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  • AM263Px Control Card Evaluation Module

    • SPRUJ86C October   2023  – August 2024 AM263P2 , AM263P4 , AM263P4-Q1

       

  • CONTENTS
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  • AM263Px Control Card Evaluation Module
  1.   1
  2.   Description
  3.   Features
  4.   4
  5. 1Evaluation Module Overview
    1. 1.1 Introduction
      1.      Preface: Read This First
        1. 1.1.1.1 Sitara MCU+ Academy
        2. 1.1.1.2 Important Usage Notes
    2. 1.2 Kit Contents
    3. 1.3 Device Information
      1. 1.3.1 HSEC 180-pin Control Card Docking Station
      2. 1.3.2 Security
  6. 2Hardware
    1. 2.1  Component Identification
    2. 2.2  Power Requirements
      1. 2.2.1 Power Input Using USB Type-C Connector
      2. 2.2.2 Power Status LEDs
      3. 2.2.3 Power Tree
      4. 2.2.4 Power Sequence
      5. 2.2.5 PMIC
    3. 2.3  Functional Block Diagram
    4. 2.4  Reset
    5. 2.5  Clock
    6. 2.6  Boot Mode Selection
    7. 2.7  JTAG Path Selection
    8. 2.8  Header Information
    9. 2.9  GPIO Mapping
    10. 2.10 Push Buttons
    11. 2.11 Interfaces
      1. 2.11.1  Memory Interface
        1. 2.11.1.1 OSPI/QSPI
        2. 2.11.1.2 Board ID EEPROM
      2. 2.11.2  Ethernet Interface
        1. 2.11.2.1 Control Card Ethernet Routing
        2. 2.11.2.2 On Board Ethernet PHY
        3. 2.11.2.3 LED Indication in RJ45 Connector
        4. 2.11.2.4 Ethernet Add On Board Connector
      3. 2.11.3  I2C
      4. 2.11.4  Industrial Application LEDs
      5. 2.11.5  SPI
      6. 2.11.6  UART
      7. 2.11.7  MCAN
      8. 2.11.8  FSI
      9. 2.11.9  JTAG
      10. 2.11.10 Test Automation Header
      11. 2.11.11 LIN
      12. 2.11.12 MMC
      13. 2.11.13 ADC and DAC
    12. 2.12 HSEC Pinout and Pinmux Mapping
  7. 3Hardware Design Files
  8. 4Additional Information
    1. 4.1 If You Need Assistance
    2. 4.2 Trademarks
  9. 5Related Documentation
    1. 5.1 Supplemental Content
      1.      5.1.A E1 Board Modifications
      2.      5.1.B E2 Design Changes
      3.      5.1.C A Design Changes
  10. 6References
    1. 6.1 Reference Documents
    2. 6.2 Other TI Components Used in This Design
  11. 7Revision History
  12. 8Revision History
  13. IMPORTANT NOTICE
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EVM User's Guide

AM263Px Control Card Evaluation Module

Description

The AM263Px Control Card Evaluation Module (EVM) is an evaluation and development board for the Texas Instruments Sitara™ AM263Px series of microcontrollers (MCUs). This EVM provides an easy way to start developing on the AM263Px MCUs with on-board emulation for programming and debugging as well as buttons and LED for a simple user interface. The control card also enables header pin access to key signals through the use of a high speed edge connector (HSEC) baseboard docking station for rapid prototyping.

Features

  • Powered through 5V, 3A USB Type-C® input
  • Multirail power supply designed for safety-relevant applications
  • One RJ45 Ethernet ports with on-board Industrial Ethernet PHY
  • Additional Ethernet add-on board connector for an automotive or industrial Ethernet PHY
  • On-board XDS110 debug probe
  • 180 pin HSEC interface for rapid prototyping
  • Three push buttons:
    • PORz
    • User interrupt
    • RESETz
  • LEDs for:
    • Power status
    • User testing
    • Ethernet connection
    • I2C driven array
  • CAN connectivity with on-board CAN transceiver
  • Hardware resolver for accelerated motor position sensing with two additional SAR ADC's
  • Dedicated FSI connector
  • TI test automation header
  • MMC interface to micro SD card connector
  • On-board memory
    • 1 Gb QSPI NAND flash
    • 256 Mb OSPI NOR flash
    • 1 Mb I2C EEPROM

AM263P1, AM263P1-Q1, AM263P2, AM263P2-Q1, AM263P4, AM263P4-Q1

1 Evaluation Module Overview

1.1 Introduction

The AM263Px Control Card was developed to enable easy and rapid prototyping of the AM263Px and all of the peripherals. There are several on-board transceiver and PHYs to enable the many interfaces of the AM263Px SoC (System on a Chip). This user's guide details the design of the EVM and how to properly use each interface. The user's guide also details many important aspects of the board including but not limited to pin header descriptions, test points, and mux/switch signal routing.

 

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