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Series Solara I20–90 W Solara II100–200 W
Solara™ integrated solar street light

Sleek, timeless,
built to last.

The flat-profile all-in-one: panel, battery, optic and IoT node in one slim casting, with the light engines recessed into the underside. Solara I covers 20–90 W, Solara II 100–200 W, and both report to the same cloud — no trenching, no cabling, no electricity bill.

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Overview

One pole,
everything on it.

Solara self‑generates, stores and intelligently manages its power supply. There is no need for cable trenching, utility metering, or waiting for grid connection approvals. Solar panel, battery pack, controller and light fixture are housed in one unified die‑cast assembly, allowing it to be mounted onto a spigot in just one afternoon. Select a part in the viewer to isolate it.

Photovoltaic ModuleControllerEnergy Storage BatteryLighting Control UnitLed LuminaireLED +LED −GatewayiNET CloudControl Platform
The photovoltaic module charges the pack through the MPPT controller. The lighting control unit drives the luminaire on LED+/LED− and talks to the gateway, which reaches iNET Cloud and the control platform.
Light

The engine,
the optic,
and where it points.

Three things decide what a solar street light actually lays on the road: how efficiently the engine makes light, how tightly the optic cuts it, and where the head is aimed once it is up. The first two are specified; the third is set on site, and the travel quoted here is what the head actually clears on the pole, not the fitter's nominal rating.

01 · Lighting engine

Up to 220 lm/W, IP66

Experience superior brightness and rugged reliability. Powered by high‑output Philips Lumileds, the 1–4 module design ensures over 50,000 hours of high‑efficacy lighting. Built to withstand the harshest environments, the unit carries an IP66 ingress protection rating and IK08 impact resistance.

01Efficacy210–220 lm/W
02Lifetime> 50,000 h
03StandardIESNA
04Ingress / impactIP66 · IK08
02 · Optics

Eight optimized optics
meeting diverse road requirements

To ensure optimal visibility and safety across any landscape, the system offers eight precision‑engineered optics tailored to diverse road requirements. This selection spans IESNA Type I through Type V distributions, covering everything from narrow pedestrian walkways and urban streets to multi‑lane highways and expansive parking areas. These optimised optics direct high‑efficiency illumination exactly where it is needed, eliminating dark spots and minimising light waste.

01LEDPhilips Lumileds 5050
02MaterialsPC3000U
03Distributions8, IES
04CCT bands2500–6500 K
drag to orbit · scroll to zoom
The lens array

Each array, as supplied. Each dimple is one LED's optic and the plate is a single moulding, so the pattern cannot drift out of alignment on site, and the IP66 rating is guaranteed.

  • 60×100°Type I-VS
  • 65×145°Type IV-S
  • 65×155°Type II-M
  • 70×135°shown here
  • 75×150°Type III-M
  • 80×150°Type III-S
  • 110°Type V-S
  • 150°Type V-S
Intensity · candela
On the road · lux
Mounting 8.0 m
Peak
Max on road
Measured
Photometrics. Measured performance of the Type III-M optic (75×150°) — 6134 lm from 30 W, 204.5 lm/W — from an EVERFINE goniophotometer report (EL-2302, February 2023).
Left: how the light leaves the luminaire. Intensity in candela against the angle from straight down, in the plane across the carriageway (C0–C180) and along the road (C90–C270). Almost nothing is thrown behind the pole, which is what keeps the light on the road instead of in the windows facing it.
Right: what that puts on the ground. Set the mounting height and the pattern redraws: colour shows relative brightness, the contour lines are absolute lux, and the kerb and a 7 m carriageway give the scale.
The Type III-M is one of the eight distributions listed above — the same luminaire, a different lens for a different road.
drag to orbit · scroll to zoom
Module
Reset
Engine
Fixture
03 · Adjustment

Aimed on site, not in the factory

Two joints, and they are independent. Every light engine hinges on its own mount through ±30°, so a pole on a bend can throw each module down a different line; the whole fixture then swings on the slip fitter's knob. That travel stops where the head would meet the pole — the figure the slider stops at is the travel you really get, not the fitter's nominal rating. Drag to walk round the joint.

Power

Made on the pole,
kept in the pole.

A solar light is an energy budget with a lamp on the end of it. The panel sets what comes in on a short winter day; the pack decides how many of those days the light can miss and still work. Both are sized per model — the table under Specification carries the per-model figures.

01 · Solar panel

Monocrystalline, multi-busbar

Multi-busbar monocrystalline cells at 23% conversion, 24% at module level, with output held to ±3%. PID-resistant and tested to IEC 62804, rated to 2400 Pa wind and 5400 Pa snow, and warranted 10 years on materials against a 25-year linear output curve — longer than the pole is usually specified for.

01Cell / module efficiency23% / 24%
02Sizes55 · 75 · 140 · 160 · 250 W
03Voltage18 V / 36 V
04Output warranty25 years, linear
02 · Battery

LiFePO₄, Grade A+ cells

More than 4000 cycles, with two cell grades: standard cells charge from 0 °C, and advanced cells charge down to −20 °C for winter sites where a standard pack would simply refuse. Both discharge across the full −20…60 °C range. Capacity is measured and real, not estimated, and maintenance is guaranteed for 5 years.

01Cycle life> 4000
02Charge, advanced cell−20…60 °C
03Discharge−20…60 °C
04DoD80%
03 · Inside the pack

The stack, and the tube
it lives in

E-Lite builds its own packs, and a pack is not a box of cells with a lid on it. The case is a single extruded aluminium section with eight cell rows formed into it, closed at each end — one cap blind, the other carrying the gland, the charge port, the breather and the switch button. Inside, the LiFePO₄ stack is joined by nickel busbars and watched and protected by its own BMS. On an IoT pack, a further precision monitor module is built in to report real data.

drag to orbit · hover a half to isolate it
Teardown · two halves
    The cells, and what backs them
    01CellsGrade A+ automotive-grade LiFePO₄, 100% new
    02Cycle life> 4000 cycles
    03Charge, standard0…50 °C
    04Charge, advanced−20…60 °C
    05Discharge−20…60 °C
    06Battery warranty5 years
    07Maintenance guarantee5 years
    Before it ships

    Every cell is inspected, and every finished pack is parameter-verified and aged through three complete charge–discharge cycles before it ships. A pack that has its fault found on the pole instead of on the bench costs a truck, a lift and a night of darkness, which is why the ageing step is not the one that gets skipped.

    Intelligence

    Everything it knows,
    and who it tells.

    From here on it is the same pole seen from further away: the node that runs it, the six things it senses about itself, the CMS it reports to and the mesh it reports over.

    01 · IoT node

    Flexible IoT Connectivity Architecture

    The IoT node supports mesh‑network variants in both NEMA‑type and Zhaga‑type form factors. It also offers star‑network options, including the 4G‑enabled NEMA‑type model and E‑Lite’s own embedded in‑house design.

    01NetworkGlobal LTE Cat 1
    02ReceptacleNEMA / Zhaga
    03MPPT compatibilitySRNE / E-Lite
    04CybersecurityReady
    02 · Sensors

    What the pole knows
    about itself

    Six of them, and not one is decoration. The pole switches on its own panel voltage, counts the charge in and out of its pack, knows if it has been leaned on, and refuses to charge a frozen battery. What they measure is what the console shows — there is no second, friendlier set of numbers.

    Photocell

    Dusk to dawn

    The panel is the sensor: the controller switches on the falling panel voltage against a programmable 3.0–8.0 V threshold, with a 0–30 minute delay so passing cloud does not cycle the light.

    Motion

    Two power levels

    In motion mode the light holds 100/60/30/70% while something is moving and drops to 30/20/10/20% when nothing is — the saving that buys the small hours without leaving a street dark.

    Monitor module

    Measured, not modelled

    A high-precision battery monitor module reports voltage, current, power, real capacity and time remaining. A pack that is ageing shows up as a falling capacity years before it shows up as a dark pole.

    Geo tracker

    Permanently powered GPS

    A mini tracker on its own supply, hidden in a part of the fixture an installer cannot reach, followed live from the app. It is there for the poles that leave site on the back of somebody's truck.

    Tilt alarm

    Gyroscope and accelerometer

    The installed angle is locked at commissioning. A knock, a lean or an attempt to unbolt the head raises an alarm at the operation centre and sends an SMS from the management system.

    Thermal

    0 °C charge protection

    Lithium is not charged below freezing. The controller holds charge off until the pack is warm enough to take it, which is the single thing that most shortens a solar light's life in a cold climate.

    iNET Cloud

    One console
    for the whole estate.

    A cloud central management system for provisioning, monitoring, controlling and analysing lighting. Multi-tenant, reached from a browser on a laptop, tablet or phone, and scaling to thousands of locations under a single interface.

    Live view

    A lit street, in real time.

    Three poles on one kerb of a four-lane carriageway, spaced at 3.5× mounting height so the throws cross and the road lights evenly. Take one light or all three, dim them, switch them — or leave the photocell to it and watch a whole day pass in seventy-five seconds.

    All three ON
    Carrer de Balmes · group G#4
    80% output
    LCU-#01 G#4 · Avinguda Diagonal
    Link Online
    Photocell Daylight
    Battery Idle
    State of charge
    Output
    Mirrored live in the console below
    drag to orbit · shift-drag to pan · scroll to zoom
    Light All1 23
    Switch OnOff
    Dim 80%
    Jump to SundownSunrise Night
    View Reset
    Data Overview
    ?

    A working simulation of the iNET Cloud console. Every control responds the way it does in the real thing, so you can try the platform here before you see it on your own estate. Nothing is switched: commands end in a notice saying so, and every name, location and reading on screen is invented. Hover a control for a hint, and each screen explains itself when you arrive. Map data © OpenStreetMap contributors, ODbL.

    Assets

    Every light, on the map

    Create, import and edit device attributes — fixture coordinates and type, fixture wattage before and after retrofit, lamp type. iNET performs GIS‑to‑GPS matching to correlate fixture IDs with physical devices, so device IDs need not be recorded during installation.

    Control

    Map and floor plan

    A map-based interface for status, health and overrides, extended to floor plans for indoor structures such as parking garages. Faulty devices are located from the same view that reported them.

    Schedules

    Groups and priority

    Assets group logically for event scheduling, and a group can hold several schedules at once — regular and special events kept apart, with the engine resolving the day from event priority rather than from the operator remembering.

    Data

    Collected several times a day

    Light level, energy use and faults, with per-point monitoring levels for voltage, current and power factor when a circuit needs investigating.

    Alarms

    Failure finds you

    Built-in alarms per asset class, configurable to e-mail and SMS. The system watches for lamp failure, night outages and day burners, and the logs export as CSV.

    Reporting

    Asset, selection or city

    Energy reports compare performance across lighting assets; data logs trend light level, wattage and schedules over a period. Everything exports to CSV or PDF.

    Security

    Every interface to iNET uses SSL with AES encryption. Access is role-based and can be restricted at different levels of a geozone hierarchy, password policy follows industrial standards, and a timeout after repeated failed logins closes the obvious attack.

    Platform

    Multi-tenant and built on current web technology, so it ports across platforms and web interfaces. Supported on Chrome, Firefox and Edge.

    The network

    Every node
    relays for its neighbours.

    The gateway talks to the server over cellular or ethernet, and to the nodes over SUB-1GHz radio. Between the nodes it is a mesh: any node can act as a repeater, so an instruction from the server reaches a light that cannot hear the gateway directly.

      iNET mesh · live routing
    Radio

    SUB-1GHz, nine channels

    IEEE 802.15.4 on ISM 315 / 433 / 490 / 868 / 915 / 928 MHz, 9-channel direct sequence spread spectrum at +22 dBm from the node and +24 dBm from the gateway. Node to node and node to gateway both reach 1 km line of sight.

    Backhaul

    Wireless

    It leverages its integrated 4G modem to connect over any cellular carrier. Downstream nodes operate independently and remain unaffected regardless of the gateway’s connectivity method.

    Scale

    100–200 nodes, 2000 m across

    One gateway carries up to 200 controllers out to 1000 m line of sight, and the mesh between them spans a network up to 2000 m in diameter. Beyond that, add a gateway rather than a trench.

    iNET devices

    A gateway.
    A node per light.

    Two devices carry the whole system. The gateway is the bridge to the server; the node is the part that actually holds a luminaire's behaviour, and there is one in every fixture.

    iNET Gateway

    The bridge to the server

    Connects the field controllers to the management system through an ethernet link for LAN, or a 4G link through an integrated cellular modem. Star-mesh repeater topology, wall or pole mounted, with a built-in lightning surge arrester on every antenna port and a 5-year limited warranty.

    01Controllers supported200 max.
    02Range, line of sight1000 m
    03RF power+24 dBm
    04EncryptionAES 128
    Controller node

    Two ways to fit it

    Standard installs inside the fixture, normally in the drive box — the choice for new luminaires and for retrofits where the housing opens. Node fits the NEMA 7-pin socket on top of a street light or area fixture, with an onboard photocell, and needs no one inside the housing at all.

    01Switched load450 W
    02Own consumption1.5 W
    03Metering accuracy0.5 %
    04Autonomy, no networkSupported
    Five-stage modeSolar Controllers B and C Sunset · panel voltage falling Off Panel voltageabove D/N Thr

    The controller’s clock steps the level from block to block. Traffic changes nothing in this mode.

    Five-stage mode · Solar Controllers B and C. Once the panel’s voltage says it is night, the controller’s clock steps the light through five blocks, Time 1 to Time 5, each with its own length and dim level. It is a fixed programme: the traffic on the street changes nothing, and the battery knows what the night will cost. The levels shown are an example; every block’s time and level are set per project.
    Specification

    Solara I
    and Solara II.

    From the Solara I and Solara II product specifications. Panel and battery are sized on 6 hours of charging. Values marked TBC are pending confirmation against the production build. The table follows the series selected at the top of the page.

    Talos II · 100–200 W Battery: standard / premium
    Luminaire
    Efficacy210–213 lm/W
    LEDPhilips Lumileds
    Lifetime> 50,000 h
    CRI70 nominal
    CCT2500–3500 / 3500–4500 / 4500–5500 / 5500–6500 K
    Optics60×100° · 65×145° · 65×155° · 70×135° · 75×150° · 80×150° · 110° · 150°
    DimmingDimmable, 5-stage programmable
    HousingIP66 · IK08
    MountingSlip fitter, spigot 0°–90°
    ColourRAL9005 black / RAL7045 grey
    Photovoltaic module
    CellMonocrystalline, multi-busbar
    Cell efficiency23%
    Module efficiency24%
    Output tolerance±3%
    55 W / 18 VVoc 22.8 · Isc 3.25 · Vmp 18 · Imp 3.1
    75 W / 18 VVoc 22.8 · Isc 4.31 · Vmp 18 · Imp 4.2
    105 W / 36 VVoc 43.2 · Isc 3.15 · Vmp 36 · Imp 2.9
    160 W / 36 VVmp 36 · Imp 4.4
    250 W / 36 VVmp 36 · Imp 6.9
    PIDResistant, tested to IEC 62804
    Wind / snow2400 Pa / 5400 Pa
    Operating−40 °C to +85 °C
    Warranty10 y material · 25 y linear output
    Energy storage
    ChemistryLiFePO₄, Grade A+ cells
    Cycle life> 4000 cycles
    Standard cellCharge 0…60 °C
    Advanced cellCharge −20…60 °C
    Discharge−20 °C to +60 °C
    Storage−20 °C to +60 °C
    MonitoringHigh-precision battery monitor module
    ReportedVoltage · current · power · capacity · time remaining
    MaintenanceGuaranteed 5 years
    Autonomy1–3 days
    Charge controller
    TypeMPPT / PWM
    Controller BRegular MPPT — 5-stage, motion sensor mode
    Controller CHybrid MPPT — adds dusk-to-dawn and TOT
    MPPT tracking> 99.9%
    Charge conversion97.5%
    Discharge conversion96.5%
    Charge stagesMPPT · boost · equalisation · float
    Dusk/dawn threshold3.0–8.0 V programmable
    Day/night delay0–30 min programmable
    0 °C protectionLithium charging lockout
    HousingIP67 aluminium
    IoT node & sensors
    OptionsNone · IoT · +Geo · +Tilt · +Battery monitor · all
    RadioIEEE 802.15.4 sub-1 GHz mesh
    Gateway capacity200 controller nodes
    Range1000 m line of sight
    Geo trackingPermanently powered, concealed
    Tilt alarmGyroscope + accelerometer, angle locked at install
    MotionSensor mode via Controller B
    PhotocellBuilt-in, panel-voltage derived
    ClockAstronomical, autonomous sunrise/sunset
    SurgeTVS 3000 V lightning protection
    Ordering & warranty
    CodeEL · series · power · dim · LED · CCT · optic · battery · controller · IoT · mount · IP · charger · colour
    Battery01 standard · 02 premium
    Controller02 Solar B · 03 Solar C
    Mounting07 slip fitter
    System warranty5 years
    Battery maintenance5 years
    DC charge portOptional (Talos I)
    Accessory cameraCell PT 4G, 3 MP H.265 (Talos I)