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ALED6001 bảng dữ liệu(PDF) 14 Page - STMicroelectronics

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ALED6001 bảng dữ liệu(HTML) 14 Page - STMicroelectronics

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Device description
ALED6001
14/26
DocID026965 Rev 2
Figure 5. Simplified output regulation circuitry
The boost controller regulates the output (LED) current by measuring the voltage across the
external sensing resistor. The internal circuitry related to the two pins connected to the
sensing resistor (VFBP and VFBN) has been designed to implement a high-side sensing
scheme and can sustain a relatively high voltage. The voltage drop across the sensing
resistor is the actual feedback voltage for the boost regulator control loop and it can be
linearly varied by means of the ADIM pin (see Section 7.3: LED current regulation and
brightness control on page 17 for details).
The COMP pin is the output of the transconductance amplifier involved in the regulation
loop and a simple RC series must be connected between this pin and SGND to ensure
proper loop stability.
7.2.3
Boost converter stability and slope compensation
As visible in Figure 5, the difference between the feedback voltage and the programmed is
converted into an error current by the transconductance amplifier. This current, provided at
the COMP pin, is turned into a voltage across the compensation network externally
connected to the same pin. This voltage, in turn, determines the trip current for the following
error amplifier.
When the boost converter operates in continuous conduction mode (CCM) and the
switching duty cycle is higher than 50%, sub-harmonic instability may occur.
In order to prevent this, the trip current has to be properly shaped by summing a negative
sawtooth ramp voltage (slope compensation) with the amplified error voltage.



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