Premium engineering optimized for space efficiency, perimeter protection, and smart urban integration.
Rapid global urbanization, the exponential rise of Electric Vehicles (EVs), and smart city initiatives have transformed how commercial properties, municipal structures, and residential communities manage parking assets. Traditional manual parking locks are no longer viable in high-throughput urban environments. Modern operations demand high-performance, automatic remote-controlled, and IoT-driven parking lock systems.
At KAVASS Security Tech Limited, we bridge this operational gap by designing and manufacturing resilient, intelligent, and highly customizable parking lock barriers. Equipped with state-of-the-art actuators, energy-harvesting monocrystalline solar cells, and advanced sub-GHz and cellular communication protocols, our parking locks enable frictionless access control. They protect private parking spots, prevent unauthorized internal combustion engine (ICE) vehicles from occupying EV bays, and streamline corporate and public parking workflows.
Exploring KAVASS's engineering portfolio in pedestrian safety, vehicular control, and smart city architecture.
Fixed, fold-down, telescopic, removable, automatic, and crash-rated bollards designed for high-security perimeter defense and pedestrian path segregation.
Manual, remote-controlled, solar-powered, and smart IoT parking locks designed to prevent space squatting and optimize EV charging station operations.
Safety barriers, warehouse collision guards, heavy-duty bike racks, and urban street furniture built to withstand severe impacts and harsh environmental exposure.
Analyzing the internal electronics, chassis design, and connectivity protocols that drive smart parking barriers.
Our parking locks feature high-torque DC geared motors and durable physical linkages. The internal drive clutch protects the motor and gearbox from external forces. If a vehicle collides with the lock arm, the arm bends up to 180° without mechanical failure. When the obstruction is removed, the arm automatically resets to its upright, secure position. At the same time, an integrated buzzer sounds a 100dB acoustic alarm to alert the driver and deter unauthorized parking.
The housing is constructed from high-tensile carbon steel or die-cast aluminum alloy. It is coated with high-durability, UV-resistant polyester powder to protect against corrosion. With an IP67 waterproof rating, our parking locks continue to operate reliably in rain, snow, and extreme temperatures ranging from -20°C to +60°C.
To support next-generation smart cities, KAVASS parking locks are equipped with multi-mode wireless chipsets. While standard configurations use reliable RF (433MHz) key fobs, custom projects can integrate Bluetooth Low Energy (BLE), LoRaWAN, NB-IoT, or Zigbee. These protocols connect the locks directly to parking management platforms and mobile apps.
Our parking locks are designed with ultra-low standby power consumption (<0.5mA). They are powered by high-capacity lithium iron phosphate (LiFePO4) battery packs. These batteries are continuously charged by an integrated monocrystalline solar panel, allowing for up to 360 days of operation on a single charge—even in low-light conditions.
| Feature Spec | Technical Parameters & Tolerances | Operational Value / Industry Standard |
|---|---|---|
| Load Capacity | Static structural load limit > 5,000 kg (5 Metric Tons) | Prevents deformation when run over by heavy SUVs or delivery vehicles |
| Ingress Protection | IP67 Sealed Housing with fully encapsulated control board | Prevents dust and water damage during heavy rain or submersions |
| Power Management | 12V DC, LiFePO4 battery with integrated solar trickle charger | Virtually zero-maintenance operation for extended deployments |
| Communications | RF (433 MHz) / BLE 5.0 / NB-IoT / LoRaWAN multi-channel | Compatible with remote keyfobs, parking apps, and municipal IoT platforms |
| Operating Range | RF range up to 50 meters; BLE up to 25 meters; NB-IoT global | Allows drivers to lower barriers from inside their vehicles |
| Actuation Time | Rises or falls in ≤ 4 to 6 seconds | Optimizes vehicle flow and minimizes driver wait times |
How automatic parking locks are evolving to meet the needs of autonomous driving and smart cities.
Replacing manual locks with remote control and solar-rechargeable models. Deploying NB-IoT and LoRa networks to share real-time occupancy status with central dashboards and driver apps.
Linking smart parking locks directly with EV chargers. The lock lowers automatically when a driver books a charging session via an app, preventing ICE vehicles from blocking charging bays.
Enabling Vehicle-to-Everything (V2X) communication. When an autonomous car approaches a reserved space, it communicates directly with the lock to lower it without human intervention.
Using AI algorithms to adjust parking rates dynamically based on real-time demand, traffic flow, and weather conditions, maximizing revenue for parking asset owners.
Tailored access control installations that resolve commercial and municipal challenges.
Assign dedicated spaces to specific executives or departments. The locks can be controlled via company badges or smartphone apps, reducing unauthorized parking and security staff workloads.
Prevent "ICEing" (non-electric vehicles blocking charging bays). The parking lock lowers only for registered electric vehicles, ensuring charging bays remain accessible to EV drivers.
Integrate parking locks into city-wide IoT platforms. Real-time occupancy data is shared with drivers to reduce congestion, optimize traffic flow, and generate revenue from public parking spaces.
Over 18 years of manufacturing experience, utilizing advanced processes across our Zhuji and Deqing facilities.
Our advanced manufacturing capabilities are anchored by our dedicated Deqing and Zhuji production facilities. We control the entire production process in-house, from sourcing raw carbon steel and stainless steel to laser cutting, robotic welding, and automatic powder coating. This vertical integration ensures exceptional quality control and competitive pricing for large B2B orders.
To guarantee reliable outdoor performance, every batch of parking locks and bollards undergoes testing, including 100,000 cycle durability tests, water immersion tests, and salt spray testing. With a strong supply chain and ample raw material reserves, we offer stable lead times and rapid delivery to clients worldwide.
Factory Interior Layout
Production Assembly Line
Precision Metal Fab
Product Sample Room
Testing & QC Area
Inventory Area
Shipping Preparation
Zhuji Heavy Industry Division
Meeting international quality certifications to ensure seamless imports and local compliance.
All smart electronics, batteries, and transmitters comply with CE, FCC, and RoHS standards, ensuring simple customs clearance and legal distribution in North America, Europe, and Asia-Pacific.
We offer Semi-Knocked-Down (SKD) and Completely Knocked-Down (CKD) packaging configurations to reduce shipping volume, optimize container space, and lower import tariffs.
We provide extensive customization options, including bespoke branding, custom paint finishes, tailored battery capacities, and API integrations, helping you stand out in local markets.
How we partner with global distributors, security integrators, and developers.
For procurement managers, choosing a supplier requires evaluating manufacturing capacity, quality control consistency, and customized design options. At KAVASS, we offer direct factory pricing combined with professional engineering support.
We work with B2B buyers to develop tailored solutions, including custom corporate branding, unique paint finishes, and custom electronics. Whether you require specific communication protocols (BLE, NB-IoT, LoRaWAN) or customized battery capacities, our engineering team is here to assist at every step.
We keep raw materials and core components in stock to ensure fast turnaround times for bulk orders.
Answers to common technical, manufacturing, and shipping questions for global B2B buyers.
Our solar parking locks use high-efficiency monocrystalline solar panels paired with a low-power control board (drawing under 0.5mA on standby). This configuration ensures the lock operates reliably for up to 360 days on a single full charge, even with minimal winter sunlight.
The steel chassis is engineered to support a static load of over 5 metric tons (5,000 kg). If a heavy SUV or delivery truck runs over the closed housing, the structural components and internal motor drive remain protected from damage.
Yes, we provide SDKs and API documentation for our Bluetooth (BLE) and cellular (NB-IoT/LoRaWAN) parking locks. This makes it easy for developers to integrate our hardware with custom parking apps and municipal parking management systems.
We offer full OEM and ODM customization. You can customize the dimensions, steel sheet thickness, paint finishes, solar panel output, battery capacity, and wireless communication protocols. We also offer custom branding using laser engraving and high-durability decals.
From heavy-duty bollards to space-saving bike racks, we deliver durable safety solutions worldwide.
Interested in our parking locks, bike racks, or bollards? Contact our team for technical consultations, customized pricing, or to request product samples.