E-ABLE POWER / R&D

Engineering,In-House

Our in-house R&D team designs and validates solar lighting and energy-storage systems, from optics and electronics to thermal and reliability testing for real projects and climates.

>

Lighting engineered for your location.

Every design is optimized for the project’s sun, wind and weather conditions. Our in-house team handles the full engineering stack — from optics and thermal design to battery, controller and structural engineering — so the finished system performs exactly as specified at your site.

Site-specific design

Systems engineered to your project requirements and climate — wind resistance, lux levels and autonomy targets optimized for the location.

  • Wind-load & pole calculations
  • Lux-level & uniformity targets
  • Autonomy & battery sizing report
  • DIALux layout per project site

Optical engineering

Bat-wing, asymmetric and pedestrian optics designed for uniform distribution, glare control and maximum light coverage at the target height.

  • Bat-wing & asymmetric optics
  • Anti-glare / UGR control
  • Uniform distribution at height
  • High-efficiency PC lenses

Battery & controller

LiFePO4 platforms with cell-level BMS and MPPT controllers engineered for long cycle life and reliable multi-night autonomy.

  • LiFePO4 with cell-level BMS
  • MPPT charge controller
  • 6,000-cycle long-life cells
  • Multi-night autonomy in the field

OEM / ODM development

Custom housings, branding, materials and configurations developed in-house to match your product line and market requirements.

  • Custom housing & branding
  • IK08 / IP66 options
  • Material & finish selection
  • Prototype before mass production

R&D capabilities, under one roof.

Optics & photometry

In-house optical design and photometric measurement for uniform, efficient light distribution.

Thermal design

Heat-sink and thermal simulation for reliable LED and battery performance in hot climates.

IP / IK testing

Ingress and impact validation to IP65/IP66 and IK08 protection standards.

Wind-load simulation

Structural calculation and wind-resistance validation for poles and mounting systems.

DIALux lighting layout

Free photometric simulation confirming lux levels, uniformity and pole spacing before production.

Rapid prototyping

Fast tooling and sampling to validate your design and configuration before mass production.

E-Able Power wind-resistance testing of solar lighting

Tested before it ships.

Every product is validated against the conditions it will face in the field — wind, rain, dust, heat and impact. Our testing covers:

  • Wind-resistance and structural validation
  • IP65/IP66 ingress protection testing
  • IK08 impact-resistance testing
  • 100% aging and burn-in before shipment
CECEISO 9001ISO 9001RoHSRoHSIEC 62619IEC 62619

DIALux photometric simulation.

Every project can be validated with a free DIALux lighting simulation — confirming lux levels, uniformity and pole spacing before production, so the system is engineered to deliver the specified performance at your site.

  • Lux levels & uniformity report
  • Pole height & spacing recommendation
  • Free with every project proposal
E-Able Power solar street light installed for a municipal project

How we develop your product.

1

Requirements

Share site, wattage and performance targets. We confirm the engineering scope.

2

Engineering & DIALux

Optical, thermal and structural design with a DIALux lighting simulation.

3

Prototype sampling

Sample produced and approved with your branding and configuration.

4

Testing & certification

IP/IK, wind and aging tests to confirm the product meets its spec.

5

Production & QC

Mass production with 100% outgoing quality control on every unit.

6

Delivery & support

Worldwide delivery, installation guidance and after-sales support.

Frequently asked questions.

Is the DIALux simulation really free? +

Yes. A DIALux photometric simulation is provided free with every project proposal. It confirms lux levels, uniformity and pole spacing so you can validate the design before any commitment.

Can you engineer a light for our specific climate? +

Yes. Designs are tailored to your site — wind-load and structural calculations for exposed locations, thermal design for hot climates, and autonomy/battery sizing for your sunshine hours and cloud cover.

What protection and testing standards do products meet? +

Products are engineered to IP65/IP66 ingress protection and IK08 impact resistance, with CE and RoHS certification (IEC 62619 for battery modules), validated by aging and wind-resistance testing.

How long does OEM/ODM development take? +

Standard customization with branding and packaging typically takes 2–4 weeks including sampling. New housing or optical development is longer — we confirm a schedule with your quotation.

Can you develop to match our existing specifications or brand? +

Yes. Our in-house team can develop to match your target wattage, battery, optics, housing and branding requirements, with a prototype approved before mass production.

Put our engineering to work on your project.

Send your site conditions and lighting requirements for a customized solution, engineered to maximize efficiency in your project location.