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Demo Owner: Andrew Patterson Mentor Graphics' Andrew Patterson demonstrates AUTOSAR and vehicle network design using Mentor Embedded design tools and run-time software on MCUs. Also showcased is combining infotainment and instrument cluster solutions on i.MX 6 series applications processors.     https://community.nxp.com/players.brightcove.net/4089003392001/default_default/index.html?videoId=4282653864001" style="color: #05afc3; background-color: #ffffff; font-size: 14.4px;" target="_blankFeatures Showcasing the setup of a typical car entertainment system Android Jelly Bean OS on an i.MX6 with Wi-Fi enable It can behave as an access point so other smart devices can connect or as a client and reach out to external networks Instrument cluster display running Linux clients with various applications that can connect to the car Featured NXP Products ARM® Cortex®-A9 Cores: i.MX 6 Series Multicore Processors Links NXP Connect - Mentor Graphics  
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Demo This demo features NXP’s new Sensor Toolbox - The complete ecosystem for product development with NXP sensors. It encompasses NXP's wide spectrum of new sensor boards and software tools across various compatible Kinetis microcontrollers, enabling ‘out of box’ sensor demonstrations, sensor evaluation, sensor application development and prototyping. Check out a variety of impressive 'Out of Box' Sensor Demonstrations and Sensor Fusion, all enabled by NXP’s new Sensor Toolbox.  Also, don’t miss the Sensor Fusion Demo now running on the LPC platform Features Plug and Play ‘Out of the Box’ Demonstrations with 6 different sensor hardware demo kits using the Sensor Toolbox Community Edition (STB-CE) software. Showcasing the ease of quickly visualizing sensor data. 6 Sensor Demo kits include : FRDM-K64F-AGM01  (Sensor Toolbox Demo Kit for 9-Axis Solution) FRDM-K22F-SA9500  (Sensor Toolbox Demo Kit for FXLC95000CL Intelligent Motion Sensor) FRDMKL25-A8471 (Sensor Toolbox Demo Kit for FXLS8471Q  3-Axis linear Accelerometer) FRDMKL25-A8491 (Sensor Toolbox Demo Kit for MMA8491Q  3-Axis Digital Accelerometer) FRDMKL25-P3115 (Sensor Toolbox Demo Kit for MPL3115A2 Pressure Sensor/ Altimeter) RD-KL25-AGMP01 ( Sensor Toolbox 10-Axis Data Collection Board) Sensor Fusion Demo (Part of the Sensor Toolbox-CE software) Demo showcasing device orientation detection in real time using 3, 6 and 9-Axis Sensor Fusion options. (Rotating 3D PCB display) Showcasing no cost, open source and the most complete Sensor Fusion solution available. Showcasing sensor fusion running on both Kinetis and LPC MCU platforms with NXP’s 9-axis sensor board  (AGM01-Kinetis Board and AGM01-LPC Board) _______________________________________________________________________________________________________ Featured NXP Products: Sensor Toolbox|NXP _______________________________________________________________________________________________________
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Demo Owner: David Chung Intended to demonstrate how one can leverage NXP technology to safely transport loads in a range of settings from a shipyard to an assembly line. Demo runs a Seavus developed application that pre-calculates a path based on environmental input given by the QorIQ LS1021A.  It then moves the load according to that path, adjusting for unforeseen hazards such as people who move in the way during transport.  It ensures that the landing area is clear before dropping the load. Demo is entire self-contained.     Features QorIQ LS1021A FPU for precise mathematical computation IEEE 1588 Precision Time Protocol to sync clocks within system WiFi connectivity to Human-Machine Interface SEC 5.5 crypto accelerator for maximum security Dual core for redundancy i.MX6 Specialized imaging processor Used as camera interface to facilitate trajectory calculation Kinetis Microcontroller K40 General purpose low power MCU Utilized to control the crane's stepper motor Green Hills INTEGRITY RTOS Certified EAL6+ High Robustness by NSA Separates critical and non-critical tasks Seavus Crane Application Efficient algorithm for trajectory calculation and load transport Block Diagrams Organizational Structure Algorithm Diagram Function Allocation  
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Description A gamepad is a device used to interact with a videogame through a PC or console.  This gamepad in particular, includes an LCD display and touch panel for a better gaming experience. In addition, as the play environment becomes more mobile and a game can easily be connected to any network (at a friend’s house, an Internet café, a community gaming center or even an amusement park) NXP offers secure, connected devices and technologies. Add in our sensing solutions with high-performance sensing capability, processing capacity and customizable software, power management ICs and wireless charging solutions to get a complete system solution.   Features   LCD Display Touch Panel NFC Pair BLE connectivity USB Type C LED driver Smart amplifier for speaker     Block Diagram       Products   Category Name 1: MCU Product URL 1 LPC546XX Microcontroller (MCU) Family | NXP  Product Description 1 Offering the ultimate in flexibility and performance scalability, the LPC546xx MCU family provides up to 220 MHz performance while retaining power-efficiency as low as 100 uA / MHz. Its 21 communication interfaces makes it ideal for the HMI and connectivity needs of next-generation IoT applications.   Category Name 2: Drivers Product URL 1 PCA9955BTW | NXP  Product Description 1 The PCA9955B is an I2C-bus controlled 16-channel constant current LED driver optimized for dimming and blinking 57 mA Red/Green/Blue/Amber (RGBA) LEDs in amusement products. Product link 2 9.5 V boosted audio system with adaptive sound maximizer and speaker protection | NXP  Product Description 2 The TFA9890A is a high efficiency class-D audio amplifier with a sophisticated speaker boost and protection algorithm. Product link 3 TEA172x | NXP  Product Description 3 These highly integrated devices enable low no-load power consumption below 10 mW, reduce component count for a cost-effective application design, and provide advanced control modes that deliver exceptional efficiency. Product link 4 Logic controlled high-side power switch | NXP  Product Description 4 The NX5P2190 is an advanced power switch with adjustable current limit. It includes under-voltage and over-voltage lockout, over-current, over-temperature, reverse bias and in-rush current protection circuits.   Category Name 3: USB Product URL 1 USB PD and type C current-limited power switch | NXP  Product Description 1 The NX5P3290 is a precision adjustable current-limited power switch for USB PD application. The device includes under voltage lockout, over-temperature protection, and reverse current protection circuits to automatically isolate the switch terminals when a fault condition occurs. Product link 2 PTN5150 | NXP  Product Description 2 The PTN5150 enables USB Type-C connector to be used in both host and device ends of the Type-C cable. It can support Type-C to USB legacy cables and adapters defined in USB Type-C Spec.   Category Name 4: Wireless Product URL 1 PN7150 | High performance NFC controller for smart devices | NXP  Product Description 1 PN7150 is the the plug andn play NFC solution for easy integration into any OS environment, reducing Bill of Material (BOM) size and cost. Product link 2  NTAG213F, NTAG216F | NFC Forum Type 2 Tag compliant IC with field detection | NXP  Product Description 2 The NTAG213F offers innovative functionalities such as: the configuration of a field detection, the SLEEP mode, the FAST_READ command, and a configurable password protection. These capabilities fit perfectly for applications in electronics that require the following features: connection handover, Bluetooth® simple pairing, Wi-Fi protected set-ups, device authentication or gaming. Product link 3 QN908x: Ultra-Low-Power Bluetooth Low Energy System on Chip (SoC) Solution | NXP  Product Description 3 QN908x is an ultra-low-power, high-performance and highly integrated Bluetooth® Low Energy (BLE) solution for Bluetooth Smart applications such as human interface devices, and app-enabled smart accessories.   Documentation Connecting TFT LCD with LCD controller of LPC MCU:  https://www.nxp.com/docs/en/nxp/application-notes/AN12027.zip    Tools Product Link OM13098: LPCXpresso54628 Development Board OM13098 | LPCXpresso Development Board | LPC Microntrollers (MCUs) | NXP 
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Take a look at this demo using FRDM-KL25Z board with KIT34933EPEVBE evaluation board integrated with a LabView graphical user interface to show how NXP's low-voltage H-bridge motor driver (MC34933EP) is driving the zoom motor within a digital camera.     Features Fully integrated driver Small package for portable applications Built-In 2-Channel H-Bridge Driver H-Bridge Operation Voltage 2.0V~7.0V Output Current 1.0A @TA=25°C Low Total RDS(ON) 0.8Ω (Typ), 1.0Ω (Max) @ TA=25 °C Dual Channel Parallel Driver, RDS(ON) 0.4Ω (Typ). Max DC Current 1.4A PWM Control Input Frequency up to 200 kHz Built-In Shoot-Through Current Prevention Circuit Built-In Charge Pump Circuit (External Cap type) VCC Low Voltage Detection for logic power supply voltage Thermal Detection for H-Bridge driver This product is included in NXP’s Product Longevity Program, with assured supply for a minimum of 10 years after launch Featured NXP Products Product Link Freedom Development Platform for Kinetis® KL14, KL15, KL24, KL25 MCUs FRDM-KL25Z|Freedom Development Platform|Kinetis® MCU | NXP  Freedom Expansion Board - MC34933, Dual H-Bridge, Stepper Motor Driver, 2.0-7.0V, 1.4A Freedom Expansion Board - MC34933, Dual H-Bridge, Stepper Motor Driver, 2.0-7.0V, 1.4A | NXP 
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Description   Sigfox is a French company founded in 2009 that builds wireless networks to connect IoT devices. Their original focus was on industrial/professional applications such as water meters. Sigfox has recently been applying their technology to consumer applications such as smart watches and home alarms. The key parameters for the application is the requirement to exchange continuously and securely small amounts of data. A wireless base station is a transceiver that connects other devices to one another and/or to a wider area. In this particular application we are implementing a Sigfox base station.   Features Low power Securely Small amounts of data Securely transmitting small amounts of data   Block Diagram     Products   Category Name 1: MCU Product URL 1 Layerscape LS1012A Communication Processor for the IoT | NXP  Product Description 1 The QorIQ® LS1012A processor, optimized for battery-backed or USB-powered, space-constrained networking and IoT applications.   Category Name 2: Wireless Product URL 1 Low-Power Multi-Channel UHF RF Wireless Platform | NXP  Product Description 1 The OL2385 device is a radio frequency transceiver with an embedded MCU designed for a wide range of industrial and home applications requiring a very high link budget for bi-directional RF communication.   Category Name 3: Power Management Product URL 1 VR5100 Multi-output DC-DC for COMM Processor | NXP  Product Description 1 The VR5100 is a high-performance, multi-output DC-DC regulator designed to power single or dual core LS1 processors like LS1012A and LS1024A.   Category Name 4: Peripherals Product URL 1 Logic controlled high-side power switch | NXP  Product Description 1 The NX5P2190 is an advanced power switch with adjustable current limit. It includes under-voltage and over-voltage lockout, over-current, over-temperature, reverse bias and in-rush current protection circuits. Product URL 2  TJA1101 | 2nd generation PHY Transceiver | NXP  Product Description 2 TJA1101  offers 100Mbit/s transmit and receive capability per port over up to at least 15m of unshielded twisted pair (UTP) cable.   Tools   Product Link OM2385/SF001 - OL2385 Wireless sub-GHz Transceiver SIGFOX Development Kit with KL43Z OM2385/SF001 - SIGFOX Development Kit | NXP  Layerscape FRWY-LS1012A board FRWY-LS1012A Development Platform | NXP  KITVR5100FRDMEVM: Evaluation Kit for VR5100 Power Management Integrated Circuit Evaluation Kit for VR5100 Power Management Integrated Circuit | NXP 
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App-based accessory demo for an iPod remote control using the Tower System with TWR-DOCK module. Demonstrates an example of how you can build audio accessories such as speaker docks, soundbars and car audio systems.     Features Designing electronic accessories for devices such as the iPhone®, iPad® and iPod® 30-pin dock connector for iPhone, iPad, or iPod devices USB A port for iPhone, iPad or iPod connection over standard USB to Apple Lightning® and 30-pin dock connector cables Analog stereo audio line out (RCA) Analog video out (composite, S-Video and component) Digital audio input and output transferred via USB connection Interface software for iPhone, iPad, and iPod devices Power input connector (2.1A, 1A) for device charging Interface software optimized for Kinetis MCUs, hardware supports a wide range of MCU and MPU Tower Modules Compatible with Tower peripheral modules Featured NXP Products TWR-DOCK: Tower System Dock Module TWR-DOCK2: Tower System MFi Interface Module Design Resources TWRDOCKFS: TWR-DOCK Fact Sheet TWR-DOCK-K60 kit contains: TWR-DOCK module with power supply and global adaptor TWR-K60N512 Kinetis K60 MCU Module TWR-PROTO Prototyping Module with perfboard area TWRPI-MPL115A Pressure Sensor Plug-In TWR-ELEV Elevator Modules TWR-DOCK-K60LCD kit contains: TWR-DOCK module with power supply and global adaptor TWR-K60N512 Kinetis K60 MCU Module TWR-LCD graphical LCD module TWR-AUDIO-SGTL audio module TWR-ELEV Elevator Modules
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    Description: Teensy 3.1 and Teensy-LC are a complete USB-based development tools featuring respectively the Kinetis 32-bit Cortex-M4 K20 and Cortex-M0+ KL26 devices running @ 72 and 48 MHz. Teensy 3.1 is equipped with 256KB flash and 64KB RAM. Teensy-LC board is equipped with 62KB flash and 8KB RAM.   Value Propositions * Very small footprint development tools * Very Low Cost dev tool * They are able to implement many different projects * Open source SDKs   Teensy board with very high extended-Arduino compatible performance levels and libraries taking advantage of Kinetis features like low power modes and internal DMA. Libraries for LED (WS2811) and 16bit 44.1kHz audio quality is where Makers go when they need quality, performance and small size. FEATURES Hardware Specifications Specification Teensy LC Teensy 3.0 Teensy 3.1 & 3.2 Units Processor MKL26Z64VFT4 32 bit ARM Cortex-M0+ 48 MHz MK20DX128 32 bit ARM Cortex-M4 48 MHz MK20DX256 32 bit ARM Cortex-M4 72 MHz Flash Memory 62 128 256 kbytes RAM Memory 8 16 64 kbytes EEPROM 1/8 (emu) 2 2 kbytes I/O 46, 5 Volt 34, 3.3 Volt 34, 3.3V, 5V tol Analog In 8 14 21 PWM 9 10 12 UART,I2C,SPI 1,1,1 3,1,1 3,2,1 Price $24.00 $19.00 $19.80 USD   Software Enablement Teensy 3.2 & 3.1: New Features https://www.pjrc.com/store/teensylc.html     RECOMMENDED PRODUCTS Product Description Kinetis K Microcontroller Kinetis L Microcontroller RESOURCES Title Type PJRC (Teensy Official Website) Web Page
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NXP's secure over-the-air communication for automotive networks features embedded hardware cryptographic engine for the rapid decryption of received data.   Copy Code   Features   T4240 / T2080 Intelligent Network interface card (NIC) plugs into an x86 server Accelerates the network processing function such as security encryption and switching functions Offloads of Open SSL, HTTPS and virtualized network functions Maximum performance with optimized 40 Gbit/second solution Featured NXP Products T4240: QorIQ T Series T4240/T4160/T4080 24/16/8 Virtual Core T2080: QorIQ T Series T2080/T2081 Eight Virtual Core Communications Processors Links Networking Block Diagrams    
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Description Drones, Rovers, and other Unmanned Vehicles (UVs) are being utilized across various industries including first responders, municipalities, and agriculture, as well as continued support and system development for the Department of Defense. As time progresses, more exciting practical uses are being uncovered. Whether the system is expected to deliver special payloads or protect people from malicious activities, UV systems require a high level of security, reliability, and performance. Block Diagram Products Category Name Product URL Microprocessor QorIQ® Layerscape Processors Based on Arm® Technology | NXP  Secure Authenticator A1006 | Secure Authenticator IC: Embedded Security Platform | NXP  A71CH | Plug and Trust for IoT | NXP  Motor Controllers (MCU) Arm® Cortex®-M7|Kinetis® KV5x Real-time Control MCUs | NXP  Arm® Cortex®-M4|Kinetis KV4x Real-time Control MCUs | NXP  i.MX RT1020 MCU/Applications Crossover Processor | Arm® Cortex-M7 | NXP  i.MX RT1050 MCU/Applications Crossover Processor| Arm® Cortex-M7, 512KB SRAM | NXP  i.MX RT1060 MCU/Applications Crossover Processor | Arm® Cortex®-M7, 1MB SRAM | NXP  Motor Controllers (DSC) MC56F84xxx|Digital Signal Controllers | NXP  Performance Level Digital Signal Controllers, USB FS OTG, CAN-FD | NXP  MC56F82xxx | NXP  Radar MCU S32R Radar Microcontroller - S32R27 | NXP  Camera Sensor MCU i.MX RT1050 MCU/Applications Crossover Processor| Arm® Cortex-M7, 512KB SRAM | NXP  BLE MCU Arm® Cortex®-M0+|Kinetis® KW41Z 2.4 GHz Bluetooth Low Energy Thread Zigbee Radio MCUs | NXP  Electronic Speed Controller MCU Arm® Cortex®-M4|Kinetis KV4x Real-time Control MCUs | NXP  Led Driver ASL150ySHN | Single-phase Auto LED Boost Driver | NXP  AVB Switch SJA1105TEL | Five-Ports AVB and TSN Automotive Ethernet Switch | NXP  Battery Monitor MC33772 | 6-Channel Li-ion Battery Cell Controller IC | NXP  Wireless Charger 15 Watt Wireless Charging Transmitter ICs | NXP  Accelerometer Digital Sensor - 3D Accelerometer | NXP  Related Demos from Communities URL Hands-On Workshop: HoverGames Drone - Commercial Open-Source Small Autonomous Vehicle for Robotic Drones and Rovers  An NXP DroneCode Platform for Developing Low-Cost Small Autonomous Vehicles and Leveraging High-Reliability Automotive Components  Related Communities URL HoverGames Drone Challenge 
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Demo This demo showcases NXP’s MCUs, A70CM and NTAG I2C products, combined in an IoT development platform for industrial and home automation applications. Complementary Zentri software enables Wi-Fi connectivity, cloud-based device management and data analysis Features: The LPC43S67-A70CM Cloud Connectivity Kit, coupled with software from Zentri: Helps designers of embedded IoT products quickly build cloud-connected products without the need for deep expertise in security, Wi-Fi stacks, device commissioning, and cloud service APIs. Provides a complete hardware and software platform for evaluating and prototyping cloud-connected applications with IEEE 802.11b/g/n wireless connectivity based on the LPC43S6x microcontroller family and A70CM secure element. NTAG capability enables easy, secure commissioning and diagnosis by field personnel. _______________________________________________________________________________________________________ Featured NXP Products: LPC43S67-A70CM Cloud Connectivity Kit NT3H1101/NT3H1201 LPCXpresso IDE _______________________________________________________________________________________________________ Links Zentri – Securely Connect Your Products
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Demo NXP demonstrates the industry’s highest power LDMOS narrowband transistor for IFF and civil transponders     Demo / product features MMRF2010N 250 W Pulse 50 V LDMOS Transistor 250 W Peak, 1030-1090 MHz reference circuit Plastic package TO-270WB-14 50 Ohm Input matching Singe ended   MMRF1317H 1500 W Pulse 50 V LDMOS Transistor Highest power narrowband IFF transistor for defense and civil use Ceramic package NI-1230H-4S 1500 W Peak, 1030-1090 MHz reference circuit > 10:1 VSWR   NXP Recommends MMG3005N MMRF2010N MMRF1317H                                                                                                                         
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I'M Smartwatch, Smart TV's, and an interview by UI Labs CEO about natural user interfaces. The consumer experience is leading the way for the Connected Home. When technology emerges in the market, it's adopted by consumers first and then spreads into enterprise and industrial organizations.       Features See different demos showing different types devices that can be found in the home Tablets, Wearable Android watch and set top boxes interacting with TVs and smart phones Taking advantage of the i.MX6 features using Natural User Interface and showing fluid movement and seamless transitions in videos displayed using the i.MX6 processor Featured NXP Products i.MX6Q: i.MX 6Quad Processors – Quad Core Links Consumer Block Diagram
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  Overview The Altimeter Barometer Reference Design is used for directly measuring the barometric pressure, determining altitude and making simple weather predictions. The barometer pressure readings are achieved using the compensated MPX2102A pressure sensor, a HCXX series of Flash microcontroller unit (MCU), and an LCD display. This reference design enables the user to evaluate a pressure sensor for barometer, personal weather station and altimeter applications. This design can be used for altimetry features in wrist watches, cell phones, GPS systems and other electronic devices. In addition, many systems require barometric pressure data to correct system response errors. This application note describes the reliability and accuracy that our sensors can provide in a barometer or altimeter system. Archived content is no longer updated and is made available for historical reference only.   Features Demonstrates barometric pressure and altitude Pressure Sensor: MPXM2102A MPAK Package Sensitivity: 0.4 mV / kPa Pressure Rating: 100kPa (Max) Microprocessor: MC68HC908QT4 4.0K Bytes of in-application reprogrammable Flash and 128 Bytes of RAM High performance, easy to use, HC08 CPU 4 Channel 8-bit analog to digital converter 8-pin DIP or SOIC packages       Design Resources
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Overview This reference design is based on 32-bit DSC MC56F84789, to demo a micro-step stepper motor control solution. This reference design jump-starts your ability to leverage the NXP ®  DSCs' advanced feature sets via complete software, tools and hardware platform. Two phases four wires stepper motor Motor self-adaptive function, auto motor parameters identification and control system adjustment Rated peak current selection by switch, the maximum current is up to 8 A Speed ratio: 1 : 1000 with position and speed closed loop control Current PID regulator Micro-step resolution selection by switch, the maximum resolution is up to 25600 steps/rev The maximum speed is up to 3000RPM with loading capability Pulse command mode: single pulse plus direction control Maximum 1 MHz pulse command input Smooth filter function for pulse command, enabled by switch Stop with half rated current FreeMASTER software control interface and monitor Features MC56F84789 Micro-Step Stepper Motor Control MAPS-56F84000 EVK Board MAPS-MC-LV3PH Motor Control Power Stage Block Diagram Design Resources
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Demo Low-cost evaluation board running a PMSM motor Products Links S32K144 Evaluation Board https://www.nxp.com/design/development-boards/automotive-development-platforms/s32k-mcu-platforms/s32k144-evaluation-board:S32K144EVB?&fsrch=1&sr=1&pageNum=1 Low-Cost Motor Control Solution for DEVKIT Platform https://www.nxp.com/design/development-boards/automotive-development-platforms/hardware-tools-accessories/low-cost-motor-control-solution-for-devkit-platform:DEVKIT-MOTORGD?&fsrch=1&sr=1&pageNum=1 FreeMASTER Run-Time Debugging Tool FreeMASTER Run-Time Debugging Tool | NXP  Model-Based Design Toolbox https://www.nxp.com/design/automotive-software-and-tools/model-based-design-toolbox:MC_TOOLBOX?&&&code=MC_TOOLBOX&nodeId=0152109D3F12B8F6F8 Model-Based Design Toolbox for S32K14x Automotive MCU rev2.0  Model-Based Design Toolbox For Panther (MPC574xP) Family of Processors 2.0  Learning Model-Based Design Toolbox Motor Control Example Motor Control Class: Motor Control System Motor Control Class with Model-Based Design
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Overview This NXP® reference design describes a High Intensity Discharge (HID) lamp leveling system with a LIN-bus interface. Stepper motor controller operating as a LIN-bus slave (LIN Stepper Controller). All functionality is provided by a general purpose LIN-bus IC MM908E625 and LIN Stepper software (HC08 software). The LIN Master consists of a master control board, based on an MC9S12DP256 CPU, and a personal computer with a graphical user interface (GUI), running in a master software environment. The LIN-bus Stepper Controller can be used for any kind of stepper motor control using the LIN-bus serial communication protocol. Features LIN bus Interface rev 1.2 Bus speed 19.2 kbps Slave IC without external crystal or resonator Slave node clock synchronization ±15% Each LIN slave controls one bi-phase bipolar stepper motor Motor phase current limitation up to 700 mA Supply voltage 12 V d.c. Stepper motor control with stepping acceleration and deceleration ramp Stepping frequency up to 2,500 Hz Slave parameter configuration via LIN-bus Slave LIN signal reconfiguration via LIN-bus Code written in C-language Block Diagram Board Design Resources
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Connected mobility: Phones, drones and connected automobiles The number of people living in cities is expected to double by 2050, meaning congestion and pollution will increasingly be a problem for city dwellers. As a result, the cities of the future will demand smarter solutions for urban living such as intelligent traffic management solutions and connected vehicles, including drones. This transformation is already well underway. Innovations are helping to create a more entertaining, customised experience for consumers as well as making transport, on the land and in the air, safer and easier. But this is just the beginning, let NXP Semiconductors, pioneers of the connected car, give you a glimpse of the future of urban transport and the technology that will enable it   Reveal: 2016 Rinspeed Etos Concept Car - YouTube 
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Demo Cooking appliance concept enabled by IoT features that delivers chef quality cooking results for internet food delivery services   Features Fast, high quality cooking using RF solid state and convection Consistent culinary results Fits all regional counter top spacing and conventional plate sizes Popular food delivery services connected through cloud services Simplify customer/user health and fitness management through integrated data Tailor and more efficiently promote menu items Automate and simplify customer food ordering and preference management Accurately manage perishable goods inventory and replenishment _______________________________________________________________________________________________________     Featured NXP Products: http://www.nxp.com/products/rf/smart-cooking-concept:RF-SMART-COOKING-PG
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Overview This reference design exhibits the suitability and advantages of the NXP® 56F80x and 56F83XX Digital Signal Controllers (DSCs) for torque control applications using a 3-phase PMSM motor with an encoder position sensor. It can also be adapted to 56F81XX Digital Signal Controllers PM synchronous motors are popular in a wide application area The PM synchronous motor lacks a commutator and is, therefore, more reliable than the DC motor The PM synchronous motor also has advantages when compared to an AC induction motor Features Targeted 56F80X, 56F83XX, and 56F81XX Digital Signal Controllers Torque producing current component closed loop Vector current control with position feedback Encoder position feedback Overvoltage, undervoltage and overcurrent fault protection FreeMASTER display interface Manual interface Block Diagram Board
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