
Texas Instruments
SN65LVDS387DGG
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SN65LVDS387DGG Description
SN65LVDS387DGG Description
The SN65LVDS387DGG from Texas Instruments is a high-performance 16-channel LVDS driver designed for robust signal transmission in demanding applications. Housed in a 64-pin TSSOP package, this surface-mount IC operates within a 3V to 3.6V supply range, delivering a data rate of up to 630Mbps per channel. It complies with LVDS (Low-Voltage Differential Signaling) standards, ensuring low power consumption, reduced EMI, and high noise immunity. The device is ROHS3 compliant, adheres to ECCN 5A991B1, and has a Moisture Sensitivity Level (MSL) of 2 (1 Year), making it suitable for industrial and commercial environments.
SN65LVDS387DGG Features
- 16-channel LVDS driver with 0 receivers, optimized for unidirectional data transmission.
- High-speed performance: Supports 630Mbps data rates, ideal for high-bandwidth applications.
- Low power operation: Leverages LVDS technology for reduced power dissipation compared to single-ended signaling.
- Robust construction: 3V–3.6V supply range ensures compatibility with modern low-voltage systems.
- Enhanced signal integrity: Differential signaling minimizes EMI and crosstalk, critical for high-speed designs.
- Industrial-grade reliability: REACH unaffected, MSL 2 rated, and RoHS3 compliant for stringent environmental compliance.
SN65LVDS387DGG Applications
- High-speed data transmission: Ideal for backplane routing, telecom infrastructure, and data center equipment.
- Display interfaces: Suitable for LCD/OLED drivers, digital signage, and video distribution systems.
- Industrial automation: Used in PLC communications, motor control systems, and sensor networks requiring noise immunity.
- Automotive electronics: Supports ADAS (Advanced Driver Assistance Systems) and infotainment systems due to its robust signaling.
- Medical imaging: Ensures reliable data transfer in ultrasound machines and MRI systems.
Conclusion of SN65LVDS387DGG
The SN65LVDS387DGG stands out as a high-speed, low-power LVDS driver with 16 channels, making it a superior choice for applications demanding reliable differential signaling. Its industrial-grade durability, low EMI, and compliance with environmental standards position it as a versatile solution for telecom, automotive, and medical electronics. Engineers seeking high-performance signal integrity in space-constrained designs will find this IC exceptionally effective.



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