Overview
IoT system development at IoTSolutions is framed as system engineering rather than isolated device programming. The objective is to connect sensing, embedded logic, communications, data flow, and software interfaces into something that can actually be tested and used.
This can include early architecture work, prototype implementation, communications planning, dashboard-oriented workflows, and the integration decisions that sit between hardware and software. The goal is not just to make a device send data, but to shape a complete connected path from physical system to usable interface.
The service is relevant when a project needs more than a sensor node or a dashboard alone. It is intended for situations where devices, data, and software all need to work together around a real technical or operational problem.
What We Can Build
- Connected device architecture
- Sensor integration
- Firmware development
- MQTT and HTTP communication
- Device-to-cloud data flow
- Dashboard integration
Application Areas
Environmental Monitoring
Smart Agriculture
Industrial Monitoring
Remote Telemetry
Energy Monitoring
Smart Infrastructure
Relevant Solution Areas
Solution Area
Environmental Monitoring
Monitoring systems for air, weather, water, and environmental conditions where sensing, buffering, connectivity, and dashboard visibility all matter.
- Air quality sensing
- Temperature and humidity monitoring
Solution Area
Smart Agriculture
Connected sensing and control systems for irrigation, greenhouse conditions, water availability, and remote agricultural telemetry.
- Soil moisture monitoring
- Irrigation control
Solution Area
Industrial IoT
Monitoring-oriented connected systems for equipment telemetry, edge data acquisition, device health visibility, and operational data collection.
- Machine condition monitoring concepts
- Equipment telemetry
Typical Engagement
01
Architecture Definition
Define sensing, device logic, communication method, and system responsibilities across hardware and software.
02
Prototype Integration
Build the working device-to-platform path so firmware, telemetry, and interfaces can be tested together.
03
Validation & Refinement
Improve reliability, data handling, and real-world behavior based on technical findings from the prototype.
Questions people often clarify
Does IoT system development only cover the device hardware?
No. It can include how the device, communications, data handling, and interface layers work together as one system.
Can this start from an early concept?
Yes. The service is suitable for early-stage technical planning as well as working prototype development.
Related Services
Firmware & Device Logic
Embedded Systems Development
Firmware-focused development for microcontroller-based systems, sensor interfaces, device logic, and hardware integration.
- ESP32 firmware development
- Embedded C/C++ implementation
- UART, I2C, SPI, and GPIO integration
Proof of Concept
Hardware Prototyping
Prototype-oriented engineering for evaluating sensors, modules, power approaches, and early connected-system ideas.
- Proof-of-concept development
- Sensor evaluation
- Microcontroller selection
Data Interfaces
IoT Dashboards & Platforms
Software interfaces and platform-oriented development for monitoring, telemetry visualization, device status, and connected operations.
- Live telemetry visualization
- Historical charting
- Device status interfaces
Related Projects

VayuCast Compact Microclimate Monitoring Device
A compact ESP32-based microclimate monitoring device using an SHT45 sensor, GSM communication, OTA firmware updates, and 18650 Li-ion battery backup.
- ESP32
- SHT45
- GSM
- OTA Firmware Update

Solar-Powered Weather and Air Quality Monitoring Station
A solar-powered ESP32 weather station that monitors temperature, humidity, CO₂, light intensity, wind, PM2.5, and PM10 using RS485-connected sensors and GSM-based remote communication.
- ESP32
- RS485
- Modbus
- GSM

Smart Agriculture Automation and Irrigation Control System
A flexible ESP32-based agricultural automation system with Wi-Fi and GSM connectivity, sensor-driven control, manual and automatic operation, and mobile and web monitoring.
- ESP32
- Wi-Fi
- GSM
- Soil Moisture Sensor