Fiso Engineering & Aerospace provides custom IoT solutions that combine drones and sensors to deliver real-time environmental monitoring and analytics for development projects, helping clients reduce risk through data‑driven decision making.
Funding
Funding not disclosed
Founders
Product
Problem
Construction and development projects often lack real-time insight into site environmental conditions, leading to safety hazards, regulatory non‑compliance, and costly delays. Similarly, in‑space research payloads require precise control of temperature, pressure, humidity, vibration, and radiation, but existing solutions are bulky, inflexible, and provide limited feedback.
Solution
Fiso Engineering & Aerospace delivers custom IoT platforms that combine autonomous drones with distributed sensor networks to capture continuous, high‑resolution environmental data across construction sites and remote locations. The data are streamed to a cloud analytics layer that visualizes conditions, alerts stakeholders to anomalies, and supports data‑driven risk mitigation. For space missions, the company offers an adaptive Environmental Control System (ECS) that actively regulates key payload parameters in real time, with user‑adjustable setpoints and closed‑loop feedback to maintain mission‑critical conditions throughout the operational envelope. Both offerings integrate hardware and software to provide turnkey, end‑to‑end monitoring and control solutions.
Target Audience
Primary customers are construction and property development firms seeking continuous site environmental oversight, and aerospace organizations or research institutions requiring precise environmental control for space payloads.
Features
- Autonomous drone fleet equipped with modular environmental sensors for temperature, humidity, pressure, vibration, radiation, and air quality monitoring
- Real‑time data ingestion and cloud‑based analytics dashboard with customizable alerts and trend visualizations
- Adaptive, turnkey Environmental Control System for in‑space payloads with active regulation of temperature, pressure, humidity, vibration, and radiation
- Closed‑loop feedback architecture allowing user‑adjustable control parameters and automatic compensation for changing conditions
- Scalable IoT architecture supporting integration of additional sensor types and expansion to larger site footprints
- End‑to‑end hardware‑software integration ensuring reliability, robustness, and minimal operator intervention