#NXP i.MX 7
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🚀 Enhance the Efficiency and Precision of Smart Motion Control Systems!
Smart motion control systems are crucial in industrial automation, managing mechanical motion in real time. We recommend the Forlinx Embedded FET6254-C SoM, built on TI Sitara™ AM62x processors, featuring a high-performance multi-core architecture and rich interfaces for precise control and efficient data processing. 🌟
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We(Forlinx) can provide TI, NXP, Allwinner, Rockchip and Renesas ARM SoM/CoMs, single board computers, android/Linux/RTOS boards, and High-quality NXP i.MX ARM Cortex-A72/53/55/9/7 modules. Worldwide shipping.
Email: [email protected]
Web: www.forlinx.net
#SmartMotionControl#IndustrialAutomation#FET6254CSoM#TIProcessors#RealTimeControl#Robotics#EnergyEfficiency#AutomationTechnology
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Kingston 金士頓與 NXP 恩智浦半導體合作打造 i.MX 8M Plus 處理器
Kingston 金士頓與 NXP 恩智浦半導體合作打造 i.MX 8M Plus 處理器
Kingston 金士頓與 NXP 恩智浦半導體結盟,打造 i.MX 8M Plus 應用處理器,在處理器上內建的金士頓 eMMC 嵌入式記憶體,可應用在智慧裝置內。 (more…)

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Amazon FreeRTOS, heterogeneous cores and the all-new Apalis and Colibri iMX8
Amazon acquires FreeRTOS FreeRTOS is a real-time operating system kernel for embedded devices. In development since 2003, it is the market-leading real-time operating system, having been ported to more than 40 microcontroller architectures. On November 29, 2017, Amazon acquired FreeRTOS and announced Amazon FreeRTOS (or a:FreeRTOS), a real-time operating system kernel based on FreeRTOS and focused on low-power, connected devices.
Amazon seems to be interested in integrating the most widely used real-time operating system — which, consequently, has a very broad user base — with their cloud services, like AWS IoT Core and AWS Greengrass. After the acquisition, Amazon introduced version 10 of FreeRTOS. Along with new features like cloud and edge connectivity libraries, the kernel license was changed from a modified version of the GNU General Public License (GPL), which the FreeRTOS project used previously, to the more permissive MIT license. This means that FreeRTOS is still a separate product and can be used freely, with or without Amazon services.
Why this is relevant: Heterogeneous Multicore Processing (HMP)
Toradex offers the Colibri iMX7 and Colibri VF61 System on Modules (SoMs) / Computer on Modules (CoMs). These products are based on the NXP® i.MX7 and Vybrid SoC respectively. The processors on these modules feature an Arm® Cortex-A core, usually running an operating system such as embedded Linux; and an Arm Cortex-M4 microcontroller core, which can run bare-metal code or a real-time operating system like FreeRTOS. Here's an outline of use cases:
Control systems: The Cortex-M4 core can be used as a controller for a dynamic system, running, e.g., a PID controller, offloading the Cortex-A core running Linux, which, in turn, could be displaying a human-machine interface.
Data acquisition: On applications that make use of an analog-to-digital converter, the Cortex-M4 core can be employed to acquire data at a high sample rate more easily, also offloading the other core.
An example application using the Toradex Colibri iMX7 System on Module is a self-balancing robot named TAQ. It was developed in partnership with Antmicro and Qt. The robot runs embedded Linux on the Cortex-A7 core, presenting the robot's face animations and sensor data received from the Cortex-M4 core. The Cortex-M4 core runs FreeRTOS, acquiring data from sensors such as an accelerometer and a gyroscope. It uses this data to control the dynamic system, employing a PID controller and a Kalman filter. The cores communicate via RPMsg. A kernel module on the Linux side creates a virtual serial interface which connects to the Cortex-M4; data exchange can be achieved by writing to or reading from this serial device, just as it would be done with a "real" serial device.
The sources for this demo are open and can be found here (Linux side, user interface) and here (Cortex-M4 firmware).
The Toradex Colibri iMX7 was also used on a tablet demonstrating some low-power applications. This video showcases the demo, which features sensor data acquisition and visualization while independently displaying power consumption on a separate LCD display.
Toradex supports and maintains a FreeRTOS repository for its System on Modules. Many peripheral drivers and examples are included and ready to use. Some documentation is available at the Toradex Developer Center showing how you can get up and running with the built-in FreeRTOS examples. Watch our webinars for deeper insight into heterogeneous multicore systems development.
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What about the future?
On the software side
There are many new players in the RTOS market. In 2016, Wind River Systems and the Linux Foundation launched Zephyr, a real-time operating system also focused on small, connected devices, targeting the IoT market. The Toradex Colibri iMX7 System on Module is officially supported by Zephyr, and development is ongoing.
On the hardware side: the all-new NXP i.MX 8-based Apalis and Colibri SoMs
Toradex has just launched the early access phase of its brand-new System on Module, the Apalis iMX8. This powerful SoM is based on the NXP i.MX 8QuadMax (i.MX 8QM) applications processor, featuring two Arm Cortex-A72 cores, four Cortex-A53 cores and two Cortex-M4 cores. Packed with 4 GB of LPDDR4 RAM and 16GB of eMMC flash storage, it also has built-in dual band Wi-Fi (802.11ac) and Bluetooth (Bluetooth 5-ready). This System on Module is ideal for computer vision applications: there are two integrated Vivante GC7000 GPUs, supporting Vulkan and OpenGL ES.
The two Cortex-M4 cores open up many possibilities: as an example, you can run two different applications or real-time operating systems independently, to balance a data processing application; or use one core for sensor data acquisition and the other for post-processing. The microcontroller cores can also be used as a safety fallback for a graphical display, or to present early boot animations instead of static images.
Toradex presented an Apalis iMX8 demo at Embedded World 2018. Watch this video to check it out, along with some other exciting partner demos.
Soon: Colibri iMX8
The Colibri family is also slated to receive an update: Toradex will soon launch its Colibri iMX8 System on Module. Based on the NXP i.MX 8X, it will also feature a heterogeneous multicore architecture, with a Cortex-M4 core and a Cortex-A35 core running side by side. Stay tuned for more information on this upcoming System on Module!
#Amazon web services#FreeRTOS#Amazon FreeRTOS#System on Modules#heterogeneous multi-core processor#nxp i.mx 8quadmax#NXP i.MX 7#NXP VF61
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NXP、FD-SOI技術採用の低消費電力汎用プロセッサ「i.MX 7ULP」を発表 - マイナビニュース
マイナビニュース
NXP、FD-SOI技術採用の低消費電力汎用プロセッサ「i.MX 7ULP」を発表 マイナビニュース 同製品は、FD-SOIと独自のマルチ完全独立ドメイン・アーキテクチャを組み合わせることでディープスリープ・サスペンド消費電力を前世代の低消費電力i.MX 7製品比で1/17の低減となる15μW未満としたほか、リアルタイム・ドメインでのダイナミック電力効率を50%向上させること ... and more »
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I MX 8M Nano Applications Processor From NXP Featured In THE EDGE By Future Electronics
I MX 8M Nano Applications Processor From NXP Featured In THE EDGE By Future Electronics
Montreal, Canada (forpressrelease) February 7, 2020 – Future Electronics, a global leading distributor of electronic components, is featuring an applications processor for secure and affordable edge computing from NXP in the latest edition of THE EDGE. The i.MX 8M Nanoapplications processor, based on up to 4x Arm Cortex-A53 cores and 1x Arm Cortex-M7 core, features an extensive set of…
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Linux-driven i.MX ULL board drives $99 touch-panel kit
Linux-driven i.MX ULL board drives $99 touch-panel kit
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MYIR’s new “MYD-Y6ULX-HMI” dev board, built on a previous iMX6 ULL module, also drives a new $99 “MYD-Y6ULX-CHMI” 7-inch touch-panel display kit with a pre-installed Linux HMI stack and optional wireless add-on. MYIR has launched a $59 and up development board built around its MYC-Y6ULXcomputer-on-module, which runs Linux on NXP’s power-sipping i.MX6 ULL SoC. The MYD-Y6ULX-HMI dev board…
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Silicon on Insulator Market - Global Forecasts upto 2017-2025
Global Silicon on Insulator Market: Overview
Silicon on insulator (SOI) is a chip manufacturing technology that uses layered silicon–insulator–silicon substrates instead of the conventional bulk silicon and is used in making advanced semiconductor devices. The continued demand for miniaturization of electronic devices and advances in microprocessor design are seminal developments leading to the evolution of the silicon on insulator market. SOI wafers and transistors find wide applications in microelectronics to make advanced complementary metal-oxide-semiconductor (CMOS) integrated circuit (IC) fabrication.
SOI-based devices are extensively used in a number of micro-electro-mechanical systems (MEMS) since they can lower stray device capacitance, thereby significantly improving device performance. Over the forecast period, the silicon on insulator market is expected to witness a bright prospect in the next-generation microprocessor design and wafer engineering technology.
Request Sample Copy of the Report @
https://www.tmrresearch.com/sample/sample?flag=B&rep_id=2384
Global Silicon on Insulator Market: Key Trends
The silicon on insulator market is primarily driven by the rising demand for scaling of CMOS ICs, low cost of wafers, advances in the consumer electronics market, and miniaturization of semiconductor devices. The need for reducing power consumption in a variety of mobile and portable devices has fuelled the demand for SOI devices in the consumer electronic industry. In recent years, top chipmakers such as IBM, Advanced Micro Devices, and Intel Corporation have taken surging interest in the commercialization of SOI technology. This is expected to open up lucrative avenues in the silicon on insulator market. The minor restructuring in the current chip fabrication methods has enabled several manufactures to shift from the bulk silicon technology to the SOI-based devices.
Global Silicon on Insulator Market: Market Potential
Continuous efforts are being made by companies in the semiconductor and electronics industry to mainstream SOI technology by bringing improvements in their chip fabrication process. Fully depleted silicon on insulator (FD-SOI) has proven to be a simplified process technology that helps in the marked miniaturization of transistors and dramatically improves the performance of SOI devices.
Request TOC of the Report @
https://www.tmrresearch.com/sample/sample?flag=T&rep_id=2384
NXP Semiconductors N.V., a global semiconductor manufacturer based out of Netherlands, has announced in March, 2017 that it is first to market its innovative applications processor design by using FD-SOI technology. The manufacturer revealed that coupling its multiple domain architecture with FD-SOI enables it to dramatically reduce power consumption, especially improving dynamic power with as much as 50% compared to its previous http://i.MX 7 devices.
The design offers an intuitive user-experience by allowing unprecedentedly high energy-efficient graphics acceleration. In addition, the design is capable of low power standby modes and robust visual displays in a single processor. The intelligent power system architecture is attributed to the design’s extremely high operating voltage scalability. The company announced that the processor design will prove immensely helpful in enhancing the capabilities of numerous IoT, home control, and wearable devices, since they require excellent graphics processing.
Global Silicon on Insulator Market: Regional Outlook
Europe and North America are prominent markets for SOI technologies. The growth of the regional markets is mainly driven by the surging application of SOI technology in a number of mobile devices and consumer electronics and the soaring application of semiconductors in gaming consoles. Asia Pacific is expected to offer lucrative market avenues over the forecast period. The increasing demand for the SOI technology in this region is attributed to the constant advances made in miniaturization of electronic devices, especially in emerging nations, and the growing demand for advanced microprocessing technologies in computers.
Global Silicon on Insulator Market: Competitive Analysis
The silicon on insulator market ecosystem consists of raw material suppliers, vendors, system integrators, chip manufacturers, and original equipment manufacturer. Several chip manufactures are actively making improvements in their fabrication processes to adopt SOI technology. This helps them ramp up the production of SOI-based devices and gain a competitive edge over others. Leading players are opting for partnerships to consolidate their presence in emerging markets. Major players operating in the silicon on insulator market include Shin-Etsu Chemical Co., Ltd., GlobalWafers Co., Ltd., Soitec, Wafer World Inc., Ultrasil Corporation, IBM, and Intel Corporation.
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The study presents reliable qualitative and quantitative insights into:
Market segments and sub-segments
Market trends and dynamics
Supply and demand chain of the market
Market valuation (revenue and/or volume)
Key trends/opportunities/challenges
Forces defining present and estimated future state of the competitive landscape
Technological developments
Value chain and stakeholder analysis
The regional analysis covers:
North America
Latin America
Europe
Asia Pacific
Middle East and Africa
The vast market research data included in the study is the result of extensive primary and secondary research activities. Surveys, personal interviews, and inputs from industry experts form the crux of primary research activities and data collected from trade journals, industry databases, and reputable paid sources form the basis of secondary research. The report also includes a detailed qualitative and quantitative analysis of the market, with the help of information collected from market participants operating across key sectors of the market value chain. A separate analysis of macro- and micro-economic aspects, regulations, and trends influencing the overall development of the market is also included in the report.
Highlights of the report:
A detailed analysis of key segments of the market
Recent developments in the market’s competitive landscape
Detailed analysis of market segments up to second or third level of segmentation
Historical, current, and projected future valuation of the market in terms of revenue and/or volume
Key business strategies adopted by influential market vendors
Outline of the regulatory framework surrounding and governing numerous aspects of the market
Growth opportunities in emerging and established markets
Recommendations to market players to stay ahead of the competition
About TMR Research
TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in today’s supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients’ conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.
Our savvy custom-built reports span a gamut of industries such as pharmaceuticals, chemicals and metals, food and beverages, and technology and media, among others. With actionable insights uncovered through in-depth research of the market, we try to bring about game-changing success for our clients.
Contact:
TMR Research,
3739 Balboa St # 1097,
San Francisco, CA 94121
United States
Tel: +1-415-520-1050
Email: [email protected]
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Silicon on Insulator Market : The study provides information on restraints, drivers and opportunities 2025
Global Silicon on Insulator Market: Overview
Silicon on insulator (SOI) is a chip manufacturing technology that uses layered silicon–insulator–silicon substrates instead of the conventional bulk silicon and is used in making advanced semiconductor devices. The continued demand for miniaturization of electronic devices and advances in microprocessor design are seminal developments leading to the evolution of the silicon on insulator market. SOI wafers and transistors find wide applications in microelectronics to make advanced complementary metal-oxide-semiconductor (CMOS) integrated circuit (IC) fabrication.
SOI-based devices are extensively used in a number of micro-electro-mechanical systems (MEMS) since they can lower stray device capacitance, thereby significantly improving device performance. Over the forecast period, the silicon on insulator market is expected to witness a bright prospect in the next-generation microprocessor design and wafer engineering technology.
Request Sample Copy of the Report@ https://www.tmrresearch.com/sample/sample?flag=B&rep_id=2384
Global Silicon on Insulator Market: Key Trends
The silicon on insulator market is primarily driven by the rising demand for scaling of CMOS ICs, low cost of wafers, advances in the consumer electronics market, and miniaturization of semiconductor devices. The need for reducing power consumption in a variety of mobile and portable devices has fuelled the demand for SOI devices in the consumer electronic industry. In recent years, top chipmakers such as IBM, Advanced Micro Devices, and Intel Corporation have taken surging interest in the commercialization of SOI technology. This is expected to open up lucrative avenues in the silicon on insulator market. The minor restructuring in the current chip fabrication methods has enabled several manufactures to shift from the bulk silicon technology to the SOI-based devices.
Global Silicon on Insulator Market: Market Potential
Continuous efforts are being made by companies in the semiconductor and electronics industry to mainstream SOI technology by bringing improvements in their chip fabrication process. Fully depleted silicon on insulator (FD-SOI) has proven to be a simplified process technology that helps in the marked miniaturization of transistors and dramatically improves the performance of SOI devices.
Request TOC of the Report @ https://www.tmrresearch.com/sample/sample?flag=T&rep_id=2384
NXP Semiconductors N.V., a global semiconductor manufacturer based out of Netherlands, has announced in March, 2017 that it is first to market its innovative applications processor design by using FD-SOI technology. The manufacturer revealed that coupling its multiple domain architecture with FD-SOI enables it to dramatically reduce power consumption, especially improving dynamic power with as much as 50% compared to its previous i.MX 7 devices.
The design offers an intuitive user-experience by allowing unprecedentedly high energy-efficient graphics acceleration. In addition, the design is capable of low power standby modes and robust visual displays in a single processor. The intelligent power system architecture is attributed to the design’s extremely high operating voltage scalability. The company announced that the processor design will prove immensely helpful in enhancing the capabilities of numerous IoT, home control, and wearable devices, since they require excellent graphics processing.
Read Comprehensive Overview of Report @ https://www.tmrresearch.com/brain-tumor-diagnostics-therapeutics-market
Global Silicon on Insulator Market: Regional Outlook
Europe and North America are prominent markets for SOI technologies. The growth of the regional markets is mainly driven by the surging application of SOI technology in a number of mobile devices and consumer electronics and the soaring application of semiconductors in gaming consoles. Asia Pacific is expected to offer lucrative market avenues over the forecast period. The increasing demand for the SOI technology in this region is attributed to the constant advances made in miniaturization of electronic devices, especially in emerging nations, and the growing demand for advanced microprocessing technologies in computers.
Global Silicon on Insulator Market: Competitive Analysis
The silicon on insulator market ecosystem consists of raw material suppliers, vendors, system integrators, chip manufacturers, and original equipment manufacturer. Several chip manufactures are actively making improvements in their fabrication processes to adopt SOI technology. This helps them ramp up the production of SOI-based devices and gain a competitive edge over others. Leading players are opting for partnerships to consolidate their presence in emerging markets. Major players operating in the silicon on insulator market include Shin-Etsu Chemical Co., Ltd., GlobalWafers Co., Ltd., Soitec, Wafer World Inc., Ultrasil Corporation, IBM, and Intel Corporation.
The study presents reliable qualitative and quantitative insights into:
Market segments and sub-segments
Market trends and dynamics
Supply and demand chain of the market
Market valuation (revenue and/or volume)
Key trends/opportunities/challenges
Forces defining present and estimated future state of the competitive landscape
Technological developments
Value chain and stakeholder analysis
The regional analysis covers:
North America
Latin America
Europe
Asia Pacific
Middle East and Africa
The vast market research data included in the study is the result of extensive primary and secondary research activities. Surveys, personal interviews, and inputs from industry experts form the crux of primary research activities and data collected from trade journals, industry databases, and reputable paid sources form the basis of secondary research. The report also includes a detailed qualitative and quantitative analysis of the market, with the help of information collected from market participants operating across key sectors of the market value chain. A separate analysis of macro- and micro-economic aspects, regulations, and trends influencing the overall development of the market is also included in the report.
Highlights of the report:
A detailed analysis of key segments of the market
Recent developments in the market’s competitive landscape
Detailed analysis of market segments up to second or third level of segmentation
Historical, current, and projected future valuation of the market in terms of revenue and/or volume
Key business strategies adopted by influential market vendors
Outline of the regulatory framework surrounding and governing numerous aspects of the market
Growth opportunities in emerging and established markets
Recommendations to market players to stay ahead of the competition
About TMR Research
TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in today’s supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients’ conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.
Our savvy custom-built reports span a gamut of industries such as pharmaceuticals, chemicals and metals, food and beverages, and technology and media, among others. With actionable insights uncovered through in-depth research of the market, we try to bring about game-changing success for our clients.
Contact:
TMR Research,
3739 Balboa St # 1097,
San Francisco, CA 94121
United States
Tel: +1-415-520-1050
Email: [email protected]
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NXP i.MX6 Series Processors Listed in Longevity Program, with Forlinx SoM Longevity Extended Accordingly
NXP's i.MX 6 series processors have joined the "Product Longevity Program", extending the lifecycle of these processors by 10 to 15 years! This is great news for our customers as it ensures a long-term stable supply and maintenance.
At Forlinx Embedded, we have launched 7 SoM products based on 4 processors from the i.MX 6 series are widely used in various fields and trusted by thousands of customers. Thanks to NXP's longevity program, the supply lifecycle of our i.MX 6 series SoMs has also been further extended, providing more durable and stable product support.
Check out our products and experience the reliability and performance they offer!
More details:
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i.MX7デュアル搭載システムオンモジュールの販売
#兵庫県神戸市中央区御幸通7丁目 2017年09月13日 12:07:00 プロセッサ:NXP i.MX 7 (ARM Cortex-A7 / Cortex-M4、 1GHz / 200MHz ... 東京本社〒150-0043 東京都渋谷区道玄坂1-12-1渋谷マークシティ・ウエスト22F 関西本社 〒651-0087 兵庫県神戸市中央区御幸通8-1-6神戸国際会館 22F URL http://ift.tt/2hQfJn5 ポジティブワン ... 兵庫県神戸市中央区御幸通7丁目の近所のバー
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Guest Webinar: Heterogeneous Multiprocessing with Android on NXP i.MX 7

Asymmetric multiprocessing (AMP) systems fulfill the need for high performances and real-time by combining the responsiveness of a MCU (Cortex-M) with the processing power of an application processor which runs a full OS.
This webinar presents a technical overview on asymmetric multiprocessing and its implementation on an NXP i.MX 7 Colibri System on Module running Android on the MPU (Cortex-A, master core) and FreeRTOS on the MCU (Cortex-M, real-time core).
Grab your free registrations now: https://www.toradex.com/webinars/heterogeneous-multiprocessing-with-android-on-nxp-imx-7
Date and Time:
Slot 1 - Wednesday, June 06, 2018 11:00 AM - 12:00 PM (CET)
Slot 2 - Wednesday, June 06, 2018 10:00 AM - 11:00 AM (PDT)
Speakers:
Nicola La Gloria, CEO, Kynetics
Laura Nao, Embedded Engineer, Kynetics
Stefan Eichenberger, Field Application Engineer, Toradex AG
Venue: Online Webinar
#Toradex Webinar#Heterogeneous Multiprocessing#Colibri iMX7#NXP i.MX 7#Android#FreeRTOS#iMX7 System on Module#iMX7 Computer on Module
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Amazon Echo voice recognition runs on NX
Amazon Echo voice recognition runs on NX
Amazon Echo voice recognition runs on NXP’s ARM platform – NXP Semiconductors is offering a reference design that runs Amazon’s far-field voice recognition technology known as Alexa, and which is used in voice-control devices. This is the far-field technology developed by Amazon for Amazon Echo. The NXP hardware incorporates an ARM-based i.MX processor and works with Amazon’s 7-microphone array…
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Microsoft anuncia expansão no suporte para o Windows 10 IoT Core
Microsoft anuncia expansão no suporte para o Windows 10 IoT Core
A Microsoft anunciou hoje durante a conferencia Embedded World, o aumento da oferta de novos processadores para o Windows 10 IoT Core, e o alargamento do suporte através do Long-Term Servicing Channel (LTSC).
Com esta nova oferta, para além da Broadcom, Intel e Qualcomm, o Windows 10 IoT Core irá suportar brevemente os chips NXP i.MX 6 e i.MX 7. (more…)
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#Long-Term Servicing Channel#Microsoft#NXP i.MX 6#NXP i.MX 7#Windows 10#Windows 10 IoT Core#Windows 10 IoT Enterprise
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Video
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In this webinar video, Mender.io discusses some of the considerations in designing an update system. They demonstrate best approaches for safely deploying over-the-air (OTA) software updates for IoT devices without downtime or service disruption on a Toradex Colibri iMX7 SoM, powered by the NXP® i.MX 7 processor, with raw NAND. Follow this link to find more information: https://www.toradex.com/webinars/secure-over-the-air-updates
#Embedded Linux#System on Module#Computer on Module#Colibri iMX7#Embedded Linux Update#NXP i.MX 7#IoT devices#OTA software updater#Video
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Guest webinar: Secure Over-The-Air Updates

In this webinar, Mender.io will discuss some of the considerations in designing an update system. They will demonstrate best approaches for safely deploying over-the-air (OTA) software updates for IoT devices without downtime or service disruption on a Toradex Colibri iMX7 SoM, powered by the NXP® i.MX 7 processor, with raw NAND.
Mender.io is an end-to-end open source OTA software updater for embedded Linux, with both, a management server and client licensed under Apache 2.0.
Visit our webinar page to grab your free registrations now: https://www.toradex.com/webinars/secure-over-the-air-updates
Date and Time:
Slot 1 - Wednesday, September 27, 2017 10:00 AM - 11:00 AM (CET)
Slot 2 - Wednesday, September 27, 2017 10:00 AM - 11:00 AM (PDT)
Speakers:
Drew Moseley, Senior Technical Solutions Architect, Mender
David Sele, Business Development Manager, Toradex AG
Brandon Shibley, Senior Solutions Architect, Toradex Inc.
Venue: Online Webinar
#Toradex Webinar#Embedded Linux#System on Module#Computer on Module#Colibri iMX7#Embedded Linux Update#NXP i.MX 7#IoT devices#OTA software updater
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U-blox Tech Day Seattle 2017, United States

Attend the upcoming u-blox Tech Day Seattle to learn more about working with u-blox to develop your project in any or all of the following 3 segments: Positioning, Short Range Radio, Cellular (2G/3G/4G). The event will be held on August 24, 2017 at the Impact Hub in Pioneer Square, Seattle, and will commence from 11.00 A.M.
Toradex engineers will be on site to present some interesting demos – such as an IoT demo featuring Toradex’s Colibri iMX7 System on Module (SoM) based on the NXP®'s i.MX 7 processor, a Linux-based instrument cluster, and our famous TAQ robot showcasing the heterogeneous multi-core architecture – and answer your technical questions on site.
We hope to see you there!
For more information: https://www.toradex.com/events/u-blox-tech-day-seattle-2017
#Tech Day Seattle 2017#Colibri iMX7#iMX7 System on Module#NXP i.MX 7#TAQ Robot#heterogeneous multi-core#u-blox
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