E-ABLE POWER / SOLAR LIGHTING

9M Double-ArmSplit Street Light

A 9-meter double-arm split solar street light at 80W with municipal-grade construction for wide roads and dual-direction lighting, lighting both sides from one pole to cut foundation cost.

E-ABLE POWER — PRODUCT DATASHEET
COMMERCIAL SOLAR LIGHTING SOLUTIONS
MUNICIPAL INFRASTRUCTURE GRADE HIGH-EFFICACY 170LM/W

Split Solar Street Light | 9-Meter Double-Arm

9M Double-Arm Split Solar Street Light — Powerful 80W Dual LED Infrastructure

The definitive choice for large-scale municipal road networks. The Split Design architecture enables high-power monocrystalline panels and massive LiFePO4 energy storage, delivering unmatched brightness and 20+ years of hardware reliability. Dual 80W Lumileds 3030 luminaires at 170 lm/W illuminate both carriageways from a single 9-meter pole — engineered for arterial roads, ring roads and infrastructure corridors.

A tall white double-armed street lamp with two solar panels mounted at the top.

Key Specifications at a Glance

LED Luminaire12V 80W × 2 (Lumileds 3030)Efficacy170 LM/W
Solar Module150W/18V × 2 MonocrystallineBatteryLiFePO4 12.8V/80Ah × 2
Controller10A Smart MPPT × 2Pole9M Conical Q235 Steel
FinishHot-Dip Galvanized + Powder CoatedCCT3000K – 6000K Adjustable
Battery Cycles2,000+ Deep CyclesPole Design Life>20 Years
CertificationsCE / RoHSWarranty3 Years Standard
“The definitive choice for large-scale municipal road networks. Our Split Design architecture enables the use of high-power monocrystalline panels and massive energy storage, delivering unmatched brightness and 20+ years of hardware reliability.”

Engineering & Performance Advantages

Split Architecture

By housing panels, batteries, and LEDs separately, we optimize heat management and energy harvesting — allowing massive 150W panels for full-night brightness on both carriageways.

Modular Scalability

Components are modularly engineered for rapid deployment and easy upgrades, ensuring the lowest Total Cost of Ownership (TCO) in municipal lighting.

LiFePO4 Energy Core

Equipped with dual 80Ah Lithium Iron Phosphate battery packs, rated for 2,000+ deep cycles and 10+ years of maintenance-free service.

Engineering Guide: Double-Arm Installation

System Specification Sheet (9M/80W Configuration)

Component Technical Specifications Qty Design Life
Main Pole 9M Conical Q235 Steel, Conical Diameter 75-152mm, Hot Dip Galvanized & Powder Coated 1 pc > 20 Years
LED Luminaire 12V 80W Lumileds 3030 Chips, 170LM/W, IP66 Waterproof, 3000K-6000K Adjustable 2 pcs > 50,000 Hrs
Solar Module 150W / 18V Monocrystalline Silicon (>18% High Efficiency) 2 pcs > 25 Years
Battery Pack LiFePO4 12.8V 80Ah, Deep Cycle, Free Maintenance, 2,000+ Cycles 2 pcs 5 - 10 Years
MPPT Controller 10A Smart MPPT, Automatic Dusk-to-Dawn Intelligence 2 pcs 5 - 10 Years
Certifications CE / RoHS / ISO 9001 / ISO 14001

Table 1.0 — System specification sheet for the 9M/80W double-arm configuration. Final values to be confirmed with the approved quotation and destination-market requirements. 3-year standard warranty.

E-Able Industrial Manufacturing Hub

A collage of six images depicting workers in a manufacturing facility involved in assembly, testing, and quality control processes.

LED SMT WORKSHOP

A collage of six photos showing automated production lines, workers in blue cleanroom suits assembling solar panels, and a large solar farm

PV PANEL WORKSHOP

A collage of six photos showing the interior of a metal fabrication factory with overhead cranes, machines, and long pipes.

GALVANIZED POLE WORKSHOP

A collage showing a cleanroom factory interior, automated production lines, workers in protective cleanroom suits assembling equipment, and

LiFePO4 BATTERY WORKSHOP

Project Design, DIALux & Wind-Load Support

Project Design

Technical schematic of a solar street light with battery box, pole, concrete cage, and solar panel.

DIALux Analysis

A technical lighting design report for "street 1 / valuation Field Roadway 1" showing an overview drawing, photometric results, and a greysc

Wind Load Resistance

A technical document detailing the wind resistant design for a 12m single arm lighting pole.

Buyer FAQ

Why choose a double-arm configuration for municipal roads?
A double-arm pole mounts two independent 80W luminaires on a single 9-meter structure, illuminating both carriageways of a two-way road from one foundation — halving pole count and civil works versus single-arm alternatives. It is the preferred layout for arterial roads, ring roads and median-lighting schemes where uniform two-sided coverage is required.
How are the dual solar panels and batteries configured?
The reference configuration pairs two 150W/18V monocrystalline panels with two LiFePO4 12.8V/80Ah packs (2,000+ deep cycles), managed by two 10A MPPT controllers. Sizing is adjusted around local sunshine hours, rainy-season autonomy, dimming schedule and operating hours — the split architecture allows the panel and battery capacity to be up-sized independently without redesigning the pole.
Is wind-load and lighting validation provided for tenders?
Yes. For municipal tenders our engineering team provides free DIALux lighting simulations and wind-load certifications based on your road width, pole spacing, mounting height and target lux levels. Provide the destination market and project inputs so the applicable drawings and documentation can be reviewed for the selected configuration and local standards.
What is the expected design life and maintenance requirement?
Design life is component-matched: pole >20 years (hot-dip galvanized + powder coated Q235 steel), LED luminaires >50,000 hours, solar modules >25 years, and battery/controller 5-10 years depending on cycling depth. Maintenance is limited to periodic panel cleaning and annual connection inspection — batteries are maintenance-free, and a 3-year standard warranty applies.

E-Able Power is an ISO 9001 & ISO 14001 certified manufacturer. All split solar street lights are CE and RoHS compliant with 3-year standard warranty.

Plan your 80W Split Solar Street Light - 9M Double Arm | E-Able Power 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.