IoT monitoring systems
Remote monitoring and telemetry systems that combine sensing, communications, and dashboard visibility.
Explore remote monitoring solutionsNepal
IoTSolutions provides engineering and prototype-development support in Nepal for connected systems, embedded devices, monitoring workflows, and research-oriented builds without narrowing the business to one geography.
Based in Nepal, available for remote collaboration.
What we help build
Find IoT development, embedded support, ESP32 work, and monitoring-oriented prototype help in Nepal.
Remote monitoring and telemetry systems that combine sensing, communications, and dashboard visibility.
Explore remote monitoring solutionsFirmware-driven proof-of-concept systems built around sensors, microcontrollers, and practical device logic.
Explore embedded systems workESP32 development for sensing, communications, buffering, and connected prototype workflows.
Explore ESP32 developmentDistributed sensing, data collection, and field-observation systems for environmental or operational visibility.
Explore environmental monitoringPrototypes for irrigation, field telemetry, soil sensing, and control workflows that fit real deployment conditions.
Explore smart agriculture solutionsConnectivity planning for devices that depend on cellular backhaul, gateway links, or unstable field infrastructure.
Explore connectivity and telemetry supportSensor-triggered control logic, relay-driven workflows, and edge-device behavior for practical automation systems.
Explore automation and controlOperator-facing interfaces, data review workflows, and prototype support for student, academic, and experimental systems.
Explore research prototyping supportCore engineering services
Explore the service areas most relevant to embedded development, monitoring, telemetry, and technical prototyping.
Core Service
Connected system design spanning devices, firmware, communications, data flow, and operator-facing interfaces.
Firmware & Device Logic
Firmware-focused development for microcontroller-based systems, sensor interfaces, device logic, and hardware integration.
Proof of Concept
Prototype-oriented engineering for evaluating sensors, modules, power approaches, and early connected-system ideas.
Communications Strategy
Connectivity planning and remote telemetry system design shaped by range, power, reliability, infrastructure, and field conditions.
Guidance & Implementation Support
Technical guidance and prototype development support for research, experimentation, instrumentation, and academic engineering work.
Startups shaping proof-of-concept products and connected device ideas
Organizations evaluating monitoring, telemetry, or automation systems
Researchers and labs building instrumentation or data-collection prototypes
Engineering teams that need focused implementation help across hardware and software
Students working on guided prototype-based final-year or academic projects
Student & research project support
Support can include architecture review, implementation help, debugging, and technical guidance while keeping academic responsibility with the student or researcher.
Use the dedicated final-year project support page for student and academic discovery, or the broader research prototyping service page when the project is more about technical capability than regional context.
Example engineering work
These are existing IoTSolutions projects that map naturally to monitoring, telemetry, environmental sensing, and embedded prototype work.

A compact ESP32-based microclimate monitoring device using an SHT45 sensor, GSM communication, OTA firmware updates, and 18650 Li-ion battery backup.

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.

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.
01
Define the environment, inputs, outputs, connectivity expectations, and what the prototype actually needs to prove.
02
Select practical hardware, firmware responsibilities, communications, and supporting software boundaries before the build gets expensive.
03
Use the prototype to validate data flow, field behavior, power decisions, and the next engineering improvement.
Remote collaboration
Teams in Nepal can start here for IoT development, embedded prototypes, monitoring systems, and research support.
Startups, organizations, engineering teams, and researchers can also work with IoTSolutions remotely when the technical scope is a fit.
Yes. IoTSolutions can support both Nepal-based collaboration and remote project work, depending on the technical scope and how the prototype needs to be reviewed.
Yes. Support can include architecture guidance, prototype development, debugging, sensor integration, and documentation guidance without replacing the student’s own academic responsibility.
Yes. ESP32-based work is a strong fit where sensing, communications, local logic, and rapid prototype iteration are part of the project.
No. Nepal is an important local market, but IoTSolutions also supports remote collaboration beyond one geography.
Yes. The work can span hardware, firmware, connectivity, dashboards, and the system handoffs that connect them.

A practical guide to planning IoT and embedded prototypes in Nepal by thinking early about connectivity, power stability, field conditions, sourcing, and staged validation.

A practical framework for selecting the right wireless link for an IoT device based on range, power, infrastructure, bandwidth, and field conditions.
A practical planning checklist for students, startups, and technical founders who want to define the problem, interfaces, power path, and test stages before ordering hardware.
Next Step
Start with the technical problem, the prototype goal, or the deployment constraint. From there, the right service path becomes much clearer.