CE Certified Parking Solutions

Global Procurement Standard & Custom Smart Infrastructure Systems by Qingdao Cherish

Integrated Engineering Solutions Provider

Qingdao Cherish is an integrated industry and trade enterprise dedicated to the design, manufacture, and global supply of intelligent parking equipment and industrial processing solutions. With robust engineering capabilities, modern manufacturing facilities, and extensive international project experience, we deliver reliable systems that support modern urban infrastructure and industrial development worldwide.

Founded by a team of experienced structural engineers and international trade specialists, the company was established with a clear mission: to provide efficient, durable, and sustainable equipment solutions through continuous innovation, precision manufacturing, and customer-focused service. From initial concept design and technical planning to production, delivery, and after-sales support, we ensure consistent quality and dependable performance throughout every project lifecycle.

Today, our business operates through two specialized divisions to better serve diverse market needs and provide focused expertise across different industries: the Parking Systems Division and the Industrial Equipment Division.

Qingdao Cherish Manufacturing and Corporate Base
100+
Countries Served
Delivering solutions to USA, Europe, APAC, and LATAM regions
20,000+
Facilities (㎡)
Modern production plant equipped with automation
15+
Years Experience
Pioneering in international mechanical trade & compliance

The Evolving Landscape of CE Certified Parking Systems

An in-depth structural review of compliance standards, safety considerations, and technological developments shaping modern mechanical parking.

Understanding CE Certification and EN 14010 Safety Mandates

CE Certification is not merely a label; it represents compliance with the fundamental European health, safety, and environmental protection directives. For mechanical vehicle parking solutions, the applicable standard is EN 14010:2003+A1:2009 ("Safety of machinery - Equipment for power driven parking of motor vehicles"). This standard outlines rigorous parameters regarding structural calculations, structural deformation limits, safety coefficients for lifting cables and hydraulic lines, and electrical safety regulations.

Compliance ensures that mechanisms are equipped with essential fallback protections, such as anti-drop electromagnetic locks, velocity limiters for hydraulic cylinders, emergency stop triggers, and precise photoelectric limit switches. Procuring from a certified manufacturer eliminates operational risks, mitigating civil liabilities for commercial property owners and building developers.

Global Trends: Electrification, EV Charging, and Urban Space Shortage

As metropolitan zones face severe space constraints, developers are looking upward and downward to maximize density. Concurrently, the global transition to Electric Vehicles (EVs) has introduced new challenges for mechanical parking. Modern systems must support higher load capacities (typically exceeding 2500kg up to 3000kg to support battery weights) and feature built-in charging solutions.

Our recent product iterations focus on fire safety integration, structural weight distribution adaptations for EV battery loads, and cable-routing systems designed to supply continuous power to EV chargers on elevated decks without cord wear or safety compromises.

Specialized Operational Divisions

Delivering dedicated, industry-focused engineering through target units.

Parking Systems Division

Parking Systems Division

Dedicated to the production of high-performance car parking lifts, automated puzzle parking arrays, customized pit-based stackers, and residential mechanical lifts. Our products optimize spatial envelopes in hospitals, corporate offices, public transit terminals, and private properties.

Industrial Equipment Division

Industrial Equipment Division

Providing high-capacity electrostatic powder coating lines and wastewater treatment plants. These systems enable industrial entities to scale production output while remaining compliant with environmental standards, minimizing VOC discharge and optimizing water recycling.

China Factory 4.0: Supply Chain Resilience & Production Standards

How automated production translates into cost efficiency, structural reliability, and shorter lead times for global projects.

The core manufacturing facilities of Qingdao Cherish utilize digital manufacturing workflows, commonly known as Factory 4.0 protocols. Structural steel shapes (Q235 and Q345 grade steel) are cut using precision high-capacity fiber laser arrays, maintaining dimensional tolerances within fractions of a millimeter. High-stress joints and baseplate connections are compiled using automated welding robots, ensuring consistent weld depth and eliminating issues like cold joints or gas porosity.

Surface treatment is a critical phase. Our in-house electrostatic powder coating line applies a multi-layered coating, which is then cured at high temperatures to produce a durable barrier against moisture, salt, and abrasion. For outdoor marine or coastal environments, we provide hot-dip galvanization according to ISO 1461 standards, ensuring corrosion-resistant systems designed for long-term outdoor operation.

By keeping design, fabrication, hydraulic assembly, and electrical programming within our facility, we reduce supply chain dependencies. Global buyers benefit from shorter project lead times, consistent quality control, and ready access to critical spare parts.

Each unit undergoes Factory Acceptance Testing (FAT) under full load capacity before dispatch. Structural calculations are verified using Finite Element Method (FEM) analysis software, ensuring structural stability under wind loads, seismic events, and varying vehicle dimensions.

Accelerate Your Space Efficiency

Partner with Qingdao Cherish. Connect with our engineering department to receive structural CAD layouts, detailed pricing matrices, and CE conformity documentation tailored for your project.

Click to Become a Partner

System Configurations & Features

Explore custom models built for specific architectural envelopes and spatial constraints.

Double Level Two Post Parking Lift

Double-Level 2 Post Car Parking Lift

Offering loading capacities of 2300kg or 2700kg, this configuration caters to light consumer cars, crossovers, and heavier modern electric SUVs. With a lifting height of 2100mm, it doubles space capacity within a single standard parking footprint. Ideal for indoor garages, home driveways, and dealership holding facilities. Mechanical safety locks engage at multiple levels, securing the platform independently of hydraulic pressure.

Triple-Level Car Parking Lift

Triple-Level & Quad-Level Car Stacker Lifts

For operations with high ceilings, triple and quad-level four-post stackers offer vertical vehicle storage solutions. Capable of supporting up to 3000kg, these lifts utilize robust structural column designs that distribute weight evenly across floor slabs. The system is suited for valeted commercial parking garages, commercial fleet depots, and multi-car collectors.

Double Level Tilting Car Parking Lift

Tilting Parking Lifts for Restricted Heights

Engineered for spaces with low ceiling heights, such as residential basements or historic structures. The platform tilts at an angle, optimizing the vertical clearance required to store two vehicles. Adjustable lifting heights from 1400mm to 1800mm provide the flexibility to store low-profile sedans on the platform while keeping SUVs in the ground bay.

Multi Level Motor Drive Automatic Puzzle Parking

Multi-Level Puzzle Parking & Car Elevators

Automated puzzle systems utilize vertical and lateral movements to enable quick, independent parking and retrieval. This design reduces space per car, making it suitable for mixed-use commercial developments. For vertical transit, our double-rail car elevators transfer vehicles between basement and street levels, serving as space-saving ramps.

Industrial Processing: Finishing & Water Solutions

Expanding operations into sustainable industrial infrastructure and surface finishing plants.

Powder Coating Line Efficiency

Electrostatic powder coating lines represent one of the most advanced coating technologies in the world today. Their primary advantage lies in emitting little to no volatile organic compounds (VOCs). Compared to traditional liquid coatings, powder coatings can form uniform and thick layers without issues like dripping, running, or sagging.

Additionally, overspray from powder coatings can be recovered, achieving nearly 100% material utilization and significantly reducing raw material waste. Powder coating lines generate less hazardous waste and require lower capital investment and operational costs compared to wet paint lines. Powder-coated surfaces exhibit superior consistency in appearance across horizontal and vertical faces, achieving special textured finishes that are difficult to replicate with liquid processes.

Industrial & Domestic Water Treatment Systems

With accelerating urbanization and rapid industrial growth, modern wastewater treatment plants are essential for resource recovery. Our water division provides solutions including industrial wastewater and domestic sewage recycling, water reuse, and zero-liquid-discharge (ZLD) treatment facilities.

We supply full-scale membrane bioreactor (MBR) modules, high-rejection reverse osmosis (RO) desalination plants, and pre-treatment filtration arrays for seawater desalination, ultrapure water production, and municipal supply. By integrating automated monitoring and high-efficiency energy recovery turbines, we reduce energy consumption per cubic meter of purified water.

Technical Q&A & Procurement Insights

Expert technical answers addressing compliance, installation, operation, and structural load calculations.

What is the structural steel grade utilized, and how is wind load calculated for outdoor units?

We use Q235B and Q345B structural steel, which are evaluated for stress limits and yield points. Outdoor structures undergo FEA analysis based on localized wind codes (e.g., Eurocode 1 or ASCE 7), calculating wind pressure effects on elevated platforms. Structural components are reinforced, and anchor bolts are calculated using high-strength chemical anchors to resist overturning moments.

What failsafe mechanisms are included in our CE certified parking lifts?

Under EN 14010, safety components must be redundant. Our lifts include mechanical locking blocks that engage automatically as the lift rises, preventing falling. Hydraulic systems feature built-in velocity fuses that restrict oil flow in the event of hose ruptures. Slack cable sensors trigger emergency shutdowns if the lifting chain or cable tension drops below calibrated limits.

How do we approach surface preparation and treatment to prevent rust?

All structural parts are shot-blasted to SA 2.5 standards to remove mill scale, rust, and oil residues. This is followed by an multi-layer electrostatic powder coating process with AkzoNobel polymers, or hot-dip galvanization. This provides salt-spray resistance (exceeding 500 hours under ASTM B117), which is critical for coastal regions and high-humidity climates.

What electrical controls are utilized in high-density automated systems?

We use PLC systems (primarily Siemens or Schneider Electric components). System programming supports remote diagnostics, HMI touch panels, and sensor integration (optical and ultrasonic arrays) to monitor correct vehicle alignment before engaging movement cycles. Motor circuits are protected by circuit breakers and overload relays.

How is installation and maintenance supported for international clients?

Each system is shipped with a detailed installation manual, foundation layouts, and wiring diagrams. We provide remote engineering support and assembly supervision. For larger projects, our engineers can assist on-site with mechanical assembly, sensor calibration, load testing, and local authority inspections.