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Computer Vision System-on-Module (SoM)

Overview

Description

Computer vision System-on-Modules (SoMs) are essential for advanced vision applications, enabling features like facial recognition, behavior analysis, and real-time monitoring. These are crucial for applications such as smart cameras, security systems, mobile mesh networks, and embedded computers. Generating digital metadata from the acquisition, processing, analysis, and understanding of visuals requires a high-performance MPU with artificial intelligence (AI) capabilities.

This SoM from Renesas allows designers to manage critical decision processes for computer vision systems. Unlike a single-board computer, a SoM serves a specialized function, keeping baseboard costs low and simplifying the enhancement of embedded computer applications.

System Benefits:

  • High-performance dual-core Arm® Cortex®-A53 MPU provides significant computational power for complex image processing.
  • Dedicated high-speed hardware AI inference (DRP-AI) allows for faster processing speeds compared to traditional CPU-based processing.
  • SMARC 2.1 compliant design ensures easy integration with other SMARC-compliant components and carrier boards.

Comparison

Applications

  • Vision applications
  • Smart camera sensor
  • Embedded mobile mesh networks
  • Scalable industrial embedded computers

Winning Combinations Interactive Diagram

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4:3 ratio Sheet.1 Sheet.2 Sheet.3 Sheet.4 EU092 EU092 EU092 12S 12S 12S I2C I2C I2C SERO-3 SERO-3 SERO-3 SDIO SDIO SDIO I2C GP I2C GP I2C GP I2C PM I2C PM I2C PM SPIO SPIO SPIO GPIO (0:11) GPIO (0:11) GPIO (0:11) USB (3.1) USB (3.1) USB (3.1) GMII/MII GMII/MII GMII/MII JTAG JTAG JTAG PCIe PCIe PCIe eMMC eMMC eMMC LPDDR4 LPDDR4 LPDDR4 Sheet.30 Sheet.31 Sheet.32 Sheet.33 Sheet.34 Sheet.35 Sheet.36 Sheet.37 Sheet.38 Sheet.39 Sheet.40 Sheet.41 Sheet.42 Sheet.43 Sheet.44 Sheet.45 Sheet.46 Sheet.47 Sheet.48 Sheet.49 Sheet.50 Sheet.51 Sheet.52 Sheet.53 Sheet.54 Sheet.55 Sheet.56 Sheet.57 Sheet.58 Sheet.59 Sheet.60 Sheet.61 Sheet.62 Sheet.63 Sheet.64 Sheet.65 Sheet.66 Sheet.67 Sheet.68 Sheet.69 Sheet.70 Sheet.71 Sheet.72 Sheet.73 Sheet.74 Sheet.75 Sheet.76 Sheet.77 Sheet.78 Sheet.79 Sheet.80 Sheet.81 Sheet.82 Sheet.83 Sheet.84 Sheet.85 Sheet.86 Sheet.87 Sheet.88 Sheet.89 Sheet.90 Sheet.91 Sheet.92 Sheet.93 Sheet.94 Sheet.95 Sheet.96 Sheet.97 Sheet.98 Sheet.99 Connector 1.165 Connector 1.165.101 Connector 1.165.102 Connector 1.165.103 Connector 1.165.104 Connector 1.165.105 Connector 1.165.106 Connector 1.165.107 Connector 1.165.108 Connector 1.165.109 Connector 1.165.110 Connector 1.165.111 Connector 1.165.112 Connector 1.165.113 Connector 1.165.114 Connector 1.165.115 Connector 1.165.116 Connector 1.165.117 Connector 1.165.118 Input Input.120 Input.121 Input.122 Input.123 Input.124 Input.125 Input.126 Input.127 0.8V, Timing 1 0.8V, Timing 1 0.8V, Timing 1 1.1V, Timing 1 1.1V, Timing 1 1.1V, Timing 1 1.8V, Timing 1 1.8V, Timing 1 1.8V, Timing 1 0.8V, Timing 2 0.8V, Timing 2 0.8V, Timing 2 1.8V, Timing 3 1.8V, Timing 3 1.8V, Timing 3 3.3V, Timing 4 3.3V, Timing 4 3.3V, Timing 4 0.8V, Timing 5 0.8V, Timing 5 0.8V, Timing 5 2.5V 2.5V 2.5V 1.0V 1.0V 1.0V 5.0VIN 5.0VIN 5.0VIN Input.138 GbE0.1 GbE0.1 GbE0.1 I2C I2C I2C eMMC eMMC eMMC LPDDR4 LPDDR4 LPDDR4 JTAG JTAG JTAG GMII/MII GMII/MII GMII/MII Supplied trough SMARC 2.1 Connector Supplied trough SMARC 2.1 Connector Supplied troughSMARC 2.1 Connector PCIe PCIe PCIe USB (3.1) USB (3.1) USB (3.1) Sheet.162 Sheet.163 Sheet.164 Sheet.165 Sheet.166 Sheet.167 Sheet.168 Sheet.169 Sheet.170 SPI SPI SPI QSPI QSPI QSPI SDIO SDIO SDIO I2C I2C I2C 12S 12S 12S SERO-3 SERO-3 SERO-3 GPIO (0:11) GPIO (0:11) GPIO (0:11) Sheet.180 Sheet.181 Sheet.182 Sheet.183 Sheet.184 Sheet.185 Sheet.186 PMIC PMIC PMIC MPU MPU MPU LDO LDO LDO GbE PHY GbE PHY GbE PHY JTAG JTAG JTAG LPDDR4 LPDDR4 LPDDR4 eMMC eMMC eMMC VersaClock VersaClock VersaClock SMARC 2.1 connector SMARC 2.1 connector SMARC 2.1 connector
Exiting Interactive Block Diagram