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LED7707TR Datasheet(PDF) 29 Page - STMicroelectronics

Part # LED7707TR
Description  6-rows 85 mA LEDs driver with boost regulator for LCD panels backlight
PDF  48 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

LED7707TR Datasheet(HTML) 29 Page - STMicroelectronics

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LED7707
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6.2
Thermal considerations
In order to prevent the device from exceeding the thermal shutdown threshold (150 °C), it is
important to estimate the junction temperature through the following equation:
Equation 17
where TA is the ambient temperature, Rth,JA is the equivalent thermal resistance junction to
ambient and PD,tot is the power dissipated by the device.
The Rth,JA measured on the application demonstration board (described in Section 6.5) is
42 °C/W.
The PD,tot has several contributions, listed below.
a)
Conduction losses due to the RDS(on) of the internal power switch, equal to:
Equation 18
where D is defined as:
Equation 19
and DDIM is the duty cycle of the PWM dimming signal.
b)
Switching losses due to the power MOSFET turn on and off, calculated as:
Equation 20
where tr and tf are the power MOSFET rise time and fall time respectively.
c)
Current generators losses. This contribution is strictly related to the LEDs used in
the application. Only the contribution of the leading current generator (“master”
current generator) can be predicted, regardless of the LEDs forward voltage:
Equation 21
where IROW is the current flowing through the row, whereas VIFB is the voltage across the
master current generator (typically 700 mV).
The voltages across the other current generators depend on the spread of the LEDs forward
voltage. The worst case for power dissipation (maximum forward voltage LEDs in the master
row, minimum forward voltage LEDs in all other rows) can be estimated as:
tot
,
D
JA
,
th
Amb
J
P
R
T
T
+
=
DIM
2
IN
DSon
cond
,
D
D
D
I
R
P
=
OUT
IN
V
V
1
D
=
DIM
f
r
sw
IN
OUT
sw
,
D
D
2
)
t
t
(
f
I
V
P
+
=
DIM
IFB
ROW
Master
,
GEN
D
V
I
P
=



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