E-ABLE POWER / SOLAR LIGHTING

80W Split SolarStreet Light 9M

An 80W split solar street light on a 9-meter single arm for wide roads, intersections and public spaces needing high output. A larger panel and LiFePO4 battery deliver dependable autonomy and easy service.

E-ABLE POWER — PRODUCT DATASHEET
MUNICIPAL SOLAR LIGHTING SOLUTIONS
INDUSTRIAL GRADE     80W / 9M SINGLE ARM

Split Solar Power Street Light | 9M Single Arm Configuration

80W Split Solar Street Light — 9-Meter Single Arm

A 9-meter single-arm split solar street light for industrial roads, municipal streets, and off-grid infrastructure. Separate PV panel enables optimal solar orientation independent of the road direction, with LiFePO4 battery storage and MPPT smart controller for reliable all-night illumination.

A solar street light with a large solar panel mounted atop a tall pole and a single curved arm extending outward to hold the light fixture.

Key Specifications at a Glance

LED Power80W High-Efficacy SMDArchitectureSplit-Type — Separate PV + Luminaire
Pole9m Q235 Galvanized Steel — Single ArmSolar PanelMonocrystalline — Independent Orientation
BatteryLiFePO4 — 4,000+ CyclesControllerMPPT — Programmable Dimming
Autonomy3-4 Overcast NightsIP RatingIP65 Luminaire / IP68 Controller
CertificationsCE / RoHS / ISO9001 / ISO14001Warranty3 Years

Engineering Advantages of Split Architecture

Independent PV Orientation

The separate solar panel mounts on an adjustable bracket, allowing the PV array to face the optimal direction regardless of the road alignment. This is essential for roads running east-west where a fixed panel would lose 20-40% of annual energy yield compared to proper south-facing orientation (Northern Hemisphere).

9-Meter Road Coverage

The 9-meter pole height with single-arm bracket is an optimal configuration for two-lane collector roads, industrial access routes, and municipal streets. Combined with 80W LED output and proper optical lens distribution (Type II/III), it delivers uniform illumination at pole spacings of 25-35 meters, meeting IESNA roadway standards.

Industrial-Grade Reliability

The split system separates the IP65 luminaire, IP68 controller, and ground-level or pole-base battery enclosure — each in its optimal thermal environment. This modularity extends component lifespan by preventing heat build-up and simplifies future battery replacement without dismantling the luminaire or solar panel.

Reference Configuration

Reference for project planning. Final wattage, solar panel, battery, controller, pole dimensions, and installation layout confirmed per site-specific solar audit and structural engineering review.
Parameter Reference Value
Lighting Power 80W LED — SMD High-Efficacy Chip Array
Mounting Height 9-Meter Hot-Dip Galvanized Q235 Steel — Single Arm
System Architecture Separate PV Module + LED Luminaire + LiFePO4 Battery + MPPT Controller
Certifications CE / RoHS / ISO9001 / ISO14001 — 3-Year Warranty
Site Confirmation Road width, pole spacing, solar resource, wind load, illumination target

Project Planning — Input Checklist

Project Input What to Confirm
Road Specifications Road width, lane count, pole spacing, mounting height, required lux level
Location & Climate GPS coordinates — sun hours, rainy season, temperature range, wind zone, corrosion exposure
Operating Schedule Nightly lighting hours, dimming profile, autonomy target, motion sensor requirement
Installation Scope Foundation design, cable routing, local permits, commissioning, quantity, timeline

Product & Installation Gallery

A collage of six photos showing the manufacturing, assembly, and testing processes inside a lighting factory.     Full System Assembly
A collage of six images showing the mass production of solar panels in cleanroom factories and a large-scale solar panel farm at sunset.     LED Luminaire Detail
A collage of six photos showing the industrial interior of a metal manufacturing facility with stacks of steel pipes, machinery, and overhea     PV Panel Bracket
The image is a collage of photos showing a cleanroom manufacturing facility where workers in protective suits operate automated machinery to     Pole Base & Flange
A technical drawing detailing the components and dimensions of a split solar street light with a single arm pole.     Battery Enclosure
This is a technical street lighting calculation report showing a road layout, pole dimensions, and photometric results for a 12-meter high d     Night Illumination
Diagram and text detailing wind resistant design for 12m single arm lighting pole with solar panels.     Component Layout

Installation Video

If embed is blocked, watch on YouTube.

Frequently Asked Questions

Is 9 meters the right mounting height for every road?
A 9-meter pole is typically optimal for two-lane collector roads, industrial access routes, and municipal streets with road widths of 6-10 meters. For narrower residential roads, 6-7m poles may suffice; for four-lane arterials and highways, 10-12m poles are recommended. The correct height depends on road width, required lux level, and pole spacing. Our engineering team provides a free DIALux simulation that maps the exact lux distribution for your specific road geometry — ensuring you select the right pole height, not an approximation.
Why use a split system with a separate solar panel?
The split architecture allows the solar panel to face the optimal direction independently of the road. Consider a road running east-west: with an all-in-one fixture, the panel faces the same direction as the luminaire (north or south), losing significant energy. With a split system, the panel is mounted on an adjustable bracket pointing true south (Northern Hemisphere) at the ideal tilt angle — recovering 20-40% of annual energy yield. The separate battery box also enables easier future replacement without touching the luminaire or panel.
Can I get a DIALux lighting simulation for my project?
Yes — this is a standard deliverable included with every project proposal. Provide your road cross-section (width, lane count, median), pole spacing plan, and target lux level (e.g., M3 class = 1.0 cd/m² average luminance). Our team generates a full DIALux report with pseudo-color lux maps, uniformity ratios (U0/U1), and glare ratings — typically returned within 2-3 business days. This ensures the selected configuration meets your local road lighting standards before you place an order.

100% QC inspection. Factory: Dongguan, Guangdong, China.

Plan your 80W Split Solar Street Light - 9M 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.