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img-0001-fsl-ptx Added by Robert Schwebel on November 10, 2010 at 6:42pm The Pengutronix kernel team demonstrates Linux on i.MX28 on the Freescale booth at electronica 2010.  
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iWave Systems launched two additional SOMs based on i.MX 6QuadPlus (iMX6QP) and i.MX 6DualPlus(iMX6DP) adding to its existing i.MX6 SOM portfolio.  The new i.MX6QP and i.MX6DP CPUs from NXP provide increased memory bandwidth without any major changes in the software and hardware. This provides 90% enhancement in the memory efficiency compared to i.MX6Q / i.MX6D. The 2D and 3D graphic engine performance of these new QP and DP devices are improved more than 50% compared to the predecessors- i.MX6 Quad and Dual core devices. Check the performance improvements of i.mx6QP / i.mx6DP device here. iWave Systems launched the i.MX6 QuadPlus and DualPlus CPU based Qseven compatible System On Modules (SOMs) at the same time as NXP launched the i.MX6 QP/DP chipsets. These modules are supported with Linux and Android BSP support. More information about imx6QP / imx6DP modules can be found here.
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MYIR, a Chinese company focused on providing ARM based products and design services for embedded applications, has introduced a high-performance, cost-effective NXP i.MX 6UltraLite / 6ULL based ARM Cortex-A7 single board computer MYS-6ULX, especially targeting Industry 4.0 (Industrie 4.0) and Internet of Things (IoT) applications. Measuring only 70mm by 55mm, the MYS-6ULX has DDR3, Nand Flash, USB, Ethernet, TF, LCD and more other core components and peripheral interfaces integrated on the tiny board. Furthermore, it has two 2.0mm pitch 2x20-pin headers on board to bring out as many as signals for user extensions.   The MYS-6ULX single board computer has MYS-6ULX-IND and MYS-6ULX-IOT two different models, which are respectively for Industry 4.0 and IoT applications. The two boards share the same hardware circuit design and are fully compatible in software. The MYS-6ULX-IND is built around the i.MX 6UL processor family and can support -40 to +85 Celsius extended temperature operation, which makes the board more suitable for industrial control and communication applications. The MYS-6ULX-IOT is based on the i.MX 6ULL processor family and has additionally a USB based WiFi module with antenna on the board. MYIR has ported Linux 4.1.15 for the board with Debian distribution as well as Yocto project with ported QT. MYIR has also provided an interesting demo to enable customers to experience Amazon Alexa Voice Service. Additionally, MYIR will offer optional LCD modules, camera modules, GPS module, GPRS module and expansion base board to add functionality to the boards.   MYIR offers ultra-low cost for the boards, pricing at $31.8/pc for MYS-6ULX-IND and only $28.8/pc MYS-6ULX-IOT.                            MYS-6ULX-IND Single Board Computer                                    MYS-6ULX-IOT Single Board Computer
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img-0011-ptx Added by Robert Schwebel on November 10, 2010 at 6:47pm   Showing mainline Linux 2.6.26 on MX23, MX27, MX28 and MX35 at the Pengutronix booth.
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http://www.youtube.com/watch?v=2CPUAsNWk5Q&feature=player_embedded   Uploaded by Charbax on Jan 10, 2012 Optimum Semiconductor Technologies Inc shows this single-core Freescale i.MX53 ARM Cortex-A8 and single-core AmLogic ARM Cortex-A9 based Android Set-top-box for $100-$120 depending on order quantity. Category: Science & Technology License: Standard YouTube License  
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http://www.youtube.com/watch?v=GN0VzR7b6IQ&feature=player_embedded   Published on Jul 10, 2012 by freescale http://www.freescale.com iWave Systems Technology Pvt Ltd, headquartered in Bangalore India, provides smart design solutions in embedded systems. iWave enables its customers shortest time to market through its proven i.MX SOM & Development platforms. Together with their US Partner, FirstView Consultants, based in Austin, TX, iWave provides local service with offshore prices. iWave's latest i.MX6x based SOM is available both in MXM (for automotive) and in Q7 (for medical, industrial) form factor with complete BSP for latest Android 4.0, WEC7 & Linux 3.0.15. Category: Science & Technology License: Standard YouTube License
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iWave Systems introduces enhanced educational marvel the versatile and well equipped “Advanced Learning Platform.” The ALP comprises of i.MX6 Pico ITX SBC and a peripheral daughter card which is meant to enable University students to evaluate several new displays, sensors, communication and I/O interfaces, hence introducing them to a rich and wide world of Embedded Systems which is indeed a unique blend of Academic and Industrial utility. Truly this product is meant to redefine iWave’s slogan “Embedding Intelligence.” i.MX6 Advanced Learning Platform Now, the question arises “Why is there a need of platforms of this kind for graduate students at the academic level?” This platform will ensure sufficient number of educated future engineers capable of designing complex systems and maintaining a leadership in the area of embedded systems, thereby ensuring its strongholds in automotive, avionics, industrial automation, mobile communications, telecoms and medical systems. This platform will also guarantee technological development of the educational approach in the field of embedded systems. The below section of the article provides a project example which can be carried out using ALP, so as to make the reader aware of the efficiency & capabilities of ALP. Project title: 'Automated Inspection System' This project can be carried out by using following features of the ALP. Motor interface Camera interface Image processing capabilities of i.MX6 processor High Level System Block Diagram - Project Description – In industries conveyor belts are used as inspection systems, which aims to remove or isolate the defect pieces. When things move on the conveyor belt, Image is taken of each product for inspection. The ALP’s motor interface can be used to drive the conveyor belt. The camera connected to the ALP can capture the images of the products going on the conveyor belt and sends it to the CPU for identifying the defect pieces. This is one possible project which can be carried out in ALP. In fact there are numerous projects which can be carried out. It can be a weather forecasting system, vibration monitoring system, surveillance system, coordinate locating system, personalized audio system, energy efficient system, touch controlled system, motor control system, lighting system, applications involving displays, current sensing meter, digital time display meter etc. Finally it’s all up to you what you make of the ALP. For More information Click Here To Know more about Educational Platforms from iWave Click Here Email: mktg@iwavesystems.com Web: www.iwavesystems.com
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This short video introduces the Device Solutions Opal-6 i.MX6 based System on Module (SoM) and highlights key features of the module and Internet of Things (IoT) Development Kit. The SoM has a small, robust 60mm x 60mm form-factor which is ideal for demanding environmental applications, or where space is limited.
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DSC_0053 Added by iWavesystems on April 3, 2012 at 8:40am    
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http://www.youtube.com/watch?v=p0lkZlDTq8Q&feature=player_embedded   Uploaded by Charbax on Jun 21, 2011 This is an Interview with Rajeev Kumar, consumer product line manager for Freescale's Multimedia Applications Division, demonstrating the first prototype reference design board running the first sample of Freescale's new i.MX6 Quad-core processor platform. This is the industry's first Quad-core ARM Cortex-A9 SoC combined with a full 64bit memory bus. I try to ask Rajeev Kumar about the performance, the features, the design. They use triple-play graphics designed in partnership with Vivante. Look forward to more videos here on http://ARMdevices.net about this processor. Category: Science & Technology License: Standard YouTube License  
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Toradex displayed the new member of its System on Module (SOM) product line based on the NXP® i.MX 7 series applications processors at the Embedded World 2016 - Colibri iMX7D and Colibri iMX7S. The Colibri iMX7S and Colibri iMX7D are SODIMM-sized SOMs based on NXP® i.MX 7Solo and NXP/Freescale i.MX 7Dual SoCs respectively. These SoCs support asymmetric and heterogeneous multi-core processing. Real-time applications are executed on the ARM® Cortex®-A4 and the user-generated applications run on ARM Cortex-A7. Learn more about Colibri i.MX 7 System on Module here.
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Product Features: SMARC Development kit pre-loaded with Android OS Kit includes: (1). REV-SA01 SMARC Evaluation Carrier Board in 3.5" SBC Form Factor (2). SMA-IMX6QI Quad Core SMARC Module (3). Power Adapter: AC Input: 100-240V DC Output: 5.0V (4). Power Cable (5). Mini-USB Cable (6). Pre-loaded OS on onboard eMMC
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  Adeneo Embedded's continued investment in the Freescale i.MX6 solutions is proven again. Adeneo Embedded discovered a critical bug in the ARM TLB translation mechanism detailed in the following ARM errata:       ARM: 754322—Possible faulty MMU translations following an ASID switch       We have developed a patch for the Windows Embedded Compact Kernel that fixes this issue on the i.MX6 BSP. We are currently in the validation process of this fix and will be releasing the patch soon.     For early access to the patch and further information please contact sales@adeneo-embedded.com    
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Added by Harald Krapfenbauer on November 2, 2011 at 1:37am Just installed the Inflexion UI Demo on our new Core Module incorporating an i.MX535. First impression: I like it! One can clearly see the difference between using the GPU and doing all in software (because there are 2 different libraries). "Installing" means copying 2 files (one for the lib, one for the demo). Well, that's simple!
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http://www.youtube.com/watch?v=K9UXhZSYphw&feature=player_embedded   Published on Apr 20, 2012 by iWavesystems The Platform is based on Freescale's i.MX508 processor which is a system-on-chip (SoC) that incorporates high performance 800MHz ARM Cortex-A8 processor along with on-chip EPD and LCD Controller. Lower power consumption of ARM Cortex-A8 eliminates the need for heat dissipation and helps developers to design silent, air-tight enclosed solutions. The i.MX50 Quick Start Board comes with 256MB Low power DDR2 and 4GB micro SD card loaded with boot code and Linux . The Quick start board supports Standard SD port for SDIO expansions, 10/100Mbps Ethernet, Micro USB 2.0 Device port, USB 2.0 Host Type A port, Headphone Audio IN & Audio OUT port, DB15 VGA display out port, DB9 Debug Serial port, JTAG connector and Expansion connector port for EPD & LCD expansion. This enables developers to quickly prototype their application needs around i.MX50 processor and optimize the development effort and time to market of their products.Board Support Packages for Linux and Android is available for the i.MX50 Quick Start Board.iWave Systems also launched EPD Add-On module and LCD Add on Module for i.MX50 Quick Start Board for quick validating of different display interfaces capability of i.MX50 CPU. Category: Science & Technology License: Standard YouTube License  
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Developer Kit i.MX53 Added by Ramona Maurer on March 28, 2012 at 10:51am   Developer Kit from emtrion also available with Linux and QNX
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23 February 2016, Nürnberg, Germany: Toradex is pleased to announce a new member of its System on Module (SOM) product line based on the NXP i.MX 7 series applications processors. The processors offer an excellent performance/power ratio, advanced security features, and a heterogeneous multicore architecture based on ARM ® Cortex-A7 and Cortex-M4 cores, which make the platform a perfect fit for products targeting the rapidly growing IoT market. Some of the features of new SOMs: Colibri iMX7S and Colibri iMX7D are; NXP i.MX 7Solo and i.MX 7Dual applications processors 1x/2x ARM ® Cortex-A7 up to 1GHz & 1x Cortex-M4 at 200MHz 256MB/512MB RAM, 512MB on-board Flash Asymmetric/ Heterogeneous multicore processing Low power consumption/ high efficiency Advanced security features Connectivity: CAN, Ethernet, USB, I2C, UART, etc. Multimedia: Touch, RGB, Camera Parallel Interface, Analog Audio, etc. Temperature range -20° to 85° C The additional Cortex-M4 core is tailored for time-critical applications. This unique heterogeneous multicore architecture allows to clearly separate real time tasks from any server or GUI-related applications. The i.MX 7 processor also includes many additional security features such as secure boot, cryptographic acceleration and tamper detection, which are of high value for the IoT market. Toradex's internal benchmarks prove the effectiveness of the new architecture used for i.MX 7 processors. While the performance is comparable to the very successful i.MX 6Solo processor (ARM ® Cortex-A9 1GHz) SoC, the power consumption in operating mode is in the range of the Colibri VF61 (ARM ® Cortex-A5 500MHz) or less than 75% of the power consumption of i.MX 6Solo. When looking at the standby mode, i.MX 7 requires even less than a third compared to the power consumption of i.MX 6Solo.                                                                                                       *Results are based on nbench benchmarking, which uses a single-core, so performance & power consumption figures                                                                                                                 are comparable between dual-core i.MX 7Dual and single-core SoCs such as i.MX 6Solo, VF61 & VF50 The Colibri iMX7S/D SOMs are an extension to the robust and compact Toradex embedded computing SOMs and customized Single Board Computers (SBC), which are used in variety of industries such as industrial automation, medical, automotive, robotics and many more. Toradex’s products are ideal for quickly creating proof-of-concepts as well as scaling seamlessly from prototypes to tens of thousands of devices, without the need to redesign the embedded computer. “We are happy to be one of the first companies in the world providing a product based on the NXP ® i.MX 7 series. This processor offers an upgrade path from our pin-compatible VFxx-based platforms while retaining the unique combination of two different cores on the same die. By controlling sensors and actuators through the Cortex-M4 core and running non-time critical tasks on the Cortex-A7 core, many customers can massively reduce both the system complexity and the BOM cost. This great product is another result of a longstanding and strong partnership between Toradex and NXP,” said Stephan Dubach, CEO, Toradex. “NXP is looking to drive wide adoption of the i.MX7, critical to our success are system level board designs from our partners that enable our customers to effectively accelerate time to market. Toradex’s Colibri i.MX7 SOM is a highly efficient, powerful module that offers advanced security features in a small form factor. This combined with an extensive ecosystem, will allow customers to immediate start development and shorten time to market,” said Robert Thompson, Chief Enablement Architect for i.MX applications processors, NXP Semiconductors. Technical Specifications: Technical details of Colibri iMX7 SOMs can be found at https://www.toradex.com/computer-on-modules/colibri-arm-family/nxp-freescale-imx7 Availability: Toradex’s Colibri iMX7 SOMs will be available for sales from 23 February 2016 on the Toradex webshop. Webinar: Toradex is hosting a webinar on 09 March 2016 with NXP. Register now: Introducing the i.MX 7 System-on-Chip - presented by Toradex and NXP About Toradex: Toradex is a Swiss based company with offices around the world, offering ARM ® -based System on Modules (SOMs) and Customized SBCs. Powered by NXP ® i.MX 6, i.MX 7 & Vybrid, and NVIDIA ® Tegra processors, the pin compatible SOMs offer scalability in terms of price, performance, power consumption, and I/Os. Complemented with direct online sales and long-term product availability, Toradex offers direct premium support and ex-stock availability with local warehouses. https://www.pinterest.com/pin/create/extension/
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