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LED6000 数据表(PDF) 42 Page - STMicroelectronics

部件名 LED6000
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

LED6000 数据表(HTML) 42 Page - STMicroelectronics

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Application notes - alternative topologies
LED6000
42/49
DocID027777 Rev 2
The switch peak current must be lower than the minimum current limit of the overcurrent
protection and the average current must be lower than the rated DC current of the device.
In addition to these constraints, the thermal considerations summarized in Section 5.4 on
page 30 must also be evaluated.
Figure 31. Floating-boost reference schematic
Figure 31 shows the schematic circuit for an LED current source based on floating-boost
topology. The expected input voltage range is from 18 V to 36 V and it can drive a string
composed of 15 LEDs with 0.5 A DC.
This schematic also includes two additional circuitry:
A level shifter network for the proper dimming operation, since the LED6000 local
ground is different from the board GND. This function is implemented by Q1, R15, R16
and R17. However, due to limited control loop bandwidth, the dimming operation in
floating-boost topology is quite limited in terms of the minimum achievable DIM pulse.
An external overvoltage protection which avoids the IC damage in case of the LED
open row fault. This function is implemented by a Zener diode, D2, R7 and the sensing
resistor, RSNS = R13.
In case the LED string is disconnected the maximum output voltage is given by:
Equation 38
Equation 38 must be verified in order avoid the LED6000 to be exposed to electrical stress
outside the allowed range (see Table 2 on page 7 for details).
The series resistor, R7, must be selected in order to limit the maximum current flowing
through the D2, as shown in Equation 32 on page 37.
The compensation network design strategy for floating-boost topology is described in
Section 6.4.
2
,
D
FB
MAX
OUT
V
V
V



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