IoT & LoRa

2 products


  •  -25% Microchip AVR-IoT WA Development Board

    Microchip Microchip AVR-IoT WA Development Board

    The AVR-IoT WA development board combines a powerful ATmega4808 AVR MCU, an ATECC608A CryptoAuthentication™ secure element IC and the fully certified ATWINC1510 Wi-Fi network controller – which provides the most simple and effective way to connect your embedded application to Amazon Web Services (AWS). The board also includes an on-board debugger, and requires no external hardware to program and debug the MCU.Out of the box, the MCU comes preloaded with a firmware image that enables you to quickly connect and send data to the AWS platform using the on-board temperature and light sensors. Once you are ready to build your own custom design, you can easily generate code using the free software libraries in Atmel START or MPLAB Code Configurator (MCC).The AVR-IoT WA board is supported by two award-winning Integrated Development Environments (IDEs) – Atmel Studio and Microchip MPLAB X IDE – giving you the freedom to innovate with your environment of choice.Features ATmega4808 microcontroller Four user LED’s Two mechanical buttons mikroBUS header footprint TEMT6000 Light sensor MCP9808 Temperature sensor ATECC608A CryptoAuthentication™ device WINC1510 WiFi Module On-board Debugger Auto-ID for board identification in Atmel Studio and Microchip MPLAB X One green board power and status LED Programming and debugging Virtual COM port (CDC) Two DGI GPIO lines USB and battery powered Integrated Li-Ion/LiPo battery charger

    € 39,95€ 29,95

    Members identical

  • Microchip PIC-IoT WA Development Board

    Microchip Microchip PIC-IoT WA Development Board

    Out of stock

    The PIC-IoT WA Development Board combines a powerful PIC24FJ128GA705 MCU, an ATECC608A CryptoAuthentication™ secure element IC and the fully-certified ATWINC1510 Wi-Fi network controller – which provides the most simple and effective way to connect your embedded application to Amazon Web Services (AWS). The board also includes an on-board debugger, and requires no external hardware to program and debug the MCU.Out of the box, the MCU comes preloaded with firmware that enables you to quickly connect and send data to the AWS platform using the on-board temperature and light sensors. Once you are ready to build your own custom design, you can easily generate code using the free software libraries in MPLAB Code Configurator (MCC).The PIC-IoT WA Board is supported by MPLAB X IDE.Features PIC24FJ128GA705 microcontroller128 KB Flash Memory & 16 KB SRAM ATWINC1510 WiFi ModuleSingle-band 2.4GHz b/g/n IoT Network Controller, Pre-certified Module ATECC608A CryptoAuthentication™ deviceProtected Storage for 16 Keys, SHA256, AES-CCM, ECDH (Elliptic Curve Diffie-Hellman), ECDSA Other Board Features Four Status LED’s Blue LED indicates a connection to Wi-Fi network Green LED indicates a connection to the AWS servers Yellow LED indicates a packet of sensor data has been successfully published to the AWS MQTT servers Red LED indicates an Error occurred Two mechanical buttons TEMT6000 Light sensor MCP9808 Temperature sensor mikroBUS header to interface to MikroElekronika click Boards™ Auto-ID for board identification in Microchip MPLAB X On-board Debugger Programming and debugging Virtual COM port (CDC) One logic analyzer channel (DGI GPIO) USB and battery powered Integrated Li-Ion/LiPo battery charger

    Out of stock

    € 39,95

    Members € 35,96

What is the Internet of Things (IoT)?

The Internet of Things, or IoT, is a system of interconnected computing devices, physical objects with sensors, processing power, software, and other technologies that have unique identifiers (UID). The IoT network deals with communication between machines, device identification, and communication. Therefore, choosing the best wireless network based on the IoT specifications is essential.

IoT devices can transfer data over a network without the need for human-to-human or human-to-computer interaction. As a result, users may experience difficulties with security, integration, process capability, scalability, and accessibility. Solving these problems requires a smart approach to IoT device management.

What are LoRa and LoRaWAN?

LoRa enables transmissions over very long distances (more than 10 km in rural areas) with low power consumption. It is a widely used technology for IoT networks worldwide. Thanks to LoRa technology, we can solve some of the world's biggest problems: energy management, natural resource reduction, environmental protection, infrastructure efficiency, disaster relief, and more.

However, the low bandwidth of LoRa cannot be used for just any application. Due to limitations in the frequency range it uses, the protocol is unable to transmit continuously.

LoRaWAN is a low-power, wide area networking protocol built on LoRa radio modulation technology. It connects devices wirelessly to the Internet and manages communications between end-node devices and network gateways. Thus, LoRaWAN defines the communication protocol and system architecture for the network, while the physical layer of LoRa enables the long-distance communication link, with the help of the gateway.

The gateway helps to realize transmission from an electrical device to the cloud, especially in environments where other types of networks are not usable due to technical limitations.

What can you do with LoRa technology? What does Elektor offer? What accessories are there?

LoRa is an excellent choice for indoor use in a broad spectrum of applications, including smart cities, buildings, agriculture, metering, healthcare, and logistics. It is safe, bidirectional, low-power, and has a long range.

Accessories help users optimize their IoT setups. Elektor offers a wide choice of components, including gateways, RFID readers, IoT shields, and different types of sensors (e.g. temperature, position, and humidity) to meet the diverse needs of a wide range of customers.

The future of LoRa

LoRa will help reduce the costs of creating IoT solutions and enable large-scale IoT applications. It is expected to play a key role as a communications network. For example, we expect it to be used for a wide range of applications, such as numerous smart lighting systems, hydropower usage tracking, and industrial data monitoring and analysis.

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