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Why P scales as C*V^2*f is so obvious (pt 2)

THE GORY DETAILS

Let’s continue from where we left off last time. Let’s figure out the why of the equation,

P = C * V^2 * (a * f)

Автор: Последнее обновление: 09.05.2019 - 22:55
Article

Intel IoT Path to Product: Transportation Case Study

In this project, the goal was to both build a functional proof of concept based on the Intel® IoT Commercial Developer Kit and the more basic sensors contained within, and then progress to an Industrial solution that uses a commercial gateway, industrial sensors, McAfee Security and a Wind River based platform for a scalable product deployment. The base project is in the Transportation sector...
Автор: Последнее обновление: 23.06.2019 - 22:00
Article

Code Sample: Intel Bluetooth® Low Energy (Intel® Bluetooth® LE) Scan Bracelet in JavaScript*

From this exercise, developers will learn how to: Connect the Intel® Edison development platform, a computing platform designed for prototyping and producing IoT and wearable computing products. Interface with the Intel® Edison platform IO and sensor repository using MRAA and UPM from the Intel® IoT Developer Kit, a complete hardware and software solution to help developers explore the IoT and...
Автор: админ Последнее обновление: 23.06.2019 - 22:00
Article

Code Sample: Field Data Reporter in JavaScript*

From this exercise, developers will learn how to: Connect the Intel® Edison development platform, a computing platform designed for prototyping and producing IoT and wearable computing products. Interface with the Intel® Edison platform IO and sensor repository using MRAA and UPM from the Intel® IoT Developer Kit, a complete hardware and software solution to help developers explore the IoT and...
Автор: админ Последнее обновление: 23.06.2019 - 22:00
Article

Code Sample: Home Fall Tracker in JavaScript*

From this exercise, developers will learn how to: Connect the Intel® Edison development platform, a computing platform designed for prototyping and producing IoT and wearable computing products. Interface with the Intel® Edison platform IO and sensor repository using MRAA and UPM from the Intel® IoT Developer Kit, a complete hardware and software solution to help developers explore the IoT and...
Автор: админ Последнее обновление: 23.06.2019 - 22:00
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Announcing 18 New How-To Intel® IoT Technology Code Samples in JavaScript*

We are pleased to announce the release of 18 new how-to IoT Code Samples in JavaScript. These applications are part of a series of how-to code sample exercises using the Intel® IoT Developer Kit, Intel® IoT Gateway, Intel® Edison board, cloud platforms, APIs, and other technologies, and are designed for anyone interested in learning IoT development.
Автор: Cheston C. (Intel) Последнее обновление: 23.06.2019 - 22:00
Article

Getting Started: Intel® System Studio

This document provides a general overview of Intel® System Studio for Microcontrollers 2015 and information about how to use it for developing and debugging your applications for the Intel® Quark™ microcontroller D1000 on Linux* platforms. The overview will cover using how to do this from the command line and from Eclipse* IDE and provides a list of compiler options, additional product...
Автор: JON J K. (Intel) Последнее обновление: 29.05.2019 - 16:13
Article

Intel® System Studio 2017 Released

Автор: админ Последнее обновление: 29.05.2019 - 16:10
Article

​Rapid Prototyping with the Intel® IoT Developer Kit

Rapid prototyping is a quick way to prove your ideas, enhance them, or take them a step further in production. Before electronic boards such as the Intel® Edison board or the Intel® Galileo board were available, hardware prototyping was expensive and accessible only to a select few. Now, with online orders and a wide variety of learning tools, such as Instructables, it’s easy to dive into your...
Автор: Peter N. (Intel) Последнее обновление: 30.05.2019 - 16:55
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IDF16: Intel® Software Recap

Software, Networking and IoT Create “Best of All Worlds” at Intel Developer Forum 2016
Автор: Последнее обновление: 19.06.2019 - 16:21