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Country: Netherlands
City: Rotterdam
Address: Wilhelminakade 909, 3072 AP Rotterdam, Netherlands
Coordinates: 51.955° N, 4.142° E
Port Type: Seaport / Deep-Water Port
Operator: Port of Rotterdam Authority
The Port of Rotterdam is the largest seaport in Europe and one of the most important logistics hubs in the world. Located on the North Sea coast at the mouth of the Rhine–Meuse–Scheldt delta, the port serves as the primary gateway for cargo entering and leaving the European continent.
Often referred to as the “Gateway to Europe,” Rotterdam connects global maritime trade with extensive inland transport networks, including rivers, railways, highways, and pipelines. The port plays a crucial role in supplying goods to major European economies such as Germany, France, Belgium, and Switzerland.
The Port of Rotterdam stretches for more than 40 kilometers along the Dutch coastline and consists of multiple specialized port areas and terminals.
Major port zones include:
Maasvlakte 1 & Maasvlakte 2 – advanced deep-water container terminals
Europoort Area – oil and petrochemical terminals
Botlek Area – chemical industry and storage facilities
Waalhaven & Eemhaven – multipurpose cargo terminals
The Maasvlakte 2 expansion project is one of the most advanced port developments in the world, featuring automated container terminals capable of handling the largest container ships.
The Port of Rotterdam handles hundreds of millions of tons of cargo annually, making it the busiest port in Europe.
Major cargo categories include:
Containerized cargo
Crude oil and petroleum products
Chemicals and LNG
Iron ore and coal
Agricultural and bulk commodities
The port maintains shipping connections with over 1,000 ports worldwide, making it a key hub for global maritime trade.
Rotterdam is widely recognized as one of the most technologically advanced ports in the world. Key innovations include:
Fully automated container terminals
Digital Port Community System (PCS)
Smart port logistics and real-time data platforms
Sustainable energy initiatives such as hydrogen and offshore wind integration
These developments support Rotterdam’s long-term strategy to become a smart and sustainable port.
With extensive container yards, cargo terminals, and industrial areas operating 24 hours a day, the Port of Rotterdam requires high-performance lighting systems to ensure operational safety and efficiency.
Modern LED high-mast lighting and high-power floodlights are widely used across the port to provide:
Wide-area illumination for container terminals
Energy-efficient lighting for large outdoor spaces
Reliable operation in harsh coastal weather conditions
Reduced maintenance and long service life
Advanced LED lighting systems play a key role in supporting safe and efficient nighttime operations in large international ports like Rotterdam. ⚓💡

Large ports, as critical infrastructure operating 24 hours a day, require highly reliable outdoor lighting systems. These systems are essential for ensuring operational safety, efficiency, and personnel security.
Outdoor areas in ports—such as container yards, loading and unloading zones, parking areas, and main roadways—typically adopt high mast lighting systems to achieve wide-area illumination.
This system utilizes tall poles equipped with multiple high-power luminaires, enabling uniform coverage with fewer installation points, while also reducing glare and simplifying maintenance.
In terms of light sources, high-power LED floodlights are widely used due to their high luminous efficacy, low energy consumption, long lifespan, instant start, and excellent color rendering. They have become the mainstream choice for port lighting
Recommended pole heights:
| Area Type | Recommended Height |
| Large ports/ container yards | 30–40 m |
| Airport apron | 20–40 m |
| General large outdoor areas | 20–55 m |
Overall, port areas typically use poles in the range of 30–40 meters. The exact height should be determined based on site scale and specific lighting requirements through professional design.
Due to the unique environmental conditions of ports—especially coastal ports—lighting equipment must meet far more stringent requirements than standard outdoor lighting. These include:
Ports are exposed to high humidity and salt spray, requiring exceptional corrosion resistance:
Ingress Protection (IP Rating): ≥ IP65 to ensure complete dust protection and resistance to water jets. For critical areas such as quay fronts, IP66 or higher is recommended.
Anti-corrosion Materials and Treatment: Housings are typically made of highly corrosion-resistant materials such as ADC12 die-cast aluminum or 316 stainless steel, combined with multi-layer anti-corrosion coatings.
Ports are subject to strong winds. High mast poles and luminaires installed at height must withstand significant wind loads. Structural design must strictly follow local meteorological data to ensure safety and stability.
Tall poles are highly susceptible to lightning strikes. High-voltage surges generated by lightning can damage sensitive LED drivers through power lines.
Therefore, LED drivers must be equipped with high-performance surge protection devices (SPD), typically rated at 10kV or 20kV, to ensure stable operation under harsh weather conditions.
High-power LED luminaires generate significant heat during operation. If not properly dissipated, it can severely affect luminous efficiency and lifespan.
Thus, luminaires must feature efficient thermal design, such as large-area heat sinks and high thermal conductivity materials, to keep the LED junction temperature within an optimal range.
Illuminance and Uniformity: According to standards such as Code for Design of Seaports (JTS 165-2013), different operational areas have specific minimum illuminance requirements. Uniform lighting must be ensured to avoid overly bright or dark areas that could impair visibility and safety.
Glare Control: Through precise optical design (e.g., asymmetric lenses), light is effectively directed onto the working area, minimizing light spill and reducing glare for operators and surrounding environments.
| Model | Power | IP Rating | Salt Spray Test | IK Rating | Protection Class | Surge Protection |
| AFL | 240W/300W/400W | IP 66 & IP 67 | 1000 Hour,ASTM B117 | IK08, IK10 | Class I | 10kV, 20Kv |
| R350 | 500W/600W | IP 66 & IP 67 | 1000 Hour,ASTM B117 | IK08, IK10 | Class I | 10kV, 20Kv |
| M200 | 340W/400W | IP 66 & IP 67 | 1000 Hour,ASTM B117 | IK08, IK10 | Class I | 10kV, 20Kv |
| P73-l | 600W | IP 66 & IP 67 | 1000 Hour,ASTM B117 | IK08, IK10 | Class I | 10kV, 20Kv |
| A65 | 1050W | IP 66 & IP 67 | 1000 Hour,ASTM B117 | IK08, IK10 | Class I | 10kV, 20Kv |




MECREE are not only a manufacturer of high-power LEDs, More professional services are also included:
1. According to the requirement to provide the best stadium lighting solutions, including horizontal, vertical illumination, uniformity, glare control, spill light control, energy saving.
2. About the design of lighting mast, Mecree according to the wind speed at the place can be used to calculate the axial force, bending force, horizontal shear force and torque for the construction engineer,
so as to protect the users from unnecessary accidental.
3. One stop service for you! High power generator set supporting, and we also supply cables, switches, power distribution cabinet and other parts. We are your best supply chain manager!
4. Professional Lighting installation guide including to the circuit design service and installation angle guide of each lights.
The power supply and lamp body can be mounted separately, reducing the withstand weight of the lamp pole and facilitating maintenance.

Customized crossarms are available to meet all your existing old poles without replacing the main rod, crossarms bolt directly to light pole, easy and accurate installation saves time, ensures performance, safety and reliability,also lower the budget.

In current outdoor lighting projects, high-altitude light calibration is recognized as a major efficiency bottleneck. The process carries high safety risks, is prone to aiming deviations, and involves cumbersome installation and removal procedures, making it difficult to achieve the required uniformity.
MECREE’s innovative laser aiming mount was designed precisely to address these issues. It revolutionizes the workflow through three key advantages:
Easy Installation: With a simple design, it allows rapid mounting and dismounting, significantly lowering the operational threshold.
Precise Aiming: Ensures accurate laser alignment, fundamentally guaranteeing uniform illumination and compliance with lighting standards.
Efficient Operation: Reduces labor and time costs by up to 80%. Calibrating 200 fixtures at height previously took 20 days; now the same workload can be completed in just 4 days.
Choosing MECREE means choosing a safer, more precise, and highly efficient sports lighting solution.


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