Engineered for high hurricane wind resistance and maximum UV/saline protection in tropical island microclimates.
Heavy-duty aluminum alloy framing designed to withstand hurricane-force winds up to Category 5. Perfect for coastal roads in Saint John.
Request Spec Sheet
Self-contained remote monitoring tower utilizing high-efficiency monocrystalline solar modules and integrated Smart CCTV capabilities.
Request Spec Sheet
Engineered for intense sunlight absorption with custom charge controller algorithms maximizing LiFePO4 battery lifespan.
Request Spec Sheet
Optimized modular configurations. Incorporates high-efficiency Phillips LED chips yielding up to 180LM/W luminous efficacy.
Request Spec SheetAs a twin-island nation situated at the convergence of the Caribbean Sea and the Atlantic Ocean, Antigua and Barbuda experiences a tropical maritime climate characterized by abundant year-round solar irradiance, but paired with severe meteorological hazards. The country’s energy policy, heavily oriented toward the National Energy Transition Strategy, prioritizes reducing reliance on imported liquid fossil fuels, which historical statistics show account for over 90% of electricity generation.
For municipal roads in St. John's, resort developments on Barbuda, and port facilities, traditional grid-connected lighting introduces significant vulnerabilities. Frequent tropical cyclones expose copper wiring systems to short circuits, while the high retail price of electricity ($0.30 - $0.40 USD per kWh) imposes continuous financial strains on private and public budgets. By installing off-grid, Integrated Solar Street Lights, local authorities and commercial developers bypass costly underground cabling, eliminating grid vulnerabilities while guaranteeing uninterrupted municipal lighting during natural disasters.
Our street light poles and integrated fixtures are structural-grade engineered, matching wind-tunnel load capacities up to 250 km/h (Category 5 hurricane compliance under ASCE 7-10 standards).
Protected with AkzoNobel fluorocarbon electrostatic powder coatings designed to mitigate high salt spray, preventing pitting and oxidation typical in beachfront applications.
Our custom Battery Management Systems feature specialized cooling patterns and heat-dissipating channels to maintain internal LiFePO4 battery temperatures below 45°C, ensuring a 10+ year lifespan.
Pioneering high-durability advancements in photovoltaic cells, battery chemistries, and IoT controls.
By capturing indirect ground reflection from sandy shores and concrete roads, bi-facial technology increases overall energy harvesting by up to 25% under overcast tropical storm conditions.
Progressing beyond standard LiFePO4 cells to Lithium Titanate (LTO) and early-phase solid-state cells, providing superior cycle lives (up to 20,000 cycles) and thermal operation windows up to 65°C.
Integration of LoRaWAN-enabled microcontrollers allowing central municipal bureaus to monitor illumination output, diagnose battery degradation, and adjust dimming profiles remotely.
Established in 2003 | Certified Quality & Environmental Systems (ISO9001 & ISO14001)
With more than 20 years of technical design and global supply experience, Yangzhou OneAll Lights Co., Ltd. (based in Yangzhou, Jiangsu Province, China) stands as a leading global manufacturer of reliable outdoor lighting solutions. Our facility boasts advanced CNC bending equipment, automatic submerged arc welding systems, high-precision laser cutting setups, electrostatic powder coating lines, and a specialized marine-grade fluorocarbon painting workshop.
We supply turnkey solar street lighting infrastructure projects worldwide. From precision engineering of structural steel and aluminum frames to internal circuitry coating, our products are engineered to sustain continuous performance under extreme saline and high-humidity environments. We leverage high-volume, automated production pipelines to offer cost-efficient, quality-controlled OEM/ODM manufacturing tailored to engineering contractors in the Caribbean region.
Take an inside look at our advanced production facilities and strict quality control operations in China.
Providing seamless B2B transaction pipelines from production line to Port St. John's, Antigua.
We assist Caribbean contracting groups, governmental entities, and private real estate firms in meeting specific project bid constraints, offering detailed CAD layout drawings and Dialux simulation files.
Every product undergoes specialized anti-static wrap containment and reinforced wooden crate packaging, preventing damage or humidity ingress during marine transit across international shipping corridors.
We provide full structural certification compliance documents, including CE, RoHS, IP66 waterproof validations, SGS salt spray testing reports, and ISO quality management records.
Explore our extensive range of high-efficiency street lights engineered for Caribbean deployment.
Heavy commercial grading optimized for seaport loading bays, arterial roads, and high-visibility municipal areas.
Request Quote
Features dual microwave sensors and motion dimming systems to conserve battery power on coastal properties.
Request Quote
Fitted with GPRS/NB-IoT control nodes allowing municipal energy management, scheduling, and error diagnostic feedback.
Request Quote
Constructed from die-cast ADC12 aluminum housing with a high-capacity 3.2V battery compartment designed for heat rejection.
Request Quote
Integrated passive infrared sensor automatically adjusts output between low-ambient mode and 100% illumination.
Request Quote
Engineered for swift installations onto existing utility poles, offering smart control and photocell customizability.
Request Quote
Features advanced optical polycarbonate lenses ensuring uniform light distribution without visual glare or light wastage.
Request Quote
Includes hurricane-proof mounting anchors, customized matching brackets, and hot-dip galvanized steel pole packages.
Request QuoteResolving key design, logistics, and engineering inquiries regarding localized street light deployment.
Our products undergo testing using finite element analysis (FEA) methods to simulate wind pressures up to 250 km/h. We utilize Q235 structural carbon steel for the main poles, which undergoes hot-dip galvanization on internal and external walls. We configure the integrated lighting fixtures with a low aerodynamic profile to minimize the wind-drag coefficient.
Marine environments accelerate aluminum corrosion and component oxidation. We design our integrated housings with high-grade anodized aluminum (6063-T6) combined with AkzoNobel electrophoretic powder coating. These treatments satisfy C5-M high-saline offshore corrosion classifications under ISO 12944, proving resilient against continuous coastal mist and moisture ingress.
Standard lithium-ion batteries degrade quickly in hot climates. We use high-stability Lithium Iron Phosphate (LiFePO4) chemistry, which remains thermally stable up to 60°C. In addition, our integrated chassis features physical ventilation chambers and custom heat-sinking channels to separate the solar module from the battery compartment, protecting the battery from direct thermal transfer.
Typical production leads range from 15 to 25 days depending on project volume. Oceanic transit from Shanghai or Ningbo Port to the Port of St. John's in Antigua takes 35 to 45 days. We coordinate all export declarations, Bill of Lading documentation, and customs compliance certificates to support smooth arrival and clearance.
Yes. We regularly print customized logos, adjust mounting brackets for specific pole diameters, program custom smart dimming protocols (e.g., 5 hours of full brightness followed by 7 hours at 30% brightness), and modify technical components like battery configurations to align with municipal requirements.