NXP Semiconductors MIMXRT1064 Hardware User's Manual

NXP Semiconductors MIMXRT1064 Hardware User's Manual

Evk board
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NXP Semiconductors
User's Guide
MIMXRT1064 EVK Board Hardware User's
Guide

1. Introduction

This document is a Hardware User's Guide for the
MIMXRT1064 Evaluation Kit (EVK) based on the NXP
Semiconductor i.MX RT1064 Processor. This board is
fully supported by NXP Semiconductor. This manual
includes system setup and debugging, and provides
detailed information on the overall design and usage of
the EVK board from a hardware systems perspective.

1.1. Board overview

This EVK board is a platform designed to showcase the
most commonly used features of the i.MX RT1064
Processor in a small, low cost package. The
MIMXRT1064 EVK board is an entry level
development board, which gives the developer the option
of becoming familiar with the processor before investing
a large amount or resources in more specific designs.
© 2018 NXP B.V.
Document Number: MIMXRT1064EVKHUG
1.
Introduction ........................................................................ 1
1.1.
Board overview ....................................................... 1
1.2.
MIMXRT1064 EVK vontents ................................. 3
1.3.
2.
Specifications ..................................................................... 3
2.1.
i.MX RT1064 processor .......................................... 5
2.2.
Boot mode configurations ....................................... 6
2.3.
Power tree ................................................................ 6
2.4.
SDRAM memory .................................................... 9
2.5.
SD card slot ............................................................. 9
2.6.
Hyper flash .............................................................. 9
2.7.
QSPI flash ............................................................... 9
2.8.
Ethernet connector ................................................. 10
2.9.
USB PHY connector.............................................. 10
2.10.
Audio input / output connector .............................. 10
2.11.
OpenSDA circuit (DAP-link) ................................ 10
2.12.
JTAG connector .................................................... 10
2.13.
Arduino expansion port ......................................... 11
2.14.
Camera module connector ..................................... 12
2.15.
User interface switch ............................................. 12
2.16.
Power switch ......................................................... 13
2.17.
ON/OFF button...................................................... 13
2.18.
Reset button ........................................................... 13
2.19.
USER button ......................................................... 13
2.20.
Sensor .................................................................... 13
2.21.
User interface LED indicator ................................. 13
2.22.
LCD interface ........................................................ 14
3.
PCB information ............................................................... 14
4.
EVK design files............................................................... 14
5.
Contents of the evaluation kit ........................................... 15
6.
Revision history ................................................................ 15
Rev. 0 , 10/2018
Contents

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Summary of Contents for NXP Semiconductors MIMXRT1064

  • Page 1: Table Of Contents

    MIMXRT1064 EVK board revision history .... 3 This document is a Hardware User’s Guide for the Specifications ..............3 MIMXRT1064 Evaluation Kit (EVK) based on the NXP 2.1. i.MX RT1064 processor .......... 5 Semiconductor i.MX RT1064 Processor. This board is 2.2.
  • Page 2 User Interface Button ON/OFF, POR Reset, Reset, USER Button Led Indicator Power Status, Reset, OpenSDA, USER LED Expansion Port Arduino Interface 3.937-inch x 5.9055-inch (10cm x 15cm), 4-layer board MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 3: Mimxrt1064 Evk Vontents

    EVK Board, and is organized to discuss each block in the following block diagram of the EVK board. Figure 1. Block diagram The overview of the MIMXRT1064 EVK Board is shown in Figure 1 & Figure MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 4 Specifications Figure 2. Overview of the MIMXRT1064 EVK Board (Front side) MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 5: I.mx Rt1064 Processor

    WLAN, Bluetooth™, GPS, camera sensors, and multiple displays. The more detail information about i.MX RT1064 can be found in the Datasheet and Reference Manual documents. MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 6: Boot Mode Configurations

    2.3. Power tree A DC 5V external power supply is used to supply the MIMXRT1064 EVK Board at J2, and a slide switch SW1 is used to turn the Power ON/OFF. J41 and J9 also can be used to supply the EVK Board.
  • Page 7 Specifications Figure 4. Power Tree The power control logic of the MIMXRT1064 EVK board is shown in the following figure: • It will power up SNVS firstly, then PMIC_REQ_ON will be switched on to enable external DC/DC to power up other power domains.
  • Page 8 Power for USB VBUS USB_OTG2_VBUS VDDA_ADC Power for 12-bit ADC Power for GPIO in SDIO1 bank (3.3V mode) NVCC_SD0 Power for GPIO in SDIO1 bank 1.65 1.95 (1.8V mode) MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 9: Sdram Memory

    2.5. SD card slot There is a SD card slot(J39) on the MIMXRT1064 EVK Board.J39 is the Micro SD slot for USDHC1 interface. If the developer wants to boot from the SD Card, the boot device switch (SW7) settings should be: ON, OFF, ON, OFF, as shown in Table 3.
  • Page 10: Ethernet Connector

    COM communication interface while allowing code debugging via CMSIS-DAP with just single USB connection. For the MIMXRT1064 EVK Board, J41 is the connector between the USB host and the target processor. Jumper to serial downloader mode to use stable DAP-Link debugger function. If developer wants to make OpenSDA going to the bootloader mode, J43 should jumper to 1-2, and press SW4 when power on.
  • Page 11: Arduino Expansion Port

    J22 – J25 is defined as Arduino Interface. The pin definitions of Arduino Interface are shown in Table Table 6. Arduino Interface pin definitions UART_RX/D0 A0/ADC0 UART_TX/D1 A1/ADC1 D2/INT0 A2/ADC2 D3/INT1/PWM/OC2B A3/ADC3 D4/T0/XCK A4/ADC4/SDA D5/TI/PWM A5/ADC5/SCL MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 12: Camera Module Connector

    3.3 V supply, but in product design, it is recommended to adjust DCDC output or add level shifter. 2.15. User interface switch There are four user interface switches on the MIMXRT1064 EVK Board. Their functionality is as below. MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018...
  • Page 13: Power Switch

    Specifications 2.16. Power switch SW1 is a slide switch to control the power of the MIMXRT1064 EVK Board when the power supply is from J2. The function of this switch is listed below: • Sliding the switch to the ON position connects the 5V power supply to the Evaluation board main power system.
  • Page 14: Lcd Interface

    FPC cables. The LCD interface can be connected to J8(A1-A40) and the CPT interface can be connected to J8(B1-B6). LCD modules can be purchased from the NXP website. 3. PCB information The MIMXRT1064 EVK Board is made using standard 4-layer technology. The material used was FR- 4. The PCB stack-up information is shown in Table Table 7.
  • Page 15: Contents Of The Evaluation Kit

    6. Revision history Table 9 summarizes the changes made to this document since the initial release. Table 9. Revision history Revision number Date Substantive changes 10/2018 Initial release MIMXRT1064 EVK Board Hardware User’s Guide, User's Guide, Rev. 0, 10/2018 NXP Semiconductors...
  • Page 16 Information in this document is provided solely to enable system and software implementers to use NXP products. There are no express or implied copyright licenses granted hereunder to design or fabricate any integrated circuits based on the information in this document. NXP reserves the right to make changes without further notice to any products herein.

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