Suchergebnisse für "roundyfi OR round OR lcd OR board OR based OR on OR esp OR 12e"
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Waveshare Waveshare DVK600 FGPA CPLD-Kernplatine
Waveshare DVK600 ist eine FPGA CPLD-Hauptplatine mit Erweiterungsanschlüssen zum Anschluss der FPGA CPLD-Hauptplatine und Zubehörplatinen. DVK600 bietet eine einfache Möglichkeit, ein FPGA CPLD-Entwicklungssystem einzurichten. Merkmale FPGA CPLD-Core-Board-Anschluss: zum einfachen Verbinden von Core-Boards, die einen FPGA CPLD-Chip integriert haben 8I/Os_1 Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 8I/Os_2-Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 16I/Os_1 Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 16I/Os_2 Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 32I/Os_1 Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 32I/Os_2-Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen 32I/Os_3 Schnittstelle , zum Anschluss von Zusatzplatinen/Modulen SDRAM-Schnittstelle zum Anschluss der SDRAM-Zubehörkarte funktioniert auch als FPGA CPLD Pins Erweiterungsstecker LCD-Interface , zum Anschluss von LCD22, LCD12864, LCD1602 ONE-WIRE-Schnittstelle: Einfache Verbindung mit ONE-WIRE-Geräten (TO-92-Gehäuse) wie Temperatursensor (DS18B20), elektronischer Registrierungsnummer (DS2401) usw. 5 V DC-Buchse Joystick: fünf Positionen Summer Potentiometer: zur Einstellung der Hintergrundbeleuchtung von LCD22 oder zur Kontrasteinstellung von LCD12864 und LCD1602 Stromschalter Summer-Jumper ONE-WIRE-Jumper Joystick-Jumper Downloads Schema
€ 22,95€ 9,18
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Elektor Publishing Nucleo Boards Programming with the STM32CubeIDE
Hands-on in more than 50 projects STM32 Nucleo family of processors are manufactured by STMicroelectronics. These are low-cost ARM microcontroller development boards. This book is about developing projects using the popular STM32CubeIDE software with the Nucleo-L476RG development board. In the early Chapters of the book the architecture of the Nucleo family is briefly described. The book covers many projects using most features of the Nucleo-L476RG development board where the full software listings for the STM32CubeIDE are given for each project together with extensive descriptions. The projects range from simple flashing LEDs to more complex projects using modules, devices, and libraries such as GPIO, ADC, DAC, I²C, SPI, LCD, DMA, analogue inputs, power management, X-CUBE-MEMS1 library, DEBUGGING, and others. In addition, several projects are given using the popular Nucleo Expansion Boards. These Expansion Boards plug on top of the Nucleo development boards and provide sensors, relays, accelerometers, gyroscopes, Wi-Fi, and many others. Using an expansion board together with the X-CUBE-MEMS1 library simplifies the task of project development considerably. All the projects in the book have been tested and are working. The following sub-headings are given for each project: Project Title, Description, Aim, Block Diagram, Circuit Diagram, and Program Listing for the STM32CubeIDE. In this book you will learn about STM32 microcontroller architecture; the Nucleo-L476RG development board in projects using the STM32CubeIDE integrated software development tool; external and internal interrupts and DMA; DEBUG, a program developed using the STM32CubeIDE; the MCU in Sleep, Stop, and in Standby modes; Nucleo Expansion Boards with the Nucleo development boards. What you need a PC with Internet connection and a USB port; STM32CubeIDE software (available at STMicroelectronics website free of charge) the project source files, available from the book’s webpage hosted by Elektor; Nucleo-L476RG development board; simple electronic devices such as LEDs, temperature sensor, I²C and SPI chips, and a few more; Nucleo Expansion Boards (optional).
€ 49,95
Mitglieder € 44,96
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NXP Semiconductors NXP FRDM-MCXN947 Development Board
The FRDM-MCXN947 is a compact and versatile development board designed for rapid prototyping with MCX N94 and N54 microcontrollers. It features industry-standard headers for easy access to the MCU's I/Os, integrated open-standard serial interfaces, external flash memory, and an onboard MCU-Link debugger. Technische Daten Microcontroller MCX-N947 Dual Arm Cortex-M33 cores @ 150 MHz each with optimized performance efficiency, up to 2 MB dual-bank flash with optional full ECC RAM, External flash Accelerators: Neural Processing Unit, PowerQuad, Smart DMA, etc. Memory Expansion *DNP Micro SD card socket Connectivity Ethernet Phy and connector HS USB-C connectors SPI/I²C/UART connector (PMOD/mikroBUS, DNP) WiFi connector (PMOD/mikroBUS, DNP) CAN-FD transceiver Debug On-board MCU-Link debugger with CMSIS-DAP JTAG/SWD connector Sensor P3T1755 I³C/I²C Temp Sensor, Touch Pad Expansion Options Arduino Header (with FRDM expansion rows) FRDM Header FlexIO/LCD Header SmartDMA/Camera Header Pmod *DNP mikroBUS User Interface RGB user LED, plus Reset, ISP, Wakeup buttons Lieferumfang 1x FRDM-MCXN947 Development Board 1x USB-C Cable 1x Quick Start Guide Downloads Datasheet Block diagram
€ 29,95€ 11,98
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Elektor Labs Elektor Raspberry Pi Buffer Board
Wenn Sie regelmäßig mit dem Raspberry Pi experimentieren und eine Vielzahl von externer Hardware über die Stiftleiste an den GPIO-Port anschließen, haben Sie in der Vergangenheit vielleicht schon einige Schäden verursacht. Das Elektor Raspberry Pi Buffer Board ist dazu da, dies zu verhindern! Das Board ist kompatibel mit Raspberry Pi Zero, Zero 2 (W), 3, 4, 5, 400 und 500. Alle 26 GPIOs sind mit bidirektionalen Spannungswandlern gepuffert, um den Raspberry Pi beim Experimentieren mit neuen Schaltungen zu schützen. Die Platine ist dafür vorgesehen, auf der Rückseite des Raspberry Pi 400/500 eingesetzt zu werden. Der Stecker zum Anschluss an den Raspberry Pi ist eine rechtwinklige 40-polige Buchse (2x20). Die Platine ist nur ein wenig breiter. An die Pufferausgangsbuchse kann ein 40-poliges Flachbandkabel mit entsprechenden 2x20-Steckern angeschlossen werden, um z. B. mit einer Schaltung auf einem Breadboard oder einer Platine zu experimentieren. Die Schaltung verwendet 4x TXS0108E ICs von Texas Instruments. Die Platine lässt sich auch auf einem Raspberry Pi aufstellen. Downloads Schematics Layout
€ 34,95€ 29,95
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Elektor Digital Programming with STM32 Nucleo Boards (E-book)
STM32 Nucleo family of processors are manufactured by STMicroelectronics. These are low-cost ARM microcontroller development boards. This book is about developing projects using the popular Nucleo development board. In the early chapters of the book, the architecture of the Nucleo family is briefly described. Software development tools that can be used with the Nucleo boards such as the Mbed, Keil MDK, TrueSTUDIO, and the System Workbench are described briefly in later Chapters. The book covers many projects using most features of the STM32 Nucleo development boards where the full software listings for Mbed and System Workbench are given for every project. The projects range from simple flashing LEDs to more complex projects using modules and devices such as GPIO, ADC, DAC, I²C, LCD, analog inputs and others. In addition, several projects are given using the Nucleo Expansion Boards, including popular expansion boards such as solid-state relay, MEMS and environmental sensors, DC motor driver, Wi-Fi, and stepper motor driver. These Expansion Boards plug on top of the Nucleo development boards and simplify the task of project development considerably. Features of this book Learn the architecture of the STM32 microcontrollers Learn how to use the Nucleo development board in projects using Mbed and System Workbench Toolchains Learn how to use the Nucleo Expansion Boards with the Nucleo development boards Update The Mbed compiler has been replaced with two software packages: The Mbed Studio and Keil Studio Cloud. Both of these software packages are free of charge and are available on the Internet. If you need assistance using the Keil Studio Cloud, please download the Guide below.
€ 34,95
Mitglieder € 27,96
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Elektor Publishing H0W2: Get Started with the MAX78000FTHR Development Board
Build your own AI microcontroller applications from scratch The MAX78000FTHR from Maxim Integrated is a small development board based on the MAX78000 MCU. The main usage of this board is in artificial intelligence applications (AI) which generally require large amounts of processing power and memory. It marries an Arm Cortex-M4 processor with a floating-point unit (FPU), convolutional neural network (CNN) accelerator, and RISC-V core into a single device. It is designed for ultra-low power consumption, making it ideal for many portable AI-based applications. This book is project-based and aims to teach the basic features of the MAX78000FTHR. It demonstrates how it can be used in various classical and AI-based projects. Each project is described in detail and complete program listings are provided. Readers should be able to use the projects as they are, or modify them to suit their applications. This book covers the following features of the MAX78000FTHR microcontroller development board: Onboard LEDs and buttons External LEDs and buttons Using analog-to-digital converters I²C projects SPI projects UART projects External interrupts and timer interrupts Using the onboard microphone Using the onboard camera Convolutional Neural Network
€ 39,95
Mitglieder € 35,96
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Pinecone Pinecone BL602 Evaluierungsboard
Merkmale Eingebaute USB-zu-Seriell-Schnittstelle Eingebaute PCB-Antenne Angetrieben durch Pineseed BL602 SoC mit Pinenut-Modell: 12S-Stempel 2 MB Flash USB-C-Anschluss Geeignet für Steckbrett-BIY-Projekte An Bord befinden sich drei Farb-LEDs Abmessungen: 25,4 x 44,0 mm Hinweis: USB-Kabel ist nicht im Lieferumfang enthalten.
€ 8,95€ 3,58
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Elektor Digital H0W2: Get Started with the MAX78000FTHR Development Board (E-book)
Build your own AI microcontroller applications from scratch The MAX78000FTHR from Maxim Integrated is a small development board based on the MAX78000 MCU. The main usage of this board is in artificial intelligence applications (AI) which generally require large amounts of processing power and memory. It marries an Arm Cortex-M4 processor with a floating-point unit (FPU), convolutional neural network (CNN) accelerator, and RISC-V core into a single device. It is designed for ultra-low power consumption, making it ideal for many portable AI-based applications. This book is project-based and aims to teach the basic features of the MAX78000FTHR. It demonstrates how it can be used in various classical and AI-based projects. Each project is described in detail and complete program listings are provided. Readers should be able to use the projects as they are, or modify them to suit their applications. This book covers the following features of the MAX78000FTHR microcontroller development board: Onboard LEDs and buttons External LEDs and buttons Using analog-to-digital converters I²C projects SPI projects UART projects External interrupts and timer interrupts Using the onboard microphone Using the onboard camera Convolutional Neural Network
€ 32,95
Mitglieder € 26,36
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Elektor Digital Nucleo Boards Programming with the STM32CubeIDE (E-book)
Hands-on in more than 50 projects STM32 Nucleo family of processors are manufactured by STMicroelectronics. These are low-cost ARM microcontroller development boards. This book is about developing projects using the popular STM32CubeIDE software with the Nucleo-L476RG development board. In the early Chapters of the book the architecture of the Nucleo family is briefly described. The book covers many projects using most features of the Nucleo-L476RG development board where the full software listings for the STM32CubeIDE are given for each project together with extensive descriptions. The projects range from simple flashing LEDs to more complex projects using modules, devices, and libraries such as GPIO, ADC, DAC, I²C, SPI, LCD, DMA, analogue inputs, power management, X-CUBE-MEMS1 library, DEBUGGING, and others. In addition, several projects are given using the popular Nucleo Expansion Boards. These Expansion Boards plug on top of the Nucleo development boards and provide sensors, relays, accelerometers, gyroscopes, Wi-Fi, and many others. Using an expansion board together with the X-CUBE-MEMS1 library simplifies the task of project development considerably. All the projects in the book have been tested and are working. The following sub-headings are given for each project: Project Title, Description, Aim, Block Diagram, Circuit Diagram, and Program Listing for the STM32CubeIDE. In this book you will learn about STM32 microcontroller architecture; the Nucleo-L476RG development board in projects using the STM32CubeIDE integrated software development tool; external and internal interrupts and DMA; DEBUG, a program developed using the STM32CubeIDE; the MCU in Sleep, Stop, and in Standby modes; Nucleo Expansion Boards with the Nucleo development boards. What you need a PC with Internet connection and a USB port; STM32CubeIDE software (available at STMicroelectronics website free of charge) the project source files, available from the book’s webpage hosted by Elektor; Nucleo-L476RG development board; simple electronic devices such as LEDs, temperature sensor, I²C and SPI chips, and a few more; Nucleo Expansion Boards (optional).
€ 39,95
Mitglieder € 31,96
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Elektor Digital Linux PC-based Measurement Electronics (E-book)
This book is intended as a highly-practical guide for Hobbyists, Engineers and Scientists wishing to build measurement and control systems to be controlled by a local or remote Personal Computer running the Linux operating system. Both hardware and software aspects of designing typical embedded systems are covered in detail with schematics, code listings and full descriptions. Numerous examples have been designed to show clearly how straightforward it can be to create the interfaces between digital and analog electronics, with programming techniques for creating control software for both local and remote systems. Hardware developers will appreciate the variety of circuits, including a novel, low cost modulated wireless link and will discover how using Matlab® overcomes the need for specialist programming skills. Software developers will appreciate how a better understanding of circuits plus the freedom offered by Linux to directly control at the register level enables them to optimize related programs. There is no need to buy special equipment or expensive software tools in order to create embedded projects covered in this book. You can build such quality systems quickly using popular low-cost electronic components and free distributed or low-cost software tools. Some knowledge of basic electronics plus the very basics of C programming only is required. Many projects in this book are developed using Matlab® being a very popular worldwide computational tool for research in engineering and science. The book provides a detailed description of how to combine the power of Matlab® with practical electronics. With an emphasis on learning by doing, readers are encouraged by examples to program with ease; the book provides clear guidelines as to the appropriate programming techniques “on the fly”. Complete and well-documented source code is provided for all projects. If you want to learn how to quickly build Linux-based applications able to collect, process and display data on a PC from various analog and digital sensors, how to control circuitry attached to a computer, then even how to pass data via a network or control your embedded system wirelessly and more – then this is the book for you! Features of this Book Use the power, flexibility and control offered only by a Linux operating system on a PC. Use a free, distributed downloadable GNU C compiler Use (optional) a low-cost Student Version of Matlab®. Use low-cost electronic sub-assemblies for projects. Improve your skills in electronics, programming, networking and wireless design. A full chapter is dedicated to controlling your sound card for audio input and output purposes. Program sound using OSS and ALSA. Learn how to combine electronic circuits, software, networks and wireless technologies in the complete embedded system.
€ 29,95
Mitglieder € 23,96
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Kitronik Kitronik Motor Driver Board for Raspberry Pi Pico
Dieses Board ermöglicht es dem Raspberry Pi Pico (angeschlossen über die Stiftleiste), zwei Motoren gleichzeitig mit voller Vorwärts-, Rückwärts- und Stoppsteuerung anzutreiben, was es ideal für Pico-gesteuerte Buggy-Projekte macht. Alternativ kann die Platine auch zum Betrieb eines Schrittmotors verwendet werden. Die Platine ist mit dem Motortreiber-IC DRV8833 ausgestattet, der über einen integrierten Kurzschluss-, Überstrom- und Wärmeschutz verfügt. Die Platine hat 4 externe Anschlüsse für GPIO-Pins und eine 3-V- und GND-Versorgung vom Pico. Dies ermöglicht zusätzliche IO-Optionen für Ihre Buggy-Bauten, die vom Pico gelesen oder gesteuert werden können. Außerdem gibt es einen Ein/Aus-Schalter und eine Power-Status-LED, so dass Sie auf einen Blick sehen können, ob das Board eingeschaltet ist, und Ihre Batterien schonen können, wenn Ihr Projekt nicht in Gebrauch ist. Um die Motortreiberplatine verwenden zu können, muss der Pico über eine verlötete Stiftleiste verfügen und fest in den Stecker eingesteckt werden. Die Platine erzeugt eine geregelte Stromversorgung, die in den 40-poligen Stecker eingespeist wird, um den Pico mit Strom zu versorgen, so dass dieser nicht direkt mit Strom versorgt werden muss. Die Motortreiberplatine wird entweder über Schraubklemmen oder einen Servostecker versorgt. Kitronik hat ein Micro-Python Modul und Beispielcode entwickelt, um die Verwendung des Motor Driver Boards mit dem Pico zu unterstützen. Dieser Code ist im GitHub Repo verfügbar. Merkmale Ein kompaktes und dennoch funktionsreiches Board, das als Herzstück Ihrer Raspberry Pi Pico Roboter-Buggy-Projekte entwickelt wurde. Die Platine kann 2 Motoren gleichzeitig mit voller Vorwärts-, Rückwärts- und Stoppsteuerung antreiben. Sie enthält den Motortreiber-IC DRV8833, der über einen integrierten Kurzschluss-, Überstrom- und Überhitzungsschutz verfügt. Darüber hinaus verfügt die Platine über einen Ein/Aus-Schalter und eine Power-Status-LED. Die Stromversorgung der Platine erfolgt über einen Klemmenleistenanschluss. Die 3V- und GND-Pins sind ebenfalls herausgebrochen, so dass externe Geräte mit Strom versorgt werden können. Programmieren Sie es mit MicroPython über einen Editor wie den Thonny-Editor. Abmessungen: 63 mm (L) x 35 mm (B) x 11,6 mm (H) Download Datenblatt
€ 15,95€ 7,95
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, von Saad Imtiaz SparkFun Thing Plus Matter (MGM240P): Ein vielseitiges IoT-Entwicklungsboard basierend auf Matter (Testbericht)
Das SparkFun Thing Plus Matter - MGM240P ist ein vielseitiges und funktionsreiches Entwicklungsboard für die Erstellung von Matter-basierten IoT-Geräten. Matter, früher bekannt als Project CHIP...