Engineered for Commercial, Industrial, and Municipal Infrastructures Globally
Established in 2003 and situated in the industrial hub of Yangzhou, Jiangsu Province, China, Yangzhou OneAll Lights Co., Ltd. has developed over two decades of engineering and manufacturing expertise in high-demand outdoor lighting and decentralized solar energy storage systems. Our facilities combine cutting-edge manufacturing equipment with rigorous testing phases to yield highly durable municipal, industrial, and commercial off-grid installations.
By prioritizing research and development in Lithium Iron Phosphate (LiFePO4) battery management, high-efficiency solar conversion, and smart controller interfaces, we ensure that our global partners receive tailored, reliable, and standards-compliant solutions optimized for localized geographic conditions.
Every phase of our production line is governed by ISO-certified procedures to guarantee absolute precision and longevity
The global energy landscape is undergoing an accelerating transition toward decentralized electrification. Among the key enablers of this transition are grid-tied and off-grid Battery Energy Storage Systems (BESS) combined with high-efficacy solid-state LED systems. For municipal planning departments, industrial operators, and B2B energy developers, procuring from direct-source manufacturers in China is no longer merely a cost-reduction strategy. Instead, it has evolved into a strategic partnership framework aimed at securing high engineering quality, custom thermal management protocols, and resilient supply chains.
Industrial and Commercial (C&I) energy storage systems face diverse challenges: fluctuating grid tariffs, thermal stress in desert or tropical regions, and the requirement for seamless grid integration or off-grid autonomy. High-performance solar storage solutions require state-of-the-art Battery Management Systems (BMS) paired with high-conversion photovoltaic panels. At OneAll Lights, our integration of storage directly into localized lighting structures—ranging from 5G-enabled smart street poles to automated multi-kilowatt floodlight systems—delivers decentralized microgrid components that reduce regional load profiles, support grid peak-shaving initiatives, and offer unparalleled site resilience.
Manufacturing clusters in Jiangsu province leverage highly mature vertical integration. By co-locating SMT production lines, CNC metal stamping, wave soldering, and automated coating lines within a singular physical facility, Yangzhou OneAll Lights eliminates transactional overhead and intermediate transit risks. This degree of process control contributes to a highly optimized Balance of System (BoS) cost, ensuring that commercial entities can deploy large-scale solar projects with rapid payback cycles and predictable Levelized Cost of Storage (LCOS).
Why Tier-1 developers and municipal engineers partner with OneAll Lights for critical infrastructure
Utilizing high-density Lithium Iron Phosphate cells with over 4,000 charge cycles at 80% Depth of Discharge. Coupled with dual-layer smart BMS for thermal runway mitigation.
IP65, IP66, and IP67 certified options with marine-grade anti-corrosion, thick stainless steel brackets, and dual-pulse wave soldering for vibration-prone environments.
Full compliance with CE, RoHS, ETL, DLC, and CCC requirements. Built on standard protocol interfaces compatible with international grid regulations.
A key focus for modern municipal planners is the creation of resilient smart-city nodes. Standard legacy infrastructure treats streetlights and communication towers as distinct loads drawing power from a vulnerable centralized grid. By re-engineering these structures into autonomous or semi-autonomous solar energy storage systems—exemplified by our 5G Smart Poles—operators transform simple light standards into smart microgrid units.
These units integrate bi-directional energy routers, energy storage batteries (integrated directly into the base or underground chambers), and high-output LED emitters. During periods of peak solar irradiance, the high-efficiency monocrystalline panels convert solar energy, charging the internal LiFePO4 battery storage bank. The integrated Smart BMS performs cell balancing, overcharge protection, and tracks state-of-health (SoH) metrics. When night falls or when grid stress spikes, the system discharges its energy to power local municipal systems, CCTV surveillance loops, and 5G transceiver electronics, drastically lowering net operational costs and reducing the localized carbon footprint.
Sourcing from China requires deep alignment on regional standards. A product designed for standard temperate conditions will experience accelerated battery degradation in the extreme heat of the Middle East, or cell crystallization in high-latitude European winters. Yangzhou OneAll Lights addresses these variables through geographic-specific modifications: integrating thermal insulation barriers, utilizing specialized low-temperature electrolyte chemistries, and adding high-conductivity aluminum heatsinks for passive thermal dissipation. Furthermore, we support engineering firms with full photometric designs using DIALux software, ensuring compliance with local EN or IES light pollution and distribution codes.
Designed for locations lacking reliable grid connection, such as remote agricultural operations, mining installations, and marine environments.
Tailored for municipal corridors requiring high-lumen density, automated dimming schedules, IoT monitoring, and public security integration.
Innovating for the next generation of smart municipal energy storage and outdoor electronics
Deploying Sodium-ion battery variants for cold-climate regions. This chemistry maintains excellent charge retention down to -30°C, offering a cost-effective alternative for high-latitude BESS and off-grid streetlights.
Integrating semi-solid-state cells to double current volumetric energy density, enabling sleeker street pole designs and dramatically reducing pole-top weight loads while maintaining high safety parameters.
Deploying cloud-based Energy Management Systems (EMS) utilizing machine learning algorithms to predict local solar yield and dynamically balance grid/battery distribution for municipal grids.
Expert insights on sizing, battery lifespans, shipping standards, and technical customization
We design our solar streetlights and smart pole storage modules with high-grade LiFePO4 (Lithium Iron Phosphate) cells. By configuring the system controller to operate below maximum depth-of-discharge parameters (typically 80% DoD) and utilizing smart temperature-compensated charging, our battery packs achieve a design life of over 10 years, matching the longevity of the LED arrays.
Our complete manufacturing process is certified under ISO9001 and ISO14001. Depending on target market requirements, our individual system components—including LED modules, high bay systems, and solar streetlights—hold CE, RoHS, ETL, and DLC listings, alongside standard CCC and CQC certifications for structural safety.
Yes. For instance, our Offshore Marine LED Floodlights are designed specifically with thickened, anti-vibration stainless steel brackets and undergo specialized anti-corrosion chemical treatment. Our enclosures are built to IP66 and IP67 specifications, ensuring total protection against powerful water jets, high humidity, and salt-laden air.
Absolutely. Backed by an in-house R&D engineering team, we provide full CAD and Dialux modeling support. We routinely customize pole height, LED color temperature (ranging from warm 3000K to cool 6000K), battery capacity, solar module wattage, and wireless network protocols (LoRa, 4G, ZigBee) to meet specific project guidelines.
Every driver, light engine, and power supply undergoes rigorous aging tests in our testing bay. Following mechanical assembly, units are subjected to simulated thermal cycles, automated gluing validation, wave soldering QC inspection, and waterproof chamber exposure to guarantee zero-defect deployment.
Batteries are classified as dangerous goods (Class 9) for shipping. We package all lithium-based storage systems in certified UN-standard carton structures, complete with protective foam inserts and separate modular chambers. We provide full MSDS, UN38.3, and sea transport certificate support to streamline customs clearance.
Our smart poles are built as open-architecture physical platforms. They feature dedicated internal power buses, waterproof structural bays for 5G microcell transceivers, integrated CCTV connectivity, and smart LED digital display controllers, all powered by our high-output solar solar-plus-storage integration.
Standard bulk orders (e.g., container loads of streetlights or floodlights) typically feature a lead time of 20 to 30 days. This allows for raw component qualification, SMT mounting, structural welding, aging testing, and safe export packaging. Customized or complex engineering projects may take longer depending on design approvals.
Premium outdoor lighting and decentralized grid systems engineered for extreme environments