SNVAA19 May   2021 LP8863-Q1 , LP8864-Q1 , LP8864S-Q1 , LP8866-Q1 , LP8866S-Q1

 

  1.   Trademarks
  2. 1Introduction
  3. 2Boost Output Voltage Range Design Consideration
  4. 3Boost UVP Design Consideration
  5. 4Boost OVP Design Consideration
  6. 5Calculation of Feedback Resistor Values
  7. 6Feedback Resistor Calculation Example
  8. 7References

Feedback Resistor Calculation Example

Using the 2-resistor network as an example, the feedback resistors calculation can be found from the product folder. The same calculator can also be used for 3-resistor network calculation by simply setting RFB3 = 0 Ω.

In this example, there are 8 LEDs in a string, with forward voltage drop varies from 3.1 V to 3.4 V. The worst-case VSTRING,MIN and (VSTRING + VHEADROOM,MAX) + Design Margin can be calculated as 24.8 V and 30.2 V, respectively, in Table 6-1.

Table 6-1 LED String Calculation
DESIGN PARAMETERVALUEUNIT
Number of LEDs in one string8S
Min LED Forward Voltage VF,MIN3.1V
Max LED Forward Voltage VF,MAX3.4V
Min Headroom VHEADROOM,MIN0.4V
Max Headroom VHEADROOM,MAX1.0V
Design Margin for reference and feedback resistor variations2.0V
VSTRING,MIN24.8V
VSTRING,MAX28.2V
(VSTRING,MAX + VHEADROOM,MAX) + Design Margin30.2V

Assuming 1% feedback resistors are used, select feedback resistor values to meet the worst-case conditions listed in Equation 4, Equation 2, Equation 4, and Equation 4. In this example, with RFB1 = 620 kΩ and RFB2 = 56 kΩ, the calculated VMINBOOST = 14.61 V (< 24.8 V) and VMAXBOOST = 38.60 V (> 30.2 V) are able to cover the voltage range of LED string, as shown in Table 6-2.

Table 6-2 VBoost Calculation
DESIGN PARAMETERVALUEUNIT
RFB1 (1%)620kΩ
RFB2 (1%)56kΩ
RFB3 (1%)0kΩ
ISEL_MAX38.7μA
Vbg1.21V
VMINBOOST (V)14.61V
VMAXBOOST (V)38.60V

With VUVP of 0.886 V, the calculated VBOOST_UVP,MAX = 34.69 V as shown in Table 6-3, which is above 28.2 V so that LED open fault will not get false triggered during boost UVP event.

Table 6-3 VBoost_UVP,MAX Calculation
DESIGN PARAMETERVALUEUNIT
VUVP0.886V
VBOOST_UVP,MAX34.69V

With VOVPL of 1.423 V, the calculated VBOOST_OVP_LOW = 38.44 V as shown in Table 6-4, which is below 48 V so that boost OVP low fault will always be reported before boost OVP High Fault.

Table 6-4 VBoost_OVP_LOW Calculation
DESIGN PARAMETERVALUEUNIT
VOVPL1.423V
VBOOST_OVP_LOW38.44V