SN65LVDS1DBVR TI LVDS Interface IC
Parameter
Manufacturer |
Texas Instruments |
Product Category |
LVDS Interface IC |
Mounting Style |
SMD/SMT |
Package / Case |
SOT-23-5 |
Supply Voltage - Min |
2.4 V |
Supply Voltage - Max
|
3.6 V |
Series |
SN65LVDS1 |
Minimum Operating Temperature
|
- 40 C
|
Maximum Operating Temperature
|
+ 85 C
|
Packaging
|
Reel / Cut Tape
|
Factory Pack Quantity
|
3000 |
Introduction
The SN65LVDS1DBVR is an integrated circuit (IC) chip developed by Texas Instruments. It is a low-voltage differential signaling (LVDS) driver and receiver designed for high-speed data transmission applications.
The SN65LVDS1DBVR features a differential line driver and receiver, providing reliable and noise-immune data transmission over longer distances. It operates at low voltages, typically between 3V and 3.6V, making it suitable for low-power applications.
With its high-speed capabilities, the SN65LVDS1DBVR supports data rates up to 400 Mbps, enabling fast and efficient data transfer in applications such as video transmission, displays, and high-speed serial communication.
The chip offers low power consumption and a compact SOT-23-6 package, allowing for easy integration into space-constrained designs. It also provides ESD protection and common-mode voltage range, ensuring robust and reliable performance in challenging environments.
Application
The SN65LVDS1DBVR chip is widely used in various industries for high-speed data transmission applications. It serves as a low-voltage differential signaling (LVDS) driver and receiver, making it suitable for applications in consumer electronics, automotive systems, industrial automation, and telecommunications. With its high-speed capabilities of up to 400 Mbps, the SN65LVDS1DBVR enables fast and reliable data transfer. Its low power consumption and compact package allow for integration in space-constrained designs. The chip's robustness, ESD protection, and common-mode voltage range ensure reliable performance in challenging environments. The SN65LVDS1DBVR is a reliable choice for industry applications that require efficient, noise-immune, and high-speed data transmission.