
Single LVDS transceiver for 3.3V or 5.0V operation, featuring a 100Mbps data rate and differential output. This CMOS component offers a 1-bit driver and 1-bit receiver, with differential Schmitt trigger input characteristics. Packaged in an 8-SOIC with gull wing terminals, it supports surface mounting and operates within an industrial temperature range of -40°C to 85°C. Key electrical specifications include a maximum supply voltage of 3.6V and a propagation delay of 12ns.
Texas Instruments DS92LV010ATM technical specifications.
| Package/Case | SOIC |
| Data Rate | 100Mbps |
| Differential Output | Yes |
| Driver Number of Bits | 1 |
| Height | 1.45mm |
| Input Characteristics | DIFFERENTIAL SCHMITT TRIGGER |
| JESD-30 Code | R-PDSO-G8 |
| Lead Free | Contains Lead |
| Length | 4.9mm |
| Logic Function | Transceiver |
| Max Input Current | 20uA |
| Max Operating Temperature | 85°C |
| Min Operating Temperature | -40°C |
| Max Power Dissipation | 1.025W |
| Max Supply Current | 25mA |
| Max Supply Voltage | 3.6V |
| Min Supply Voltage | 3V |
| Moisture Sensitivity Level | 1 |
| Mount | Surface Mount |
| Number of Circuits | 1 |
| Number of Drivers | 1 |
| Number of Elements | 1 |
| Number of Functions | 1 |
| Number of Receivers | 1 |
| Operating Supply Voltage | 3.3V |
| Output Current | 2mA |
| Package Body Material | Plastic |
| Package Quantity | 95 |
| Package Shape | Rectangular |
| Packaging | Rail/Tube |
| Peak Reflow Temperature (Cel) | 235°C |
| Power Consumption | 53W |
| Power Dissipation | 1.025W |
| Propagation Delay | 12ns |
| Reach SVHC Compliant | No |
| Receiver Number of Bits | 1 |
| RoHS Compliant | No |
| Surface Mount | Yes |
| Technology | CMOS |
| Temperature Grade | INDUSTRIAL |
| Terminal Finish | Tin |
| Terminal Form | Gull Wing |
| Terminal Position | DUAL |
| Thickness | 1.58mm |
| Turn-On Delay Time | 5ns |
| Width | 3.9mm |
| RoHS | Not Compliant |
Download the complete datasheet for Texas Instruments DS92LV010ATM to view detailed technical specifications.
This datasheet cannot be embedded due to technical restrictions.