From Theory to Practical Applications in Wireless Energy Transfer and Harvesting
Wireless power transmission has gained significant global interest, particularly with the rise of electric vehicles and the Internet of Things (IoT). It’s a technology that allows the transfer of electricity without physical connections, offering solutions for everything from powering small devices over short distances to long-range energy transmission for more complex systems.
Wireless Power Design provides a balanced mix of theoretical knowledge and practical insights, helping you explore the potential of wireless energy transfer and harvesting technologies. The book presents a series of hands-on projects that cover various aspects of wireless power systems, each accompanied by detailed explanations and parameter listings.
The following five projects guide you through key areas of wireless power:
Project 1: Wireless Powering of Advanced IoT Devices
Project 2: Wireless Powered Devices on the Frontline – The Future and Challenges
Project 3: Wireless Powering of Devices Using Inductive Technology
Project 4: Wireless Power Transmission for IoT Devices
Project 5: Charging Robot Crawler Inside the Pipeline
These projects explore different aspects of wireless power, from inductive charging to wireless energy transmission, offering practical solutions for real-world applications. The book includes projects that use simulation tools like CST Microwave Studio and Keysight ADS for design and analysis, with a focus on practical design considerations and real-world implementation techniques.
From Theory to Practical Applications in Wireless Energy Transfer and Harvesting
Wireless power transmission has gained significant global interest, particularly with the rise of electric vehicles and the Internet of Things (IoT). It’s a technology that allows the transfer of electricity without physical connections, offering solutions for everything from powering small devices over short distances to long-range energy transmission for more complex systems.
Wireless Power Design provides a balanced mix of theoretical knowledge and practical insights, helping you explore the potential of wireless energy transfer and harvesting technologies. The book presents a series of hands-on projects that cover various aspects of wireless power systems, each accompanied by detailed explanations and parameter listings.
The following five projects guide you through key areas of wireless power:
Project 1: Wireless Powering of Advanced IoT Devices
Project 2: Wireless Powered Devices on the Frontline – The Future and Challenges
Project 3: Wireless Powering of Devices Using Inductive Technology
Project 4: Wireless Power Transmission for IoT Devices
Project 5: Charging Robot Crawler Inside the Pipeline
These projects explore different aspects of wireless power, from inductive charging to wireless energy transmission, offering practical solutions for real-world applications. The book includes projects that use simulation tools like CST Microwave Studio and Keysight ADS for design and analysis, with a focus on practical design considerations and real-world implementation techniques.
CARACTÉRISTIQUES
MÉTHODE DE TRANSMISSION SANS FIL
transmission par radiofréquence
GAMME
jusqu'à 10 mètres
ADRESSE DE COMMUNICATION
0 - 99
CANAL DE COMMUNICATION
0 - 30
BATTERIE OU PANNEAU DE COMMANDE
3,7 V 2000 mAh
TAILLE D'AFFICHAGE
2,4 pouces (6,35 cm)
DIMENSIONS
120x80x25mm
POIDS
108g
ARTICLES EXPÉDIÉS
Panneau de commande, câbles
Cette offre groupée contient :
Livre : Building Wireless Sensor Networks with OpenThread (prix normal : 40 €)
Nordic Semiconductor nRF52840 USB Dongle (prix normal : 20 €)
Livre : Building Wireless Sensor Networks with OpenThread
This book will guide you through the operation of Thread, the setup of a Thread network, and the creation of your own Zephyr-based OpenThread applications to use it. You’ll acquire knowledge on:
The capture of network packets on Thread networks using Wireshark and the nRF Sniffer for 802.15.4.
Network simulation with the OpenThread Network Simulator.
Connecting a Thread network to a non-Thread network using a Thread Border Router.
The basics of Thread networking, including device roles and types, as well as the diverse types of unicast and multicast IPv6 addresses used in a Thread network.
The mechanisms behind network discovery, DNS queries, NAT64, and multicast addresses.
The process of joining a Thread network using network commissioning.
CoAP servers and clients and their OpenThread API.
Service registration and discovery.
Securing CoAP messages with DTLS, using a pre-shared key or X.509 certificates.
Investigating and optimizing a Thread device’s power consumption.
Once you‘ve set up a Thread network with some devices and tried connecting and disconnecting them, you’ll have gained a good insight into the functionality of a Thread network, including its self-healing capabilities. After you’ve experimented with all code examples in this book, you’ll also have gained useful programming experience using the OpenThread API and CoAP.
Nordic Semiconductor nRF52840 USB Dongle
The nRF52840 dongle is a small, low-cost USB dongle that supports Bluetooth 5.3, Bluetooth mesh, Thread, ZigBee, 802.15.4, ANT and 2.4 GHz proprietary protocols. The dongle is the perfect target hardware for use with nRF Connect for Desktop as it is low-cost but still support all the short range wireless standards used with Nordic devices.
The dongle has been designed to be used as a wireless HW device together with nRF Connect for Desktop. For other use cases please do note that there is no debug support on the dongle, only support for programming the device and communicating through USB.
It is supported by most of the nRF Connect for Desktop apps and will automatically be programmed if needed. In addition custom applications can be compiled and downloaded to the dongle. It has a user programmable RGB LED, a green LED, a user programmable button as well as 15 GPIO accessible from castellated solder points along the edge. Example applications are available in the nRF5 SDK under the board name PCA10059.
The nRF52840 dongle is supported by nRF Connect for Desktop as well as programming through nRFUtil.
Features
Bluetooth 5.2 ready multiprotocol radio
2 Mbps
Long Range
Advertising Extensions
Channel Selection Algorithm #2 (CSA #2)
IEEE 802.15.4 radio support
Thread
ZigBee
Arm Cortex-M4 with floating point support
DSP instruction set
ARM CryptoCell CC310 cryptographic accelerator
15 GPIO available via edge castellation
USB interface direct to nRF52840 SoC
Integrated 2.4 GHz PCB antenna
1 user-programmable button
1 user-programmable RGB LED
1 user-programmable LED
1.7-5.5 V operation from USB or external
Downloads
Datasheet
Hardware Files
Developing CoAP applications for Thread networks with Zephyr
This book will guide you through the operation of Thread, the setup of a Thread network, and the creation of your own Zephyr-based OpenThread applications to use it. You’ll acquire knowledge on:
The capture of network packets on Thread networks using Wireshark and the nRF Sniffer for 802.15.4.
Network simulation with the OpenThread Network Simulator.
Connecting a Thread network to a non-Thread network using a Thread Border Router.
The basics of Thread networking, including device roles and types, as well as the diverse types of unicast and multicast IPv6 addresses used in a Thread network.
The mechanisms behind network discovery, DNS queries, NAT64, and multicast addresses.
The process of joining a Thread network using network commissioning.
CoAP servers and clients and their OpenThread API.
Service registration and discovery.
Securing CoAP messages with DTLS, using a pre-shared key or X.509 certificates.
Investigating and optimizing a Thread device’s power consumption.
Once you‘ve set up a Thread network with some devices and tried connecting and disconnecting them, you’ll have gained a good insight into the functionality of a Thread network, including its self-healing capabilities. After you’ve experimented with all code examples in this book, you’ll also have gained useful programming experience using the OpenThread API and CoAP.
NRF24L01 est une puce émetteur-récepteur monolithique universelle en bande ISM fonctionnant dans la bande 2,4-2,5 GHz. Caractéristiques
Émetteur-récepteur sans fil comprenant : Générateur de fréquence, type amélioré, SchockBurstTM, contrôleur de mode, amplificateur de puissance, amplificateur à cristal, modulateur, démodulateur
La sélection du canal de puissance de sortie et les paramètres du protocole peuvent être définis avec une consommation de courant extrêmement faible, via l'interface SPI.
En mode de transmission, la puissance de transmission est de 6 dBm, le courant est de 9,0 mA, le courant du mode accepté est de 12,3 mA, la consommation de courant du mode mise hors tension et du mode veille est inférieure
Antenne 2,4 GHz intégrée, prend en charge jusqu'à six canaux de réception de données
Taille : 15 x 29 mm (antenne comprise)
Raspberry Pi Pico Wireless Pack se fixe à l'arrière de votre Pico et utilise une puce ESP32 pour permettre à votre Pico de se connecter aux réseaux sans fil 2,4 GHz et de transférer des données. Il existe un emplacement pour carte microSD si vous souhaitez stocker beaucoup de données localement, ainsi qu'une LED RVB (pour les mises à jour d'état) et un bouton (utile pour des choses comme activer/désactiver le Wi-Fi).
Idéal pour adapter rapidement un projet Pico existant afin d'avoir une fonctionnalité sans fil, le Raspberry Pi Pico Wireless Pack serait utile pour envoyer des données de capteurs dans des systèmes domotiques ou des tableaux de bord, pour héberger une page Web à partir d'une boîte d'allumettes ou pour permettre à votre Pico d'interagir avec des API en ligne. .
Caractéristiques
Module ESP32-WROOM-32E pour connectivité sans fil (connecté via SPI) ( fiche technique )
1x bouton tactile
LED RVB
Emplacement pour carte Micro SD
Connecteurs femelles pré-soudés pour fixer votre Raspberry Pi Pico
Entièrement assemblé
Aucune soudure requise (tant que votre Pico est équipé de broches d'en-tête attachées)
Compatible avec Raspberry Pi Pico
Dimensions : environ 53 x 25 x 11 mm (L x L x H, y compris les en-têtes et les composants)
Bibliothèques C++ et MicroPython
Fonctionnalité, structure et manipulation d'un module de puissance
Pour les lecteurs débutant dans la gestion de l'énergie, l'« Abc des modules de puissance » contient les principes de base nécessaires à la sélection et à l'utilisation d'un module de puissance. Le livre décrit les relations et paramètres techniques liés aux modules de puissance et la base des techniques de calcul et de mesure.
Contenu
Les bases
Ce chapitre décrit la nécessité d'un convertisseur de tension DC/DC et ses fonctionnalités de base. De plus, diverses possibilités de réalisation d'un régulateur de tension sont présentées et les avantages essentiels d'un module de puissance sont mentionnés.
Topologies de circuits
Les concepts de circuits, les topologies Buck et Boost très fréquemment utilisées avec les modules de puissance sont expliqués en détail et d'autres topologies de circuits sont introduites.
Technologie, technologie de construction et de régulation
La construction mécanique d'un module de puissance est présentée, qui a une influence significative sur la CEM et les performances thermiques. De plus, les méthodes de contrôle sont expliquées et des conseils de conception de circuit sont fournis dans ce chapitre.
Méthodes de mesure
Des résultats de mesure significatifs sont absolument nécessaires pour évaluer un module de puissance. Les points de mesure et méthodes de mesure pertinents sont décrits dans ce chapitre.
Manutention
Les aspects de stockage et de manipulation des modules de puissance sont expliqués, ainsi que leurs procédés de fabrication et de soudure.
Sélection d'un module de puissance
Les paramètres et critères importants pour la sélection optimale d'un module de puissance sont présentés dans cette section.
Developing CoAP applications for Thread networks with Zephyr
This book will guide you through the operation of Thread, the setup of a Thread network, and the creation of your own Zephyr-based OpenThread applications to use it. You’ll acquire knowledge on:
The capture of network packets on Thread networks using Wireshark and the nRF Sniffer for 802.15.4.
Network simulation with the OpenThread Network Simulator.
Connecting a Thread network to a non-Thread network using a Thread Border Router.
The basics of Thread networking, including device roles and types, as well as the diverse types of unicast and multicast IPv6 addresses used in a Thread network.
The mechanisms behind network discovery, DNS queries, NAT64, and multicast addresses.
The process of joining a Thread network using network commissioning.
CoAP servers and clients and their OpenThread API.
Service registration and discovery.
Securing CoAP messages with DTLS, using a pre-shared key or X.509 certificates.
Investigating and optimizing a Thread device’s power consumption.
Once you‘ve set up a Thread network with some devices and tried connecting and disconnecting them, you’ll have gained a good insight into the functionality of a Thread network, including its self-healing capabilities. After you’ve experimented with all code examples in this book, you’ll also have gained useful programming experience using the OpenThread API and CoAP.
Nobody has any doubt that valve amplifiers produce a remarkably beautiful sound. They have a lively, deep, clear, and expressive sound, and dynamically they do not appear to have any limitations. The author investigates, in a systematic theoretical approach, the reasons for these beautiful properties. He develops new models for power valves and transformers, thus enabling the designer to determine the properties of the amplifier during the design process. Mathematical models for the coupling of power valve(s) and output transformer are provided. These will generate new insights in a special kind of distortion: the dynamic damping factor distortion (DDFD). With mathematical models in the complex domain, especially the properties at the limits of our hearing range (from 20 Hz to 20 kHz) are investigated and the minimal stability criteria for the amplifier are formulated. The often-applied negative feedback in amplifiers is extensively modelled and discussed in relation to our hearing appreciating. And after all this theory a fine selection of special amplifiers is presented and discussed.
You will notice in this book that the author not only writes about amplifier technique, but tells about the way the development of valve amplifiers can have an influence on your daily life; even the usefulness of patents is discussed. Summarizing: new theories and solutions for perfect audio with valve amplifiers. Not only the professional and the DIY-er but everyone who wants to understand valve amplifiers will read this book with much pleasure.
Plus de 200 circuits d'alimentation électrique « maison »
Cette clé USB contient plus de 200 circuits d'alimentation électrique extraits des numéros d'Elektor de 2001 à 2022. La fonction de recherche d'articles vous permet d'effectuer des recherches en texte intégral. Les résultats sont toujours affichés sous forme de documents PDF préformatés.
Quelques points forts
convertisseur Cuk
Automatic Battery Switchover
LED de contrôle de piles
alimentation de table numérique
chargeur de pile Lithium-Ion
chargeur à cellules solaires
fusible électronique
régulateur haute tension
alimentation par le port USB
convertisseur élévateur pour LED
Battery Management
et bien plus encore...
Sur la clé, vous trouverez également un dossier avec un contenu supplémentaire tel que des schémas de circuits imprimés, des fichiers Gerber et des logiciels.
A Toolbox for Audio Lovers and Engineers
Without any ambition to reach scientific levels, this book aims to be a toolbox for both audio lovers and high-end equipment designers. The elementary theory presented is the bare minimum for readers to grasp the operation and practical use of electrical, electromagnetic, physics, and electronic operations available in the designers’ toolbox. Each tool is explained in a minimum of words and theory without needless coverage of underlying equations or figures.
The book chapters guide you through the process of designing quality amplifiers with vacuum tubes, from the very beginning, considering both technical and subjective requirements – in theory and practice.
The book is a compilation of the author’s notes used in his professional and educational career but was nevertheless primarily written as a result of true love for the audiophile hobby.