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LP5018RSMR by: Texas Instruments

18-channel I<sup>2</sup>C constant-current RGB LED driver 32-VQFN -40 to 125

Part Details for LP5018RSMR by Texas Instruments

Results Overview of LP5018RSMR by Texas Instruments

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Applications Consumer Electronics

LP5018RSMR Information

LP5018RSMR by Texas Instruments is a Display Driver.
Display Drivers are under the broader part category of Drivers And Interfaces.

A driver controls the current or voltage delivered to components like LCDs or motors, while an interface component connects systems for data transfer and control. Read more about Drivers And Interfaces on our Drivers And Interfaces part category page.

Price & Stock for LP5018RSMR

Part # Distributor Description Stock Price Buy
Bristol Electronics   Min Qty: 4 115
  • 4 $1.5000
  • 15 $0.9750
  • 53 $0.5625
$0.5625 / $1.5000 Buy Now
Ameya Holding Limited IC 18-Channel 12-Bit PWM Ultralow-Quiescent-Current I2C RGB LED Driver RSM(VQFN32) 19
RFQ
DISTI # LP5018RSMR
IBS Electronics 18-CHANNEL I2C CONSTANT-CURRENT RGB LED DRIVER 32-VQFN -40 TO 125 Min Qty: 1000 Package Multiple: 1 2838
  • 10 $0.8900
  • 100 $0.5100
  • 1,000 $1.0700
  • 1,000 $0.4500
$0.4500 / $1.0700 Buy Now
Chip Stock ICLEDDRVRLINI2C35MA32VQFNLEDDriverIC18OutputLinearI2CDimming35mA32-VQFN(4x4) 46275
RFQ
Win Source Electronics IC LED DRVR LIN I2C 35MA 32VQFN / LED Driver IC 18 Output Linear I²C Dimming 35mA 32-VQFN (4x4) 79050
  • 115 $0.4428
  • 245 $0.4143
  • 375 $0.4000
  • 540 $0.3714
  • 705 $0.3571
  • 875 $0.3429
$0.3429 / $0.4428 Buy Now

US Tariff Estimator: LP5018RSMR by Texas Instruments

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LP5018RSMR
Texas Instruments
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Part Details for LP5018RSMR

LP5018RSMR CAD Models

LP5018RSMR Part Data Attributes

LP5018RSMR Texas Instruments
Buy Now Datasheet
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LP5018RSMR Texas Instruments 18-channel I<sup>2</sup>C constant-current RGB LED driver 32-VQFN -40 to 125
Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Active
Package Description Hvqccn, Lcc32,.16sq,16
Reach Compliance Code Compliant
ECCN Code EAR99
HTS Code 8542.39.00.60
Date Of Intro 2018-04-22
Data Input Mode Serial
Interface IC Type Led Display Driver
JESD-30 Code S-PQCC-N32
JESD-609 Code e4
Length 4 Mm
Moisture Sensitivity Level 2
Multiplexed Display Capability No
Number of Channels 18
Number of Functions 1
Number of Segments 24
Number of Terminals 32
Operating Temperature-Max 125 °C
Operating Temperature-Min -40 °C
Output Characteristics Constant-Current
Output Polarity True
Package Body Material Plastic/Epoxy
Package Code HVQCCN
Package Equivalence Code LCC32,.16SQ,16
Package Shape Square
Package Style Chip Carrier, Heat Sink/Slug, Very Thin Profile
Peak Reflow Temperature (Cel) 260
Seated Height-Max 1 Mm
Supply Current-Max 8 Ma
Supply Voltage-Max 5.5 V
Supply Voltage-Min 2.7 V
Supply Voltage-Nom 3.3 V
Surface Mount Yes
Temperature Grade Automotive
Terminal Finish Nickel/Palladium/Gold (Ni/Pd/Au)
Terminal Form No Lead
Terminal Pitch 0.4 Mm
Terminal Position Quad
Time@Peak Reflow Temperature-Max (s) 30
Width 4 Mm
fmax-Min 0.4 Mhz

Alternate Parts for LP5018RSMR

This table gives cross-reference parts and alternative options found for LP5018RSMR. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of LP5018RSMR, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
TLC5952DAPR Texas Instruments $1.1080 24-channel constant-current LED driver with global brightness and LED open Short Detection 32-HTSSOP -40 to 85 LP5018RSMR vs TLC5952DAPR
TLC5952DAP Texas Instruments $1.4533 24-channel constant-current LED driver with global brightness and LED open Short Detection 32-HTSSOP -40 to 85 LP5018RSMR vs TLC5952DAP
TLC5951RTAR Texas Instruments $1.9525 24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-WQFN -40 to 85 LP5018RSMR vs TLC5951RTAR
TLC5951RHAT Texas Instruments $2.1025 24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-VQFN -40 to 85 LP5018RSMR vs TLC5951RHAT
TLC5951DAP Texas Instruments $2.1338 24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 38-HTSSOP -40 to 85 LP5018RSMR vs TLC5951DAP
LP5024RSMR Texas Instruments Check for Price 24-channel I2C constant-current RGB LED driver 32-VQFN -40 to 85 LP5018RSMR vs LP5024RSMR
TLC5951RHAR Texas Instruments Check for Price 24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-VQFN -40 to 85 LP5018RSMR vs TLC5951RHAR
MAX6974ATL-T Maxim Integrated Products Check for Price LED Driver, BICMOS, PQCC40 LP5018RSMR vs MAX6974ATL-T
MAX6974ATL+T Analog Devices Inc Check for Price 24-Output PWM LED Drivers for Message Boards, 40-LFCSP-6X6X0.75, 40 Pins, -40 to 125C LP5018RSMR vs MAX6974ATL+T
equivalents icon

LP5018RSMR Frequently Asked Questions (FAQ)

  • The LP5018RSMR can handle input voltages up to 18V, but it's recommended to keep the input voltage below 15V for optimal performance and to prevent overheating.

  • To ensure stability, make sure to follow the recommended PCB layout guidelines, use a sufficient output capacitor (at least 10uF), and add a 1uF capacitor between the VIN and EN pins. Also, avoid using long traces and keep the input and output capacitors close to the IC.

  • The LP5018RSMR can operate with input voltages as low as 2.7V, but the output voltage regulation may not be as accurate at lower input voltages. For optimal performance, it's recommended to use an input voltage of at least 4V.

  • The LP5018RSMR is rated for operation up to 125°C, but its performance may degrade at higher temperatures. It's recommended to use a heat sink or a thermal pad to keep the IC temperature below 100°C for optimal performance and reliability.

  • The output voltage of the LP5018RSMR is determined by the resistive divider network connected to the FB pin. Use the formula: Vout = 0.8V x (R1 + R2) / R2, where R1 and R2 are the resistors in the divider network.

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