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LP5523 Datenblatt(PDF) 49 Page - Texas Instruments |
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LP5523 Datenblatt(HTML) 49 Page - Texas Instruments |
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49 / 61 page ![]() 49 LP5523 www.ti.com SNVS550E – SEPTEMBER 2009 – REVISED JANUARY 2017 Product Folder Links: LP5523 Submit Documentation Feedback Copyright © 2009–2017, Texas Instruments Incorporated 8 Application and Implementation NOTE Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 8.1 Application Information The LP5523 enables up to four parallel devices together, which can drive up to 12 RGB LEDs or 36 single LEDs. Figure 26 shows the connections for two LP5523 devices for six RGB LEDs. Note that D7, D8, and D9 outputs are used for the red LEDs. The SCL and SDA lines must each have a pullup resistor placed somewhere on the line (R3 and R4; the pullup resistors are normally located on the bus master.). In typical applications, values of 1.8 kΩ to 4.7 kΩ are used, depending on the bus capacitance, I/O voltage, and the desired communication speed. INT and TRIG are open-drain pins, which must have pullup resistors. Typical values for R1 and R2 are from 120 kΩ to 180 kΩ for two devices. 8.2 Typical Applications 8.2.1 Using Two LP5523 Devices in Same Application The LP5523 enables up to four parallel devices together, which can drive up to 12 RGB LEDs or 36 single LEDs. This diagram shows the connections for two LP5523 devices for six RGB LEDs. Note that D7, D8 and D9 outputs are used for the red LEDs. The SCL and SDA lines must each have a pullup resistor placed somewhere on the line (R3 and R4; The pullup resistors are normally located on the bus master.). In typical applications values of 1.8 kΩ to 4.7 kΩ are used, depending on the bus capacitance, I/O voltage, and the desired communication speed. INT and TRIG are open-drain pins, so they must have pullup resistors. Typical values for R1 and R2 are from 120 k to 180 k for two devices. |
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