Get a Sample
Request engineering samples to evaluate fit, validate alternatives, and keep design decisions moving before a larger order is placed.
Request evaluation samplesDS91M040TSQX/NOPB is a Interface - Drivers, Receivers, Transceivers model from Texas Instruments, presented on TrustCompo for buyers who need clear sourcing and review context before RFQ. This listing sits in the Integrated Circuits (ICs) / Interface - Drivers, Receivers, Transceivers product path. IC M-LVDS QUAD TRANSCEIVR 32WQFN. TrustCompo combines the available model, brand, hierarchy, and specification details around DS91M040TSQX/NOPB so buyers can move faster from review to quotation.

Traceability and authenticity checks
Fast RFQ turnaround
Documentation support
Pre-shipment inspection review
Key specifications
Series
-
Min Quantity
1
Category
Integrated Circuits (ICs)Sub Category
Interface - Drivers, Receivers, TransceiversDescription
IC M-LVDS QUAD TRANSCEIVR 32WQFN
key Attributes
-
Why request a quote
Use the RFQ step to confirm the commercial and documentation details buyers usually need before placing an order.
Trust signals
Globally recognized certifications
Visible certifications work best when they are paired with clear operational promises around traceability, handling, and inspection.
ISO 9001
Quality management processes for more consistent sourcing and handling.
AS9120B
Aerospace-focused distribution controls for traceability and reliability.
ISO 14001
Environmental management discipline across warehouse and operating workflows.
ESD Control
Electrostatic handling standards to help protect sensitive components.
Ordering workflow
Use this section to see the fastest ordering path and the policy pages buyers usually review before confirming a component order.
How to order this product
A simple B2B flow helps engineering and procurement teams move from part review to commercial confirmation.
Review the part number, package, key specs, and target quantity so the quote request reflects the exact sourcing scope your team needs.
Use Quick Quote for commercial pricing or Request Sample when engineering validation is still in progress and a smaller evaluation quantity is needed.
Before final release, confirm stock timing, shipment method, payment arrangement, and any traceability or inspection documents required by your process.
Policies buyers usually check
These pages explain the operating rules around samples, shipping, payment, and quality support before you place the order.
Request engineering samples to evaluate fit, validate alternatives, and keep design decisions moving before a larger order is placed.
Request evaluation samplesReview shipping origin, carrier options, delivery methods, and the practical factors that affect transit timing for global component orders.
Review shipping detailsUnderstand supported payment methods, invoice handling, quote currency, and the commercial boundaries used for international B2B orders.
Review payment termsSee how incoming inspection, outgoing verification, traceability support, certifications, and additional testing fit into our quality workflow.
Review quality controlsStructured product content
Review overview, detailed specifications, and related sourcing content in one structured flow without scanning separate oversized sections.
Product overview
The DS91M040TSQX/NOPB is a high-speed, low-power, differential line driver designed for use in various communication applications. Manufactured by Texas Instruments, this device is part of the DS91M series, which is known for its robust performance in transmitting data over long distances.
Differential Signaling: The DS91M040 utilizes differential signaling to minimize electromagnetic interference (EMI) and improve signal integrity over long cable runs. This makes it suitable for environments with high noise levels.
Data Rate: The device supports data rates up to 40 Mbps, making it ideal for high-speed data transmission applications.
Low Power Consumption: The DS91M040 is designed to operate with low power, which is beneficial for battery-operated devices and applications where power efficiency is critical.
Operating Voltage: It typically operates within a voltage range of 3.0V to 5.5V, providing flexibility for various system designs.
Temperature Range: The device is rated for operation in a wide temperature range, typically from -40°C to +85°C, making it suitable for industrial and automotive applications.
Package Type: The DS91M040TSQX/NOPB comes in a TSSOP (Thin Shrink Small Outline Package) form factor, which is compact and suitable for space-constrained applications.
Pin Configuration: The device features a standard pin configuration that allows for easy integration into existing designs. It includes pins for power supply, ground, and differential output.
Fail-Safe Features: The DS91M040 includes fail-safe features that ensure reliable operation even in the event of a fault condition, enhancing system robustness.
Applications: This device is commonly used in applications such as point-to-point communication, industrial automation, and data acquisition systems, where reliable and high-speed data transmission is essential.
Compliance: The DS91M040 is compliant with various industry standards, ensuring compatibility with other devices and systems.
The DS91M040TSQX/NOPB from Texas Instruments is a versatile and efficient differential line driver that excels in high-speed data transmission while maintaining low power consumption. Its robust design and wide operating range make it suitable for a variety of applications, particularly in environments where reliability and performance are paramount.
Fast scan
Export Classifications & Environmental
JESD-609 Code
e3
Export Classifications & Environmental
RoHS Status
ROHS3 Compliant
Export Classifications & Environmental
HTSUS
8542.39.0001
Export Classifications & Environmental
Moisture Sensitivity Level (MSL)
3 (168 Hours)
Export Classifications & Environmental
ECCN Code
5A991.B.1
Product Attribute
Part Status
Active
Common questions
Quick answers for buyers reviewing DS91M040TSQX/NOPB, stock, documentation, and sourcing steps.
DS91M040TSQX/NOPB is a Interface - Drivers, Receivers, Transceivers component from Texas Instruments. This product page summarizes the core sourcing details buyers need before checking price, availability, documentation, or samples.
DS91M040TSQX/NOPB is listed with package reference -. The current product description is IC M-LVDS QUAD TRANSCEIVR 32WQFN, and buyers should confirm package, footprint, and electrical details against the datasheet or quotation notes before approval.
This page currently shows 58894 units in stock and 39047 units available for DS91M040TSQX/NOPB. Because electronic component availability can change quickly, submit an RFQ to confirm live stock, lead time, and final pricing.
Yes. Use the Quick Quote or Request Sample action on this page to send the quantity and sourcing requirements for DS91M040TSQX/NOPB by Texas Instruments. The TrustCompo team can review price, availability, and documentation support.
A dedicated datasheet link is not currently listed for DS91M040TSQX/NOPB by Texas Instruments. Contact us with the part number and required parameters so the team can help confirm documentation during quotation.
Buyers should confirm the manufacturer, package, quantity, target price, RoHS or compliance needs, and any Certificate of Conformance or traceability requirements for DS91M040TSQX/NOPB before approving the order.
Interface - Drivers, Receivers, Transceivers
Explore more parts from the same subcategory to compare fit, stock, and sourcing options.

IC QUAD DIFF LINE DRVR 16-SSOP

IC MULTICH RS232 DVR/RCVR 16SOIC

IC DVR/RCVR RS232 ESD 16TSSOP

IC TXRX RS-232 5V SD/EN 24SOIC

IC TX RS485/422 HS 8-SOIC

IC TXRX LVDS 9CH W/SCAN 64FBGA
More sourcing insights
Explore related articles around DS91M040TSQX/NOPB, Interface - Drivers, Receivers, Transceivers, and adjacent sourcing decisions so buyers can compare context before moving from evaluation to RFQ.
Jul 17, 2026
FPGA Supply 2026: A Buyer's Framework for AMD Xilinx, Intel Altera, Microchip, and Lattice SourcingA production-BOM FPGA sourcing guide for 2026 covering lifecycle commitment, redesign cost, and qualification boundaries across AMD Xilinx, Intel Altera, Microchip PolarFire, and Lattice families.
Jul 11, 2026
2026 Q3 Wide-Bandgap Power Read: Where SiC Is Scaling, Where GaN Is Winning, and Why Silicon Still MattersA Q3 2026 read on SiC, GaN, and silicon power semiconductors: where wide-bandgap devices are winning now, where silicon still holds, and what engineers and sourcing teams should watch.
Jul 8, 2026
Texas Instruments Lead Time and Price Pressure in 2026: What Analog and Power Buyers Should Do NowA buyer-facing framework for Texas Instruments analog and power IC exposure in 2026, covering what is confirmed, where price and lead-time pressure is most likely to show up, and which actions sourcing teams should take first.
