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NXP Model-Based Design Tools Knowledge Base

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In this video we discuss about how to use Software-in-the-Loop (SIL) approach to generate the C-code for the first time and validate the algorithm at the concept level.   We discuss about: - What is SIL, When to use it and What is recommended for;  - How to convert any Simulink generic algorithm to run with SIL support using the Model Based Design Toolbox; - SIL Reference models;  NOTE: Chinese viewers can watch the video on YOUKU using this link 注意:中国观众可以使用此链接观看YOUKU上的视频
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In this video we talk about  different motors classification, BLDC motor modelling and how to control the BLDC rotor movement.   We discuss about: - How most common motors operates - Electro-mechanical equations of BLDC motor - How BLDC works - Practical implementation of commutation sequence - BLDC vs PMSM comparison NOTE: Chinese viewers can watch the video on YOUKU using this link 注意:中国观众可以使用此链接观看YOUKU上的视频
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This video discuss about how to mix together the ADC and GPIO models to obtain a common speed reference for the BLDC speed closed loop control system.   We discuss about: - How to use analog and digital inputs - How to create a variable that can be changed in real time via Freemaster - How to test the final application - Finalize the Speed Reference Block - Short Quiz NOTE: Chinese viewers can watch the video on YOUKU using this link 注意:中国观众可以使用此链接观看YOUKU上的视频
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This video shows how to navigate within the integration Matlab help for NXP's Model-Based Design Toolbox for S32K1xx. The following items will be highlighted: Getting HELP Open Examples Support via Community
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This video explains how to use a three phase inverter to control the voltage applied on PMSM using various PWM Modulation techniques like: bipolar modulation unipolar modulation sinusoidal modulation space vector modulation third harmonic injection The goal of this video is to cover the topic of Space Vector Modulation and PWM generation that represents the basics for applications we are going to develop throughout https://community.nxp.com/thread/464336 .
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A short - 1 minute - Motor Control Class introduction that highlight the main topics and objectives of the training series NOTE: Chinese viewers can watch the video on YOUKU using this link. 注意:中国观众可以使用此链接观看YOUKU上的视频
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This video presents the hardware and software setup used for Motor Control Class. It shows: - MPC5744P DevKit main hardware features - MotorGD DevKit main hardware features - How to install the Model Based Design Toolbox for MPC5744P revision 2.0.0 - How to generate a license - How to setup a compiler toolchain using S32 Design Studio for Power Architecture - How to add the Model Based Design Toolbox for MPC5744P into the Simulink Standard Libraries - How to validate the software installation by generation C code for the first time NOTE: Chinese viewers can watch the video on YOUKU using this link. 注意:中国观众可以使用此链接观看YOUKU上的视频
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This video presents the system block diagram for BLDC speed closed loop control and how to map the application block diagram over the existing hardware. We discuss about: - What is a BLDC motor and how is made - How a BLDC motor works with electronic commutation - What is needed to construct a speed control loop - Mapping the SW and HW together NOTE: Chinese viewers can watch the video on YOUKU using this link. 注意:中国观众可以使用此链接观看YOUKU上的视频
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This video shows the main differences between basic and advanced modes for peripheral configuration
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This video shows how easy it is to build a motor control application for BLDC with NXP's Model-Based Design Toolbox
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This short video shows how a NXP CUP Car can be controlled via an application developed with Model Based Design Toolbox for S32K microprocessors
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This video demonstrates how to: SPI Master configuration SPI Slave configuration Ping-Pong data message Data visualization via FreeMASTER
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This video demonstrates how to: Wake up on time interrupt Read temperature via FlexIO interface Relay information to host PC via UART interface Go to sleep to preserve the power
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This video explains the steps required to build a control system based on Field Oriented Control theory. Step by step it is shown how the Park and Clarke Transformations works, how the values on stationary vs. rotating frames look like and what does it takes to build  a digital control system around FOC concepts with S32K144 Evaluation Board
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This video shows how to build a simple S32K application with NXP's Model-Based Design Toolbox that consists in: Read the SW2 push button state at each 0.1 seconds Switch on/off the Blue LED Record the value of the push button and display its state via serial communication in FreeMASTER
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This video explains the basics of the Permanent Magnet Synchronous Motors modes of operation with Field Oriented Control. It is not intended to replace a good engineering handbook and to go thru all the details of construction or mathematical models of the PMSM.  The topics highlighted in this video are chosen to provide specific details that represents the basics of PMSM motor control theory. The goal of this video is to refresh your knowledge about the motors and to explain some key aspects of the theory behind PMSM and Field Oriented Control that we are going to use in the next modules of the https://community.nxp.com/thread/464336 
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This video highlights the main features added in the version 4.1.0 of the NXP Model-Based Design Toolbox for S32K1xx Series
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Announcing the introduction of the Model Based Development Toolbox for MATLAB/Simulink MBD supporting MagniV S12ZVC.  The model based development toolbox is a comprehensive collection of tools that plug into the MATLAB®/Simulink® model-based design environment to support rapid application development with NXP® MCUs. OVERVIEW The model based development toolbox offers support for motor control application development, enabling control engineers and embedded developers to help shorten project life cycles. The model based development toolbox includes: Integrated Simulink®-embedded target supporting NXP MCUs for direct rapid prototyping and processor-in-the-loop (PIL) development workflows Peripheral device interface blocks and drivers Bit-accurate simulation results in the Simulink simulation environment The model based development toolbox generates all the code required to start up the MCU and run the application code, while supporting builds with multiple compilers. TARGET APPLICATIONS Aerospace and defense Automotive control design Embedded system development Industrial automation Machinery real-time systems FEATURES Built-in support for direct code download to the target MCU through the RAppID Boot Loader utility Complimentary license Built-in support for NXP FreeMASTER—a real-time debug monitor and data visualization tool interface. It provides visibility into the target MCU for algorithm calibration and tuning, making it ideal for advanced control systems, with: Monitor signals in real time on the embedded target Data logging Signal capture Parameter tuning Simulink blocks supporting: ADC CAN Custom Initialization DAC Data Memory Read/Write Digital I/O FreeMASTER Data Recorder I2C Profiler PWM SCI SPI TIM PRODUCT REQUIREMENT MATLAB® (32-Bit or 64-Bit)* Simulink MATLAB coder Simulink coder Embedded coder Support available via the NXP community at: https://community.nxp.com/community/mbdt Download the tool at www.nxp.com/mctoolbox
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Wanna see & play something cool ?  You can see it live in June during Mathworks Expo:  - Munich, Germany on June 27th  - China on June 20th an 27th If you want more details - leave a comment below Check our video showing the demo:  Video Link : 7851 
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