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ARM Cortex Computing Platform



  • NXP i.MX7 Cortex-A7 Solo 800Mhz and Dual Core 1GHz
  • 1GB (Dual) or 512MB (Solo) DDR3L, 8GB eMMC Flash, 1x SDIO
  • 24-bit dual-channeled LVDS up to 1080p
  • 2 x GBE LAN w/AVB
  • 2 x CAN, 4 x UART, 5 x I2C, 1 x I2S, 1 x PCIe (Dual only), 12 x GPIOs, 2 x SPI, 2-LANE Serial Camera Interface

Possible Applications

  • Building Automation
  • Enterprise Scanners and Printers
  • Smart Grid and Smart Metering
  • HMI Control / Security
  • IOT solutions
  • Smart Home Controls
  • Healthcare/Patient Monitoring
  • General Control Systems
  • Automotive Communication Systems
  • Access Control Panels
  • HVAC Control System

SMARC LOGOFreescale LOGOYocto Project LOGO
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The SMARC-FiMX7 is a versatile small form factor Computer-On-Module with Qualcomm/NXP i.MX7 processor and offers scalability with single and dual core processors. The dual core ARM Cortex-A7 runs a peak frequency of 1GHz, while the single core ARM Cortex-M4 has a peak frequency of 200MHz. The single core Cortex-A7 has a peak frequency of 800MHz, while the single core Cortex-M4 runs at 200MHz. Both the SoCs support asymmetric or heterogeneous multi-core processing, in which the real time applications can run on the Cortex-M4, while the user applications are taken care by Cortex-A7. SMARC-FiMX7 is also the first SMARC 2.0 specification compliant module from Embedian.
SMARC-FiMX7 supports SMARC 2.0 standards.

Technical Information
Part Number
SMARC-FiMX7 part number
  • 1: S (Solo Core running up to 800Mhz and 512MB DDR3L memory)
         D (Dual Core running up to 1GHz and 1GB DDR3L memory)
Note: SMARC-FiMX7 supports 1.8V (SMARC 2.0) VDDIO.

Example: SMARC-FiMX7-D: Dual Core SMARC-FiMX7 module with 1GB DDR3L.

SMARC 2.0 Compliant

Dimension (W x L)
82mm x 50mm

NXP (Freescale) i.MX 7

Solo or Dual Core

1GHz (Dual Core) or 800Mhz (Solo Core)

Main Memory
1GB DDRL (Dual Core)

512MB DDR3 (Solo Core)

8GB eMMC (5.x) onboard

4MB SPI NOR Flash onboard

AT24C32 EEPROM onboard

Graphic Controller
ePxP (Enhanced PiXel Processing engine to offloading key pixel processing)

Up to 1080p full HD resolutions

Display Interfaces
Single channel 24 bit LVDS LCD or dual channel 24-bit LVDS LCD
  • Panel support signals (I2C, Power Enables, PWM)
  • 2nd LVDS channel is defined on SMARC 2.0 interface

MIPI/Serial Camera Interfaces
Serial configuration: CSI (2-lanes)

SDIO Interfaces
One SDIO interfaces
  • 4 bit SDIO card interface with support lines
  • 8 bit eMMC interface with support lines

SPI Interfaces
Two SPI interfaces with 2 chip selects on each SPI channel

I2S Interfaces
One I2S interface
  • Typically used for connection to I2S audio CODECs

I2C Interfaces
Four I2C interfaces
  • Power Management
  • General Purpose
  • Camera
  • LCD Display ID

Asynchronous Serial Port (UART) Interfaces
Four asynchronous serial ports

Two with 4 wire handshake (RXD, TXD, RTS#, CTS#)

Two with data only (RXD, TXD)

Logic level signals

CAN Bus Interfaces
Two CAN bus interfaces
  • Logic level signals from Module based CAN bus protocol controllers
  • RXD, TXD only
  • Two Module GPIOs are designated for optional use as CAN bus error status inputs

USB Interfaces
Two USB OTG 2.0 Ports with PHY (Only one port with PHY for Solo Core)

USB support signals (VBUS enable / Over-current detects, OTG support signals)

PCI Express (Dual Core only)
One PCIe x 1 link

PCIe Gen2.1

Reference Clock Pair

Could be configured as PCIe target

Common PCIe wake signal

Gigabit Ethernet (with AVB)
Two analog GBE MDI interface for Dual Core and One analog GBE MDI interface for Solo Core (Qualcomm Atheros AR8035 PHY onboard)

No magnetics on Module

LED support signals

CTREF (center tap reference voltage) for Carrier magnetic

Watchdog Timer Interfaces

Real-Time Clock
External Seiko S35390A onboard

General Purpose I/O
Twelve GPIO signals

Specific alternate functions are assigned to some GPIOs

PWM / Tachometer capability

Camera support

CAN Error Signaling

HD Audio reset

System and Power Management Signals
Reset out and Reset in

Power button in

Power source status

Module power state status

System management pins

Battery and battery charger management pins

Carrier Power On control

Power Consumption (Typical)
Solo Core (512MB DDR3L): 0.9W

Dual Core (1GB DDR3L): 1.2W

Boot Source Select
Three pins to allow selection from Carrier Board

Select options to include boot from one of the following:
  • Module SPI (Default)
  • Module eMMC Flash
  • Module Remote Boot (Network Port)
  • Carrier SPI
  • Carrier SD Card

Power Supply
3V to 5.25V:
Operates directly from single level Lithium Ion cells, or fixed 3.3V or 5V power supply

Based on NXP (Freescale) imx4.14.98_2.0.0_ga, imx_4.9.88_2.0.0_ga, imx_v4.9.11_1.0.0_ga or imx_4.1.15_2.0.0_ga

Yocto Project Support

Ubuntu 14.04 and 16.04 LTS or Debian 9 Support

Extended Temperature
Operating Temperature Range: -20o C ~ 80o C

Storage Temperature Range: -40o C ~ 100o C

Junction Temperature Range: -40o C ~ 100o C

Form Factor
SMARC 2.0:
82 mm x 50 mm by SMARC 2.0 Specification

Evaluation Baseboard (EVK-STD-CARRIER-S20)
12V~24V Power input with 2.5mm DC Jack connector

3.5mm Audio Jack (SGTL5000 Audio Codec on Carrier)

RTC backup battery holder


LVDS, Display Port (DP)) and HDMI connector

2 x 10/100/1000Mbps RJ-45 connector

2 x RS232/422/485 DSUB9 connector, 2 x RS232 2.0mm Header

2 x USB host 2.0 type A connectors, 2 x USB host 3.0 type A connectors, 1 x mini USB client connector

1 x PCIex4 connector, 2 x mini PCIe connector

2 x CAN BUS header, 1 x 2x7-pin GPIO header, Audio Mic. in and Speaker out Audio Jack

2 x I2C header (for capacitive touch), 4 x SPI header, 1 Camera/MIPI header

1 x SDHC connector

A single 4KB EEPROM is provided on I2C0 that holds the board information. This information includes board name, serial number, and revision information.

1 x external watchdog reset

jumpers for LCD 3.3V or 5V voltage, boot selection, RS232 or RS485 selection

Form factor: 170mm (L) x 170mm (W) (mini-ITX form factor)

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