





Time – we've been measuring it for decades.
Discover our range of tower clocks, mechanisms, and controllers.
Precision-engineered systems that define the rhythm of public spaces.
As ELEMIK, for nearly three decades we have been designing and manufacturing advanced tower clock mechanisms, carillon control systems, and professional bell motor drivers, combining precision mechanical engineering with state-of-the-art embedded electronics and IoT technologies.
Since 1995, our systems have not only measured time — they have shaped the rhythm of public spaces. Our installations can be found on the facades of town halls, cathedrals, church towers, industrial buildings, and commercial facilities across Poland.
From the very beginning, we focused on developing proprietary solutions that set industry benchmarks. Today, our systems feature maintenance-free clock mechanisms, programmable bell motor drivers, intelligent carillon controllers, and modern time synchronization technologies based on NTP over IP networks or secure GPS modules with anti-spoofing and anti-jamming protection.
Show more
Show more
ELEMIK stands for continuous innovation and technological advancement, including:
- Electronic Carillon systems — installed in prestigious locations such as the Cathedral of Szczecin and the Town Hall of Kłodzko — delivering programmable, high-fidelity chime control,
- Advanced bell motor drivers featuring intelligent motion control, programmable schedules, remote diagnostics, and precise protection algorithms,
- LED-illuminated clock hands engineered for maximum visibility, energy efficiency, and refined architectural integration,
- IP-based communication architecture forming an intelligent, remotely managed time synchronization network,
- Industrial-grade MODBUS communication integrating all controllers into a robust, scalable control system compatible with modern industrial infrastructure.
- Exceptional longevity — critical components designed for over 25 years of operation,
- High resistance to corrosion and harsh environmental conditions,
- Minimal maintenance requirements, enabled by robust mechanical design and intelligent diagnostics.





