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L99LD20 数据表(PDF) 13 Page - STMicroelectronics

部件名 L99LD20
功能描述  High power LED driver for automotive applications
PDF  61 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

L99LD20 数据表(HTML) 13 Page - STMicroelectronics

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DS11366 Rev 3
13/61
L99LD20
Buck converters
60
where
ΔIL1_PP is the inductor peak to peak current and VF_D1 is the forward voltage of the
diode D1. As D1 is a Schottky diode with a low forward voltage, VF_D1 can be in general
neglected, compared to VLED1.
Note:
Once the VLEDxTOFF constant for a given buck converter is selected by SPI, the peak-to-
peak inductor current ripple is constant. In particular, it depends neither on the buck input
voltage nor on the LED forward voltage.
The ripple current through the LED strings is reduced by means of an external capacitor in
parallel with the LEDs.
Figure 6. Inductor and mosfet current waveforms
Referring to the Figure 5 and Figure 6 the average LED current - valid for both Buck 1 and
Buck 2 - is therefore:
where IL1_PEAK* results from IL1_PEAK (see Table 35) corrected with loop delay (tloop_delay)
In order to achieve the best accuracy versus input voltage variation during current sensing
process, a defined buck input voltage window must be selected, by means of a dedicated
control register (see bits <5:4> and bits <3:2> on Table 15: CR#3: Control Register 3).
2.4
Buck converter’s blank time
The buck converters have a minimum on-time TBLANK_BUCK. Although the inductor’s target
peak current ILx_PEAK is reached before this time has elapsed, the switch is kept on. This
delay is used as a leading-edge blank time, in order to avoid a premature end of the
switching cycle, which might be caused by the noise, which results from the commutation of
the buck’s mosfet.
I
LED1_AVG
I
L1_AVG
I
L1_PEAK*
ΔI
L1_PP
()
2
--------------------------
I
L1_PEAK*
=
==
V
LED TOFF1
()
2L
------------------------------------------



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