LED7707TR STMicroelectronics, LED7707TR Datasheet - Page 36

IC LED DRIVR WHT BCKLT 24-VFQFPN

LED7707TR

Manufacturer Part Number
LED7707TR
Description
IC LED DRIVR WHT BCKLT 24-VFQFPN
Manufacturer
STMicroelectronics
Type
Backlight, White LEDr
Datasheet

Specifications of LED7707TR

Topology
PWM, Step-Up (Boost)
Number Of Outputs
6
Internal Driver
Yes
Type - Primary
Backlight
Type - Secondary
White LED
Frequency
250kHz ~ 1MHz
Voltage - Supply
4.5 V ~ 36 V
Voltage - Output
36V
Mounting Type
Surface Mount
Package / Case
24-VFQFN, 24-VFQFPN
Operating Temperature
0°C ~ 85°C
Current - Output / Channel
85mA
Internal Switch(s)
Yes
High Level Output Current
85 mA
Operating Supply Voltage
4.5 V to 36 V
Maximum Supply Current
1 mA
Maximum Power Dissipation
2.3 W
Maximum Operating Temperature
+ 150 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
For Use With
497-10044 - BOARD EVAL LCD BACKLIGHT LED7707
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Efficiency
-
Lead Free Status / Rohs Status
 Details
Other names
497-8492-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LED7707TR
Manufacturer:
ST
Quantity:
12 000
Part Number:
LED7707TR
Manufacturer:
STMicroelectronics
Quantity:
10 000
Part Number:
LED7707TR
Manufacturer:
ST
0
Application information
6.4.9
36/47
Power dissipation estimate
As explained in section 5.2, there are several contributions to the total power dissipation.
Neglecting the power dissipated by the LDO (surely less significant compared with the other
contributions), equation (18), (20), (21) and (22) help to estimate the overall power
dissipation.
Before starting the power dissipation estimate it is important to highlight that the following
calculations are considering the worst case (the actual value of the dissipated power would
require measurements). Therefore the power dissipation is estimated according to the
following assumptions:
1.
2.
3.
4.
The conduction and switching losses on the internal power switch can be calculated as:
Equation 41
Equation 42
where t
The power dissipation related to the current generators is given by:
Equation 43
Equation 44
Equation 45
The junction temperature can be estimated by equation (18) considering T
Equation 46
Minimum input voltage (10.8 V), which leads to maximum input current (and also D will
have the higher value, see
Maximum R
LEDs in the row of the leading generator will have the maximum forward voltage,
whereas all other LEDs in the other rows will have the minimum forward voltage.
100 % dimming signal duty cycle is considered.
r
= t
f
= 15 ns
P
GEN
DS(on)
=
P
I
ROW
, D
P
of the internal power MOSFET;
tot
, D
sw
P
P
(
n
, D
GEN
P
=
ROWs
, D
cond
T
V
cond
,
J
Section 6.4.4
Master
OUT
=
=
T
+
R
1
Amb
I
P
)
IN
DSon
=
, D
(
I
V
sw
ROW
+
f
sw
IFB
R
+
I
IN
2
th
P
+
t (
);
,
GEN
V
JA
Δ
r
D
IFB
V
+
2
, f
,
P
Master
D
) t
LEDs
, D
f
D
DIM
tot
DIM
D
=
=
DIM
+
n
=
LEDs
72
P
216
GEN
42
=
°
C
mW
233
mW
)
=
D
. 1
DIM
mW
12
=
W
630
mW
A
= 25 °C:
LED7707

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