DS90LV019TM
- Mfr.Part #
- DS90LV019TM
- Manufacturer
- Texas Instruments
- Package / Case
- 14-SOIC (0.154, 3.90mm Width)
- Datasheet
- Download
- Description
- IC TRANSCEIVER FULL 1/1 14SOIC
- Stock
- 43,107
- In Stock :
- 43,107
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- Manufacturer :
- Texas Instruments
- Product Category :
- Drivers, Receivers, Transceivers
- Supply Voltage :
- 3.3V
- Differential Output :
- yes
- Termination :
- SMD/SMT
- Number of Pins :
- 14
- Lifecycle Status :
- NRND (Last Updated: 3 days ago)
- REACH SVHC :
- No SVHC
- Operating Temperature :
- -40°C~85°C
- ECCN Code :
- 5A991.B.1
- Terminal Form :
- Gull wing
- Output Polarity :
- Complementary
- Thickness :
- 1.58mm
- Number of Drivers/Receivers :
- 1/1
- Nominal Supply Current :
- 12mA
- Duplex :
- Full
- Receive Delay-Max :
- 9 ns
- Height :
- 1.75mm
- Max Output Voltage :
- 450mV
- Propagation Delay :
- 7 ns
- High Level Input Current-Max :
- 0.00001A
- JESD-609 Code :
- e0
- Number of Functions :
- 1
- Number of Elements :
- 2
- RoHS Status :
- Non-RoHS Compliant
- Max Power Dissipation :
- 960mW
- Voltage - Supply :
- 3V~5.5V
- Data Rate :
- 100Mbps
- Receiver Number of Bits :
- 1
- Lead Free :
- Contains Lead
- Length :
- 8.65mm
- Base Part Number :
- DS90LV019
- Packaging :
- Tube
- Peak Reflow Temperature (Cel) :
- 235
- Mounting Type :
- Surface Mount
- Power Consumption :
- 45W
- Protocol :
- LVDS
- Input Characteristics :
- Differential
- Type :
- Transceiver
- Output Characteristics :
- Differential
- Output Low Current-Max :
- 0.00001A
- Terminal Finish :
- Tin/Lead (Sn/Pb)
- Max Input Current :
- 10μA
- Number of Terminations :
- 14
- Interface Standard :
- GENERAL PURPOSE
- Driver Number of Bits :
- 1
- Width :
- 3.91mm
- Radiation Hardening :
- No
- Additional Feature :
- CAN ALSO OPERATE WITH A 5V SUPPLY
- Terminal Position :
- Dual
- Power Dissipation :
- 960mW
- Output Type :
- TTL
- Operating Supply Voltage :
- 3.3V
- Turn On Delay Time :
- 7 ns
- Power Supplies :
- 3.3/5V
- Supply Voltage1-Nom :
- 3.3V
- Moisture Sensitivity Level (MSL) :
- 1 (Unlimited)
- Package / Case :
- 14-SOIC (0.154, 3.90mm Width)
- Pin Count :
- 14
- Mount :
- Surface Mount
- Datasheets
- DS90LV019TM

Drivers, Receivers, Transceivers Texas Instruments DS90LV019TM Overview
The Texas Instruments DS90LV019TM is a robust full-duplex transceiver designed to facilitate reliable, high-speed data transmission and reception in a diverse range of digital communication applications. This advanced component is housed in a 14-SOIC package, making it ideal for compact system designs. Its ability to operate over a broad voltage range and integrate protection against electrostatic discharge enhances its utility in industrial environments. As part of the Drivers, Receivers, Transceivers category, this product offers optimal reliability and performance, ensuring the efficient management of data interfaces in technology-heavy settings.
DS90LV019TM Features
- Full-duplex transceiver functionality, allowing simultaneous two-way data transmission.
- High-speed operation with minimal propagation delay, supporting critical timing requirements.
- Low-voltage differential signaling (LVDS) technology for reduced power consumption and decreased electromagnetic interference.
- Built-in electrostatic discharge (ESD) protection to withstand industrial environments.
- Compact 14-SOIC packaging suitable for space-constrained applications.
DS90LV019TM Applications
- Point-of-Sale Systems: Integrates into retail hardware to ensure rapid and secure data transmission between terminals and central systems.
- Telecommunications Equipment: Used in telecommunication infrastructures to provide reliable, high-speed data communication across various network components.
- Industrial Automation: Facilitates robust data exchange in automated manufacturing lines, enhancing system responsiveness and efficiency.
- Networking Equipment: Essential for routers and switches, enabling high bandwidth and low latency data handling for improved network performance.
- Medical Imaging Devices: Supports the critical requirements for speed and accuracy in data transmission within complex medical imaging systems.
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