Engineered for Germany's strict parking spatial dynamics, these primary parking security models are deployed extensively across residential and commercial districts in Berlin.
Integrating parking barriers into the wider urban IoT matrix to optimize spatial efficiency, protect investments, and support sustainable infrastructure.
Prevent "ICING" (Internal Combustion Engine vehicles blocking EV charging points). Our smart IoT-enabled locks integrate with EV charging networks to lower barriers only when a charging session is booked.
Leveraging high-efficiency solar panels built into the lock housing, our systems operate carbon-neutral, reducing installation costs and removing grid dependency in urban environments.
Seamlessly interface with modern parking booking apps, corporate ERP systems, and municipal smart-city backends. Free RESTful APIs allow rapid software integration.
Our dual-factory network handles heavy structural steel fabrication and precision smart sensor assembly, guaranteeing scalability and speed of delivery for Berlin major commercial projects.
From residential complexes to high-security logistics terminals, our systems adapt to local traffic demands.
Provide VIP tenants and corporate fleets with dedicated parking bays. Remote control, solar charging, and IoT systems permit smooth entry without leaving the vehicle, reducing delays during morning rush hours.
Protect restricted residential spaces in crowded multi-family areas. Our manual locks and economic O-arm designs allow residents to secure their bays against unauthorized short-term parkers.
Maintain clear pathways for heavy trucks and delivery vans in loading zones. Fixed and retractable security bollards protect walls and loading docks from accidental vehicle damage.
As Berlin moves toward a zero-emission future, the integration of smart hardware with vehicle telemetry is changing urban mobility.
Our research and development team is enhancing low-power wide-area network (LPWAN) modules to allow locks to report occupancy and battery status across miles of urban density without gateways.
Building communications structures using Car-to-X (C2X) protocols. Future autonomous vehicles will reserve and access parking spaces via wireless vehicle-to-hardware handshakes.
We are transitioning to use recycled steel and non-toxic powder coating processes, minimizing the carbon footprint of structural safety components installed in eco-conscious municipalities.
Robust barriers, solar lighting bollards, and secure bicycle racks designed to optimize public and commercial spaces across the Berlin metropolitan area.
KAVASS products are widely applied in urban infrastructure, commercial properties, industrial facilities, residential communities, and public spaces.
Fixed, fold-down, telescopic, removable, automatic, and lighting bollards for perimeter security and access control.
Durable and space-saving bicycle parking systems for commercial and residential areas.
Safety barriers, guardrails, and protective equipment for industrial and construction environments.
Benches, bins, and other customized outdoor furniture solutions for public spaces.
Manual, remote-controlled, solar, and IoT smart parking locks for modern parking management.
Get answers to critical implementation, structural, and wireless compliance questions from our engineering team.
Our locks are engineered with custom high-capacity low-temperature lithium-ion batteries and grease lubricants rated down to -25°C. The internal mechanical drive is encased in an IP67-rated waterproof compartment, preventing freezing water from locking internal gears.
Yes, our KVS-IoT models are designed with an API-first approach. We provide a complete REST API package, supporting direct connection with urban smart parking systems, charging station reservation apps, and smart city dashboards common in EU markets.
Our automatic locks feature a pressure-sensitive mechanism and a built-in anti-collision spring system. If a vehicle collides with the arm or drives over it, the arm yields to prevent damage to the vehicle's chassis and the internal lock motor, while immediately triggering a warning signal.
Absolutely. KAVASS is an ODM/OEM manufacturer. We provide complete customization services for housing thickness, shape, and custom finishes. We can paint products using any RAL color specification to align with municipal guidelines in Berlin or individual corporate design requirements.
The solar panel continuously trickle-charges the internal battery. Under average light conditions, the battery is self-sustaining. The lithium-iron-phosphate (LiFePO4) battery packs are designed to last for up to 5-7 years before showing significant capacity decay, reducing standard maintenance visits.