SPRADU4 December   2025 AM67 , AM67A , AM68 , AM68A , AM69 , AM69A , DS90UB933-Q1 , DS90UB934-Q1 , DS90UB935-Q1 , DS90UB936-Q1 , DS90UB953-Q1 , DS90UB954-Q1 , DS90UB960-Q1 , DS90UB962-Q1 , DS90UB9702-Q1 , DS90UB971-Q1 , DS90UB9722-Q1 , TDA4VEN-Q1 , TDA4VH-Q1

 

  1.   1
  2.   Abstract
  3. 1Technical Advantages of TI SoC and FPD-LINK
    1. 1.1 Core Capabilities of TI SoC Processors
    2. 1.2 Features of the FPD-LINK Interface
    3. 1.3 Introduction to K3 DSS and MIPI
  4. 2System Application: A Complete Pipeline from Cameras to Multi-Display Output
    1. 2.1 Multi-Camera Data Acquisition and Transmission
    2. 2.2 Data Processing and Sensor Fusion
    3. 2.3 Multi-Display Output and Interaction
  5. 3Typical Use-Case Scenarios
    1. 3.1 Surround-View Parking Assistance System
    2. 3.2 Integrated Parking and Driving Solution
    3. 3.3 In-Cabin Display Solutions
      1. 3.3.1 MST Solution Reference
      2. 3.3.2 Superframe Solution Reference
      3. 3.3.3 Daisy-Chain Solution Reference
  6. 4SerDes Technology Outlook
  7. 5Conclusion
  8. 6References

Abstract

This document was translated from a simplified Chinese source. (ZHCAG51)

With the rapid advancement of intelligent vehicles, the demands placed on automotive camera and display systems have become increasingly complex. High-resolution cameras, multi-sensor fusion, low-latency video transmission, and multi-screen interaction have emerged as critical technologies for enabling Advanced Driver Assistance Systems (ADAS) and autonomous driving functions. Texas Instruments (TI) offers a highly effective solution portfolio combining its SoC processors and FPD-Link high-speed interface technology, providing a robust hardware and communication foundation for automotive camera data acquisition, processing, and multi-display output.

TI's FPD-Link is a mature high-speed signal interface solution widely adopted in automotive ADAS and In-Vehicle Infotainment (IVI) systems globally. Leveraging serializer/deserializer (SerDes) technology, it converts multiple parallel data streams into a single or dual serial data stream for transmission. This approach enhances the immunity to interference and system robustness of high-speed signals over long distances, supports bidirectional communication between the host and remote devices, and reduces the number of cables required, thereby lowering overall system weight.

TI's SoC processor family, including the TDA4VM, TDA4VH, and AM62x, is built on the Keystone III architecture and integrates Arm® Cortex®-A72 cores, C7x DSP, and deep learning and vision accelerators. These devices are capable of simultaneously processing multiple high-resolution video streams, executing complex vision and AI tasks, and supporting a wide range of display output interfaces (such as DPI/RGB, MIPI DSI, and OLDI/LVDS), along with multiple MIPI CSI camera inputs. With functional safety support up to ASIL-B, they are ideally suited for automotive applications.

The combination of TI's SoC processors and FPD-Link technology delivers a high-performance, highly integrated solution for automotive multi-camera and multi-display systems, including digital cockpits and ADAS. The following sections provide a detailed overview of the primary applications, key advantages, and relevant technical considerations in this domain.