Structural Characteristics of Obstruction Lights

May 17, 2026 Leave a message

Core Structural Components
Optical System: Typically utilizes Fresnel lenses (made of PC or acrylic) paired with long-life LED light sources. This ensures 360-degree visibility without blind spots and offers light intensity levels (low, medium, and high) to meet requirements for obstacles of varying heights.
Power Supply System: Mainstream options include mains power and solar power. Solar-powered models feature photovoltaic panels and energy storage batteries, enabling continuous operation for 15–20 days during overcast or rainy weather.
Intelligent Control System: Integrates photosensors for automatic activation and deactivation. Most units are equipped with GPS/BeiDou modules for millisecond-level synchronization of multiple lights, while some models include 4G remote fault alarm capabilities.
Protective Housing:Constructed using a one-piece aluminum alloy casting. Protection ratings are generally IP55 or higher (with some models reaching IP67), ensuring stable operation in extreme temperatures ranging from -40°C to 55°C and wind resistance up to 240 km/h.

 

Typical Structural Features
Features a modular design that allows for the rapid replacement of damaged components, significantly reducing maintenance costs.
Certain specialized models integrate ultrasonic bird-deterrent modules, making them suitable for complex outdoor installation environments such as transmission towers and chimneys.
Internal circuitry incorporates multi-stage lightning protection and EMI filtering modules, ensuring reliability in high-altitude environments characterized by strong electromagnetic interference and frequent lightning strikes.