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LED6000PHR 数据表(PDF) 35 Page - STMicroelectronics

部件名 LED6000PHR
功能描述  3 A, 61 V monolithic current source with dimming capability
PDF  49 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

LED6000PHR 数据表(HTML) 35 Page - STMicroelectronics

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LED6000
Application notes - alternative topologies
49
6
Application notes - alternative topologies
Thanks to the wide input voltage range and the adjustable compensation network, the
LED6000 device is suitable to implement boost and buck-boost topologies.
6.1
Inverting buck-boost
The buck-boost topology fits the application with an input voltage range that overlaps the
output voltage, VOUT, which is the voltage drop across the LEDs and the sensing resistor.
The inverting buck-boost (see Figure 22) requires the same components count as the buck
conversion and it is more efficient than the positive buck-boost, since no additional power
MOSFET is required.
Figure 22. Inverting buck-boost topology
A current generator based on this topology implies two main application constraints:
The output voltage is negative so the LEDs must be reversed
The device GND floats with the negative output voltage. The device is supplied
between VIN and VOUT (< 0). As a consequence:
Equation 27
VIN,MAX = 61 V is the maximum operating input voltage for the LED6000, as shown in
Table 5 on page 8.
In buck-boost topology working in the continuous conduction mode (CCM), the HS MOS
on-time interval, D, is given by:
Equation 28
However, due to power losses (mainly switching and conduction losses), the real duty cycle
is always higher than this. The real value (which can be measured in the application) should
be used in the following formulas.
MAX
IN
OUT
IN
V
V
V
,
OUT
IN
OUT
V
V
V
D



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