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LP5891

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48 × 16 LED matrix driver with 16-bits PWM dimming and ultra low power

Product details

Number of channels 48 LED current per channel (mA) 20 LED configuration Matrix Program memory Yes Topology Linear Vin (min) (V) 2.5 Vin (max) (V) 5.5 Iout (max) (A) 0.96 Features De-ghosting, Intelligent power-saving mode, LOD, LSD Iq (typ) (mA) 5.5 Shutdown current (ISD) (typ) (µA) 900 Operating temperature range (°C) -55 to 125 Rating Catalog
Number of channels 48 LED current per channel (mA) 20 LED configuration Matrix Program memory Yes Topology Linear Vin (min) (V) 2.5 Vin (max) (V) 5.5 Iout (max) (A) 0.96 Features De-ghosting, Intelligent power-saving mode, LOD, LSD Iq (typ) (mA) 5.5 Shutdown current (ISD) (typ) (µA) 900 Operating temperature range (°C) -55 to 125 Rating Catalog
NFBGA (ZXL) 96 36 mm² 6 x 6 VQFN (RRF) 76 81 mm² 9 x 9
  • Separated VCC and VR/G/B power supply
    • VCC voltage range: 2.5 V–5.5 V
    • VR/G/B voltage range: 2.5 V–5.5 V
  • 48 current source channels from 0.2 mA to 20 mA
    • Channel-to-channel accuracy: ±0.5% (typ.), ±2% (max.); device-to-device accuracy: ±0.5% (typ.), ±2% (max.)
    • Low knee voltage: 0.26 V (max.) when IOUT = 5 mA
    • 3-bits (8 steps) global brightness control
    • 8-bits (256 steps) color brightness control
    • Maximum 16-bits (65536 steps) PWM grayscale control
  • 16 scan line switches with 190-mΩ RDS(ON)
  • Ultra-low power consumption
    • Independent VCC down to 2.5 V
    • Lowest ICC down to 3.6 mA with 50-MHz GCLK
    • Intelligent power saving mode with ICC down to 0.9 mA
  • Built-in SRAM to support 1–64 multiplexing
    • Single device to support 48 × 16 LEDs or 16 × 16 RGB pixels
    • Dual devices stackable to support 96 × 32 LEDs or 32 × 32 RGB pixels
    • Three devices stackable to support 144 × 48 LEDs or 48 × 48 RGB pixels
    • Four devices stackable to support 192 × 64 LEDs or 64 × 64 RGB pixels
  • High speed and low EMI Continuous Clock Series Interface (CCSI)
    • Only three wires: SCLK / SIN / SOUT
    • External 50-MHz (max.) SCLK with rising-edge transmission mechanism
    • Internal frequency multiplier to support high frequency GCLK
  • Optimized performances for LED matrix displays
    • Upside and downside ghosting removal
    • Low grayscale enhancement
    • LED open, weak-short, short detection and removal
  • LP5891MRRFR supports –55°C to approximately 125°C operating ambient temperature
  • Separated VCC and VR/G/B power supply
    • VCC voltage range: 2.5 V–5.5 V
    • VR/G/B voltage range: 2.5 V–5.5 V
  • 48 current source channels from 0.2 mA to 20 mA
    • Channel-to-channel accuracy: ±0.5% (typ.), ±2% (max.); device-to-device accuracy: ±0.5% (typ.), ±2% (max.)
    • Low knee voltage: 0.26 V (max.) when IOUT = 5 mA
    • 3-bits (8 steps) global brightness control
    • 8-bits (256 steps) color brightness control
    • Maximum 16-bits (65536 steps) PWM grayscale control
  • 16 scan line switches with 190-mΩ RDS(ON)
  • Ultra-low power consumption
    • Independent VCC down to 2.5 V
    • Lowest ICC down to 3.6 mA with 50-MHz GCLK
    • Intelligent power saving mode with ICC down to 0.9 mA
  • Built-in SRAM to support 1–64 multiplexing
    • Single device to support 48 × 16 LEDs or 16 × 16 RGB pixels
    • Dual devices stackable to support 96 × 32 LEDs or 32 × 32 RGB pixels
    • Three devices stackable to support 144 × 48 LEDs or 48 × 48 RGB pixels
    • Four devices stackable to support 192 × 64 LEDs or 64 × 64 RGB pixels
  • High speed and low EMI Continuous Clock Series Interface (CCSI)
    • Only three wires: SCLK / SIN / SOUT
    • External 50-MHz (max.) SCLK with rising-edge transmission mechanism
    • Internal frequency multiplier to support high frequency GCLK
  • Optimized performances for LED matrix displays
    • Upside and downside ghosting removal
    • Low grayscale enhancement
    • LED open, weak-short, short detection and removal
  • LP5891MRRFR supports –55°C to approximately 125°C operating ambient temperature

The LP5891 is a highly integrated, common-cathode LED matrix driver with 48 constant current sources and 16 scanning FETs. The LP5891 implements a high speed rising-edge transmission interface to support high device count daisy-chained while minimizing electrical-magnetic interference (EMI) and internal GCLK rate ranges from 40 MHz to 160 MHz. The device also implements LED open/weak-short/short detections and removals during operations.

The LP5891 is a highly integrated, common-cathode LED matrix driver with 48 constant current sources and 16 scanning FETs. The LP5891 implements a high speed rising-edge transmission interface to support high device count daisy-chained while minimizing electrical-magnetic interference (EMI) and internal GCLK rate ranges from 40 MHz to 160 MHz. The device also implements LED open/weak-short/short detections and removals during operations.

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Technical documentation

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Type Title Date
* Data sheet LP5891 48 Current Sources, 64 Scans, Common Cathode LED Matrix Driver datasheet (Rev. A) PDF | HTML 05 May 2022
Application note Example of LED Display Screen Design Requirements Based on TLC6983 PDF | HTML 31 Jul 2023
EVM User's guide LP5891 48x16 Common Cathode Matrix LED Display Driver Evaluation Module PDF | HTML 30 Nov 2022
Certificate LP5891EVM EU RoHS Declaration of Conformity (DoC) 20 Sep 2022

Design & development

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Evaluation board

LP5891EVM — LP5891 evaluation module for 48 by 16 common cathode matrix LED display driver

The LP5891 evaluation module (EVM) is used to evaluate the characteristics, operation, and usage for matrix LED display driver LP5891. The LP5891 is a highly integrated, common cathode matrix LED display driver with 48 constant current sources and 16 scanning FETs.

User guide: PDF | HTML
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Calculation tool

SLDR007 LP5891 Registers Map Generator

Supported products & hardware

Supported products & hardware

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RGB LED drivers
LP5891 48 × 16 LED matrix driver with 16-bits PWM dimming and ultra low power
Simulation tool

PSPICE-FOR-TI — PSpice® for TI design and simulation tool

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
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NFBGA (ZXL) 96 View options
VQFN (RRF) 76 View options

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