Digi CCIMX6B ConnectCore6 i.MX6 WiFi/Bluetooth User Manual Framemaker Book

Digi International Inc ConnectCore6 i.MX6 WiFi/Bluetooth Framemaker Book

User Manual

ConnectCore 6®
ConnectCore for i.MX6
Hardware Reference Manual
90001394_B
Copyright and Trademarks
© 2014 Digi International Inc. All rights reserved.
Digi, Digi International, the Digi logo, and ConnectCore 6® are trademarks or
registered trademarks in the United States and other countries worldwide. All
other trademarks mentioned in this document are the property of their respective
owners.
Information in this document is subject to change without notice and does not
represent a commitment on the part of Digi International. Digi provides this
document “as is,” without warranty of any kind, expressed or implied, including,
but not limited to, the implied warranties of fitness or merchantability for a
particular purpose. Digi may make improvements and/or changes in this manual
or in the product(s) and/or the program(s) described in this manual at any time.
Contacting Technical Support
Digi International Inc. World Headquarters
11001 Bren Road East Minnetonka, MN 55343
Phone: (866) 765-9885 toll-free U.S.A. & Canada
(801) 765-9885 Worldwide
8:00 am - 5:00 pm (U.S. Mountain Time)
Online Support: www.digi.com/support/eservices
Fax: 952-912-4952
Revision Record
Revision Date (MM/YYYY) Description
A10/ 2014 First release
B01/2015 Updated For WiFi/Bluetooth variant labeling requirements
© 2015 Digi International Inc. iii
ConnectCore for i.MX6 Hardware Reference Manual
Table of Contents
Using this Guide. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
Conventions used in this guide . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
Digi Information. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
Document Updates . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
Contact Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
Additional Resources . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7
About the ConnectCore 6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8
ConnectCore 6 Features and Functionality . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8
IEEE 802.11 a/b/g/n and Bluetooth Features and Functionality. . . . . . . . . . . . . . . . . . . . . . . .9
Module Variants . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .9
Block Diagram of the Freescale i.MX6. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .10
Power Supply Architecture of the ConnectCore 6. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Bootstrap . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .14
Module Pinout of the ConnectCore 6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .15
ConnectCore 6 Pinout Information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
Signal Usage Limitations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .52
Module Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .53
Mechanical specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .53
Specifications for the ConnectCore 6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .55
Environmental Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .55
Moisture Sensitivity and Shelf Life . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 56
Mounting. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .56
Solder Paste . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .56
Solder Paste Print . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .57
Stencil. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 57
Coplanarity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .57
SMT Pick and Place . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .57
SMT Process Parameter Reference. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .57
Reflow Profile Using Seven Zone Oven, SAC 305Lead-Free Solder Paste (Alpha OM-340) . . . . 58
Network Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .59
WLAN Standard: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .59
Frequency Band: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .59
Data Rates: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .59
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Table of Contents
Antenna ports: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .59
Modulation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .60
Security/Interoperability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .61
Frequency Bands . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .61
US, Canada . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .61
Europe. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .61
Australia, New Zealand . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 61
Japan . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .62
Ad-Hoc Mode Channels . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
5GHz HT20 and HT40 channel available: . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Receive Sensitivity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .63
Transmit Power . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .63
Bluetooth . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .63
Electrical Characteristics . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .63
Voltage supplies . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .63
Power Consumption . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 64
Certifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .66
Agency Certifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 66
United States FCC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .66
FCC Notices . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .66
FCC-Approved Antennas . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 67
Antennas Approved for Use with the ConnectCore™ for i.MX6 Wi-Fi Modules . . . . . . . . . .67
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .67
RF Exposure. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .68
Europe (ETSI) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .68
OEM Labeling Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 68
CE Labeling Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .68
Declarations of Conformity. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69
Approved Antennas. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .69
Canada (IC). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .69
Labeling Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69
Transmitters with Detachable Antennas . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 69
Japan . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
© 2014 Digi International Inc. 7
ConnectCore for i.MX6 Hardware Reference Manual
Using this Guide
This guide provides information about the Digi ConnectCore for i.MX6 embedded core module
family.
Conventions used in this guide
This table describes the typographic conventions used in this guide:
Digi Information
Document Updates
Please always check the product specific section on the Digi support website at
www.digiembedded.com/support
for the most current revision of this document.
Contact Information
For more information about your Digi products, or for customer service and technical support,
contact Digi International.
Additional Resources
Refer to the most recent Freescale i.MX6 processor reference manual and related documentation
(available on the Freescale web site at: http://www.freescale.com/imx6) for additional
information.
This convention Is used for
italic
type
Emphasis, new terms, variables, and document titles.
monospaced type
Filenames, pathnames, and code examples.
To contact Digi International by Use
Mail
Digi International
1101 Bren Road East
Minnetonka, MN 55343
U.S.A.
World Wide Web http://www.digiembedded.com/support/
Telephone (U.S.) (952) 912-3444 or (877) 912-3444
Telephone (other locations) +1 (952) 912-3444 or (877) 912-3444
© 2014 Digi International Inc. 8
ConnectCore for i.MX6 Hardware Reference Manual
About the ConnectCore 6
The ConnectCore 6 is an ultra-compact and highly integrated system-on-module solution based
on the Freescale i.MX6 Cortex-A9 processor family.
With processor speeds up to 1.2 GHz and fully interchangeable single-/dual-/quad-core variants,
the ConnectCore 6 offers a truly future-proof platform solution with scalable performance and
pre-certified wireless 802.11a/b/g/n and Bluetooth 4.0, including Bluetooth Low Energy
connectivity.
Its innovative and scalable design maximizes integration flexibility and significantly reduces
design risk in a highly cost-effective, reliable, low-profile surface mount form factor with optimal
thermal management even in the most demanding quad-core system configurations.
Seamless Cloud Connector integration as part of the Digi Linux and Android software platform
support offers secure remote management and web services capabilities through the scalable
Device Cloud™ by Etherios™.
In addition, Digi offers complete professional Etherios custom hardware and wireless design
services as well as end-to-end solutions services for cloud integration and app development.
ConnectCore 6 Features and Functionality
The ConnectCore for i.MX6 module is based on the i.MX6 processor from Freescale. This
processor offers a high number of interfaces. Most of these interfaces are multiplexed and are
not available simultaneously. The module has the following features:
i.MX6 single/dual/quad ARM Cortex-A9 cores operating at speeds up to 1.2GHz.
32Kbytes L1 Instruction cache
32Kbytes L1 Data cache
Up to 1MB unified Instruction/Data L2 cache
NEON MPE (Media Processing Engine) co-processor
Graphical Hardware accelerators:
IPU (Image Processing Unit)
Optional VPU (Video Processing Unit)
Optional 2D/3D GPU (Graphics Processing Unit)
64-bit DDR3-1066 memory interface with a density up to 2GBytes.
8-bit eMMC support up to revision 4.4/4.41
Dialog DA9063 Power Management IC (PMIC)
6x DC/DC buck converters
11x LDO regulators
RTC with rechargeable coin cell battery support
10-bit ADC channels
GPIO pins
Optional IEEE802.11a/b/g/n WLAN interface with spatial diversity support.
SoftAP (Software Access Point) support
Optional Bluetooth 4.0 dual mode
Optional Cortex-M0+/Cortex-M4 MCA (Microcontroller Assist) subsystem
• Debug interfaces:
Standard JTAG controller IEEE 1149.1
© 2014 Digi International Inc. 9
ConnectCore for i.MX6 Hardware Reference Manual
ETM/ETB support
Support of i.MX6 typical interfaces:
16/32-bit data/address bus
SATA II, 3.0Gbps (24-bit parallel bus, LVDS, HDMI, MIPI/DSI)
Cameras (20-bit parallel bus, MIPI/CSI)
MMC/SD/SDIO
1x USB OTG with integrated PHY
3x USB Host
1x Host with integrated PHY
2x Host with integrated HS-IC USB PHY
PCI Express Gen 2.0 lane
Gigabit Ethernet MAC
10/100M Ethernet MAC
UART, SPI, I2C, PWM, CAN, I2S and GPIO
Ultra-miniature SMT module (50x50mmx5mm) based on 400-LGA pads
IEEE 802.11 a/b/g/n and Bluetooth Features and Functionality
The RF interface of the ConnectCore for i.MX6 is handled by a Qualcomm-Atheros module
capable of 2.4 GHz and 5 GHz connections using 802.11 a/b/g/n and Bluetooth 4.0 (Dual mode
with Blueooth Low Energy support).
The module is built with coexistence in mind and handles the BT coexistence internally. Cellular
coexistence filtering is onboard to aid in designing systems susceptible to cellular interference.
Module Variants
The ConnectCore for i.MX6 module supports population options such as network interface
(Wi-Fi), memory (flash, RAM), MCU-assist, processor (single, dual and quad-cores), and others.
© 2014 Digi International Inc. 10
ConnectCore for i.MX6 Hardware Reference Manual
Block Diagram of the Freescale i.MX6
The figure below shows the block diagram of the Freescale i.MX6 application processor. Not all
functions are available on all processor variants.
Block diagram of the ConnectCore 6 CPU
The following figure below provides a high-level block diagram of the ConnectCore for i.MX6
module.
© 2014 Digi International Inc. 11
ConnectCore for i.MX6 Hardware Reference Manual
Block diagram of ConnectCore 6
Power Supply Architecture of the ConnectCore 6
The ConnectCore for i.MX6 provides a primary 5V power supply input. This supply is the main
power domain to the on-module Dialog DA9063 power management IC (PMIC), which generates
all required supply voltages for the module components as well as the carrier board.
The module provides support for a backup battery (coin-cell or super cap) powering the real-
time clock (RTC) on the module. In addition, rechargeable backup batteries (ML414, others) are
also supported.
The PMIC generates the following power domains that are available on the module pads:
• 3.3V (GEN_3V3)
Note: The maximum current consumption mentioned above is a combination of the current
consumed by the module and by the carrier board.
Moreover, 5x PMIC LDO outputs are also available on the module pads:
• VLDO3
• VLDO4
• VLDO6
• VLDO7
• VLDO8
Power
domain
Regulator
type
Output
accuracy
Maximum
current
Dropout voltage
(MAX)
Turn on time
(MAX)
Turn off
time
(MAX)
Quiescent
current in
OFF mode
(TYP)
3.3V DC/DC +/-3% 1500mA - 1µA 1.2ms -
© 2014 Digi International Inc. 12
ConnectCore for i.MX6 Hardware Reference Manual
The table below provides the characteristics of the optional LDO outputs:
Note:
For information about using the LDOs options, please contact Digi.
VLDO3 is used for supplying MCA processor on the module.
The power management IC located on the module is responsible for generating all required
i.MX6 processor supply voltages. The following i.MX6x supplies are available on the module
pads:
• NVCC_ENET
• NVCC_EIM
• NVCC_LCD
• NVCC_CSI
• NVCC_RGMII
Some of the I/O supplies are set on the module. See the table following table:
The remaining I/O voltages must be set externally and are left open on the ConnectCore for
i.MX6 module. See the following table for operating ranges of the remaining I/O supplies.
LDO Output
voltage
Output
accuracy
Default
voltage
Maximum
current
Dropout voltage
(MAX)
Turn on time
(MAX)
Turn
off
time
(MAX)
Quiescent
current in
OFF mode
(TYP)
VLDO3 0.9-3.44V +/-3% 3.3V 200mA 150mV 1µA 300µs 1ms
VLDO4 0.9-3.44V +/-3% 3.3V 200mA 150mV 1µA 300µs 1ms
VLDO6 0.9-3.6V +/-3% 3.3V 200mA 150mV 1µA 200µs 1ms
VLDO7 0.9-3.6V +/-3% 1.8V 200mA 150mV 1µA 300µs 1ms
VLDO8 0.9-3.6V +/-3% 3.3V 200mA 150mV 1µA 300µs 1ms
Power domain Connection
NVCC_GPIO GEN_3V3
NVCC_JTAG GEN_3V3
NVCC_NANDF GEN_3V3
NVCC_SD1 GEN_3V3
NVCC_SD2 GEN_3V3
NVCC_SD3 GEN_3V3
Power domain Min Type Max
NVCC_ENET 1.65V 1.8V 3.6V
NVCC_EIM 2.8V
NVCC_LCD 3.3V
NVCC_CSI -
NVCC_RGMII in HSIC 1.2V mode 1.15V - 1.30V
NVCC_RGMII in RGMII 1.5V mode 1.43V - 1.58V
NVCC_ 1.8V mode 1.70V - 1.90V
NVCC_RGMII in RGMII 2.5V mode 2.25V - 2.625V
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ConnectCore for i.MX6 Hardware Reference Manual
As shown in the table above, the supplies have a wide operating range. In order to provide the
most cost-effective and flexible solution for a given use-case, the supplies listed in the table need
to be provided by the carrier board integrating the ConnectCore for i.MX6 module. However,
PMIC power domains 3.3V - and LDO3/4/6/7/8 options - are dedicated power sources for
supplying i.MX6 power domains.
The MCU - assist specific power domain (LDO3_MCA) available on the ConnectCore for i.MX6
LGA pads is a power supply output powering the on-module Kinetis processor.
The following diagram outlines the power supply approach of the ConnectCore for i.MX6. Inputs
are marked red, blue marks outputs.
ConnectCore 6 power supply diagram
© 2014 Digi International Inc. 14
ConnectCore for i.MX6 Hardware Reference Manual
Bootstrap
The ConnectCore 6 is configured by default to boot in “Internal boot” mode. See the following
table:
Note:
10K pull-up populated on BOOT_MODE1
10K pull-down populated on BOOT_MODE0
By default, the boot media configured on the ConnectCore for i.MX6 module is the on-module
eMMC. This is achieved by having the following resistors populated on the module:
10K pull-down on EIM_DA4 (BOOT_CFG1[4])
10K pull-up on EIM_DA5 (BOOT_CFG1[5])
10K pull-up on EIM_DA5 (BOOT_CFG1[6])
10K pull-up on EIM_DA7 (BOOT_CFG1[7]
10K pull-down on EIM_DA11 (BOOT_CFG2[3])
10K pull-up on EIM_DA12 (BOOT_CFG2[4])
When selecting “Internal Boot”, bootstrap pins shall be protected to insure a proper boot
process. “Internal Boot” has the benefit that multiple boot media can be supported. For mass
production, Digi recommends to use “Boot from fuses” for more security.
BOOT_MODE [1:0] Boot type
00 Boot from fuses
01 Serial Downloader
10 Internal Boot (default)
11 Reserved
© 2014 Digi International Inc. 15
ConnectCore for i.MX6 Hardware Reference Manual
Module Pinout of the ConnectCore 6
The module has a LGA pad structure based on 400 pads. See the following diagram for the
general layout.
ConnectCore top view module pinout
© 2014 Digi International Inc. 16
ConnectCore for i.MX6 Hardware Reference Manual
ConnectCore 6 Pinout Information
The following table provides pinout information of the ConnectCore for i.MX6 module.
Additional timing and electrical information can be found in either Freescale i.MX6 processor
datasheet (www.freescale.com) or in Dialog DA9063 product datasheet (www.dialog-
semiconductor.com).
LGA pad Pad name Multiplexing IO type Comments
A5 CSI0_MCLK
ALT0: IPU1_CSI0_HSYNC
ALT1:
ALT2:
ALT3: CCM_CLKO1
ALT4:
ALT5: GPIO5_IO19
ALT6:
ALT: ARM_TRACE_CTL
NVCC_CSI
A6 CSI0_DAT11
ALT0: IPU1_CSI0_DATA11
ALT1: AUD3_RXFS
ALT2: ECSPI2_SS0
ALT3: UART1_RX_DATA
ALT4:
ALT5: GPIO5_IO29
ALT6:
ALT7: ARM_TRACE08
NVCC_CSI Connected on module
to MCA processor
A7 CSI0_DAT17
ALT0: IPU1_CSI0_DATA17
ALT1: EIM_DATA13
ALT2:
ALT3: UART4_CTS_B
ALT4:
ALT5: GPIO6_IO03
ALT6:
ALT7: ARM_TRACE14
NVCC_CSI
A8 GND -
A9 HDMI_D0_N HDMI_VPH
A10 GND -
A11 CSI_CLK0_P NVCC_MIPI
A12 GND -
A13 CSI_D1_N NVCC_MIPI
A14 PCIE_RX_N PCIE_VPH
A15 PCIE_TX_N PCIE_VPH
A16 CLK2_P VDD_HIGH_CAP
A17 GND -
A18 CLK1_P VDD_HIGH_CAP
A19 MLB_DP VDD_HIGH_CAP
A20 MLB_DN VDD_HIGH_CAP
B4 LVDS0_TX2_P NVCC_LVDS_2P5
B5 GND -
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ConnectCore for i.MX6 Hardware Reference Manual
B6 CSI0_DAT14
ALT0: IPU1_CSI0_DATA14
ALT1: EIM_DATA10
ALT2:
ALT3: UART5_TX_DATA
ALT4:
ALT5: GPIO6_IO00
ALT6:
ALT7: ARM_TRACE11
NVCC_CSI
B7 CSI0_DAT4
ALT0: IPU1_CSI0_DATA04
ALT1: EIM_DATA02
ALT2: ECSPI1_SCLK
ALT3: KEY_COL5
ALT4: AUD3_TXC
ALT5: GPIO5_IO22
ALT6:
ALT7: ARM_TRACE01
NVCC_CSI
B8 HDMI_D1_N HDMI_VPH
B9 HDMI_D0_P HDMI_VPH
B10 DSI_D0_P NVCC_MIPI
B11 CSI_CLK0_N NVCC_MIPI
B12 CSI_D2_N NVCC_MIPI
B13 CSI_D1_P NVCC_MIPI
B14 PCIE_RX_P PCIE_VPH
B15 PCIE_TX_P PCIE_VPH
B16 CLK2_N VDD_HIGH_CAP
B17 GND -
B18 CLK1_N VDD_HIGH_CAP
B19 GND -
B20 GND -
B21 SD3_CLK/
BT_UART_RTS
ALT0: SD3_CLK
ALT1: UART2_RTS_B
ALT2: FLEXCAN1_RX
ALT3:
ALT4:
ALT5: GPIO7_IO03
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
Connected to
Bluetooth module
C3 KEY_COL3
ALT0: ECSPI1_SS3
ALT1: ENET_CRS
ALT2: HDMI_TX_DDC_SCL
ALT3: KEY_COL3
ALT4: I2C2_SCL
ALT5: GPIO4_IO12
ALT6: SPDIF_IN
ALT7:
NVCC_GPIO
(GEN_3V3)
Connected to MCA
processor and PMIC.
Not recommended as
main I2C port.
4,7K pull-up on
module.
C4 LVDS0_TX2_N NVCC_LVDS_2P5
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C5 CSI0_DAT6
ALT0: IPU1_CSI0_DATA06
ALT1: EIM_DATA04
ALT2: ECSPI1_MISO
ALT3: KEY_COL6
ALT4: AUD3_TXFS
ALT5: GPIO5_IO24
ALT6:
ALT7: ARM_TRACE03
NVCC_CSI
C6 CSI0_DAT13
ALT0: IPU1_CSI0_DATA13
ALT1: EIM_DATA09
ALT2:
ALT3: UART4_RX_DATA
ALT4:
ALT5: GPIO5_IO31
ALT6:
ALT7: ARM_TRACE10
NVCC_CSI
C7 CSI0_DAT5
ALT0: IPU1_CSI0_DATA05
ALT1: EIM_DATA03
ALT2: ECSPI1_MOSI
ALT3: KEY_ROW5
ALT4: AUD3_TXD
ALT5: GPIO5_IO23
ALT6:
ALT7: ARM_TRACE02
NVCC_CSI
C8 HDMI_D1_P HDMI_VPH
C9 GND -
C10 DSI_D0_N NVCC_MIPI
C11 GND -
C12 CSI_D2_P NVCC_MIPI
C13 GND -
C14 GND -
C15 GND -
C16 USB_H1_DN VDD_USB_CAP
C17 TAMPER VDD_SNVS_IN
C18 Reserved -
C19 MLB_SP VDD_HIGH_CAP
C20 MLB_SN VDD_HIGH_CAP
C21 SD3_DAT7
ALT0: SD3_DATA7
ALT1: UART1_TX_DATA
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO17
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
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C22 SD3_DAT4/
BT_UART_RXD
ALT0: SD3_DATA4
ALT1: UART2_RX_DATA
ALT2:
ALT3:
ALT4:
ALT5: GPIO7_IO01
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
Connected to
Bluetooth module
D2 KEY_ROW4
ALT0: FLEXCAN2_RX
ALT1: IPU1_SISG5
ALT2: USB_OTG_PWR
ALT3: KEY_ROW4
ALT4: UART5_CTS_B
ALT5: GPIO4_IO15
ALT6:
ALT7:
NVCC_GPIO
(GEN_3V3)
D3 KEY_ROW1
ALT0: ECSPI1_SS0
ALT1: ENET_COL
ALT2: AUD5_RXD
ALT3: KEY_ROW1
ALT4: UART5_RX_DATA
ALT5: GPIO4_IO09
ALT6: SD2_VSELECT
ALT7:
NVCC_GPIO
(GEN_3V3)
D4 GND -
D5 CSI0_DAT9
ALT0: IPU1_CSI0_DATA09
ALT1: EIM_DATA07
ALT2: ECSPI2_MOSI
ALT3: KEY_ROW7
ALT4: I2C1_SCL
ALT5: GPIO5_IO27
ALT6:
ALT7: ARM_TRACE06
NVCC_CSI Connected on module
to MCA processor
D6 CSI0_DAT8
ALT0: IPU1_CSI0_DATA08
ALT1: EIM_DATA06
ALT2: ECSPI2_SCLK
ALT3: KEY_COL7
ALT4: I2C1_SDA
ALT5: GPIO5_IO26
ALT6:
ALT7: ARM_TRACE05
NVCC_CSI Connected on module
to MCA processor
D7 HDMI_DDCCEC HDMI_VPH
D8 GND -
D9 DSI_D1_P NVCC_MIPI
D10 GND -
D11 CSI_D3_P NVCC_MIPI
D12 Reserved -
D13 #BT_DISABLE WLAN/BT_3V3
D14 JTAG_TDI NVCC_JTAG
(GEN_3V3)
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D15 #JTAG_TRST NVCC_JTAG
(GEN_3V3)
D16 USB_H1_DP VDD_USB_CAP
D17 TEST_MODE VDD_SNVS_IN
D18 ON/OFF VDD_SNVS_IN Must be connected to a
power button
D19 SATA_TX_N SATA_VPH
D20 GND -
D21 SD3_DAT1
ALT0: SD3_DATA1
ALT1: UART1_RTS_B
ALT2: FLEXCAN2_RX
ALT3:
ALT4:
ALT5: GPIO7_IO05
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
D22 SD3_RST
ALT0: SD3_RESET
ALT1: UART3_RTS_B
ALT2:
ALT3:
ALT4:
ALT5: GPIO7_IO08
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
D23 SD3_DAT5/
BT_UART_TXD
ALT0: SD3_DATA5
ALT1: UART2_TX_DATA
ALT2:
ALT3:
ALT4:
ALT5: GPIO7_IO00
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
Connected to
Bluetooth module
E1 LVDS1_CLK_N NVCC_LVDS_2P5
E2 KEY_ROW0
ALT0: ECSPI1_MOSI
ALT1: ENET_TX_DATA3
ALT2: AUD5_TXD
ALT3: KEY_ROW0
ALT4: UART4_RX_DATA
ALT5: GPIO4_IO07
ALT6: DCIC2_OUT
ALT7:
NVCC_GPIO
(GEN_3V3)
E3 KEY_COL1
ALT0: ECSPI1_MISO
ALT1: ENET_MDIO
ALT2: AUD5_TXFS
ALT3: KEY_COL1
ALT4: UART5_TX_DATA
ALT5: GPIO4_IO08
ALT6: SD1_VSELECT
ALT7:
NVCC_GPIO
(GEN_3V3)
E4 LVDS0_TX1_P NVCC_LVDS_2P5
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E5 CSI0_DATA_EN
ALT0: IPU1_CSI0_DATA_EN
ALT1: EIM_DATA00
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO20
ALT6:
ALT7: ARM_TRACE_CLK
NVCC_CSI
E6 CSI0_DAT15
ALT0: IPU1_CSI0_DATA15
ALT1: EIM_DATA11
ALT2:
ALT3: UART5_RX_DATA
ALT4:
ALT5: GPIO6_IO01
ALT6:
ALT7: ARM_TRACE12
NVCC_CSI
E7 GND -
E8 HDMI_CLK_N HDMI_VPH
E9 DSI_D1_N NVCC_MIPI
E10 DSI_CLK0_N NVCC_MIPI
E11 CSI_D3_N NVCC_MIPI
E12 Reserved -
E13 Reserved -
E14 JTAG_TDO NVCC_JTAG
(GEN_3V3)
E15 Reserved -
E16 GND -
E17 BOOT_MODE0 VDD_SNVS_IN
E18 #POR VDD_SNVS_IN
E19 SATA_TX_P SATA_VPH
E20 GEN_3V3 NVCC_SD3
(GEN_3V3
E21 SD3_DAT6
ALT0: SD3_DATA6
ALT1: UART1_RX_DATA
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO18
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
E22 NANDF_CLE/
BT_WAKE
ALT0: NAND_CLE
ALT1: IPU2_SISG4
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO07
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
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E23 SD3_CMD/
BT_UART_CTS
ALT0: SD3_CMD
ALT1: UART2_CTS_B
ALT2: FLEXCAN1_TX
ALT3:
ALT4:
ALT5: GPIO7_IO02
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
E24 SD3_DAT2
ALT0: SD3_DATA2
ALT1:
ALT2:
ALT3:
ALT4:
ALT5: GPIO7_IO06
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
F1 LVDS1_CLK_P NVCC_LVDS_2P5
F2 KEY_ROW3
ALT0:
ALT1: ASRC_EXT_CLK
ALT2: HDMI_TX_DDC_SDA
ALT3: KEY_ROW3
ALT4: I2C2_SDA
ALT5: GPIO4_IO13
ALT6: SD1_VSELECT
ALT7:
NVCC_GPIO
(GEN_3V3)
Connected to MCA
processor and PMIC.
Not recommended as
main I2C port. 4,7K
pull-up on module.
F3 GPIO_8
ALT0: ESAI_TX5_RX0
ALT1: XTALOSC_REF_CLK_32K
ALT2: EPIT2_OUT
ALT3: FLEXCAN1_RX
ALT4: UART2_RX_DATA
ALT5: GPIO1_IO08
ALT6: SPDIF_SR_CLK
ALT7: USB_OTG_PWR_CTL_WAKE
NVCC_GPIO
(GEN_3V3)
F4 LVDS0_TX1_N NVCC_LVDS_2P5
F5 GND -
F6 CSI0_DAT18
ALT0: IPU1_CSI0_DATA18
ALT1: EIM_DATA14
ALT2:
ALT3: UART5_RTS_B
ALT4:
ALT5: GPIO6_IO04
ALT6:
ALT7: ARM_TRACE15
NVCC_CSI
F7 HDMI_D2_N HDMI_VPH
F8 HDMI_CLK_P HDMI_VPH
F9 GND -
F10 DSI_CLK0_P NVCC_MIPI
F11 GND -
F12 GND -
F13 JTAG_TCK NVCC_JTAG
(GEN_3V3)
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F14 JTAG_TMS NVCC_JTAG
(GEN_3V3)
F15 BOOT_MODE1 VDD_SNVS_IN
F16 USB_H1_VBUS -
F17 MLB_CP -
F18 MLB_CN -
F19 GND -
F20 SD3_DAT0
ALT0: SD3_DATA0
ALT1: UART1_CTS_B
ALT2: FLEXCAN2_TX
ALT3:
ALT4:
ALT5: GPIO7_IO04
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
F21 NANDF_CS0
ALT0: NAND_CE0_B
ALT1:
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO11
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
F22 #NANDF_WP
ALT0: NAND_WP_B
ALT1: IPU2_SISG5
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO09
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
F23 NANDF_CS3
ALT0: NAND_CE3_B
ALT1: IPU1_SISG1
ALT2: ESAI_TX1
ALT3: EIM_ADDR26
ALT4:
ALT5: GPIO6_IO16
ALT6: IPU2_SISG1
ALT7:
NVCC_NANDF
(GEN_3V3)
F24 SD3_DAT3
ALT0: SD3_DATA3
ALT1: UART3_CTS_B
ALT2:
ALT3:
ALT4:
ALT5: GPIO7_IO07
ALT6:
ALT7:
NVCC_SD3
(GEN_3V3)
G1 GND -
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G2 GPIO_0
ALT0: CCM_CLKO1
ALT1:
ALT2: KEY_COL5
ALT3: ASRC_EXT_CLK
ALT4: EPIT1_OUT
ALT5: GPIO1_IO00
ALT6: USB_H1_PWR
ALT7: SNVS_VIO_5
NVCC_GPIO
(GEN_3V3)
G3 GPIO_2
ALT0: ESAI_TX_FS
ALT1:
ALT2: KEY_ROW6
ALT3:
ALT4:
ALT5: GPIO1_IO02
ALT6: SD2_WP
ALT7: MLB_DATA
NVCC_GPIO
(GEN_3V3)
G4 GND -
G5 CSI0_PIXCLK
ALT0: IPU1_CSI0_PIXCLK
ALT1:
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO18
ALT6:
ALT7: ARM_EVENTO
NVCC_CSI
G6 CSI0_DAT19
ALT0: IPU1_CSI0_DATA19
ALT1: EIM_DATA15
ALT2:
ALT3: UART5_CTS_B
ALT4:
ALT5: GPIO6_IO05
ALT6:
ALT7:
NVCC_CSI
G7 HDMI_D2_P HDMI_VPH
G8 GND -
G9 HDMI_HPD HDMI_VPH
G10 GND -
G11 CSI_D0_P NVCC_MIPI
G12 CSI_D0_M NVCC_MIPI
G13 JTAG_MOD NVCC_JTAG
(GEN_3V3)
G14 USB_OTG_VBUS USB_OTG_VBUS
G15 #USB_OTG_CHD VDD_USB_CAP
G16 USB_OTG_DN VDD_USB_CAP
G17 USB_OTG_DP VDD_USB_CAP
G18 GND -
G19 SATA_RX_N SATA_VPH
G20 GEN_3V3 NVCC_NANDF
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G21 NANDF_D2
ALT0: NAND_DATA02
ALT1: SD1_DATA6
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO02
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
G22 NANDF_D6
ALT0: NAND_DATA06
ALT1: SD2_DATA6
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO06
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
G23 NANDF_D3
ALT0: NAND_DATA03
ALT1: SD1_DATA7
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO03
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
G24 NANDF_ALE
ALT0: NAND_ALE
ALT1: SD4_RESET
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO08
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
H1 LVDS1_TX0_N NVCC_LVDS_2P5
H2 KEY_ROW2
ALT0: ECSPI1_SS2
ALT1: ENET_TX_DATA2
ALT2: FLEXCAN1_RX
ALT3: KEY_ROW2
ALT4: SD2_VSELECT
ALT5: GPIO4_IO11
ALT6: HDMI_TX_CEC_LINE
ALT7:
NVCC_GPIO
(GEN_3V3)
H3 GPIO_9
ALT0: ESAI_RX_FS
ALT1: WDOG1_B
ALT2: KEY_COL6
ALT3: CCM_REF_EN_B
ALT4: PWM1_OUT
ALT5: GPIO1_IO09
ALT6: SD1_WP
ALT7:
NVCC_GPIO
(GEN_3V3)
H4 LVDS0_TX0_P NVCC_LVDS_2P5
H5 GND -
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H6 CSI0_DAT16
ALT0: IPU1_CSI0_DATA16
ALT1: EIM_DATA12
ALT2:
ALT3: UART4_RTS_B
ALT4:
ALT5: GPIO6_IO02
ALT6:
ALT7: ARM_TRACE13
NVCC_CSI
H19 SATA_RX_P SATA_VPH
H20 GND -
H21 NANDF_CS1/
#MCA_INT
ALT0: NAND_CE1_B
ALT1: SD4_VSELECT
ALT2: SD3_VSELECT
ALT3:
ALT4:
ALT5: GPIO6_IO14
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
Connected to MCA
processor
H22 NANDF_D1
ALT0: NAND_DATA01
ALT1: SD1_DATA5
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO01
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
H23 NANDF_D7
ALT0: NAND_DATA07
ALT1: SD2_DATA7
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO07
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
H24 NANDF_CS2
ALT0: NAND_CE2_B
ALT1: IPU1_SISG0
ALT2: ESAI_TX0
ALT3: EIM_CRE
ALT4: CCM_CLKO2
ALT5: GPIO6_IO15
ALT6: IPU2_SISG0
ALT7:
NVCC_NANDF
(GEN_3V3)
J1 LVDS1_TX0_P NVCC_LVDS_2P5
J2 KEY_COL0
ALT0: ECSPI1_SCLK
ALT1: ENET_RX_DATA3
ALT2: AUD5_TXC
ALT3: KEY_COL0
ALT4: UART4_TX_DATA
ALT5: GPIO4_IO06
ALT6: DCIC1_OUT
ALT7:
NVCC_GPIO
(GEN_3V3)
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J3 GPIO_6
ALT0: ESAI_TX_CLK
ALT1:
ALT2: I2C3_SDA
ALT3:
ALT4:
ALT5: GPIO1_IO06
ALT6: SD2_LCTL
ALT7: MLB_SIG
NVCC_GPIO
(GEN_3V3)
J4 LVDS0_TX0_N NVCC_LVDS_2P5
J5 CSI0_VSYNC
ALT0: IPU1_CSI0_VSYNC
ALT1: EIM_DATA01
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO21
ALT6:
ALT7: ARM_TRACE00
NVCC_CSI
J20 GEN_3V3 NVCC_SD1
J21 SD1_DAT2
ALT0: SD1_DATA2
ALT1: ECSPI5_SS1
ALT2: GPT_COMPARE2
ALT3: PWM2_OUT
ALT4: WDOG1_B
ALT5: GPIO1_IO19
ALT6: WDOG1_RESET_B_DEB
ALT7:
NVCC_SD1
(GEN_3V3)
J22 SD1_DAT1
ALT0: SD1_DATA1
ALT1: ECSPI5_SS0
ALT2: PWM3_OUT
ALT3: GPT_CAPTURE2
ALT4:
ALT5: GPIO1_IO17
ALT6:
ALT7:
NVCC_SD1
(GEN_3V3)
J23 SD1_CMD
ALT0: SD1_CMD
ALT1: ECSPI5_MOSI
ALT2: PWM4_OUT
ALT3: GPT_COMPARE1
ALT4:
ALT5: GPIO1_IO18
ALT6:
ALT7:
NVCC_SD1
(GEN_3V3)
J24 NANDF_D0
ALT0: NAND_DATA00
ALT1: SD1_DATA4
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO00
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
K1 GND -
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K2 KEY_COL2
ALT0: ECSPI1_SS1
ALT1: ENET_RX_DATA2
ALT2: FLEXCAN1_TX
ALT3: KEY_COL2
ALT4: ENET_MDC
ALT5: GPIO4_IO10
ALT6: USB_H1_PWR_CTL_WAKE
ALT7:
NVCC_GPIO
(GEN_3V3)
K3 GPIO_1
ALT0: ESAI_RX_CLK
ALT1: WDOG2_B
ALT2: KEY_ROW5
ALT3: USB_OTG_ID
ALT4: PWM2_OUT
ALT5: GPIO1_IO01
ALT6: SD1_CD_B
ALT7:
NVCC_GPIO
(GEN_3V3)
K4 GND -
K5 CSI0_DAT10
ALT0: IPU1_CSI0_DATA10
ALT1: AUD3_RXC
ALT2: ECSPI2_MISO
ALT3: UART1_TX_DATA
ALT4:
ALT5: GPIO5_IO28
ALT6:
ALT7: ARM_TRACE07
NVCC_CSI
K20 GEN_3V3 NVCC_SD2
K21 SD2_DAT1
ALT0: SD2_DATA1
ALT1: ECSPI5_SS0
ALT2: EIM_CS2
ALT3: AUD4_TXFS
ALT4: KEY_COL7
ALT5: GPIO1_IO14
ALT6:
ALT7:
NVCC_SD2
(GEN_3V3)
K22 SD2_CLK
ALT0: SD2_CLK
ALT1: ECSPI5_SCLK
ALT2: KEY_COL5
ALT3: AUD4_RXFS
ALT4:
ALT5: GPIO1_IO10
ALT6:
ALT7:
NVCC_SD2
(GEN_3V3)
K23 SD2_DAT3
ALT0: SD2_DATA3
ALT1: ECSPI5_SS3
ALT2: KEY_COL6
ALT3: AUD4_TXC
ALT4:
ALT5: GPIO1_IO12
ALT6:
ALT7:
NVCC_SD2
(GEN_3V3)
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K24 NANDF_D4
ALT0: NAND_DATA04
ALT1: SD2_DATA4
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO04
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
L1 LVDS1_TX1_P NVCC_LVDS_2P5
L2 KEY_COL4
ALT0: FLEXCAN2_TX
ALT1: IPU1_SISG4
ALT2: USB_OTG_OC
ALT3: KEY_COL4
ALT4: UART5_RTS_B
ALT5: GPIO4_IO14
ALT6:
ALT7:
NVCC_GPIO
(GEN_3V3)
L3 GPIO_4
ALT0: ESAI_TX_HF_CLK
ALT1:
ALT2: KEY_COL7
ALT3:
ALT4:
ALT5: GPIO1_IO04
ALT6: SD2_CD_B
ALT7:
NVCC_GPIO
(GEN_3V3)
L4 LVDS0_CLK_P NVCC_LVDS_2P5
L5 CSI0_DAT12
ALT0: IPU1_CSI0_DATA12
ALT1: EIM_DATA08
ALT2:
ALT3: UART4_TX_DATA
ALT4:
ALT5: GPIO5_IO30
ALT6:
ALT7: ARM_TRACE09
NVCC_CSI
L20 SD1_DAT3
ALT0: SD1_DATA3
ALT1: ECSPI5_SS2
ALT2: GPT_COMPARE3
ALT3: PWM1_OUT
ALT4: WDOG2_B
ALT5: GPIO1_IO21
ALT6: WDOG2_RESET_B_DEB
ALT7:
NVCC_SD1
(GEN_3V3)
L21 SD1_CLK
ALT0: SD1_CLK
ALT1: ECSPI5_SCLK
ALT2:
ALT3: GPT_CLKIN
ALT4:
ALT5: GPIO1_IO20
ALT6:
ALT7:
NVCC_SD1
(GEN_3V3)
L22 GND -
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L23 MCA_SWD_CLK
ALT0: ADC0_SE12/CMP0_IN2
ALT1: PTA0/IRQ_0/LLWU_P7
ALT2: TPM1_CH0
ALT3: SWD_CLK
LDO3_MCA
L24 NANDF_D5
ALT0: NAND_DATA05
ALT1: SD2_DATA5
ALT2:
ALT3:
ALT4:
ALT5: GPIO2_IO05
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
M1 LVDS1_TX1_N NVCC_LVDS_2P5
M2 GPIO_19
ALT0: KEY_COL5
ALT1: ENET_1588_EVENT0_OUT
ALT2: SPDIF_OUT
ALT3: CCM_CLKO1
ALT4: ECSPI1_RDY
ALT5: GPIO4_IO05
ALT6: ENET_TX_ER
ALT7:
NVCC_GPIO
(GEN_3V3)
M3 GPIO_16
ALT0: ESAI_TX3_RX2
ALT1: ENET_1588_EVENT2_IN
ALT2: ENET_REF_CLK
ALT3: SD1_LCTL
ALT4: SPDIF_IN
ALT5: GPIO7_IO11
ALT6: I2C3_SDA
ALT7: JTAG_DE_B
NVCC_GPIO
(GEN_3V3)
M4 LVDS0_CLK_N NVCC_LVDS_2P5
M5 CSI0_DAT7
ALT0: IPU1_CSI0_DATA07
ALT1: EIM_DATA05
ALT2: ECSPI1_SS0
ALT3: KEY_ROW6
ALT4: AUD3_RXD
ALT5: GPIO5_IO25
ALT6:
ALT7: ARM_TRACE04
NVCC_CSI
M20 SD2_CMD
ALT0: SD2_CMD
ALT1: ECSPI5_MOSI
ALT2: KEY_ROW5
ALT3: AUD4_RXC
ALT4:
ALT5: GPIO1_IO11
ALT6:
ALT7:
NVCC_SD2
(GEN_3V3)
M21 MCA_IO12
ALT0:
ALT1: PTB3/IRQ_14
ALT2: I2C0_SCL
ALT3: UART0_TX
LDO3_MCA
M22 LDO3_MCA LDO3_MCA
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M23 MCA_SWD_DIO
ALT0:
ALT1: PTA2
ALT2: CMP0_OUT
ALT3: SWD_DIO
LDO3_MCA
M24 NANDF_RB0
ALT0: NAND_READY
ALT1: IPU2_DI0_PIN01
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO10
ALT6:
ALT7:
NVCC_NANDF
(GEN_3V3)
N1 GND -
N2 GPIO_18
ALT0: ESAI_TX1
ALT1: ENET_RX_CLK
ALT2: SD3_VSELECT
ALT3: SDMA_EXT_EVENT1
ALT4: ASRC_EXT_CLK
ALT5: GPIO7_IO13
ALT6: SNVS_VIO_5_CTL
ALT7:
NVCC_GPIO
(GEN_3V3)
N3 VCC_LICELL VCC_LICELL
N4 GND -
N5 GEN_3V3 NVCC_GPIO
N20 MCA_IO/USB0_P
ALT0: ADC0_SE11
ALT1: PTB8
ALT2: TPM0_CH3
ALT3:
LDO3_MCA
N21 MCA_IO13
ALT0:
ALT1: PTB4/IRQ_15/LLWU_P6
ALT2: I2C0_SDA
ALT3: UART0_RX
LDO3_MCA
N22 MCA_IO7
ALT0: ADC0_SE0/CMP0_IN0
ALT1: PTA12/IRQ_17/
LPTMR0_ALT2
ALT2: TPM1_CH0
ALT3: TPM_CLKIN0
LDO3_MCA
N23 #MCA_RESET
ALT0:
ALT1: PTA1/IRQ_1/LPTMR0_ALT1
ALT2: TPM_CLKIN0
ALT3: RESET_b
LDO3_MCA
N24 SD1_DAT0
ALT0: SD1_DATA0
ALT1: ECSPI5_MISO
ALT2:
ALT3: GPT_CAPTURE1
ALT4:
ALT5: GPIO1_IO16
ALT6:
ALT7:
NVCC_SD1
(GEN_3V3)
P1 LVDS1_TX2_N NVCC_LVDS_2P5
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P2 ENET_CRS_DV
ALT0: ENET_RX_EN
ALT1: ESAI_TX_CLK
ALT2: SPDIF_EXT_CLK
ALT3:
ALT4:
ALT5: GPIO1_IO25
ALT6:
ALT7:
NVCC_ENET
P3 GPIO_7
ALT0: ESAI_TX4_RX1
ALT1: ECSPI5_RDY
ALT2: EPIT1_OUT
ALT3: FLEXCAN1_TX
ALT4: UART2_TX_DATA
ALT5: GPIO1_IO07
ALT6: SPDIF_LOCK
ALT7: USB_OTG_HOST_MODE
NVCC_GPIO
(GEN_3V3)
P4 LVDS0_TX3_P NVCC_LVDS_2P5
P5 NVCC_CSI NVCC_CSI
P20 MCA_IO/USB0_N
ALT0: ADC0_SE10
ALT1: PTB9
ALT2: TPM0_CH2
ALT3:
LDO3_MCA
P21 MCA_IO14
ALT0: ADC0_SE1/CMP0_IN1
ALT1: PTB5/IRQ_16
ALT2: TPM1_CH1
ALT3: NMI_b
LDO3_MCA
P22 MCA_IO8
ALT0: TSI0_IN9
ALT1: PTA13
ALT2:
ALT3:
LDO3_MCA
P23 MCA_IO1
ALT0:
ALT1: PTA6/LLWU_P2
ALT2: TPM0_CH4
ALT3:
SPI0_MISO
LDO3_MCA
P24 SD2_DAT0
ALT0: SD2_DATA0
ALT1: ECSPI5_MISO
ALT2:
ALT3: AUD4_RXD
ALT4: KEY_ROW7
ALT5: GPIO1_IO15
ALT6: DCIC2_OUT
ALT7:
NVCC_SD2
(GEN_3V3)
R1 LVDS1_TX2_P NVCC_LVDS_2P5
R2 ENET_RX_ER
ALT0: USB_OTG_ID
ALT1: ENET_RX_ER
ALT2: ESAI_RX_HF_CLK
ALT3: SPDIF_IN
ALT4: ENET_1588_EVENT2_OUT
ALT5: GPIO1_IO24
ALT6:
ALT7:
NVCC_ENET
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R3 GPIO_5
ALT0: ESAI_TX2_RX3
ALT1:
ALT2: KEY_ROW7
ALT3: CCM_CLKO1
ALT4:
ALT5: GPIO1_IO05
ALT6: I2C3_SCL
ALT7: ARM_EVENTI
NVCC_GPIO
(GEN_3V3)
R4 LVDS0_TX3_N NVCC_LVDS_2P5
R5 NVCC_RGMII NVCC_RGMII
R20 MCA_IO19
ALT0: ADC0_SE9/TSI0_IN7
ALT1: PTB10
ALT2: TPM0_CH1
ALT3:
LDO3_MCA
R21 MCA_IO16
ALT0:
ALT1: PTB7/IRQ_3
ALT2: TPM0_CH2
ALT3:
LDO3_MCA
R22 MCA_IO9
ALT0: ADC0_SE6/TSI0_IN4
ALT1: PTB0/IRQ_8/LLWU_P4
ALT2: EXTRG_IN
ALT3: SPI0_SCK
LDO3_MCA
R23 MCA_IO2
ALT0: ADC0_SE7/TSI0_IN5
ALT1: PTA7/IRQ_7/LLWU_P3
ALT2: SPI0_MISO
ALT3: SPI0_MOSI
LDO3_MCA
R24 SD2_DAT2
ALT0: SD2_DATA2
ALT1: ECSPI5_SS1
ALT2: EIM_CS3
ALT3: AUD4_TXD
ALT4: KEY_ROW6
ALT5: GPIO1_IO13
ALT6:
ALT7:
NVCC_SD2
(GEN_3V3)
T1 GND -
T2 GND -
T3 GPIO_3
ALT0: ESAI_RX_HF_CLK
ALT1:
ALT2: I2C3_SCL
ALT3: XTALOSC_REF_CLK_24M
ALT4: CCM_CLKO2
ALT5: GPIO1_IO03
ALT6: USB_H1_OC
ALT7: MLB_CLK
NVCC_GPIO
(GEN_3V3)
T4 GND -
T5 GND -
T20 MCA_IO24
ALT0: ADC0_SE8/TSI0_IN6
ALT1: PTB11
ALT2: TPM0_CH0
ALT3:
LDO3_MCA
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T21 MCA_IO22
ALT0: ADC0_SE13
ALT1: PTB13
ALT2: TPM1_CH1
ALT3: RTC_CLKOUT
LDO3_MCA
T22 MCA_IO10
ALT0: ADC0_SE5/TSI0_IN3/
DAC0_OUT/CMP0_IN3
ALT1: PTB1/IRQ_9
ALT2: UART0_TX
ALT3: UART0_RX
LDO3_MCA
T23 MCA_IO0
ALT0:
ALT1: PTA5/LLWU_P1/RTC_CLK_IN
ALT2: TPM0_CH5
ALT3: SPI0_SS_b
LDO3_MCA
T24 MCA_IO3
ALT0: ADC0_SE3/TSI0_IN1
ALT1: PTA8
ALT2:
ALT3:
LDO3_MCA
U1 LVDS1_TX3_N NVCC_LVDS_2P5
U2 ENET_TXD0
ALT0:
ALT1: ENET_TX_DATA0
ALT2: ESAI_TX4_RX1
ALT3:
ALT4:
ALT5: GPIO1_IO30
ALT6:
ALT7:
NVCC_ENET
U3 GND -
U4 RGMII_TXC
ALT0: USB_H2_DATA
ALT1: RGMII_TXC
ALT2: SPDIF_EXT_CLK
ALT3:
ALT4:
ALT5: GPIO6_IO19
ALT6:
ALT7: XTALOSC_REF_CLK_24M
NVCC_RGMII
U5 RGMII_TD0
ALT0: HSI_TX_READY
ALT1: RGMII_TD0
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO20
ALT6:
ALT7:
NVCC_RGMII
U6 DISP0_DAT21
ALT0: IPU1_DISP0_DATA21
ALT1: IPU2_DISP0_DATA21
ALT2: ECSPI1_MOSI
ALT3: AUD4_TXD
ALT4:
ALT5: GPIO5_IO15
ALT6:
ALT7:
NVCC_LCD
© 2014 Digi International Inc. 35
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U19 EIM_DA3
ALT0: EIM_DA03
ALT1: IPU1_DISP1_DATA06
ALT2: IPU2_CSI1_DATA06
ALT3:
ALT4:
ALT5: GPIO3_IO03
ALT6:
ALT7: SRC_BOOT_CFG03
NVCC_EIM
U20 EIM_DA0
ALT0: EIM_AD00
ALT1: IPU1_DISP1_DATA09
ALT2: IPU2_CSI1_DATA09
ALT3:
ALT4:
ALT5: GPIO3_IO00
ALT6:
ALT7: SRC_BOOT_CFG00
NVCC_EIM
U21 EIM_LBA
ALT0: EIM_LBA
ALT1: IPU1_DI1_PIN17
ALT2: ECSPI2_SS1
ALT3:
ALT4:
ALT5: GPIO2_IO27
ALT6:
ALT7: SRC_BOOT_CFG26
NVCC_EIM
U22 MCA_IO11
ALT0: ADC0_SE4/TSI0_IN2
ALT1: PTB2/IRQ_10/LLWU_P5
ALT2: UART0_RX
ALT3: UART0_TX
LDO3_MCA
U23 EIM_DA6
ALT0: EIM_AD06
ALT1: IPU1_DISP1_DATA03
ALT2: IPU2_CSI1_DATA03
ALT3:
ALT4:
ALT5: GPIO3_IO06
ALT6:
ALT7: SRC_BOOT_CFG06
NVCC_EIM
U24 MCA_IO4
ALT0: ADC0_SE2/TSI0_IN0
ALT1: PTA9
ALT2:
ALT3:
LDO3_MCA
V1 LVDS1_TX3_P NVCC_LVDS_2P5
V2 ENET_TXD1
ALT0: MLB_CLK
ALT1: ENET_TX_DATA1
ALT2: ESAI_TX2_RX3
ALT3:
ALT4: ENET_1588_EVENT0_IN
ALT5: GPIO1_IO29
ALT6:
ALT7:
NVCC_ENET
V3 NVCC_ENET NVCC_ENET
© 2014 Digi International Inc. 36
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V4 RGMII_RX_CTL
ALT0: USB_H3_DATA
ALT1: RGMII_RX_CTL
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO24
ALT6:
ALT7:
NVCC_RGMII
V5 RGMII_TD1
ALT0: HSI_RX_FLAG
ALT1: RGMII_TD1
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO21
ALT6:
ALT7:
NVCC_RGMII
V6 DISP0_DAT16
ALT0: IPU1_DISP0_DATA16
ALT1: IPU2_DISP0_DATA16
ALT2: ECSPI2_MOSI
ALT3: AUD5_TXC
ALT4: SDMA_EXT_EVENT0
ALT5: GPIO5_IO10
ALT6:
ALT7:
NVCC_LCD
V7 DISP0_DAT22
ALT0: IPU1_DISP0_DATA22
ALT1: IPU2_DISP0_DATA22
ALT2: ECSPI1_MISO
ALT3: AUD4_TXFS
ALT4:
ALT5: GPIO5_IO16
ALT6:
ALT7:
NVCC_LCD
V8 DI0_PIN3
ALT0: IPU1_DI0_PIN03
ALT1: IPU2_DI0_PIN03
ALT2: AUD6_TXFS
ALT3:
ALT4:
ALT5: GPIO4_IO19
ALT6:
ALT7:
NVCC_LCD
V9 DI0_DISP_CLK
ALT0: IPU1_DI0_DISP_CLK
ALT1: IPU2_DI0_DISP_CLK
ALT2:
ALT3:
ALT4:
ALT5: GPIO4_IO16
ALT6:
ALT7:
NVCC_LCD
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V10 DI0_PIN15
ALT0: IPU1_DI0_PIN15
ALT1: IPU2_DI0_PIN15
ALT2: AUD6_TXC
ALT3:
ALT4:
ALT5: GPIO4_IO17
ALT6:
ALT7:
NVCC_LCD
V11 VSYS VSYS
V12 PMIC_GPIO11 - PMIC
V13 PMIC_GPIO15 - PMIC
V14 CHG_WAKE - PMIC
V15 EIM_OE
ALT0: EIM_OE
ALT1: IPU1_DI1_PIN07
ALT2: ECSPI2_MISO
ALT3:
ALT4:
ALT5: GPIO2_IO25
ALT6:
ALT7:
NVCC_EIM
V16 EIM_EB1
ALT0: EIM_EB1
ALT1: IPU1_DISP1_DATA10
ALT2: IPU2_CSI1_DATA10
ALT3:
ALT4:
ALT5: GPIO2_IO29
ALT6:
ALT7: SRC_BOOT_CFG28
NVCC_EIM
V17 EIM_D17
ALT0: EIM_DATA17
ALT1: ECSPI1_MISO
ALT2: IPU1_DI0_PIN06
ALT3: IPU2_CSI1_PIXCLK
ALT4: DCIC1_OUT
ALT5: GPIO3_IO17
ALT6: I2C3_SCL
ALT7:
NVCC_EIM
V18 EIM_DA11
ALT0: EIM_DA11
ALT1: IPU1_DI1_PIN02
ALT2: IPU2_CSI1_HSYNC
ALT3:
ALT4:
ALT5: GPIO3_IO11
ALT6:
ALT7: SRC_BOOT_CFG11
NVCC_EIM
V19 EIM_DA9
ALT0: EIM_DA9
ALT1: IPU1_DISP1_DATA00
ALT2: IPU2_CSI1_DATA00
ALT3:
ALT4:
ALT5: GPIO3_IO09
ALT6:
ALT7: SRC_BOOT_CFG09
NVCC_EIM
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V20 EIM_DA13
ALT0: EIM_DA13
ALT1: IPU1_DI1_D0_CS
ALT2:
ALT3:
ALT4:
ALT5: GPIO3_IO13
ALT6:
ALT7: SRC_BOOT_CFG13
NVCC_EIM
V21 EIM_DA10
ALT0: EIM_DA10
ALT1: IPU1_DI1_PIN15
ALT2: IPU2_CSI1_DATA_EN
ALT3:
ALT4:
ALT5: GPIO3_IO10
ALT6:
ALT7: SRC_BOOT_CFG10
NVCC_EIM
V22 EIM_DA12
ALT0: EIM_DA12
ALT1: IPU1_DI1_PIN03
ALT2: IPU2_CSI1_VSYNC
ALT3:
ALT4:
ALT5: GPIO3_IO12
ALT6:
ALT7: SRC_BOOT_CFG12
NVCC_EIM
V23 GND -
V24 EIM_DA2
ALT0: EIM_DA02
ALT1: IPU1_DISP1_DATA07
ALT2: IPU2_CSI1_DATA07
ALT3:
ALT4:
ALT5: GPIO3_IO02
ALT6:
ALT7: SRC_BOOT_CFG02
NVCC_EIM
W1 GND -
W2 GND -
W3 ENET_MDC
ALT0: MLB_DATA
ALT1: ENET_MDC
ALT2: ESAI_TX5_RX0
ALT3:
ALT4: ENET_1588_EVENT1_IN
ALT5: GPIO1_IO31
ALT6:
ALT7:
NVCC_ENET
W4 RGMII_TX_CTL
ALT0: USB_H2_STROBE
ALT1: RGMII_TX_CTL
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO26
ALT6:
ALT7: ENET_REF_CLK
NVCC_RGMII
W5 GND -
© 2014 Digi International Inc. 39
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W6 DISP0_DAT20
ALT0: IPU1_DISP0_DATA20
ALT1: IPU2_DISP0_DATA20
ALT2: ECSPI1_SCLK
ALT3: AUD4_TXC
ALT4:
ALT5: GPIO5_IO14
ALT6:
ALT7:
NVCC_LCD
W7 DISP0_DAT15
ALT0: IPU1_DISP0_DATA15
ALT1: IPU2_DISP0_DATA15
ALT2: ECSPI1_SS1
ALT3: ECSPI2_SS1
ALT4:
ALT5: GPIO5_IO09
ALT6:
ALT7:
NVCC_LCD
W8 DISP0_DAT13
ALT0: IPU1_DISP0_DATA13
ALT1: IPU2_DISP0_DATA13
ALT2:
ALT3: AUD5_RXFS
ALT4:
ALT5: GPIO5_IO07
ALT6:
ALT7:
NVCC_LCD
W9 GND -
W10 DI0_PIN2
ALT0: IPU1_DI0_PIN02
ALT1: IPU2_DI0_PIN02
ALT2: AUD6_TXD
ALT3:
ALT4:
ALT5: GPIO4_IO18
ALT6:
ALT7:
NVCC_LCD
W11 VSYS VSYS
W12 VSYS VSYS
W13 PMIC_PWR_EN - PMIC
W14 GND -
W15 EIM_RW
ALT0: EIM_RW
ALT1: IPU1_DI1_PIN08
ALT2: ECSPI2_SS0
ALT3:
ALT4:
ALT5: GPIO2_IO26
ALT6:
ALT7: SRC_BOOT_CFG29
NVCC_EIM
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W16 EIM_D29
ALT0: EIM_DATA29
ALT1: IPU1_DI1_PIN15
ALT2: ECSPI4_SS0
ALT3:
ALT4: UART2_RTS_B
ALT5: GPIO3_IO29
ALT6: IPU2_CSI1_VSYNC
ALT7: IPU1_DI0_PIN14
NVCC_EIM
W17 GND -
W18 EIM_A25
ALT0: EIM_ADDR25
ALT1: ECSPI4_SS1
ALT2: ECSPI2_RDY
ALT3: IPU1_DI1_PIN12
ALT4: IPU1_DI0_D1_CS
ALT5: GPIO5_IO02
ALT6: HDMI_TX_CEC_LINE
ALT7:
NVCC_EIM
W19 EIM_D20
ALT0: EIM_DATA20
ALT1: ECSPI4_SS0
ALT2: IPU1_DI0_PIN16
ALT3: IPU2_CSI1_DATA15
ALT4: UART1_RTS_B
ALT5: GPIO3_IO20
ALT6: EPIT2_OUT
ALT7:
NVCC_EIM
W20 EIM_D24
ALT0: EIM_DATA24
ALT1: ECSPI4_SS2
ALT2: UART3_TX_DATA
ALT3: ECSPI1_SS2
ALT4: ECSPI2_SS2
ALT5: GPIO3_IO24
ALT6: AUD5_RXFS
ALT7: UART1_DTR_B
NVCC_EIM
W21 EIM_DA14
ALT0: EIM_DA14
ALT1: IPU1_DI1_D1_CS
ALT2:
ALT3:
ALT4:
ALT5: GPIO3_IO14
ALT6:
ALT7: SRC_BOOT_CFG14
NVCC_EIM
W22 EIM_DA8
ALT0: EIM_DA8
ALT1: IPU1_DISP1_DATA01
ALT2: IPU2_CSI1_DATA01
ALT3:
ALT4:
ALT5: GPIO3_IO08
ALT6:
ALT7: SRC_BOOT_CFG08
NVCC_EIM
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W23 EIM_DA1
ALT0: EIM_DA1
ALT1: IPU1_DISP1_DATA08
ALT2: IPU2_CSI1_DATA08
ALT3:
ALT4:
ALT5: GPIO3_IO01
ALT6:
ALT7: SRC_BOOT_CFG01
NVCC_EIM
W24 EIM_DA4
ALT0: EIM_DA4
ALT1: IPU1_DISP1_DATA05
ALT2: IPU2_CSI1_DATA05
ALT3:
ALT4:
ALT5: GPIO3_IO04
ALT6:
ALT7: SRC_BOOT_CFG04
NVCC_EIM
Y1 ENET_REF_CLK
ALT0:
ALT1: ENET_TX_CLK
ALT2: ESAI_RX_FS
ALT3:
ALT4:
ALT5: GPIO1_IO23
ALT6: SPDIF_SR_CLK
ALT7:
NVCC_ENET
Y2 ENET_RXD0
ALT0:
ALT1: ENET_RX_DATA0
ALT2: ESAI_TX_HF_CLK
ALT3: SPDIF_OUT
ALT4:
ALT5: GPIO1_IO27
ALT6:
ALT7:
NVCC_ENET
Y3 ENET_MDIO
ALT0:
ALT1: ENET_MDIO
ALT2: ESAI_RX_CLK
ALT3:
ALT4: ENET_1588_EVENT1_OUT
ALT5: GPIO1_IO22
ALT6: SPDIF_LOCK
ALT7:
NVCC_ENET
Y4 GND -
Y5 RGMII_TD2
ALT0: HSI_RX_DATA
ALT1: RGMII_TD2
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO22
ALT6:
ALT7:
NVCC_RGMII
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Y6 DISP0_DAT19
ALT0: IPU1_DISP0_DATA19
ALT1: IPU2_DISP0_DATA19
ALT2: ECSPI2_SCLK
ALT3: AUD5_RXD
ALT4: AUD4_RXC
ALT5: GPIO5_IO13
ALT6:
ALT7: EIM_CS3
NVCC_LCD
Y7 DISP0_DAT11
ALT0: IPU1_DISP0_DATA11
ALT1: IPU2_DISP0_DATA11
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO05
ALT6:
ALT7:
NVCC_LCD
Y8 DISP0_DAT10
ALT0: IPU1_DISP0_DATA10
ALT1: IPU2_DISP0_DATA10
ALT2:
ALT3:
ALT4:
ALT5: GPIO4_IO31
ALT6:
ALT7:
NVCC_LCD
Y9 NVCC_LCD NVCC_LCD
Y10 PMIC_GPIO14 -
Y11 GND -
Y12 GND -
Y13 NVCC_EIM NVCC_EIM
Y14 EIM_EB0
ALT0: EIM_EB0
ALT1: IPU1_DISP1_DATA11
ALT2: IPU2_CSI1_DATA11
ALT3:
ALT4: CCM_PMIC_READY
ALT5: GPIO2_IO28
ALT6:
ALT7: SRC_BOOT_CFG27
NVCC_EIM
Y15 EIM_D30
ALT0: EIM_DATA30
ALT1: IPU1_DISP1_DATA21
ALT2: IPU1_DI0_PIN11
ALT3: IPU1_CSI0_DATA03
ALT4: UART3_CTS_B
ALT5: GPIO3_IO30
ALT6: USB_H1_OC
ALT7:
NVCC_EIM
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Y16 EIM_D21
ALT0: EIM_DATA21
ALT1: ECSPI4_SCLK
ALT2: IPU1_DI0_PIN17
ALT3: IPU2_CSI1_DATA11
ALT4: USB_OTG_OC
ALT5: GPIO3_IO21
ALT6: I2C1_SCL
ALT7: SPDIF_IN
NVCC_EIM
Y17 EIM_D19
ALT0: EIM_DATA19
ALT1: ECSPI1_SS1
ALT2: IPU1_DI0_PIN08
ALT3: IPU2_CSI1_DATA16
ALT4: UART1_CTS_B
ALT5: GPIO3_IO19
ALT6: EPIT1_OUT
ALT7:
NVCC_EIM
Y18 EIM_D22
ALT0: EIM_DATA22
ALT1: ECSPI4_MISO
ALT2: IPU1_DI0_PIN01
ALT3: IPU2_CSI1_DATA10
ALT4: USB_OTG_PWR
ALT5: GPIO3_IO22
ALT6: SPDIF_OUT
ALT7:
NVCC_EIM
Y19 GND -
Y20 EIM_DA15
ALT0: EIM_DA15
ALT1: IPU1_DI1_PIN01
ALT2: IPU1_DI1_PIN04
ALT3:
ALT4:
ALT5: GPIO3_IO15
ALT6:
ALT7: SRC_BOOT_CFG15
NVCC_EIM
Y21 EIM_DA7
ALT0: EIM_DA7
ALT1: IPU1_DISP1_DATA02
ALT2: IPU2_CSI1_DATA02
ALT3:
ALT4:
ALT5: GPIO3_IO07
ALT6:
ALT7: SRC_BOOT_CFG07
NVCC_EIM
Y22 MCA_IO27 LDO3_MCA
Y23 MCA_IO23 LDO3_MCA
Y24 EIM_EB2
ALT0: EIM_EB2
ALT1: ECSPI1_SS0
ALT2:
ALT3: IPU2_CSI1_DATA19
ALT4: HDMI_TX_DDC_SCL
ALT5: GPIO2_IO30
ALT6: I2C2_SCL
ALT7: SRC_BOOT_CFG30
NVCC_EIM
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AA2 ENET_RXD1
ALT0: MLB_SIG
ALT1: ENET_RX_DATA1
ALT2: ESAI_TX_FS
ALT3:
ALT4: ENET_1588_EVENT3_OUT
ALT5: GPIO1_IO26
ALT6:
ALT7:
NVCC_ENET
AA3 ENET_TX_EN
ALT0:
ALT1: ENET_TX_EN
ALT2: ESAI_TX3_RX2
ALT3:
ALT4:
ALT5: GPIO1_IO28
ALT6:
ALT7:
NVCC_ENET
AA4 RGMII_RD0
ALT0: HSI_RX_READY
ALT1: RGMII_RD0
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO25
ALT6:
ALT7:
NVCC_RGMII
AA5 RGMII_TD3
ALT0: HSI_RX_WAKE
ALT1: RGMII_TD3
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO23
ALT6:
ALT7:
NVCC_RGMII
AA6 DISP0_DAT23
ALT0: IPU1_DISP0_DATA23
ALT1: IPU2_DISP0_DATA23
ALT2: ECSPI1_SS0
ALT3: AUD4_RXD
ALT4:
ALT5: GPIO5_IO17
ALT6:
ALT7:
NVCC_LCD
AA7 DISP0_DAT12
ALT0: IPU1_DISP0_DATA12
ALT1: IPU2_DISP0_DATA12
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO06
ALT6:
ALT7:
NVCC_LCD
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AA8 DISP0_DAT8
ALT0: IPU1_DISP0_DATA08
ALT1: IPU2_DISP0_DATA08
ALT2: PWM1_OUT
ALT3: WDOG1_B
ALT4:
ALT5: GPIO4_IO29
ALT6:
ALT7:
NVCC_LCD
AA9 DISP0_DAT4
ALT0: IPU1_DISP0_DATA04
ALT1: IPU2_DISP0_DATA04
ALT2: ECSPI3_SS1
ALT3:
ALT4:
ALT5: GPIO4_IO25
ALT6:
ALT7:
NVCC_LCD
AA10 VLDO6 VLDO6
AA11 VLDO7 VLDO7
AA12 GEN_3V3 GEN_3V3
AA13 EIM_WAIT
ALT0: EIM_WAIT
ALT1: EIM_DTACK_B
ALT2:
ALT3:
ALT4:
ALT5: GPIO5_IO00
ALT6:
ALT7: SRC_BOOT_CFG25
NVCC_EIM
AA14 EIM_A23
ALT0: EIM_ADDR23
ALT1: IPU1_DISP1_DATA18
ALT2: IPU2_CSI1_DATA18
ALT3: IPU2_SISG3
ALT4: IPU1_SISG3
ALT5: GPIO6_IO06
ALT6:
ALT7: SRC_BOOT_CFG23
NVCC_EIM
AA15 EIM_D31
ALT0: EIM_DATA31
ALT1: IPU1_DISP1_DATA20
ALT2: IPU1_DI0_PIN12
ALT3: IPU1_CSI0_DATA02
ALT4: UART3_RTS_B
ALT5: GPIO3_IO31
ALT6: USB_H1_PWR
ALT7:
NVCC_EIM
AA16 GND -
AA17 EIM_D25
ALT0: EIM_DATA25
ALT1: ECSPI4_SS3
ALT2: UART3_RX_DATA
ALT3: ECSPI1_SS3
ALT4: ECSPI2_SS3
ALT5: GPIO3_IO25
ALT6: AUD5_RXC
ALT7: UART1_DSR_B
NVCC_EIM
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ConnectCore for i.MX6 Hardware Reference Manual
AA18 EIM_EB3
ALT0: EIM_EB3
ALT1: ECSPI4_RDY
ALT2: UART3_RTS_B
ALT3: UART1_RI_B
ALT4: IPU2_CSI1_HSYNC
ALT5: GPIO2_IO31
ALT6: IPU1_DI1_PIN03
ALT7: SRC_BOOT_CFG31
NVCC_EIM
AA19 EIM_DA5
ALT0: EIM_DA5
ALT1: IPU1_DISP1_DATA04
ALT2: IPU2_CSI1_DATA04
ALT3:
ALT4:
ALT5: GPIO3_IO05
ALT6:
ALT7: SRC_BOOT_CFG05
NVCC_EIM
AA20 MCA_IO21 LDO3_MCA
AA21 MCA_IO26 LDO3_MCA
AA22 MCA_IO25 LDO3_MCA
AA23 MCA_IO6/
PMIC_GP_FB2 LDO3_MCA
AB3 RGMII_RD1
ALT0: HSI_TX_FLAG
ALT1: RGMII_RD1
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO27
ALT6:
ALT7:
NVCC_RGMII
AB4 GND -
AB5 DISP0_DAT17
ALT0: IPU1_DISP0_DATA17
ALT1: IPU2_DISP0_DATA17
ALT2: ECSPI2_MISO
ALT3: AUD5_TXD
ALT4: SDMA_EXT_EVENT1
ALT5: GPIO5_IO11
ALT6:
ALT7:
NVCC_LCD
AB6 DISP0_DAT9
ALT0: IPU1_DISP0_DATA09
ALT1: IPU2_DISP0_DATA09
ALT2: PWM2_OUT
ALT3: WDOG2_B
ALT4:
ALT5: GPIO4_IO30
ALT6:
ALT7:
NVCC_LCD
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AB7 DISP0_DAT6
ALT0: IPU1_DISP0_DATA06
ALT1: IPU2_DISP0_DATA06
ALT2: ECSPI3_SS3
ALT3: AUD6_RXC
ALT4:
ALT5: GPIO4_IO27
ALT6:
ALT7:
NVCC_LCD
AB8 DISP0_DAT3
ALT0: IPU1_DISP0_DATA03
ALT1: IPU2_DISP0_DATA03
ALT2: ECSPI3_SS0
ALT3:
ALT4:
ALT5: GPIO4_IO24
ALT6:
ALT7:
NVCC_LCD
AB9 PMIC_GPIO7 - PMIC
AB10 GND -
AB11 Reserved -
AB12 EIM_BCLK
ALT0: EIM_BCLK
ALT1: IPU1_DI1_PIN16
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO31
ALT6:
ALT7:
NVCC_EIM
AB13 EIM_CS0
ALT0: EIM_CS0
ALT1: IPU1_DI1_PIN05
ALT2: ECSPI2_SCLK
ALT3:
ALT4:
ALT5: GPIO2_IO23
ALT6:
ALT7:
NVCC_EIM
AB14 PMIC_ADCIN1/
GPIO0 -PMIC
AB15 EIM_A18
ALT0: EIM_ADDR18
ALT1: IPU1_DISP1_DATA13
ALT2: IPU2_CSI1_DATA13
ALT3:
ALT4:
ALT5: GPIO2_IO20
ALT6:
ALT7: SRC_BOOT_CFG18
NVCC_EIM
AB16 EIM_A20
ALT0: EIM_ADDR20
ALT1: IPU1_DISP1_DATA15
ALT2: IPU2_CSI1_DATA15
ALT3:
ALT4:
ALT5: GPIO2_IO18
ALT6:
ALT7: SRC_BOOT_CFG20
NVCC_EIM
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AB17 EIM_D28
ALT0: EIM_DATA28
ALT1: I2C1_SDA
ALT2: ECSPI4_MOSI
ALT3: IPU2_CSI1_DATA12
ALT4: UART2_CTS_B
ALT5: GPIO3_IO28
ALT6: IPU1_EXT_TRIG
ALT7: IPU1_DI0_PIN13
NVCC_EIM
AB18 EIM_D18
ALT0: EIM_DATA18
ALT1: ECSPI1_MOSI
ALT2: IPU1_DI0_PIN07
ALT3: IPU2_CSI1_DATA17
ALT4: IPU1_DI1_D0_CS
ALT5: GPIO3_IO18
ALT6: I2C3_SDA
ALT7:
NVCC_EIM
AB19 PMIC_PWR1_EN
AB20 #PMIC_VDD_FAUL
T
AB21 GND -
AB22 #PMIC_OFF
AC4 RGMII_RD2
ALT0: HSI_TX_DATA
ALT1: RGMII_RD2
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO28
ALT6:
ALT7:
NVCC_RGMII
AC5 RGMII_RD3
ALT0: HSI_TX_WAKE
ALT1: RGMII_RD3
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO29
ALT6:
ALT7:
NVCC_RGMII
AC6 DISP0_DAT14
ALT0: IPU1_DISP0_DATA14
ALT1: IPU2_DISP0_DATA14
ALT2:
ALT3: AUD5_RXC
ALT4:
ALT5: GPIO5_IO08
ALT6:
ALT7:
NVCC_LCD
AC7 DISP0_DAT7
ALT0: IPU1_DISP0_DATA07
ALT1: IPU2_DISP0_DATA07
ALT2: ECSPI3_RDY
ALT3:
ALT4:
ALT5: GPIO4_IO28
ALT6:
ALT7:
NVCC_LCD
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ConnectCore for i.MX6 Hardware Reference Manual
AC8 DISP0_DAT0
ALT0: IPU1_DISP0_DATA00
ALT1: IPU2_DISP0_DATA00
ALT2: ECSPI3_SCLK
ALT3:
ALT4:
ALT5: GPIO4_IO21
ALT6:
ALT7:
NVCC_LCD
AC9 DISP0_DAT1
ALT0: IPU1_DISP0_DATA01
ALT1: IPU2_DISP0_DATA01
ALT2: ECSPI3_MOSI
ALT3:
ALT4:
ALT5: GPIO4_IO22
ALT6:
ALT7:
NVCC_LCD
AC10 MCA_VREFH -
AC11 Reserved -
AC12 GND -
AC13 GND -
AC14 PMIC_ADCIN2/
GPIO1 -PMIC
AC15 EIM_CS1
ALT0: EIM_CS1
ALT1: IPU1_DI1_PIN06
ALT2: ECSPI2_MOSI
ALT3:
ALT4:
ALT5: GPIO2_IO24
ALT6:
ALT7:
NVCC_EIM
AC16 EIM_A21
ALT0: EIM_ADDR21
ALT1: IPU1_DISP1_DATA16
ALT2: IPU2_CSI1_DATA16
ALT3:
ALT4:
ALT5: GPIO2_IO17
ALT6:
ALT7: SRC_BOOT_CFG21
NVCC_EIM
AC17 EIM_A17
ALT0: EIM_ADDR17
ALT1: IPU1_DISP1_DATA12
ALT2: IPU2_CSI1_DATA12
ALT3:
ALT4:
ALT5: GPIO2_IO21
ALT6:
ALT7: SRC_BOOT_CFG17
NVCC_EIM
AC18 GND -
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AC19 EIM_A22
ALT0: EIM_ADDR22
ALT1: IPU1_DISP1_DATA17
ALT2: IPU2_CSI1_DATA17
ALT3:
ALT4:
ALT5: GPIO2_IO16
ALT6:
ALT7: SRC_BOOT_CFG22
NVCC_EIM
AC20 EIM_D23
ALT0: EIM_DATA23
ALT1: IPU1_DI0_D0_CS
ALT2: UART3_CTS_B
ALT3: UART1_DCD_B
ALT4: IPU2_CSI1_DATA_EN
ALT5: GPIO3_IO23
ALT6: IPU1_DI1_PIN02
ALT7: IPU1_DI1_PIN14
NVCC_EIM
AC21 MCA_IO28 LDO3_MCA
AD5 RGMII_RXC
ALT0: USB_H3_STROBE
ALT1: RGMII_RXC
ALT2:
ALT3:
ALT4:
ALT5: GPIO6_IO30
ALT6:
ALT7:
NVCC_RGMII
AD6 DISP0_DAT18
ALT0: IPU1_DISP0_DATA18
ALT1: IPU2_DISP0_DATA18
ALT2: ECSPI2_SS0
ALT3: AUD5_TXFS
ALT4: AUD4_RXFS
ALT5: GPIO5_IO12
ALT6:
ALT7: EIM_CS2
NVCC_LCD
AD7 DISP0_DAT5
ALT0: IPU1_DISP0_DATA05
ALT1: IPU2_DISP0_DATA05
ALT2: ECSPI3_SS2
ALT3: AUD6_RXFS
ALT4:
ALT5: GPIO4_IO26
ALT6:
ALT7:
NVCC_LCD
AD8 DI0_PIN4
ALT0: IPU1_DI0_PIN04
ALT1: IPU2_DI0_PIN04
ALT2: AUD6_RXD
ALT3: SD1_WP
ALT4:
ALT5: GPIO4_IO20
ALT6:
ALT7:
NVCC_LCD
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AD9 DISP0_DAT2
ALT0: IPU1_DISP0_DATA02
ALT1: IPU2_DISP0_DATA02
ALT2: ECSPI3_MISO
ALT3:
ALT4:
ALT5: GPIO4_IO23
ALT6:
ALT7:
NVCC_LCD
AD10 VLDO4 -
AD11 VLDO8 -
AD12 PMIC_GP_FB3 - PMIC
AD13 PMIC_GP_FB1/
GPIO13 -PMIC
AD14 PMIC_ADCIN3/
GPIO2 -PMIC
AD15 EIM_A16
ALT0: EIM_ADDR16
ALT1: IPU1_DI1_DISP_CLK
ALT2: IPU2_CSI1_PIXCLK
ALT3:
ALT4:
ALT5: GPIO2_IO22
ALT6:
ALT7: SRC_BOOT_CFG16
NVCC_EIM
AD16 EIM_A19
ALT0: EIM_ADDR19
ALT1: IPU1_DISP1_DATA14
ALT2: IPU2_CSI1_DATA14
ALT3:
ALT4:
ALT5: GPIO2_IO19
ALT6:
ALT7: SRC_BOOT_CFG19
NVCC_EIM
AD17 EIM_A24
ALT0: EIM_ADDR24
ALT1: IPU1_DISP1_DATA19
ALT2: IPU2_CSI1_DATA19
ALT3: IPU2_SISG2
ALT4: IPU1_SISG2
ALT5: GPIO5_IO04
ALT6:
ALT7: SRC_BOOT_CFG24
NVCC_EIM
AD18 EIM_D27
ALT0: EIM_DATA27
ALT1: IPU1_DI1_PIN13
ALT2: IPU1_CSI0_DATA00
ALT3: IPU2_CSI1_DATA13
ALT4: UART2_RX_DATA
ALT5: GPIO3_IO27
ALT6: IPU1_SISG3
ALT7: IPU1_DISP1_DATA23
NVCC_EIM
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ConnectCore for i.MX6 Hardware Reference Manual
Signal Usage Limitations
The following signals available on ConnectCore for i.MX6 pads have a limited usage:
SD1_CLK (pad L21), SD1_CMD (pad J23), SD1_DAT[3:0] (pads L20, J21, J22 and N24) are
only available externally on modules which don't have Wi-Fi populated.
SD3_DAT4/BT_UART_RXD (pad C22), SD3_DAT5/BT_UART_TXD (pad D23), SD3_CLK/
BT_UART_RTS (pad B21), SD3_CMD/BT_UART_CTS (pad E23) are only available externally on
modules which don't have Bluetooth populated.
NANDF_CLE/BT_WAKE (pad E22) is only available externally on modules which don't have
Bluetooth populated.
I2C2_SCL/KEY_COL3 (pad C3) and I2C2_SDA/KEY_ROW3 (pad F2) are used on the module
as I2C signals connected to the PMIC and MCA processor. Using these signals externally
should be done with caution, since it could prevent the module from working properly. It is
recommended that you use another I2C port for connecting external devices to the
ConnectCore i.MX6 module in order to avoid excessive bus load.
NANDF_CS1/#MCA_INT (pad H21), CSI0_DAT11/ECSPI2_SS0 (pad A6), CSI0_DAT8/
ECSPI2_SCLK (pad D6), CSI0_DAT10/ECSPI2_MISO (pad K5) and CSI0_DAT9/ECSPI2_MOSI
(pad D5) are connected to MCA processor. #MCA_INT is a signal reserved as interrupt
between MCA processor and i.MX6 processor. The other signals are a SPI bus shared between
i.MX6 and MCA processor. The usage and availability of these signals is depending on the
firmware running in the MCA processor.
ON/OFF (pad D18) signal is connected to PMIC and MCA.
#POR (pad E18) is connected to PMIC and i.MX6 processor.
AD19 EIM_D26
ALT0: EIM_DATA26
ALT1: IPU1_DI1_PIN11
ALT2: IPU1_CSI0_DATA01
ALT3: IPU2_CSI1_DATA14
ALT4: UART2_TX_DATA
ALT5: GPIO3_IO26
ALT6: IPU1_SISG2
ALT7: IPU1_DISP1_DATA22
NVCC_EIM
AD20 EIM_D16
ALT0: EIM_DATA16
ALT1: ECSPI1_SCLK
ALT2: IPU1_DI0_PIN05
ALT3: IPU2_CSI1_DATA18
ALT4: HDMI_TX_DDC_SDA
ALT5: GPIO3_IO16
ALT6: I2C2_SDA
ALT7:
NVCC_EIM
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ConnectCore for i.MX6 Hardware Reference Manual
Module Specifications
Mechanical specifications
Note that all dimensions are in millimeters.
ConnectCore 6 module weight is 27 grams.
© 2014 Digi International Inc. 54
ConnectCore for i.MX6 Hardware Reference Manual
There must be a recess in the host PCB to accommodate the components on the bottom side of
the SOM.
All dimensions are in millimeters.
For additional information, see Digi Application Note #31-31-14-x on the Digi technical support
website.
Host PCB Footprint
Note: Minimum thickness of the host board shall be 2mm.
R1
2
5
16.50
16.75
25
50
50
2 1
1
7.25
13.75 25
0.89
21.20
23.20
21
21
19
2
NON ROUTING AREA
(3X)
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ConnectCore for i.MX6 Hardware Reference Manual
Specifications for the ConnectCore 6
Environmental Specifications
The Freescale i.MX6 thermal specification is based on maximum junction temperature (Tj) of the
specific application processor variant used. In order to support thermal management assistance
through software, the Freescale i.MX6 processor has a built-in junction temperature sensor/
monitor.
The table below outlines the three temperature related operational threshold modes with
severity related recovery actions as defined in software.
Linux - Android Users
At any time, the processor junction temperature can be measured by entering the following shell
command:
cat /sys/class/thermal/thermal_zone0/temp
Note: Depending on the operating system, the junction temperature is displayed in milli °C
or °C.
The ConnectCore 6 multichip module was designed to provide customers with unique options to
simplify and support the implementation of thermal management approaches in their designs, as
needed:
The ConnectCore 6 offers a fully shielded design (including internal thermal compounds) with
optimized heat transfer and heat spreading for specific internal components (processor and
PMIC). It is ideally suited for more efficient heat dissipation by providing a single, uniform
surface for thermal management via enclosures, heat sinks or other means.
The surface mount design of the ConnectCore 6 allows for additional dissipation of heat
through the carrier board it is mounted on.
Evaluation of the ConnectCore 6 thermal performance has successfully demonstrated that the
ambient operating temperatures specified can be support by the module. However, actual
ambient operating temperature performance may vary and is highly dependent on the specific
use-case, such as, enclosure design, system design, i.MX6 processor variant, GPU/VPU activity,
Mode Temperature (Tj) Recovery Action
Critical > Max Tj - 5oC• Automatic system reboot to protect
i.MX6 from damage
Hot > Max Tj - 15oC
• i.MX6 core and GPU frequencies are
reduced
• Additional actions may be initiated
depending on actual system
implementation
Active < Max Tj - 25oC• Limitations applied in Hot mode are
removed again
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ConnectCore for i.MX6 Hardware Reference Manual
on-module peripherals used.Your specific system design and application may require additional
thermal management such as passive (heatsink/-spreader) or active (airflow) cooling at elevated
temperatures.
1Please note that ambient operating temperature ratings are highly dependent on the specific use-case, e.g. enclosure design, system design, i.MX6 pro-
cessor variant, GPU/VPU activity, peripherals used. Your specific system design and application may require additional thermal management such as pas-
sive (heatsink/-spreader) or active (airflow) cooling.
Please contact Digi if you need information and/or guidance related to thermal management in
your specific application.
Moisture Sensitivity and Shelf Life
1 The ConnectCore for i.MX6 module is classified as a Level 3 Moisture Sensitive Device in
accordance with IPC/JEDEC J-STD-020.
2 Calculated shelf life in sealed packaging: 12 months at <40°C and <90% relative humidity
(RH).
3 Environmental condition during production: 30°C /60% RH according to IPC/JEDEC J-STD -
033A, paragraph 5.
4 Maximum time between opening of the sealed packaging and reflow process must not exceed
168 hours, based on condition b), IPC/JEDEC J-STD -033A, paragraph 5.2.
5 Baking is required, if conditions b) or c) do not apply. See above.
6 Baking is required, if the packaging humidity indicator indicates 10% RH or higher.
7 If baking is required, bake modules in trays 4-6 hours at 125°C; maximum stacking height is
10 trays.
Mounting
The ConnectCore 6 module has been designed with easy integration into existing SMT processes
in mind. Guidance for mounting the module on your carrier board is given in this section of the
document.
The ConnectCore 6 modules are not sealed and therefore they should not be subjected to a wash
cycle or similar treatment where condensation could occur. Contact Digi International for
additional guidance to discuss conformal coating approaches and options, if needed.
Solder Paste
The following solder paste type has been approved for mounting the module on a carrier board:
SAC305 (Lead-free: Alpha OM-340 Type 4 or equivalent)
ConnectCore 6 Variant Ambient Operating
Temperature1Storage Temperature
Industrial -40 to 85oC -40 to 125oC
Commercial 0 to 70oC -40 to 125oC
© 2014 Digi International Inc. 57
ConnectCore for i.MX6 Hardware Reference Manual
Solder Paste Print
The following solder paste printing parameters are recommended:
Stencil Thickness: 0.15 mm/5 mil
Stencil Diameter: One to one of Pad diameter (to +20% of pad)
Paste alignment: 20% off the pad max (offset <20% pad diameter)
Stencil
The recommendation is to use a laser cut and/or electro-formed stencil for placing the
ConnectCore 6 module. Based on the actual coplanarity characteristics of your carrier board,
adjustments may be required to determine the optimal solder paste volume.
It is also recommended to perform an X-ray analysis of the initial production run of your
assembly with the ConnectCore 6. Please contact Digi for additional support.
Coplanarity
The coplanarity measured on the ConnectCore for 6 is <0.003" bow and twist (98% confidence
interval). It is important that the carrier board is also coplanar. If the carrier board is thinner
than the ConnectCore 6 it is recommended that the assembly be supported during the reflow
process, i.e. reflow fixture should be used to minimize the potential bow of the carrier card.
Bow and twist measurements have been done with SmartScope Flash 500 equipment which has
a Z accuracy up to (2.0 + 8L/1000) µm.
SMT Pick and Place
Placement Nozzle: Large is available on the machine
Nozzle Pick Surface: Center of Shield on i.MX6 SOM
Placement Speed: Slowest speed for the machine
Placement alignment: 10% of pad diameter (compensating for module weight and supporting
alignment). The module should be placed last as part of the assembly/mounting process to
eliminate unexpected shifting.
SMT Process Parameter Reference
Process SMT process Specification recommendations
Screen print
Solder paste Leaded: Indium NC-SMQ92J / Lead-free: Alpha
OM-340
Stencil thickness 0.15mm / 5 mil
Stencil diameter 1.47mm / 58mil
Paster alignment 25% off the pad (offset <0.25* diameter
© 2014 Digi International Inc. 58
ConnectCore for i.MX6 Hardware Reference Manual
Reflow Profile Using Seven Zone Oven, SAC 305Lead-Free
Solder Paste (Alpha OM-340)
Time Above Liquidous (TAL) is recommended to be between 56 to 63 seconds. Use of 40AWG
K-type thermal couple and M.O.L.E or equivalent thermal profiler is recommended. The first
recommended thermal probe location is on the outer row of pads, to be on the out most row of
pins preferably a ground pad. The second thermal probe location is on the inner row of pads
preferably a signal pad.
The following image shows the reflow profile based on a seven zone convection oven.
The reflow profile shown above is valid for the combination solder paste/reflow machine and Digi
reference carrier board. Optimization of a reflow profile will depend on the selected solder paste/
reflow machine (reflow or vapor phase) and carrier board design.
The ConnectCore i.MX6 is approved to withstand a maximum of six reflow cycles. Two reflow
cycles are required for manufacturing the ConnectCore i.MX6 SOM. Digi strongly recommends to
solder the ConnectCore i.MX6 module during the last reflow cycles of the carrier board
manufacturing process.
PnP
Placement nozzle 0>15mm vacuum
Nozzle Pick Surface PnP cap center
Speed Slowest speed for the machine
Placement Sequence Place the SoM last
Placement Alignment 50% off the pad (offset <.5* diameter)
Reflow Belt speed 0.6-1.1 m/sec
Refer to SMT profile recommendation in the next page
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ConnectCore for i.MX6 Hardware Reference Manual
Network Interface
WLAN Standard:
• IEEE 802.11a/b/g/n standards
HT20, and HT40 IEEE 802.11n
Frequency Band:
2.40-2.50 GHz (low band)
5.18-5.825 GHz (High band)
Data Rates:
802.11b: 1, 2, 5.5, 11 Mbps
802.11a/g: 6, 9, 12, 18, 24, 35, 48, 54 Mbps
802.11n HT20 FGI: 6.5, 13, 19.5, 26, 39, 52, 58.5, 65 Mbps
802.11n HT20 HGI: 7.2, 14.4, 21.7, 29.9, 43.3, 57.8, 65, 72.2 Mbps
802.11n HT40 FGI (5GHz only): 13.5, 27, 40.5, 54, 81, 108, 121.5, 135 Mbps
802.11n HT40 HGI (5GHz only): 15, 30, 45, 60, 90, 120, 135, 150 Mbps
Antenna ports:
ConnectCore for i.MX6 module variants supporting both Bluetooth and WLAN are populated with
one single antenna port covering both 2.4 and 5GHz frequencies.
Module variants supporting only WLAN provide additionally antenna diversity feature. Two
antenna ports supporting the same transmit and receive signals are populated on the product.
The software running on the ConnectCore SOM switches from one antenna port to the other
depending on the RSSI (Receive Signal Strength Indication) of the received beacon, which
guarantees that the antenna with the best signal is always used and thus improve the quality
and reliability of the wireless link. The interval between comparisons of RSSI values on the two
antennas is by default 10 seconds, but can be configured in software. Furthermore, when the
RSSI measured is too low, the software will automatically switch to the other antenna regardless
of the 10 second interval. Hence, antenna diversity is an option and it is absolutely safe to mount
only one antenna in the system, connected for instance to the primary antenna port.
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ConnectCore for i.MX6 Hardware Reference Manual
The picture below shows the location of the primary and secondary antennas.
Note: Modules with Bluetooth capabilities will not support spatial diversity.
Modulation
Mode Data
rate Modulation Mode Data
rate Modulation Mode Data
rate Modulation
802.11b 1 DBPSK 802.11g 6 BPSK 802.11a 6 BPSK
2 DQPSK 9 BPSK 9 BPSK
5.5 CCK 12 QPSK 12 QPSK
11 CCK 18 QPSK 18 QSPK
24 16-QAM 24 16-QAM
35 16-QAM 35 16-QAM
48 64-QAM 48 64-QAM
54 64-QAM 54 64-QAM
Mode MCS Modulation Data rate
802.11n HT20 (2.4 GHz and 5GHz) HT40 (5GHz only)
FGI HGI FGI HGI
MCS0 BPSK 6.5 7.2 13.5 15
MCS1 QPSK 13 14.4 27 30
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ConnectCore for i.MX6 Hardware Reference Manual
Security/Interoperability
• WPA-PSK
• WPA-Enterprise
• WPA2-Personal
• WPA2-Enterprise
• Wi-Fi Direct
• Soft AP
• WAPI (optional, China)
Cisco CCXv4 ASD certification ready (optional)
Wi-Fi Alliance Logo certification ready
The listed capabilities are dependent on software platform in use. Refer to the corresponding
software platform documentation for additional information.
Please contact Digi if your end product requires a Wi-Fi Alliance Logo and/or Cisco CCX
certification.
Frequency Bands
US, Canada
2.412 to 2.462 GHz; 11 channels
5.180 to 5.320 GHz; 8 channels
5.500 to 5.700 GHz, 8 channels (excludes 5.600 to 5.650 GHz)
5.745 to 5.825 GHz; 5 channels
Europe
2.412 to 2.472 GHz; 13 channels
5.180 to 5.320 GHz; 8 channels
5.500 to 5.700 GHz, 8 channels (excludes 5.600 to 5.640 GHz)
Australia, New Zealand
2.412 to 2.462 GHz; 11 channels
5.180 to 5.320 GHz; 8 channels
5.745 to 5.825 GHz; 5 channels
MCS2 QPSK 19.5 21.7 40.5 45
MCS3 16-QAM 26 29.9 54 60
MCS4 16-QAM 39 43.3 81 90
MCS5 64-QAM 52 57.8 108 120
MCS6 64-QAM 58.5 65 121.5 135
MCS7 64-QAM 65 72.2 135 150
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ConnectCore for i.MX6 Hardware Reference Manual
Japan
2.412 to 2.472 GHz; 13 channels
5.180 to 5.320 GHz; 8 channels
5.500 to 5.700 GHz; 11 channels
Ad-Hoc Mode Channels
2.4GHz Band - Channels 10 and 11
5GHz Band US, Australia, New Zealand - Channels 36, 40, 44, 45, 149, 157, 161, and 165
Channels 36, 40, 44, and 45 are for indoor use only
5GHz Band Europe and Japan - per 802.11d
5GHz HT20 and HT40 channel available:
Channel number Frequency (MHz) Mode Secondary channel allowed
36 5180 HT40 PLUS
38 5190 HT20
40 5200 HT40 MINUS
44 5220 HT40 PLUS
46 5230 HT20
48 5240 HT40 MINUS
52 5260 HT40 PLUS
54 5270 HT20
56 5280 HT40 MINUS
60 5300 HT40 PLUS
62 5310 HT20
64 5320 HT40 MINUS
100 5500 HT40 PLUS
102 5510 HT20
104 5520 HT40 MINUS
108 5540 HT40 PLUS
110 5550 HT20
112 5560 HT40 MINUS
116 5580 HT40 PLUS
118 5590 HT20
120 5600 HT40 MINUS
124 5620 HT40 PLUS
126 5630 HT20
128 5640 HT40 MINUS
132 5660 HT40 PLUS
134 5670 HT20
136 5680 HT40 MINUS
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ConnectCore for i.MX6 Hardware Reference Manual
Receive Sensitivity
Transmit Power
Bluetooth
Bluetooth 3.0 + HS (BT3.0 + HS)
• Bluetooth 4.0 (BT4.0)
Class 1.5 Bluetooth with integrated TX/RX switch
Electrical Characteristics
Voltage supplies
140 5700 HT20
159 5745 HT40 PLUS
151 5755 HT20
153 5765 HT40 MINUS
157 5785 HT40 PLUS
159 5795 HT20
161 5805 HT40 MINUS
165 5825 HT20
Network type Sensitivity
802.11b -88 dBm
802.11g -88 dBm
802.11n (2.4GHz) -89 dBm
802.11a -90 dBm
802.11n (5GHz, HT20) -90 dBm
802.11n (5GHz, HT40) -86 dBm
Network type Transmit power
802.11b 10.5 dBm
802.11g/n 11 dBm
802.11a/n 13 dBm
Parameter Min Typ Max Unit
5V supply 4.2 5 5.5 V
VCC_LICELL 2.0 3.0 TBD V
LDO3_MCA 1.71 3.3 3.6 V
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ConnectCore for i.MX6 Hardware Reference Manual
Note: No specific ESD protection components have been implemented on the ConnectCore
for i.MX6 module. ESD protection level on the module’s I/Os is the same as what is specified
in the freescale datasheet. Any required ESD protection must be implemented on the carrier
board.
Power Consumption
The following image displays the current consumption of the ConnectCore for i.MX6 module
when booting respectively through U-Boot, Linux kernel and Android user space.
Power consumption of the ConnectCore 6
On this graph, we see current peaks above 1.5A. For additional margin, the recommendation is
to design a power supply solution for ConnectCore 6 SOM which is able to source up to 2A.
See below some power consumption use cases:
Use case Description Power
consumption
Power Off
Android 4.2.2
For going into power off mode, press power button for >
4 seconds. Android needs a confirmation that you want to
go in power off mode.
5VDC – 15mA
Deep Sleep Mode
(DSM) -
Suspend to RAM
Android 4.2.2
For going into DSM mode, press power button for 2
seconds.
5VDC - 41mA
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ConnectCore for i.MX6 Hardware Reference Manual
Note: All measurements above have been made on ConnectCore 6 SBC (Single Board
Computer) supporting a Quad-Core 1.2GHz i.MX6 processor.
Idle Mode
Android 4.2.2:
- No WiFi
- No Bluetooth
- No Ethernet (Gigabit Ethernet PHY on SBC is disabled)
- HDMI display (standard PC display)
- USB mouse
- Console port
5VDC - 435mA
Idle Mode - no
USB
Android 4.2.2:
- No WiFi
- No Bluetooth
- No Ethernet (Gigabit Ethernet PHY on SBC is disabled)
- HDMI display (standard PC display)
- USB mouse disconnected
- Console port
5VDC - 375mA
Idle Mode with
WiFi
Android 4.2.2:
- WiFi
- No Bluetooth
- No Ethernet (Gigabit Ethernet PHY on SBC is disabled)
- HDMI display (standard PC display)
- USB mouse
- Console port
5VDC - 455mA
Idle Mode with
Ethernet
Android 4.2.2:
- No WiFi
- No Bluetooth
- Ethernet
- HDMI display (standard PC display)
- USB mouse
- Console port
5VDC - 620mA
Idle Mode with
Ethernet
(frequency
reduced to
396MHz)
Android 4.2.2:
- No WiFi
- No Bluetooth
- Ethernet
- HDMI display (standard PC display)
- USB mouse
- Console port
- CPU frequency reduced to 396MHz
5VDC - 585mA
Playing 1080p
video on HDMI
Android 4.2.2 up and running:
- No WiFi
- No Bluetooth
- No Ethernet (Gigabit Ethernet PHY on SBC is disabled)
- HDMI display (standard PC display)
- USB mouse
- Console port
- Cactus Player playing
big_buck_bunny_1080p_h264.mov
5VDC - 700mA
Use case Description Power
consumption
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ConnectCore for i.MX6 Hardware Reference Manual
Certifications
Agency Certifications
United States FCC
The ConnectCore™ for i.MX6 Module complies with Part 15 of the FCC rules and regulations.
Compliance with the labeling requirements, FCC notices and antenna usage guidelines is
required. To fulfill FCC Certification, the OEM must comply with the following regulations:
The system integrator must ensure that the text on top side of the module is placed on the
outside of the final product.
ConnectCore™ for i.MX6 Module may only be used with antennas approved [refer to the
antenna tables in this section].
For WiFi/Bluetooth variant:
For WiFi only variant:
FCC Notices
IMPORTANT: The ConnectCore™ for i.MX6 module has been certified by the FCC for use with
other products without any further certification (as per FCC section 2.1091). Modifications not
expressly approved by Digi could void the user's authority to operate the equipment.
IMPORTANT: OEMs must test final product to comply with unintentional radiators (FCC section
15.107 & 15.109) before declaring compliance of their final product to Part 15 of the FCC Rules.
WARNING: The Original Equipment Manufacturer (OEM) must ensure that FCC
labeling requirements are met. This includes a clearly visible label on the outside of the
final product enclosure that displays the contents shown in the figure below. Required
FCC Label for OEM products containing the ConnectCore™ for i.MX6 Module.
Contains FCC ID: MCQ-CCIMX6B
This device complies with part 15 of the FCC Rules. Operation is subject to the
following two conditions: (1) This device may not cause harmful interference, and
(2) this device must accept ant interference received, including interference that
may cause undesired operation.
Contains FCC ID: MCQ-CCIMX6
This device complies with part 15 of the FCC Rules. Operation is subject to the
following two conditions: (1) This device may not cause harmful interference, and
(2) this device must accept ant interference received, including interference that
may cause undesired operation.
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ConnectCore for i.MX6 Hardware Reference Manual
IMPORTANT: The ConnectCore™ for i.MX6 module has been certified for remote and base radio
applications. If the module will be used for portable applications, the device must undergo SAR
testing. This equipment has been tested and found to comply with the limits for a Class B digital
device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable
protection against harmful interference in a residential installation. This equipment generates
uses and can radiate radio frequency energy, and if not installed and used in accordance with
the instructions, may cause harmful interference to radio communications. However, there is no
guarantee that interference will not occur in a particular installation. If this equipment does
cause harmful interference to radio or television reception, which can be determined by turning
the equipment off and on, the user is encouraged to try to correct the interference by one or
more of the following measures: Re-orient or relocate the receiving antenna, Increase the
separation between the equipment and receiver, Connect equipment and receiver to outlets on
different circuits, or Consult the dealer or an experienced radio/TV technician for help.
FCC-Approved Antennas
The ConnectCore™ for i.MX6 can be installed utilizing antennas and cables constructed with non-
standard connectors (RPSMA, RPTNC, and so on).
The modules are FCC approved for fixed base station and mobile applications for the channels
indicated in the tables below. If the antenna is mounted at least 20cm (8 in.) from nearby
persons, the application is considered a mobile application. Antennas not listed in the table must
be tested to comply with FCC Section 15.203 (Unique Antenna Connectors) and Section 15.247
(Emissions).
The antennas in the tables below have been approved for use with this module. Digi does not
carry all of these antenna variants. Contact Digi Sales for available antennas.
Antennas Approved for Use with the ConnectCore™ for i.MX6 Wi-Fi Modules
Note: If using the RF module in a portable application (for example - if the module is used
in a hand-held device and the antenna is less than 20cm from the human body when the
device is in operation): The integrator is responsible for passing additional SAR (Specific
Absorption Rate) testing based on FCC rule 2.1093 and FCC Guidelines for Human Exposure
to Radio Frequency Electromagnetic Fields, OET Bulletin and Supplement C. The testing
results will be submitted to the FCC for approval prior to selling the integrated unit. The
required SAR testing measures emissions from the module and how they affect the person.
Omni- directional antennas
Part number Type (description) Peak Gain 2.4 GHz Peak Gain 5 GHz
Digi International
A24-HASM-450
Dipole (articulated RPSMA,
2.4GHz antenna) 1.8dBi
Linx Technologies Inc
ANT-DB1-RAF-RPS
Dipole (articulated RPSMA,
2.4GHz and 5GHz antenna) 2.5dBi 4.6dBi
Yageo
ANTX100P001B24003 2.4GHz PCB antenna
4dBi (@2.4GHz)
4.4dBi (@2.45GHz)
4.1dBi (@2.5GHz)
Ethertronics 1001932 2.4 - 5GHz PCB antenna 1.5-2.5dBi 3-5dBi
© 2014 Digi International Inc. 68
ConnectCore for i.MX6 Hardware Reference Manual
RF Exposure
Europe (ETSI)
The ConnectCore™ for i.MX6 Module has been certified for use in several European countries.
For a complete list, refer to www.digi.com.
If the ConnectCore™ for i.MX6 module is incorporated into a product, the manufacturer must
ensure compliance of the final product to the European harmonized EMC and low-voltage/safety
standards. A Declaration of Conformity must be issued for each of these standards and kept on
file as described in Annex II of the R&TTE Directive.
Furthermore, the manufacturer must maintain a copy of the ConnectCore™ for i.MX6 Hardware
Reference manual documentation and ensure the final product does not exceed the specified
power ratings, antenna specifications, and/or installation requirements as specified in the user
manual. If any of these specifications are exceeded in the final product, a submission must be
made to a notified body for compliance testing to all required standards.
OEM Labeling Requirements
The CE marking must be affixed to a visible location on the OEM product.
CE Labeling Requirements
The CE mark shall consist of the initials CE taking the following form:
If the CE marking is reduced or enlarged, the proportions given in the above graduated
drawing must be respected.
The CE marking must have a height of at least 5mm except where this is not possible on
account of the nature of the apparatus.
The CE marking must be affixed visibly, legibly, and indelibly.
WARNING: To satisfy FCC RF exposure requirements for mobile transmitting devices,
a separation distance of 20 cm or more should be maintained between the antenna of
this device and persons during device operation. To ensure compliance, operations at
closer than this distance are not recommended. The antenna used for this transmitter
must not be co-located in conjunction with any other antenna or transmitter. The
preceding statement must be included as a CAUTION statement in OEM product
manuals in order to alert users of FCC RF Exposure compliance.
© 2014 Digi International Inc. 69
ConnectCore for i.MX6 Hardware Reference Manual
Declarations of Conformity
Digi has issued Declarations of Conformity for the ConnectCore™ for i.MX6 module concerning
emissions, EMC and safety. Files can be obtained by contacting Digi Support.
Note: Digi does not list the entire set of standards that must be met for each country. Digi
customers assume full responsibility for learning and meeting the required guidelines for each
country in their distribution market.
Approved Antennas
The same antennas have been approved for Europe as stated in the FCC table for use with the
ConnectCore™ for i.MX6 module.
Canada (IC)
This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject
to the following two conditions: (1) this device may not cause interference, and (2) this device
must accept any interference, including interference that may cause undesired operation of the
device.
Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio
exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne
doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage
radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement.
Labeling Requirements
Labeling requirements for Industry Canada are similar to those of the FCC. A clearly visible label
on the outside of the final product enclosure must display the following text:
For WiFi/Bluetooth variant:
For WiFi only variant:
The integrator is responsible for its product to comply with IC ICES-003 & FCC Part 15, Sub. B -
Unintentional Radiators. ICES-003 is the same as FCC Part 15 Sub. B and Industry Canada
accepts FCC test report or CISPR 22 test report for compliance with ICES-003.
Transmitters with Detachable Antennas
This radio transmitter (IC: 1846A-CCIMX6 / IC: 1846A-CCIMX6B) has been approved by Industry
Canada to operate with the antenna types listed in the table above with the maximum
permissible gain and required antenna impedance for each antenna type indicated. Antenna
types not included in this list, having a gain greater than the maximum gain indicated for that
type, are strictly prohibited for use with this device.
Contains Model for ConnectCore i.MX6 WiFi/Bluetooth radio, IC: 1846A-
CCIMX6B
Contains Model ConnectCore for i.MX6 Radio, IC: 1846A-CCIMX6
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ConnectCore for i.MX6 Hardware Reference Manual
Le présent émetteur radio (IC: 1846A-CCIMX6 / IC: 1846A-CCIMX6B) a été approuvé par
Industrie Canada pour fonctionner avec les types d'antenne énumérés ci-dessous et ayant un
gain admissible maximal et l'impédance requise pour chaque type d'antenne. Les types
d'antenne non inclus dans cette liste, ou dont le gain est supérieur au gain maximal indiqué, sont
strictement interdits pour l'exploitation de l'émetteur.
Under Industry Canada regulations, this radio transmitter may only operate using an antenna of
a type and maximum (or lesser) gain approved for the transmitter by Industry Canada. To
reduce potential radio interference to other users, the antenna type and its gain should be so
chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary
for successful communication.
Conformément à la réglementation d'Industrie Canada, le présent émetteur radio peut
fonctionner avec une antenne d'un type et d'un gain maximal (ou inférieur) approuvé pour
l'émetteur par Industrie Canada. Dans le but de réduire les risques de brouillage radioélectrique
à l'intention des autres utilisateurs, il faut choisir le type d'antenne et son gain de sorte que la
puissance isotrope rayonnée équivalente (p.i.r.e.) ne dépasse pas l'intensité nécessaire à
l'établissement d'une communication satisfaisante.
Japan
こ の製品 周波数帯域 5.15 ~ 5.35 GHz ているきは においての使
This device has been granted a designation number by Ministry of Internal Affairs and
Communications according to:
Ordinance concerning Technical Regulations Conformity Certification etc. of Specified Radio
Equipment ( 特定無線設備技術基準適合証明等す る規則 ).
Article 2 clause 1 item 19 Approval n°: TBD
Article 2 clause 1 item 19 (2) Approval n°: TBD
Article 2 clause 1 item 19 (3) Approval n°: TBD
Article 2 clause 1 item 19 (3) (2) Approval n°: TBD
This device should not be modified (otherwise the granted designation number will be invalid).

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