Husqvarna Professional Products, Inc. has been building machines since 1689 - over 330 years of operational history - but the relevant part for anyone thinking about attack surfaces is what it builds now: battery-powered robotic mowers, autonomous forestry equipment, and networked outdoor power products deployed across forests, parks, and urban green spaces. When your product fleet is a mesh of connected devices managing physical infrastructure at scale, the threat model isn't hypothetical. It's firmware integrity, fleet telemetry, over-the-air update chains, and the operational technology layer that sits between cloud services and blades literally spinning in the field.
The company shipped the world's first robotic mower in 1995 and has spent the decades since scaling battery-powered robotics and sustainable solutions across lawn, garden, park, and forest care verticals. That means security teams here aren't just defending a SaaS backend - they're working across embedded systems, IoT connectivity, and the full lifecycle of devices that operate autonomously in uncontrolled environments. The technical domains - robotics, battery-powered technology, and sustainable hardware - demand engineers who understand that a compromised firmware update isn't a CVE on a dashboard; it's a machine with a spinning blade and GPS coordinates.
Husqvarna's stated values emphasize precision and quality, and the company culture leans on what it describes as a pioneering spirit with curiosity and boldness. For cybersecurity roles, the concrete ask is clear: secure a product portfolio that blends hardware, software, and cloud across legacy industrial systems and modern connected robotics. The attack surface is real, the operational context is physical, and the stakes are legible without needing to be spelled out.






