In order to have accurate LED current, precision
resistors are preferred (1% is recommended). The for-
mula and table for R
Table 4. R
The filtered PWM signal can be considered to be an
adjustable DC voltage. It can be used to adjust the CTRL
voltage source in dimming control. The circuit is shown in
Figure 6. The corner frequency of R1 and C1 should be
I
R
I
V
LED
P
IN
3.6
FB
5
5
5
=
(V)
= 200mV/I
= V
FULL I
V
IN
FB
L
FB
Resistor Value Selection
– .
/R
10
15
20
LED
ω
5
0 6
FB
r (Ω)
(mA)
0.5
0.5
0.5
0.5
• exp –
LED-Full
FB
selection are shown below.
LT3465/LT3465A
α
ω
L (µH)
22
22
22
33
π
2
(1)
C (µF)
0.22
0.22
R1 (Ω)
1
1
40.0
20.0
13.3
10.0
I
0.38
0.70
0.26
0.60
P
(A)
3465afa
9

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