Book Image

Practical Python Programming for IoT

By : Gary Smart
Book Image

Practical Python Programming for IoT

By: Gary Smart

Overview of this book

The age of connected devices is here, be it fitness bands or smart homes. It's now more important than ever to understand how hardware components interact with the internet to collect and analyze user data. The Internet of Things (IoT), combined with the popular open source language Python, can be used to build powerful and intelligent IoT systems with intuitive interfaces. This book consists of three parts, with the first focusing on the "Internet" component of IoT. You'll get to grips with end-to-end IoT app development to control an LED over the internet, before learning how to build RESTful APIs, WebSocket APIs, and MQTT services in Python. The second part delves into the fundamentals behind electronics and GPIO interfacing. As you progress to the last part, you'll focus on the "Things" aspect of IoT, where you will learn how to connect and control a range of electronic sensors and actuators using Python. You'll also explore a variety of topics, such as motor control, ultrasonic sensors, and temperature measurement. Finally, you'll get up to speed with advanced IoT programming techniques in Python, integrate with IoT visualization and automation platforms, and build a comprehensive IoT project. By the end of this book, you'll be well-versed with IoT development and have the knowledge you need to build sophisticated IoT systems using Python.
Table of Contents (20 chapters)
1
Section 1: Programming with Python and the Raspberry Pi
6
Section 2: Practical Electronics for Interacting with the Physical World
9
Section 3: IoT Playground - Practical Examples to Interact with the Physical World

Measuring the current requirement of a relay and LED

We will also measure the current draw of an LED and the relay we will use in this chapter when we reach the section titled Using a relay as a switch. You can measure the current draw using steps 1 to 4 from the preceding section. The setup to perform this measurement for an LED and resistor pair is illustrated here:

Figure 7.4 – Measuring current through a resistor/LED circuit

This is the basic process we follow:

  1. We attach an LED and a 1kΩ resistor (or a relay) in place of the motor shown in Figure 7.3.
  2. Set your multimeter to milliamps mode.
  3. Apply power to the circuit.
  4. Measure the amperage on your multimeter.

Once you have performed (and jotted down) the measurement you receive, remove the LED and resistor from the breadboard and wire in your relay and perform the same measurement.

The following diagram shows an SRD-05VDC-SL-C relay and which terminals on your relay you need to connect. Please note that you...