DS92LV0411SQ/NOPB Texas Instruments Integrated Circuit (Quad Flat No-Lead) In Stock

The DS92LV0411SQ/NOPB is a 4-channel differential LVDS line driver from Texas Instruments in a 36-pin QFN package designed for high-speed parallel data transmission with low voltage differential signaling. Key specs include 4-bit differential outputs, standard CMOS/TTL-compatible inputs, and LVDS output voltage swings of approximately 250 mV to 450 mV for low-power, high-noise-immunity data links. Ideal for backplane interconnects, video data transmission, flat panel display interfaces, and any high-speed point-to-point differential signaling application operating up to 400 Mbps per channel.

ACTIVEIntegrated CircuitVerified Jul 2026
Package / Visual Reference
DS92LV0411SQ/NOPBQuad Flat No-Lead
Quick Facts
Manufacturer
Texas Instruments
Package
Quad Flat No-Lead
Pin Count
37
Lifecycle
ACTIVE
Category
Integrated Circuit
Price
From $9.0700(MOQ 1000)
Temp Range
-40.0°C to 85.0°C
RoHS
Compliant
Lead Time
3–7 business days
Shipping
DHL Express · Worldwide

What are the key features of DS92LV0411SQ/NOPB?

  • 4-channel LVDS line driver with differential outputs delivering 250 mV to 450 mV output swing for low-power high-speed data links
  • Standard CMOS/TTL input compatibility enables direct interface with 3.3 V logic controllers without level translation
  • Compact 36-pin QFN package minimizes board space while supporting 4 independent LVDS differential output channels
  • LVDS output standard provides superior noise immunity and reduces EMI compared to single-ended signaling at equivalent data rates up to 400 Mbps per lane

What is DS92LV0411SQ/NOPB used for?

The DS92LV0411SQ/NOPB is used in high-speed parallel data transmission systems including FPGA-to-FPGA interconnects, backplane data buses, and flat panel display (FPD-Link) interfaces where 4 simultaneous differential signal channels are needed across distances of several meters. Its LVDS output standard enables reliable data transmission at 200 to 400 Mbps per channel over standard PCB traces or twisted-pair cables, reducing EMI and power consumption compared to LVTTL alternatives. The device also suits machine vision camera links, industrial fieldbus bridges, and test-and-measurement data acquisition systems requiring multi-channel high-speed serial-parallel interfaces.

What are the specifications of DS92LV0411SQ/NOPB?

Pbfree CodeYes
Reach Compliance CodeCompliant
YTEOL15
Differential OutputYES
Driver Number of Bits4
Input CharacteristicsSTANDARD
Interface IC TypeLINE DRIVER
Interface StandardGENERAL PURPOSE
JESD-30 CodeS-XQCC-N36
JESD-609 Codee3
Number of Functions4
Output Characteristics3-STATE
Output PolarityCOMPLEMENTARY
Package Body MaterialUNSPECIFIED
Package Equivalence CodeLCC36,.25SQ,20
Package ShapeSQUARE
Package StyleCHIP CARRIER, VERY THIN PROFILE
Peak Reflow Temperature (Cel)260
Qualification StatusNot Qualified
Supply Current-Max90mA
Supply Voltage-Max1.89V
Supply Voltage-Min1.71V
Supply Voltage-Nom1.8V
Supply Voltage1-Max3.6V
Supply Voltage1-Min3V
Supply Voltage1-Nom3.3V
Surface MountYES
Temperature GradeINDUSTRIAL
Terminal FinishMatte Tin (Sn)
Terminal FormNO LEAD
Terminal Pitch0.5mm
Terminal PositionQUAD
Time@Peak Reflow Temperature-Max (s)30
PackageQuad Flat No-Lead

Compliance & Regulatory

RoHS StatusCompliant
Lead-FreeYes (Pb-Free)
Moisture Sensitivity LevelMSL 3
ECCN5A991.B.1
HTS Code8542.39.00.90

Where can I find the DS92LV0411SQ/NOPB datasheet?

DS92LV0411SQ/NOPB Datasheet Download

Official datasheet from Texas Instruments

What are equivalent replacements for DS92LV0411SQ/NOPB?

No known alternates. Submit an RFQ and our team can suggest alternatives.

Frequently Asked Questions

At what maximum data rate can the DS92LV0411SQ/NOPB transmit data per LVDS channel?

The DS92LV0411SQ/NOPB LVDS line driver supports data rates up to approximately 400 Mbps per differential channel, with 4 independent channels operating simultaneously. At this rate, each channel consumes minimal power due to the LVDS 250 mV to 450 mV differential swing, making the total device power dissipation much lower than equivalent LVTTL or LVCMOS multi-channel drivers operating at similar frequencies.

How does the DS92LV0411SQ/NOPB's LVDS output improve noise immunity compared to single-ended logic in a noisy industrial backplane?

LVDS differential signaling on the DS92LV0411SQ/NOPB transmits data as a voltage difference between two complementary conductors, so common-mode noise injected equally into both lines cancels at the receiver's differential input. This common-mode rejection provides 20 to 30 dB better noise immunity than single-ended 3.3 V LVTTL signals in noisy industrial backplane environments with ground bounce, power supply noise, and cross-talk from adjacent high-current switching signals. The 250 mV to 450 mV differential swing also reduces electromagnetic emissions compared to 3.3 V single-ended signaling.

What input logic levels does the DS92LV0411SQ/NOPB accept and how does this simplify integration with 3.3 V FPGAs?

The DS92LV0411SQ/NOPB accepts standard 3.3 V CMOS/TTL-compatible inputs, with logic high threshold at 2.0 V and logic low threshold at 0.8 V, which directly matches 3.3 V FPGA GPIO output standards. This eliminates the need for level translation buffers between a 3.3 V FPGA transmitter and the LVDS driver, reducing component count, board space, and design complexity in FPGA-to-backplane or FPGA-to-display interface designs.

What are the trace length and termination requirements for using the DS92LV0411SQ/NOPB in a PCB backplane application?

LVDS differential pairs driven by the DS92LV0411SQ/NOPB should be routed as 100 Ω differential impedance controlled traces with matched lengths between the + and - signals kept within 5 mils to minimize skew. A 100 Ω differential termination resistor is required at the receiver end of each channel to match transmission line impedance and prevent reflections at data rates above 100 Mbps. Maximum recommended PCB trace length depends on dielectric loss but is typically 50 cm to 100 cm for FR4 PCB material at 400 Mbps per channel without equalization.

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About Texas Instruments

Texas Instruments (TI) is a global semiconductor company headquartered in Dallas, Texas. TI designs and manufactures analog and embedded processing chips used in industrial, automotive, consumer, communications, and enterprise systems.

AvailabilityIn Stock
Reference Price (USD)
From $9.0700
Buy from 1pc · Factory-direct pricing
Qty.Unit PriceExt. Price
1000+$9.0700$9070.00
pcs
Unit price: $9.0700 · Total: $9070.00

In Stock · 24h Response · Worldwide Shipping

Lead Time3-7 business days
MOQFrom 1 piece
ShippingDHL / FedEx / UPS
OriginChina (Authorized)

Response within 24 hours · Worldwide shipping

Their engineering team helped us find a pin-compatible alternative when our original MCU went EOL.

MR
Marco Rossi
CTO, AutoDrive Systems, Italy