LED2000PUR STMicroelectronics, LED2000PUR Datasheet - Page 23

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LED2000PUR

Manufacturer Part Number
LED2000PUR
Description
LED Lighting Drivers 3.0V to 18V 850kHz 100mV 95mOhm HS
Manufacturer
STMicroelectronics
Datasheet

Specifications of LED2000PUR

Rohs
yes
Input Voltage
3 V to 18 V
Operating Frequency
850 kHz
Maximum Supply Current
3 A
Mounting Style
SMD/SMT
Package / Case
VFQFPN-8L
Power Dissipation
2 W

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LED2000PUR
Manufacturer:
ST
Quantity:
300
LED2000
Figure 15. Equivalent circuit
The LED ripple current can be calculated as the inductor ripple current ratio flowing into the
output impedance using the Laplace transform (see
Equation 23
where the term 8/
a triangular shape) and I
Equation 24
so L value can be calculated as:
Equation 25
where T
As a consequence, the lower the inductor value (so the higher the current ripple), the higher
the C
A general rule to dimension L value is:
Equation 26
Finally, the required output capacitor value can be calculated equalizing the LED current
ripple specification with the module of the Fourier transformer (see
at f
SW
L
------------
I
LED
=
I
OUT
L
frequency.
I
n
------------------------------------------------------------------------
L
OFF
LED
0.5
I
=
RIPPLE
value would be to meet the specification.
V
--------------- -
is the OFF-time of the embedded high switch, given by 1-D.
OUT
L
V
FW_LED
s
I
T
L
2
=
OFF
represents the main harmonic of the inductor current ripple (which has
----------------------------------------------------------------------------------------------------------------------- -
1
+
+
100mV
=
s
----- -
n
------------------------------------------------------------------------
8
L
2
LED
is the inductor current ripple.
R
S
Doc ID 023432 Rev 3
I
+
T
L
OFF
ESR
V
FW_LED
1
L
=
+
+
s
n
n
------------------------------------------------------------------------
LED
LED
+
ESR
100mV
R
V
LED
FW_LED
C
OUT
I
T
L
OFF
Figure
C
+
OUT
100mV
11):
1
Application information
n
------------------------------------------------------------------------
Equation
LED
V
FW_LED
V
23) calculated
IN
+
100mV
23/40

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