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HTSSOP (PWP)
Integrated Circuits (ICs)

TPS92518HVQPWPRQ1

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Texas Instruments

65-V AUTOMOTIVE DUAL BUCK LED CONTROLLER WITH SPI INTERFACE, ANALOG AND PWM DIMMING

HTSSOP (PWP)
Integrated Circuits (ICs)

TPS92518HVQPWPRQ1

Active
Texas Instruments

65-V AUTOMOTIVE DUAL BUCK LED CONTROLLER WITH SPI INTERFACE, ANALOG AND PWM DIMMING

Technical Specifications

Parameters and characteristics for this part

SpecificationTPS92518HVQPWPRQ1
ApplicationsLighting
DimmingAnalog, PWM
Frequency2 MHz
GradeAutomotive
Internal Switch(s)False
Mounting TypeSurface Mount
Number of Outputs2
Operating Temperature [Max]125 °C
Operating Temperature [Min]-40 °C
Package / Case0.173 in, 4.4 mm
Package / Case24-PowerTSSOP
QualificationAEC-Q100
Supplier Device Package24-HTSSOP
TopologyStep-Down (Buck)
TypeDC DC Controller
Voltage - Output62 V
Voltage - Supply (Max) [Max]65 V
Voltage - Supply (Min) [Min]6.5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 3.13
10$ 2.81
25$ 2.66
100$ 2.31
250$ 2.19
500$ 1.96
1000$ 1.66
Digi-Reel® 1$ 3.13
10$ 2.81
25$ 2.66
100$ 2.31
250$ 2.19
500$ 1.96
1000$ 1.66
Tape & Reel (TR) 2000$ 1.57
6000$ 1.51
Texas InstrumentsLARGE T&R 1$ 2.37
100$ 2.07
250$ 1.45
1000$ 1.17

Description

General part information

TPS92518HV-Q1 Series

The TPS92518-Q1 family of parts are dual channel buck LED current controllers with a SPI communications interface. The serial communication interface provides a singular communication path for multichannel and platform lighting driver module (LDM) applications.

The TPS92518-Q1 uses a quasi-hysteretic control method that supports switching frequencies ranging from 1 kHz to 2 MHz. This control method enables superior, high frequency shunt FET dimming and also handles the demanding dynamic loads of adaptive LED matrix based headlamp systems.

Software programmable SPI set points (Precision Peak Current, Controlled Off-Time and Output Voltage Sense) enables designers to develop a single LED driver solution for multiple load configurations that can be quickly reconfigured for future LED driver design requirements.