E-ABLE POWER / SOLAR LIGHTING

100W Split SolarStreet Light 10M

A modular 100W split solar street light on a 10-meter single arm for industrial roads and remote infrastructure. A 200W panel, LiFePO4 storage and an IP68 MPPT controller deliver reliable off-grid light.

E-ABLE POWER
MUNICIPAL SOLAR LIGHTING SOLUTIONS
UTILITY GRADE     OEM / ODM

Split-Type Lighting System | Industrial Road Application

100W Split Solar Street Light — 10M Single Arm

A modular off-grid solar street lighting system with independent PV panel positioning, 100W high-efficacy LED, LiFePO4 battery storage, and MPPT controller. Designed for municipal roads, industrial parks, and remote infrastructure where standard grid connection is unavailable or cost-prohibitive.

A solar street light featuring a separate solar panel on a tall pole and a single curved arm holding the LED fixture.

Key Specifications at a Glance

LED Power100W High-Efficacy SMDSolar Panel200W Monocrystalline
BatteryLiFePO4 (4,000+ cycles)Pole Height10m Hot-Dip Galvanized Steel
ControllerIP68 MPPT Smart ControllerAutonomy3-4 Overcast Nights
Mount TypeSingle Arm BracketIP RatingIP65 Luminaire / IP68 Controller
CertificationsCE / RoHS / ISO9001 / ISO14001Warranty3 Years

Why Choose a Split Solar Street Light System?

The split-type (separate) architecture is the most versatile solar street light configuration for projects where panel orientation, battery sizing, and maintenance access are critical design factors.

Independent PV Orientation
Position the solar panel at the optimal tilt angle regardless of the road direction. This is essential for mid-to-high latitude regions (30°N+) where seasonal sun angle varies by 47° between summer and winter solstice.
Scalable Battery Sizing
Separate battery enclosure allows independent sizing for 3-5 days of autonomy based on local weather data. Easy access for future battery replacement without dismantling the luminaire or panel.
Programmable Lighting Control
The IP68 MPPT smart controller supports time-based dimming, adaptive brightness, and motion sensor integration. Custom lighting profiles match your exact energy budget and site requirements.

System Configuration & Specifications

Note: The specifications below reflect a typical 100W reference configuration. Final wattage, battery capacity, pole height, and installation layout are customized per project based on local solar data and lighting requirements.
* Custom configurations available for bulk OEM/ODM orders. Contact engineering for site-specific sizing.
Component Specification
LED Luminaire 100W High-Efficacy SMD LED — Modular lens design for Type II / Type III distribution
Luminous Flux > 15,000 lm (system level)
Solar Panel 200W Monocrystalline Silicon — Separate mounting bracket with adjustable tilt
Battery Storage LiFePO4 (Lithium Iron Phosphate) — > 4,000 cycles — Capacity sized per project autonomy target
Controller IP68 MPPT Smart Controller — Time-based dimming, motion sensor ready, remote monitoring option
Pole 10m Hot-Dip Galvanized Steel (Q235) — Single arm bracket — Wind resistance ≥ Level 12
Operating Temperature -25°C to +65°C
Waterproof Rating IP65 (Luminaire) / IP68 (Controller & Battery Enclosure)
Color Temperature 4,000K Natural White (3,000K / 5,000K optional)
Suggested Applications Municipal roads, industrial parks, remote access roads, mining sites, border areas, rural highways
Certifications CE  |  RoHS  |  EMC  |  LVD  |  ISO9001  |  ISO14001
Warranty 3 Years Comprehensive

Project Planning Guide — What to Prepare

To receive an accurate quotation and system design, please have the following project inputs ready when you contact our engineering team.

Project Input What We Need
Road dimensions Road width, pole spacing, mounting height, number of lanes
Location & solar data Project GPS coordinates — we calculate peak sun hours, rainy season duration, and seasonal irradiation
Lighting requirements Target lux level on road surface, operating hours per night, dimming schedule preference, motion sensor requirement
Environmental conditions Temperature extremes, wind zone, coastal/corrosive exposure, dust/sand conditions
Installation scope Foundation type, cable routing, local approval requirements, commissioning responsibility

Product & Installation Gallery

A collage of six photos showing workers in cleanroom suits assembling electronics, testing equipment in labs, and managing a warehouse space     Full System Assembly
A collage of six images showing solar panel manufacturing processes, workers in cleanroom suits, and a large solar farm.     LED Luminaire Close-up
A collage of six photos showing the interior of an industrial metal pipe manufacturing warehouse with machinery, stacked pipes, and workers.     PV Panel Bracket
A collage of six photos showing a battery manufacturing facility with automated assembly lines, cleanroom workers, and stacked cylindrical b     Pole Base & Flange
A technical drawing of a split solar street light assembly with a pole, solar panel, battery box, and LED lamp dimensions.     Battery Enclosure
Technical lighting design report for an 8m pole 100W LED luminaire, showing layout, arrangement, and grayscale illuminance map.     Night Illumination
A technical document titled "Wind resistant design for 12m single arm lighting Pole" containing calculations for wind pressure and pole stre     Component Layout

Installation Video — See How It Goes Together

If the embedded player is blocked, watch on YouTube.

Frequently Asked Questions

When should I choose a split solar street light over an all-in-one design?
Choose split-type when the optimal solar panel direction differs from the road direction — common in mid-to-high latitude regions (30°N+) where panels need south-facing tilt. Split systems also provide easier maintenance access: the battery box sits at ground level or pole base rather than integrated into the luminaire head. For projects requiring > 80W LED output, split architecture supports larger panel sizes and battery capacities that would be impractical in an all-in-one enclosure.
How is the 100W split solar street light sized for different geographic locations?
Each system is custom-sized per project location. Our engineering team uses solar irradiation databases (NASA POWER, Meteonorm) to calculate the worst-month energy budget for your site. We then size the PV panel wattage and battery capacity to maintain full nightly operation through the lowest-sunshine month while accounting for 3-4 consecutive overcast days. Simply provide your project GPS coordinates and we deliver a complete sizing report with DIALux lighting simulation.
What information do I need to provide for an accurate quotation?
Share these five inputs: (1) Project location (GPS or city/region); (2) Road dimensions — width, pole spacing, and mounting height; (3) Target lighting hours and any dimming preferences; (4) Local environmental conditions — temperature range, wind zone, coastal/corrosion exposure; (5) Quantity and timeline. We return a complete proposal within 2-3 business days including system specs, pole structural drawings, and EXW/FOB pricing.

All E-Able Power products undergo 100% QC inspection before shipment. Factory: Dongguan, Guangdong, China.

Plan your 100W Split Solar Street Light - 10M Single Arm project.

Send your site conditions, lighting requirements or load profile for a system engineered to your location — DIALux simulation, sizing and pricing within 2–3 business days.