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IoT: Building Arduino-Based Projects, Waher Peter, Seneviratne Pradeeka, Russell Brian


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Автор: Waher Peter, Seneviratne Pradeeka, Russell Brian
Название:  IoT: Building Arduino-Based Projects
ISBN: 9781787120631
Издательство: Packt Publishing
Классификация:
ISBN-10: 1787120635
Обложка/Формат: Paperback
Страницы: 736
Вес: 1.24 кг.
Дата издания: 31.01.2017
Язык: English
Размер: 23.50 x 19.05 x 3.73 cm
Читательская аудитория: General (us: trade)
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Поставляется из: США


Internet of Things with Arduino Blueprints

Автор: Seneviratne Pradeeka
Название: Internet of Things with Arduino Blueprints
ISBN: 1785285483 ISBN-13(EAN): 9781785285486
Издательство: Неизвестно
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Цена: 8091.00 р.
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Beginning e-textile development

Автор: Seneviratne, Pradeeka
Название: Beginning e-textile development
ISBN: 1484262603 ISBN-13(EAN): 9781484262603
Издательство: Springer
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Цена: 6986.00 р.
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Описание: Chapter 1. Getting StartedChapter Goal: This chapter will get you started with your Wearic Smart Textiles kit. It will also set the stage for the experiments and projects you will find in the following chapters. You will learn how to program the microcontroller using the Arduino IDE and MakeCode blocks.- Introduction to the wearable electronics- Introduction to the Wearic Smart Textiles kit- Setting up the development environment- Writing your first program to control the onboard LED
Chapter 2. Making Wearables Attractive and Visible Using LightsChapter Goal: In this chapter, you will learn how to use the Wearic LED textile to add lights to your wearables. LEDs are a beautiful way to add light to wearable tech garments. Different lighting effects make your textile more attractive and highly visible. Sometimes LEDs use as indicators. You will learn basic sewing skills with conductive threads, basic electronics, and basic programming (to create different lighting effects). The skills you gain by this chapter will help you to follow the rest of the chapters.- Learn about the LED textile in detail- Applications in fashion and other industries- Testing: finding LED polarity, Use batteries and wires to test LEDs- Sewing LEDs onto the LED textile- Snapping LED textile to the expansion board- Programming: Creating light effects (i.e: blinking both LEDs, toggle LEDs, fading)- Controlling other types of LEDs (RGB, NeoPixels, etc)
Chapter 3. Physical Controlling with ButtonsChapter Goal: In this chapter, you will learn how to use the Wearic Push-button textile to your wearables. A push-button textile consists of two soft-push buttons. By programming the microcontroller these buttons can be used to control actuators such as LEDs, heating textiles, wet textiles, etc. The skills you gain by this chapter will help you to follow the rest of the chapters.- Learn about the Push button textile- Applications in the fashion industry- Snapping Push-button textile to the expansion board- Programming: learning about different button status by controlling LEDS
Chapter 4. Staying WarmChapter Goal: In this chapter, you will learn how to use the Wearic Heating textile to keep your wearables warm. You will learn various techniques on how to program the heated textile to make different heating effects/experiences. By following this chapter the reader will able to make textiles by adding heating textiles, sensors, and LEDs (actuators).- Learn about the 'Heating textile' in detail- Alternatives/ Industrial applications- Testing: Use batteries and wires to test the heating textile- Snapping Heating textile to the expansion board- Programming: Controlling heating textile through the microcontroller- Programming: Using PWM to control the heating textile.- Programming: Using a feedback mechanism to keep the temperature at a specific level using a temperature sensor.- Programming: Putting them all together to build a heated mat with feedback LEDs.
Chapter 5. Your Second SkinChapter Goal: In this chapter, you will learn how to use the Wearic textile pressure sensor to enable your wearable touch and pressure-sensitive. By following this chapter the reader will able to make textiles by adding pressure-sensitive textiles, sensors, and actuators.- Learn about the 'Textile pressure sensor' in detail.- Alternatives / Applications in fashion tech / Applications in medical- Snapping textile pressure sensor to the expansion board.- Programming: Sensing pressure, low and hi

Beginning Data Science, Iot, and AI on Single Board Computers: Core Skills and Real-World Application with the BBC Micro: Bit and Xinabox

Автор: Meitiner Philip, Seneviratne Pradeeka
Название: Beginning Data Science, Iot, and AI on Single Board Computers: Core Skills and Real-World Application with the BBC Micro: Bit and Xinabox
ISBN: 1484257650 ISBN-13(EAN): 9781484257654
Издательство: Springer
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Цена: 5309.00 р.
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Описание: Chapter 1: Introduction to Data Science in the ClassroomChapter Goal: After reading this chapter, readers will understand the importance of measurement - they will able to measure air temperature using a thermometer and they will understand how it works. We will introduce a number of core data science concepts and how to apply them to build an experiment. We'll cover some basic how-to skills for gathering and tabulating data, and we will undertake some analysis on our results. The reader will get an overview of a complete and meaningful example of applied data science, and they will be ready to explore more deeply.

  1. Data is everywhere: Why do we measure things and what does 'measuring things' even mean? How is this related to data science?
  2. Using Temperature: How is temperature used in the world?
  3. Measuring temperature: What does a thermometer do and how does it work?
  4. Designing an experiment: We will begin to design an experiment using our thermometers to measure the temperature at different locations. We will look at factors that might have a negative impact on our experiment and we'll look at controlling them. We we will see the importance of validity and reliability.
  5. Data capturing: Before our experiment commences, we will introduce the reader to the concept of data capturing - recording (tabulating) data.
  6. Experimenting with temperature: Here we will outline the classroom activity (experiment) to collect and analyse data. We will introduce the concept of experimental design and see how it can help address issues of reliability and validity.
  7. Analysing our results: We will introduce the concept of 'interrogating' the data by listing a series of questions that the data set might provide insights into. In a later chapter we will look at more sophisticated analysis, for now we show how to extract some meaning / insights from the data we just collected.
  8. Summary: Brings together all the new concepts introduced in this chapter and sets the stage for the next chapter.

Chapter 2: Data Science Goes DigitalChapter Goal: After reading this chapter, readers will understand why there is a tendency to 'go digital' and what it means to read data digitally. We will introduce technology and coding to replicate our experiment and we will begin to explore ways that the digital approach can expand our capabilities and potential as data scientists. We'll use a BBC micro: bit (or any similar device) to measure temperature, all the while looking at our experimental design and how to improve it. By the end of the chapter we will have identified the sort of hardware we need in our data science toolkit.
  1. Making it digital: Why is everything digital? What are the types of thermometers? Explain about digital thermometers and show how they are different to analogue. How can introducing digital improve our temperature experiment from Chapter 1
  2. Using a microprocessor to measure temperature digitally: We will use micro: bit - brief intro to microbit, including sensors that can be used for measure things causing GW (only the ambient temperature sensor).
  3. Using the BBC micro: bit as a thermometer: Programming the micro: bit for reading the air temperature of the classroom. Use MakeCode (or MicroPython) for programming.
  4. Analogue and digital thermometers: Reading temperature simultaneously from a micro: bit and a thermometer. Discuss differences between methods. In particular the difficulties of manual reading, need to read two things same time (thermometer or micro: bit and the clock)
  5. Limitations of micro: bit as a standalone tool: We've seen some limitations with microbit. By itself it provides us with too few tools. What are -ons and how are add-ons used with microprocessors, and what abou
ESP8266 Robotics Projects

Автор: Seneviratne Pradeeka
Название: ESP8266 Robotics Projects
ISBN: 1788474619 ISBN-13(EAN): 9781788474610
Издательство: Неизвестно
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Цена: 6068.00 р.
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Hands-On Internet of Things with Blynk

Автор: Seneviratne Pradeeka
Название: Hands-On Internet of Things with Blynk
ISBN: 1788995066 ISBN-13(EAN): 9781788995061
Издательство: Неизвестно
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Цена: 7171.00 р.
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Описание: Blynk is gaining a lot of popularity among the masses as it is simple and portable to use, and it comes under mobile applications and devices. The book will introduce you to Blynk and will demonstrate how to setup the environment for building IoT applications. You will then deep dive into concepts like building a notification widget, display ...

Raspberry pi 3 projects for java programmers

Автор: Seneviratne, Pradeeka Sirach, John
Название: Raspberry pi 3 projects for java programmers
ISBN: 1786462125 ISBN-13(EAN): 9781786462121
Издательство: Неизвестно
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Цена: 8091.00 р.
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