Stainless Steel Solar Light Pole for Off-Grid Lighting
- YLDG-SL Series
- 304 or 316 stainless steel pole options
- Solar panel, battery, controller and LED luminaire supplied as one system
- Standalone, hybrid and smart-control configurations available
| MOQ | 10 sets; mixed heights and configurations accepted |
|---|---|
| Pole material | Stainless steel 304 / 316 |
| Height range | 4 m / 5 m / 6 m / 8 m / 10 m / 12 m — custom available |
| Solar system | Panel, battery, controller and LED luminaire configured as a complete set |
| Battery | LiFePO₄ lithium battery or project-specified alternative |
| Lighting mode | Dusk-to-dawn, timed dimming, motion sensing or hybrid backup |
| Finish | Brushed, polished or project-specified coated stainless steel |
| Lead time | 20–35 days after deposit and system drawing approval |
Manufacturing aluminium poles for export markets
Own factory with spinning, welding & coating lines
Annual capacity across 3 production lines
Exported to EU, North America, Middle East, SEA
Technical Specifications
Standard catalogue capabilities for the YL-SOLAR Series. Final pole dimensions and solar-system ratings are confirmed against the approved lighting calculation, wind criteria and site conditions.
| Pole material | Stainless steel 304 / 316 |
|---|---|
| Forming process | CNC spinning, forming or welded construction |
| Cross-section | Round tapered or straight; custom section |
| Height range | 4–12 m; custom available |
| Wall thickness | 3.0–6.0 mm (stainless steel) |
| Surface finish | Brushed, polished or project-specified coated |
| Installation | Anchor base or direct burial |
| Cable route | Internal cable path with protected entries |
| Earthing | Internal earth stud and copper lug |
| LED power | Typically 20–150 W, project-specific |
|---|---|
| Solar panel | Mono-crystalline panel sized for local energy demand |
| Battery | LiFePO₄ lithium battery or specified alternative |
| Controller | PWM / MPPT controller with programmable lighting modes |
| Lighting schedule | Dusk-to-dawn, timed dimming or motion-controlled |
| Autonomy | Typically 2–5 nights, subject to local solar conditions |
| Remote monitoring | Optional GSM / 4G / LoRa monitoring |
| Wind design | Calculated from pole, panel and luminaire projected area |
| Warranty | Defined according to selected components and project contract |
Standard Sizes of Stainless Steel Solar Light Poles
The following values are preliminary references. Solar panel area, battery capacity, pole height and foundation dimensions must be confirmed by the project lighting and structural calculations.
| Model | Material | Height | Top Ø | Base Ø | LED power | Panel power | Battery | Autonomy |
|---|---|---|---|---|---|---|---|---|
| YLDG-SL1 | Stainless steel | 4 m | 60 mm | 120 mm | 20–30 W | 80 W | 512 Wh | 2–3 nights |
| YLDG-SL2 | Stainless steel | 5 m | 60 mm | 135 mm | 30–40 W | 120 W | 768 Wh | 2–3 nights |
| YLDG-SL3 | Stainless steel | 6 m | 76 mm | 150 mm | 40–60 W | 180 W | 1,024 Wh | 3 nights |
| YLDG-SL4 | Stainless steel | 8 m | 76 mm | 180 mm | 60–80 W | 240 W | 1,536 Wh | 3–4 nights |
| YLDG-SL5 | Stainless steel | 9 m | 76 mm | 195 mm | 80–100 W | 300 W | 2,048 Wh | 3–4 nights |
| YLDG-SL6 | Stainless steel | 10 m | 90 mm | 220 mm | 100–120 W | 360 W | 2,560 Wh | 4 nights |
| YLDG-SL7 | Stainless steel | 12 m | 90 mm | 250 mm | 120–150 W | 480 W | 3,072 Wh | 4–5 nights |
Reference values only. Final panel power, battery capacity, autonomy and foundation dimensions depend on location, lighting schedule, wind load and approved energy calculation.
Stainless Steel Finishes for Outdoor Projects
Specify a brushed, polished or project-approved coated finish for the stainless steel shaft according to the site exposure and architectural requirements. Stainless steel 304 and 316 options are listed for this pole range; confirm the grade, finish and any colour coating in the approved project specification.

Most requested for urban and architectural projects

Fine texture, hides dust and handling marks

Standard municipal specification in EU tenders

Parks, resorts, pedestrian zones

Available in the full RAL color range
Every component is arranged for energy capture, protection and service access
A solar light pole must support both structural and electrical equipment. Panel position, cable routing, battery protection and access points are coordinated during design.

Stainless steel matched to the environment
Select the stainless steel grade, finish and connection details against the project's exposure and architectural requirements.
Stable panel mounting
The panel bracket is designed for the specified panel size, tilt angle and wind load, with adjustable orientation where required.
Protected cable route
Solar and luminaire cables run inside the pole wherever possible, with deburred entries and protected connections.
Accessible battery compartment
The battery and controller can be arranged in a lockable pole compartment, external cabinet or underground cabinet.
Ground-line and foundation detail
Anchor-base and direct-burial options are available, with isolation and drainage details selected for the site.
Replaceable system components
Panels, controllers, batteries and LED modules can be specified as serviceable components for long-term maintenance.
Configure lighting output, autonomy and control around the site
The correct solar system is determined by sunlight, operating hours, rainy-season performance, panel orientation, battery location and maintenance access.

| Configuration | Suitable applications | Options |
|---|---|---|
| Basic standalone system | Paths, parks and low-traffic areas | Fixed schedule, LiFePO₄ battery |
| High-autonomy system | Regions with long rainy seasons | Larger panel and battery capacity |
| Motion-dimming system | Residential streets and pathways | Full output plus standby dimming |
| Remote-monitoring system | Municipal and distributed assets | GSM / 4G / LoRa communication |
| Hybrid solar system | Sites requiring backup power | Solar priority with grid assistance |
| Custom control system | Smart-city and tender projects | Protocol and controller matched to specification |
Where Stainless Steel Solar Light Poles Are Used

Reliable lighting where grid power is unavailable, costly or difficult to install
Stainless steel solar light poles suit off-grid projects that also require a durable architectural finish. Grade, pole dimensions and energy storage are selected for the site.
Rural roads
5–8 m · standalone solar
Residential streets
6–10 m · motion dimming
Parks and pathways
4–6 m · stainless steel shaft
Car parks
6–10 m · higher battery autonomy
Coastal promenades
Stainless steel grade and finish reviewed for coastal exposure
Campuses and resorts
4–8 m · architectural finish
A stainless steel pole with a complete off-grid lighting system
Stainless steel solar light pole projects depend on site exposure, sunlight, battery autonomy, wind load and maintenance access. We configure the stainless steel shaft and electrical system together so the installation is matched to the project.
Two-way lighting from one pole
Two luminaires serve opposite carriageways or adjacent zones from one foundation, simplifying the lighting layout and installation plan.
Symmetrical or unequal arms
Specify identical arms for balanced lighting or different outreach and tilt on each side for unequal road widths and site boundaries.
Standalone operation
Operate without long underground power runs where grid connection is unavailable or costly.
Independent arm replacement
Each arm can be removed separately. A damaged arm or upgraded luminaire can be replaced without disturbing the shaft or foundation.
Fewer foundations and cable points
One pole can serve two lighting directions, helping reduce foundations, trench connections and installation work on suitable layouts.
Compact export packing
Both arms ship detached and nested flat, avoiding projecting sections and improving protection during container transport.
One manufacturing partner for the pole and solar lighting system

Yaolong manufactures stainless steel lighting poles and coordinates solar lighting components for project supply. Our capabilities cover shaft forming, machining, welding, surface finishing and system assembly.
We support contractors, distributors, municipalities and infrastructure developers with custom stainless steel pole heights, grades, finishes, panel brackets, battery capacities and control functions.
Our engineering team reviews location, solar radiation, lighting hours, autonomy target, wind conditions, luminaire load and installation method before issuing the final production drawing.
Quality system
Environmental
EN 40 conformity
Material report
From pole material to a tested solar lighting set
Pole fabrication, surface finishing and solar-system assembly are coordinated before shipment. The complete set is checked against the approved configuration.
Stainless steel material is checked against the project specification.
The pole is spun, formed or welded to the approved height, taper and diameter.
Hand holes, cable entries and battery access points are cut and deburred.
Solar panel and luminaire brackets are made to the approved orientation and load requirements.
Surface treatment
Brushing, polishing or project-specified coating is completed according to the approved stainless steel finish specification.
Electrical assembly
Panel, battery, controller, LED luminaire and cables are connected and labelled.
System testing and packing
Charging, lighting modes, controller settings and component condition are checked before packing.
Solar components packed separately and labelled for fast assembly
Panels, batteries, controllers and luminaires are protected as individual components, while each electrical kit is labelled to match the corresponding pole.

Each stainless steel pole is wrapped to prevent scratches, dents and finish damage.
Solar panels are packed in reinforced cartons with corner protection and vibration-resistant separators.
Batteries and controllers are packed separately with model labels, wiring diagrams and installation instructions.
Pole, panel bracket, battery, controller and LED components are labelled as one installation set.
~100 pcs
~200 pcs
15–25 days
Loading quantity depends on pole length, panel dimensions, battery packaging and shipping requirements. A container loading plan is supplied before shipment.
Stainless Steel Solar Light Pole FAQs
The LED load, operating hours, dimming schedule, local solar radiation and required autonomy determine the panel and battery configuration. Share the site location and lighting target so the system can be reviewed for that project.
The technical specifications list 304 and 316 stainless steel shaft options. Grade selection depends on site exposure and project requirements; confirm the selected grade and finish on the approved drawing.
The standard size chart lists 4 m, 5 m, 6 m, 8 m, 10 m and 12 m options. Final height, shaft dimensions and solar-panel support depend on the selected system and project structural review.
Yes. Panel power, battery capacity, LED output and lighting controls are configured together for the site's energy demand and autonomy target. The final component ratings should be confirmed in the approved system drawing.
Please send your PDF or DWG together with the pole height, luminaire and panel details, installation method, design wind criteria and delivery requirements. We can review the design and confirm the production drawing before manufacture.
The pole, solar panel, luminaire and brackets all contribute to wind-exposed area. Their dimensions and loads should be checked against the project location and design criteria before the shaft, connections and foundation details are approved.
The technical specifications list anchor-base and direct-burial options. Foundation or embedment details must be confirmed for the selected pole and site conditions; do not assume that one foundation design suits every project.
Send the quantity, site location, pole height, preferred stainless steel grade and finish, lighting schedule, required autonomy, solar panel and battery preferences, installation method, wind criteria and any drawings. We will confirm the configuration and supply scope in the quotation.