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IoT/ Connected Embedded Systems

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IoT · Embedded Connectivity · Cloud Integration

IoT & Connected Embedded Systems Training

Learn how embedded devices become connected systems using sensors, microcontrollers, ESP32, Wi-Fi, Bluetooth, Ethernet, TCP/IP, MQTT, HTTP, REST APIs, gateways, cloud platforms, remote monitoring and secure IoT architecture.

Course Overview

Connect Embedded Devices to Networks, Gateways and Cloud Systems

IoT combines embedded hardware, sensors, firmware, communication protocols, networking, gateways and cloud applications to create connected products capable of remote monitoring, control and data exchange.

Connected Embedded Engineering

The NCVT IoT & Connected Embedded Systems program connects traditional embedded development with modern networking and cloud communication.

Learners progress from sensors and connected microcontrollers to Wi-Fi, Bluetooth, TCP/IP, MQTT, HTTP, REST APIs, gateways, cloud dashboards, remote monitoring and practical IoT system integration.

Device → Network → Cloud

Understand the complete path from a physical sensor through an embedded controller and communication network to remote software, cloud services and user applications.

Core Training Areas

Three Layers of Connected Embedded Engineering

01

Embedded Device

Microcontrollers, ESP32, sensors, GPIO, ADC, firmware, local processing and device-side control.

02

Connectivity

Wi-Fi, Bluetooth, Ethernet, TCP/IP, MQTT, HTTP and connected-device communication.

03

Cloud & Applications

Gateways, APIs, dashboards, databases, remote monitoring, alerts and cloud integration.

Program Structure

Complete IoT Learning from Device to Cloud

18+ Structured Modules
25+ IoT Technologies
6+ Connected Projects
360° Device-to-Cloud Learning
Learning Outcomes

What You Will Learn

Connected Device Engineering

  • IoT architecture fundamentals
  • Connected embedded devices
  • ESP32 concepts
  • Sensor interfacing
  • Digital and analog I/O
  • Local data acquisition
  • Embedded firmware concepts
  • Wi-Fi connectivity
  • Bluetooth / BLE concepts
  • Ethernet fundamentals
  • TCP/IP fundamentals
  • Device configuration

IoT Communication & Cloud

  • MQTT architecture
  • MQTT publish / subscribe
  • Topics and messages
  • HTTP fundamentals
  • REST APIs
  • JSON data
  • IoT gateways
  • Cloud communication
  • Remote monitoring
  • IoT dashboards
  • Data logging
  • Basic IoT security concepts
Technology Stack

IoT & Connected Technologies Covered

IoT Architecture
ESP32
Microcontrollers
Embedded C
Sensors
GPIO
ADC
UART
SPI
I²C
Wi-Fi
Bluetooth
BLE Concepts
Ethernet
TCP/IP
MQTT
HTTP
REST API
JSON
IoT Gateway
Cloud Connectivity
Dashboards
Data Logging
IoT Security
IoT Architecture

Understand the Complete Connected System

IoT engineering is not only about connecting a board to Wi-Fi. A complete system connects sensing, embedded processing, communication, cloud services and applications.

Layer 01

Sensors

Capture physical measurements and events.

Layer 02

Embedded Device

Process sensor data and execute local logic.

Layer 03

Connectivity

Wi-Fi, Ethernet, Bluetooth and IP networking.

Layer 04

Gateway / Cloud

Receive, store and process remote data.

Layer 05

Application

Dashboards, alerts, analytics and remote control.

IoT Communication

Understand the Main IoT Communication Technologies

Network

TCP/IP

Understand addressing, networking and data transport used by connected devices.

IoT Messaging

MQTT

Lightweight publish/subscribe communication using clients, brokers, topics and messages.

Web Communication

HTTP

Request/response communication between embedded devices, servers and web applications.

Application Interface

REST APIs

Exchange structured information between embedded systems, applications and cloud platforms.

Wireless

Wi-Fi

Connect embedded devices to local networks and internet-based services.

Short Range

Bluetooth / BLE

Understand short-range device communication and low-energy connectivity concepts.

Data Format

JSON

Represent and exchange structured sensor and application data.

Integration

IoT Gateway

Bridge local embedded devices, field protocols and cloud-based systems.

Course Curriculum

IoT & Connected Embedded Systems Curriculum

Progress from connected embedded fundamentals through device networking, MQTT, HTTP, cloud communication, dashboards, gateways and complete IoT system integration.

MODULE 01

Introduction to IoT

IoT concepts, connected devices, cyber-physical systems, remote monitoring and real-world IoT applications.

MODULE 02

IoT System Architecture

Device, sensor, gateway, network, cloud and application layers of an IoT system.

MODULE 03

Connected Embedded Controllers

Embedded controllers, ESP32 concepts, GPIO, sensor interfaces and local device processing.

MODULE 04

Sensors & Data Acquisition

Digital and analog sensors, data acquisition, sampling, measurements and sensor-data processing.

MODULE 05

Wi-Fi Connectivity

Wireless LAN concepts, network connection, device configuration, IP addressing and connectivity.

MODULE 06

Bluetooth & BLE Concepts

Bluetooth communication, device discovery, short-range wireless connectivity and BLE fundamentals.

MODULE 07

Ethernet & TCP/IP

Ethernet fundamentals, IP addresses, ports, TCP/IP communication and connected-device networking.

MODULE 08

MQTT Architecture

MQTT broker, clients, topics, publish/subscribe model and IoT messaging concepts.

MODULE 09

MQTT Device Communication

Publish sensor values, subscribe to control commands, topics, payloads and remote device communication.

MODULE 10

HTTP Communication

HTTP requests, responses, methods, servers and device-to-web communication concepts.

MODULE 11

REST APIs & JSON

API architecture, GET/POST concepts, JSON payloads and device-to-application integration.

MODULE 12

IoT Gateways & Edge Devices

Gateway architecture, protocol bridging, local processing, aggregation and edge concepts.

MODULE 13

Cloud Connectivity

Cloud communication concepts, device registration, remote data transfer and connected applications.

MODULE 14

IoT Dashboards & Data Logging

Remote dashboards, sensor visualization, historical data, alarms and monitoring concepts.

MODULE 15

Remote Control & Automation

Remote commands, control outputs, connected actuators, automation logic and feedback.

MODULE 16

IoT Security Fundamentals

Authentication, credentials, encrypted communication concepts, device identity and secure-design fundamentals.

MODULE 17

Industrial & Edge IoT

Industrial sensors, gateways, equipment connectivity, remote monitoring and edge-processing concepts.

MODULE 18

Complete IoT Project

Build a connected system integrating sensors, embedded control, network communication, MQTT or HTTP and remote monitoring.

IoT Engineering Workflow

From Physical Sensor to Remote Application

Understand the complete engineering flow used to design a connected embedded application.

01

Sense

Acquire physical data.

02

Process

Execute local embedded logic.

03

Connect

Establish network connectivity.

04

Publish

Send data using IoT protocols.

05

Monitor

Visualize data remotely.

06

Control

Send commands back to devices.

Project-Based Learning

Practical IoT & Connected Embedded Projects

Wi-Fi Sensor Monitor

Connect an embedded sensor node to Wi-Fi and remotely monitor measurement data.

MQTT Sensor Publisher

Publish embedded sensor data to an MQTT broker using topics and structured payloads.

MQTT Remote Controller

Subscribe to remote commands and control outputs on a connected embedded device.

Cloud Data Logger

Send sensor measurements to a remote service for monitoring and historical logging.

IoT Dashboard

Display connected-device status, measurements, trends and alarms remotely.

Complete Connected Device

Integrate sensing, embedded firmware, networking, cloud communication and remote control.

Applications

Where Connected Embedded Systems Are Used

Industrial IoT
Smart Manufacturing
Remote Monitoring
Smart Energy Systems
Building Automation
Connected Machines
Smart Agriculture
Environmental Monitoring
Connected Consumer Products

Who Can Join?

  • Embedded systems students
  • Electronics engineering students
  • Electrical engineering students
  • Instrumentation students
  • Computer engineering students
  • IoT learners
  • Automation engineers
  • Firmware developers
  • Robotics students
  • Embedded Linux learners
  • Working professionals

Career & Skill Direction

  • IoT Engineer
  • IoT Developer
  • Embedded Systems Engineer
  • Embedded Software Engineer
  • Firmware Engineer
  • Connected Device Engineer
  • Industrial IoT Engineer
  • Edge Device Engineer
  • IoT Integration Engineer
  • Automation & IoT Engineer
  • Embedded Product Engineer
Recommended Learning Path

Progress into Professional Connected Product Development

Step 01 Embedded C
Step 02 Microcontrollers / ESP32
Step 03 Networking / MQTT
Step 04 Cloud / Gateways
Step 05 Industrial IoT / Edge Systems
Frequently Asked Questions

IoT & Connected Embedded Systems FAQs

What is an IoT embedded system?

An IoT embedded system combines sensors, embedded processing and network communication so that a physical device can exchange information with other devices, gateways, applications or cloud systems.

Does the course include ESP32?

Yes. ESP32 and connected-microcontroller concepts are included as part of practical IoT device development.

Is Wi-Fi covered?

Yes. Wi-Fi network connectivity, IP communication and connected-device concepts are included.

Is MQTT included?

Yes. MQTT broker, clients, topics, publish/subscribe communication and IoT message exchange are core parts of the curriculum.

Are HTTP and REST APIs covered?

Yes. HTTP communication, REST API concepts and JSON data exchange are included for device-to-application integration.

Does the course include cloud connectivity?

Yes. The program introduces the concepts required for sending device data to remote or cloud-based services and monitoring connected equipment.

What is an IoT gateway?

An IoT gateway connects local devices or field networks with higher-level networks or cloud systems and may provide protocol conversion, data aggregation and local processing.

Is IoT security included?

Yes. The curriculum introduces device identity, authentication, credentials, encrypted communication concepts and secure connected-system design.

Is this useful for industrial automation?

Yes. IoT concepts can be applied to connected machines, industrial gateways, remote monitoring, energy systems, condition monitoring and Industrial IoT.

What should I learn before IoT?

Basic embedded systems, programming, microcontrollers and sensor interfacing provide a useful foundation before progressing into IoT and connected systems.

Start Your IoT & Connected Embedded Systems Training

Learn connected microcontrollers, sensors, ESP32, Wi-Fi, Bluetooth, TCP/IP, MQTT, HTTP, REST APIs, gateways, cloud communication, dashboards, remote monitoring and complete IoT integration.

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