The new SMARC module, based on the AM67x processor from Texas Instruments, enables high-resolution 3D rendering with low latency, high throughput with up to 8GB LPDDR4 memory access and flash storage with up to 32 GB eMMC, as well as USB3, PCIe Gen 3 and two Gigabit Ethernet channels for enhanced system-level connectivity for Linux-based systems. It supports applications such as robotic teach pendants, factory automation, medical, and test and measurement. The AM67x is a device that targets both the analytics and non-analytics markets, with end devices ranging from HMI and single board computers up to multi-camera vision systems with integrated AI.
The AM67x provides high-performance computing technology for both traditional and deep learning algorithms with an industry-leading power-to-performance ratio and a high level of system integration to enable scalability and lower costs for advanced vision camera applications. Key cores include the latest Arm® and GPU processors for general purpose computing, next-generation DSP with scalar and vector cores, dedicated deep learning and traditional algorithm accelerators, an integrated next-generation imaging subsystem (ISP), video codec, and MCU cores, all protected by industrial-grade security hardware accelerators.
Compliance | SMARC 2.2 |
Dimensions (H x W x D) | 82 x 50 mm |
CPU | TI dual/quad AM67x Jacinto™ processor (Standard AM67, optional AM67A or AM67D) |
Main Memory | up to 8 GByte LPDDR4 |
Ethernet | up to 2x 10/100/1000 MBit Ethernet |
Storage | 1x SD-Card (SDIO capable) |
Flash Onboard | up to 64GB eMMC 5.1 |
PCI Express / PCI support | 1x PCIe up to Gen3 x1 |
Panel signal | Dual Channel LVDS up to 24bit, DSI |
Display | 1x DP (optional, instead of DSI) |
USB | 1x USB 2.0 OTG, 1x USB 3.2 (optional up to 2x USB 2.0, 2x USB 3.2) |
Serial | 4x UART ( 2x RX/TX only) |
Other Features | 2x I2S, 1x SPI, 4x I2C, 14x GPIO, 2x CAN, 4x MIPI CSI, 1x QSPI, 1x MDIO (optional) |
Special Features | Failsafe Update, ultra low Power Consumption high accuracy RTC |
Bootloader | u-boot, TF-a, OPTEE |
Operating System | Yocto Linux, Buildroot |
Power Supply | 3 V – 5.25 V operates directly from single level Lithium Ion cells or fixed 3.3 V – 5 V power supplies |
Temperature | Operating: extended consumer -40 °C to + 85 °C Non-Operating: -40 °C to +85 °C |
Humidity | 93 % relative Humidity at 40 °C, non-condensing (according to IEC 60068-2-78) |
The tough choice of Processors
Solving challenges in selecting computer boards & modules for IIoT projects. In this article we support you to make the right choice for your application: To find the best balance of processing power, graphics capabilities and connectivity on the one hand and size, power consumption, and cost on the other.
[ artikel_processor-choice_eu-1-.pdf, 4.42 MB, Apr.20.2023 ]
A SMARC Approach to Medical Device Life Extension
A medical manufacturer maximizes investment in essential system with retrofit Kontron Computer on Module solution upgrade.
[ uc_medical-smarc_final.pdf, 8.69 MB, Apr.20.2023 ]
SMARC-sAM67 Datasheet
[ smarc-sam67_data-sheet_kontron_20241112.pdf, 464.19 KB, Nov.13.2024 ]
General Safety Instruction
[ general-safety-instructions.pdf, 628.88 KB, Aug.02.2024 ]
SMARC™ module 2.1
[restrictions apply]
This paper discusses how SMARC™ module is continuing to evolve to ensure system designers, SIs and OEMs can meet the ongoing challenges of cost-effectively deve-loping next generation small form factor IoT- andAI-enabled embedded systems.
Modules and Motherboards WP [restrictions apply]
Robotic-Assisted Surgery White Paper [restrictions apply]
Tech Specs SMARC
[ tech-spec_smarc.pdf, 5.3 MB, Apr.04.2024 ]
Kontron Services Brochure
[ kontron-services-brochure.pdf, 8.9 MB, Dec.17.2020 ]
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