This is a high-performance cooling solution designed to effectively dissipate heat and ensure optimal operating temperatures for the Raspberry Pi. It is an essential accessory for users who want to enhance the performance and longevity of their Raspberry Pi device.
The compact design of the Water cooling kit for Raspberry Pi 5 allows it to be seamlessly installed on the top and bottom of the Raspberry Pi 5, ensuring efficient heat transfer and perfectly protecting the bottom of the Raspberry Pi. Its simple installation process eliminates the need for complex wiring or additional tools, making it friendly to both beginners and experienced Raspberry Pi enthusiasts.
With its powerful cooling performance, the water cooling kit for Raspberry Pi 5 for effectively dissipates heat generated by the Raspberry Pi during intensive tasks or prolonged usage. This helps prevent overheating and ensures stable performance. Efficient water-cooled cooling will allow you to connect multiple Raspberry Pi boards to a set of cooling devices. When using Raspberry Pi in a cluster, you can use a set of water-cooled devices to effectively cool multiple Raspberry Pi boards.
Features
Made for Raspberry Pi: Specially designed for Raspberry Pi 5, 1:1 mold opening, covering all heat sources, including CPU, Wi-Fi, power chip, and eMMC.
Cooling Performance: Effectively dissipates the heat generated by the Raspberry Pi, ensuring optimal operating temperatures and preventing overheating.
Easy to Use: The integrated design of the water pump and cooling fan is convenient for users to install.
RGB Color Lighting: RGB-colored lights are installed at the fan and water pump locations.
Included
1x Water cooling kit
1x Water cooling radiator
1x Black heatsink
2x Silicone hose
1x 12 V/2 A power adapter (US)
4x Hexagonal screw M2.5x10
1x L-key hex wrench
De Raspberry Pi Pico 2 W is een microcontrollerbord gebaseerd op de RP2350 met 2,4 GHz 802.11n wireless LAN en Bluetooth 5.2. Het geeft u nog meer flexibiliteit in uw IoT- of slimme productontwerpen en breidt de mogelijkheden voor uw projecten uit.
De RP2350 biedt een uitgebreide beveiligingsarchitectuur gebouwd rond Arm TrustZone voor Cortex-M. Het bevat ondertekend opstarten, 8 KB antifuse OTP voor sleutelopslag, SHA-256-versnelling, een hardware TRNG en snelle glitch-detectoren.
Dankzij de unieke dual-core en dual-architectuurmogelijkheden van de RP2350 kunnen gebruikers kiezen tussen een paar industriestandaard Arm Cortex-M33-kernen en een paar open-hardware Hazard3 RISC-V-kernen. Programmeerbaar in C/C++ en Python, en ondersteund door gedetailleerde documentatie, is de Raspberry Pi Pico 2 W het ideale microcontrollerbord voor zowel liefhebbers als professionele ontwikkelaars.
Specificaties
CPU
Dual Arm Cortex-M33 of dubbele RISC-V Hazard3-processors @ 150 MHz
Wireless
Geïntegreerde Infineon CYW43439 single-band 2,4 GHz 802.11n wireless LAN en Bluetooth 5.2
Geheugen
520 KB SRAM op de chip; 4 MB ingebouwde QSPI-flitser
Interfaces
26 multifunctionele GPIO-pinnen, waaronder 4 die kunnen worden gebruikt voor AD
Randapparatuur
2x UART
2x SPI-controllers
2x I²C-controllers
24x PWM-kanalen
1x USB 1.1-controller en PHY, met host- en apparaatondersteuning
12x PIO-statusmachines
Ingangsvermogen
1,8-5,5 V DC
Afmetingen
21 x 51 mm
Downloads
Datasheet
Pinout
Schematic
Uitgebreide boek-hardwarebundel voor de RP2040-microcontroller met meer dan 80 projecten
Ontgrendel het potentieel van moderne controllertechnologie met de Raspberry Pi Pico in deze bundel. Perfect voor zowel beginners als ervaren gebruikers, biedt de eenvoudig te volgen handleiding u de mogelijkheid om te starten bij de basis van elektronica en verder te gaan naar de complexiteit van digitale signaalverwerking. Met de Raspberry Pi Pico, de speciaal ontworpen hardwarekit en het programmeren in MicroPython, leert u de belangrijkste principes van schakelingen ontwerpen, gegevens verzamelen en verwerken.
Ga aan de slag met meer dan 80 projecten, zoals een stopwatch met OLED-display, een laserafstandsmeter en een servogestuurde ventilator. Deze projecten zijn bedoeld om u te helpen het geleerde toe te passen in praktijkscenario's. Het boek behandelt ook geavanceerde onderwerpen zoals draadloze RFID-technologie, objectdetectie en sensorintegratie voor robotica.
Of u nu uw vaardigheden op het gebied van elektronica wilt uitbreiden of dieper in ingebedde systemen wilt duiken, deze bundel is de perfecte hulpbron om u te helpen het volledige potentieel van de Raspberry Pi Pico te verkennen.
Inhoud van de bundel
1x Projectboek (273 pagina's)
1x Raspberry Pi Pico H
1x Smart Car Kit
Elektronische onderdelen
2x Soldeerloze broodplank (400 gaten)
1x Soldeerloze broodplank (170 gaten)
5x Kleurrijke 5 mm LED's (groen, rood, blauw, geel en wit)
1x Laserzender
1x Passieve zoemer
1x Micro-USB-kabel (30 cm)
1x 65 doorverbindingsdraden
1x 20 cm mannelijk naar vrouwelijk Dupont-draad
1x Doorzichtig hoesje
1x Magneet (Diameter: 8 mm, Dikte: 5 mm)
1x Draaipotentiometer
10x 2 KΩ-weerstanden
2x M2,5x30 mm koperen pilaren
10x Kruiskopschroeven met kruiskop
10x M2.5 nikkel-zeskantmoeren
1x 2-inch dual-purpose schroevendraaier
Modulen
1x RGB-module
1x 9G-servo
1x XY-joystickmodule met dubbele as
1x RC522 RFID-module
1x 4 bits digitale LED-displaymodule
1x Verkeerslichtdisplaymodule
1x Rotary Encoder-module
1x 1602 LCD-displaymodule (blauw)
1x Fotoweerstandsmodule
1x DC-motor met mannelijke Dupont-draad
1x Ventilatorblad
1x Regendruppelsmodule
1x OLED-module
1x Membraanschakelaartoetsenbord
1x Mini magnetische veermodule
1x Infraroodafstandsbediening
1x Infraroodontvangermodule
1x DC stappenmotor driverbord
1x Button
Sensoren
1x Trillingssensor
1x Bodemvochtsensor
1x Geluidssensor
1x Mini PIR-bewegingssensor
1x Temperatuur- en vochtigheidssensor
1x Vlamsensor
2x Crashsensor
2x Volgsensor
1x Ultrasone sensor
Program, build, and master over 50 projects with MicroPython and the RP2040 microprocessor The Raspberry Pi Pico is a high-performance microcontroller module designed especially for physical computing. Microcontrollers differ from single-board computers, like the Raspberry Pi 4, in not having an operating system. The Raspberry Pi Pico can be programmed to run a single task very efficiently within real-time control and monitoring applications requiring speed. The ‘Pico’ as we call it, is based on the fast, efficient, and low-cost dual-core ARM Cortex-M0+ RP2040 microcontroller chip running at up to 133 MHz and sporting 264 KB of SRAM, and 2 MB of Flash memory. Besides its large memory, the Pico has even more attractive features including a vast number of GPIO pins, and popular interface modules like ADC, SPI, I²C, UART, and PWM. To cap it all, the chip offers fast and accurate timing modules, a hardware debug interface, and an internal temperature sensor. The Raspberry Pi Pico is easily programmed using popular high-level languages such as MicroPython and or C/C++. This book is an introduction to using the Raspberry Pi Pico microcontroller in conjunction with the MicroPython programming language. The Thonny development environment (IDE) is used in all the projects described. There are over 50 working and tested projects in the book, covering the following topics: Installing the MicroPython on Raspberry Pi Pico using a Raspberry Pi or a PC Timer interrupts and external interrupts Analogue-to-digital converter (ADC) projects Using the internal temperature sensor and external temperature sensor chips Datalogging projects PWM, UART, I²C, and SPI projects Using Wi-Fi and apps to communicate with smartphones Using Bluetooth and apps to communicate with smartphones Digital-to-analogue converter (DAC) projects All projects given in the book have been fully tested and are working. Only basic programming and electronics experience is required to follow the projects. Brief descriptions, block diagrams, detailed circuit diagrams, and full MicroPython program listings are given for all projects described. Readers can find the program listings on the Elektor web page created to support the book.
Een op de Raspberry Pi Pico gebaseerde Eye Catcher
Een standaard zandklok laat meestal slechts zien hoe de tijd verstrijkt. Deze door een Raspberry Pi Pico aangestuurde zandklok toont daarentegen de exacte tijd door de vier cijfers voor uren en minuten in een zandlaag te "graveren". Na een vooraf ingestelde periode wordt het zand door twee trilmotoren vlak getrild en begint alles weer van voren af aan.
Het hart van de zandklok wordt gevormd door twee servomotoren, die via een pantograafmechanisme een schrijfpen aandrijven. Een derde servomotor tilt deze pen op en neer. Het zandbakje is voorzien van twee trilmotoren om het zand weer vlak te trillen. Het elektronische deel van de zandklok bestaat uit een Raspberry Pi Pico en een RTC/driverbord met een real-time klok, plus drivercircuits voor de servomotoren.
Een gedetailleerde bouwhandleiding is beschikbaar via download.
Kenmerken
Afmetingen: 135 x 110 x 80 mm
Bouwtijd: ca. 1,5 tot 2 uur
Inbegrepen
3x Voorgesneden acrylaatplaten met alle mechanische onderdelen
3x Mini servomotoren
2x Trilmotoren
1x Raspberry Pi Pico
1x RTC/driverkaart met geassembleerde onderdelen
Moeren, boutjes, afstandhouders en draden voor de montage
Fijnkorrelig wit zand
From basics to flows for sensors, automation, motors, MQTT, and cloud services
This book is a learning guide and a reference. Use it to learn Node-RED, Raspberry Pi Pico W, and MicroPython, and add these state-of-the-art tools to your technology toolkit. It will introduce you to virtual machines, Docker, and MySQL in support of IoT projects based on Node-RED and the Raspberry Pi Pico W.
This book combines several elements into a platform that powers the development of modern Internet of Things applications. These elements are a flow-based server, a WiFi-enabled microcontroller, a high-level programming language, and a deployment technology. Combining these elements gives you the tools you need to create automation systems at any scale. From home automation to industrial automation, this book will help you get started.
Node-RED is an open-source flow-based development tool that makes it easy to wire together devices, APIs, and online services. Drag and drop nodes to create a flowchart that turns on your lights at sunset or sends you an email when a sensor detects movement. Raspberry Pi Pico W is a version of the Raspberry Pi Pico with added 802.11n Wi-Fi capability. It is an ideal device for physical computing tasks and an excellent match to the Node-RED.
Quick book facts
Project-based learning approach.
Assumes no prior knowledge of flow-based programming tools.
Learn to use essential infrastructure tools in your projects, such as virtual machines, Docker, MySQL and useful web APIs such as Google Sheets and OpenWeatherMap.
Dozens of mini-projects supported by photographs, wiring schematics, and source code. Get these from the book GitHub repository.
Step-by-step instructions on everything.
All experiments are based on the Raspberry Pi Pico W. A Wi-Fi network is required for all projects.
Hardware (including the Raspberry Pi Pico W) is available as a kit.
Downloads
GitHub
Contents
Projects
PicoVoiceVoice alienation and sound effects with the Raspberry Pi Pico
Navigation with Vibration Feedback
POV Display
Pulse Width Modulation (PWM) with the Raspberry Pi Pico
Wi-Fi with the Raspberry Pi Pico
'Hello World' from the Raspberry Pi Pico and RP2040A look at the Raspberry Pi Foundation’s first microcontroller
Simple On-Off Temperature Controller with Raspberry Pi HAT
Multitasking with the Raspberry PiShowcase: a traffic lights controller
The Raspberry Pi Ruler GadgetFun with a time-of-flight sensor
Raspberry Pi Buffer Board (Mk. 1)Never blow up the I/O again
FM radio with RDSA top HAT project for the Raspberry Pi
LoRa with the Raspberry Pi PicoFun with MicroPython!
Tutorials
Qt for the Raspberry Pi
Raspberry Pi Pico Programmingwith MicroPython and Thonny
Raspberry Pi Full StackRPi and RF24 at the heart of a sensor network
Raspberry Pi Bash Command Cheat Sheet
Community
Java on the Raspberry PiAn interview with Frank Delporte
Reviews
Introducing the New Raspberry Pi Pico W, H, and WH
Secure Boot Solution for Raspberry PiRetrofit security at a reasonable price
Review: SmartPi – Smart Meter Extension for Raspberry Pi
Review: The Enviro+ Raspberry Pi HATMeasuring environmental data with Raspberry Pi and the HAT Enviro+
Review: Meet the Raspberry Pi 4All new but still good?
Raspberry Pi Gets a Fast 3.5' Touch DisplayMore power at no extra charge
Book Launch: Raspberry Pi for Radio Amateurs
Program and build RPi Pico-based ham station utilities, tools, and instruments
Although much classical HF and mobile equipment is still in use by large numbers of amateurs, the use of computers and digital techniques has now become very popular among amateur radio operators. Nowadays, anyone can purchase a €5 Raspberry Pi Pico microcontroller board and develop many amateur radio projects using the “Pico” and some external components. This book is aimed at amateur radio enthusiasts, Electronic Engineering students, and anyone interested in learning to use the Raspberry Pi Pico to shape their electronic projects. The book is suitable for beginners in electronics as well as for those with wide experience.
Step-by-step installation of the MicroPython programming environment is described. Some knowledge of the Python programming language is helpful to be able to comprehend and modify the projects given in the book. The book introduces the Raspberry Pi Pico and gives examples of many general-purpose, software-only projects that familiarize the reader with the Python programming language. In addition to the software-only projects tailored to the amateur radio operator, Chapter 6 in particular presents over 36 hardware-based projects for “hams”, including:
Station mains power on/off control
Radio station clock
GPS based station geographical coordinates
Radio station temperature and humidity
Various waveform generation methods using software and hardware (DDS)
Frequency counter
Voltmeter / ammeter / ohmmeter / capacitance meter
RF meter and RF attenuators
Morse code exercisers
RadioStation Click board
Raspberry Pi Pico based FM radio
Using Bluetooth and Wi-Fi with Raspberry Pi Pico
Radio station security with RFID
Audio amplifier module with rotary encoder volume control
Morse decoder
Using the FS1000A TX-RX modules to communicate with Arduino
Program, build, and master 60+ projects with the Wireless RP2040
The Raspberry Pi Pico and Pico W are based on the fast, efficient, and low-cost dual-core ARM Cortex M0+ RP2040 microcontroller chip running at up to 133 MHz and sporting 264 KB of SRAM and 2 MB of Flash memory. Besides spacious memory, the Pico and Pico W offer many GPIO pins, and popular peripheral interface modules like ADC, SPI, I²C, UART, PWM, timing modules, a hardware debug interface, and an internal temperature sensor.
The Raspberry Pi Pico W additionally includes an on-board Infineon CYW43439 Bluetooth and Wi-Fi chipset. At the time of writing this book, the Bluetooth firmware was not yet available. Wi-Fi is however fully supported at 2.4 GHz using the 802.11b/g/n protocols.
This book is an introduction to using the Raspberry Pi Pico W in conjunction with the MicroPython programming language. The Thonny development environment (IDE) is used in all of the 60+ working and tested projects covering the following topics:
Installing the MicroPython on Raspberry Pi Pico using a Raspberry Pi or a PC
Timer interrupts and external interrupts
Analogue-to-digital converter (ADC) projects
Using the internal temperature sensor and external sensor chips
Using the internal temperature sensor and external temperature sensor chips
Datalogging projects
PWM, UART, I²C, and SPI projects
Using Bluetooth, WiFi, and apps to communicate with smartphones
Digital-to-analogue converter (DAC) projects
All projects are tried & tested. They can be implemented on both the Raspberry Pi Pico and Raspberry Pi Pico W, although the Wi-Fi-based subjects will run on the Pico W only. Basic programming and electronics experience are required to follow the projects. Brief descriptions, block diagrams, detailed circuit diagrams, and full MicroPython program listings are given for all projects.
Pico Breakout Garden Base sits underneath your Pico and lets you connect up to six of our extensive selection of Pimoroni breakouts to it. Whether it's environmental sensors so you can keep track of the temperature and humidity in your office, a whole host of little screens for important notifications and readouts, and, of course, LEDs. Scroll down for a list of breakouts that are currently compatible with our C++/MicroPython libraries!As well as a labelled landing area for your Pico, there's also a full set of broken out Pico connections, in case you need to attach even more sensors, wires, and circuitry. We've thrown in some rubber feet to keep the base nice and stable and to stop it from scratching your desk, or there are M2.5 mounting holes at the corners so that you can bolt it onto a solid surface if you prefer.The six sturdy black slots are edge connectors that connect the breakouts to the pins on your Pico. There's two slots for SPI breakouts, and four slots for I²C breakouts. Because I²C is a bus, you can use multiple I²C devices at the same time, providing they don't have the same I²C address (we've made sure that all of our breakouts have different addresses, and we print them on the back of the breakouts so they're easy to find).As well as being a handy way to add functionality to your Pico, Breakout Garden is also very useful for prototyping projects without the need for complicated wiring, soldering, or breadboards, and you can grow or change up your setup at any time.Features
Six sturdy edge-connector slots for breakouts
4x I²C slots (5 pins)
2x SPI slot (7 pins)
Landing area with female headers for Raspberry Pi Pico
0.1” pitch, 5 or 7 pin connectors
Broken-out pins
Reverse polarity protection (built into breakouts)
99% assembled – just need to stick on the feet!
Compatible with Raspberry Pi Pico
Maîtrise de la puce RP2040 avec plus de 60 projets à réaliser et à programmer
Les cartes Raspberry Pi Pico et Pico W sont animées par un microcontrôleur ARM Cortex M0+ RP2040 à double coeur, rapide, efficace et peu coûteux, qui fonctionne jusqu'à 133 MHz et dispose de 264 Ko de SRAM et de 2 Mo de mémoire Flash. Outre une vaste mémoire, le Pico et le Pico W disposent de nombreuses broches GPIO et d'interfaces telles que CA/N, SPI, I²C, UART, MLI, de fonctions de temporisation, d'une interface de débogage matériel et d'un capteur de température interne.
La carte Raspberry Pi Pico W comporte en plus une puce CYW43439 Bluetooth et Wi-Fi d'Infineon. Au moment de la rédaction de ce livre, le micrologiciel Bluetooth pour le Pico W n'était pas encore disponible. Le Wi-Fi à 2,4 GHz est toutefois entièrement pris en charge avec les protocoles 802.11b/g/n.
Ce livre est une introduction à l'utilisation du Raspberry Pi Pico W avec le langage de programmation MicroPython. Les quelque soixante projets testés et opérationnels sont présentés à l'aide de l'environnement de développement intégré (EDI) Thonny. Les sujets abordés sont nombreux :
Installation de MicroPython sur le Raspberry Pi Pico depuis un PC
Interruptions de l'horloge et interruptions externes
Convertisseur analogique-numérique (CA/N)
Capteurs de température interne et externe
Capteurs externes (pression, humidité, pouls, à ultrasons)
Enregistrement de données
MLI, UART, I²C et SPI
Bluetooth, Wi-Fi et applis sur smarphone
Convertisseur numérique-analogique (CN/A)
Tous les projets ont été testés et éprouvés. Ils peuvent être mis en oeuvre sur le Raspberry Pi Pico ainsi que sur le Raspberry Pi Pico W. Toutefois les projets avec une liaison Wi-Fi ne fonctionnent que sur le Pico W. Une petite expérience en programmation et en électronique est nécessaire pour suivre les projets. De brèves descriptions, des schémas fonctionnels, des schémas détaillés du câblage des montages et des listings MicroPython complets sont fournis pour tous les projets.
Program, build, and master 60+ projects with the Wireless RP2040
The Raspberry Pi Pico and Pico W are based on the fast, efficient, and low-cost dual-core ARM Cortex M0+ RP2040 microcontroller chip running at up to 133 MHz and sporting 264 KB of SRAM and 2 MB of Flash memory. Besides spacious memory, the Pico and Pico W offer many GPIO pins, and popular peripheral interface modules like ADC, SPI, I²C, UART, PWM, timing modules, a hardware debug interface, and an internal temperature sensor.
The Raspberry Pi Pico W additionally includes an on-board Infineon CYW43439 Bluetooth and Wi-Fi chipset. At the time of writing this book, the Bluetooth firmware was not yet available. Wi-Fi is however fully supported at 2.4 GHz using the 802.11b/g/n protocols.
This book is an introduction to using the Raspberry Pi Pico W in conjunction with the MicroPython programming language. The Thonny development environment (IDE) is used in all of the 60+ working and tested projects covering the following topics:
Installing the MicroPython on Raspberry Pi Pico using a Raspberry Pi or a PC
Timer interrupts and external interrupts
Analogue-to-digital converter (ADC) projects
Using the internal temperature sensor and external sensor chips
Using the internal temperature sensor and external temperature sensor chips
Datalogging projects
PWM, UART, I²C, and SPI projects
Using Bluetooth, WiFi, and apps to communicate with smartphones
Digital-to-analogue converter (DAC) projects
All projects are tried & tested. They can be implemented on both the Raspberry Pi Pico and Raspberry Pi Pico W, although the Wi-Fi-based subjects will run on the Pico W only. Basic programming and electronics experience are required to follow the projects. Brief descriptions, block diagrams, detailed circuit diagrams, and full MicroPython program listings are given for all projects.