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April 3, 2013 /PRNewswire/ -- Texas Instruments Incorporated (TI) (NASDAQ: TXN) today introduced the industry's first image sensor receiver IC to serve as a dedicated LVDS bridge between image sensors and processors. Compared to existing FPGA-based solutions, the SN65LVDS324 lowers the bill-of-materials (BOM) by 20 percent, reduces system power consumption by more than 10 percent and shrinks package size by 50 percent. It provides full HD, 1080p60 image quality in a host of video capture applications, including surveillance IP cameras and video conferencing systems, as well as industrial, consumer and professional video recording equipment. For more information and to order samples, visit
Key features and benefits of the SN65LVDS324
Optimized solution for sensor-to-processor interface: As a dedicated bridge for video streams between HD image sensors and processors, the SN65LVDS324 lowers BOM costs by up to 20 percent compared to existing FPGA-based solutions.
Dedicated sensor-to-processor interface: In 1080p60 system implementations, the SN65LVDS324 typically consumes less than 150 mW, reducing system power consumption by more than 10 percent versus current FPGA solutions.
Smallest package size: Dedicated function provides a 50-percent smaller package than current FPGAs.
Excellent video resolution: Supports a wide range of resolutions and frame rates, up to 1080p60-full-HD to maximize system performance.
The SN65LVDS324 is an extension of TI's popular FlatLink™ and FlatLink™3G serial interface technology, which reduces the number of signal lines used for synchronous parallel data bus structures with no loss in data throughput. It is also optimized to work with a variety of processors, including TI's OMAP™ and DaVinci™ processors for video applications.
Availability, packaging and pricing
The SN65LVDS324 is available in a 4.5-mm by 7-mm, 59-ball PBGA (ZQL) package. Suggested retail pricing in 1000-unit quantities is
Learn more about TI's FlatLink 3G portfolio by visiting the links below:
Follow what TI signal chain experts have to say on our blog: Analog Wire.
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