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Every published page on this website, grouped by section, with a line on what each one covers. 111 pages in total.

Main sections

Services

17 service pages.

Solar installation

  • Solar panel installation — Survey, design, roof works, electrical works and commissioning for a domestic solar PV system.
  • Solar and battery systems — Panels, hybrid inverter and storage designed as one system, on one scaffold, with one commissioning.
  • EV charger installation — Home charge points installed with a proper load assessment, PEN fault protection and solar-aware scheduling.
  • In-roof solar — Panels integrated into the roof covering rather than mounted above it, with the weathering detailed properly.
  • Flat roof solar — Ballasted and mechanically fixed arrays on flat roofs, designed around wind loading and the membrane underneath.
  • Ground-mounted solar — Free-standing arrays on frames or screw piles, where the roof is unsuitable and the land is not.

Battery storage and EV charging

  • Battery storage installation — Home battery systems sized against your consumption, sited properly and commissioned with the tariff in mind.
  • Battery retrofit — Adding storage to a solar system that is already on the roof, without disturbing what works.

Servicing, repairs and aftercare

  • Solar panel maintenance — Scheduled servicing of the whole system — array, fixings, DC side, inverter and monitoring — not just the glass.
  • Solar panel cleaning — Deionised water cleaning where soiling is actually costing generation, and honest advice where it is not.
  • Solar panel repairs — Fault diagnosis and repair on arrays that have stopped working, or never quite worked properly.
  • Inverter replacement — Replacing a failed or ageing inverter, matched to the array that is already on the roof.
  • Solar panel removal and refit — Taking an array down for roof work, extensions or repairs, and putting it back properly afterwards.
  • Bird proofing — Mesh and clip systems to keep pigeons out from under an array, fitted to the panels rather than the roof.
  • System monitoring and optimisation — Getting proper data out of a system, then changing its settings so it earns more from the same hardware.
  • Solar health check — A one-off independent assessment of an existing system, with a written report on its condition and performance.

Commercial

  • Commercial solar — Rooftop and ground arrays for businesses, designed around the site load profile and the grid connection available.

Technology

15 technology pages.

Panels

  • Solar panels — What a domestic solar panel is, how it is built, and which specifications on the datasheet actually matter.
  • Monocrystalline panels — The cell technology used in almost every domestic installation, and what half-cut cells actually change on a shaded roof.
  • All-black panels — Panels with black frames, black backsheets and concealed busbars, and what the appearance costs in output and in price.
  • N-type and TOPCon panels — The cell architecture replacing PERC in domestic modules, and what n-type silicon genuinely changes.

Inverters

  • Inverters — What the inverter does, how MPPT works, and how the four architectures compare honestly against each other.
  • String inverters — The conventional central inverter: how strings are designed, where it is the best value, and where it is the wrong choice.
  • Hybrid inverters — A single unit managing array, battery and house demand, and when fitting one is worth the extra cost.
  • Gateways and whole-home backup — what a gateway does, whole-home versus essential circuits, and what backup will actually run.
  • Microinverters — One inverter per panel mounted on the roof: what per-panel conversion buys, and what it costs.
  • Power optimisers — Per-panel DC electronics that keep conversion in one accessible box: the middle option between string and micro.

Batteries

  • Batteries — How home storage works, what determines whether it pays, and the specifications that actually matter.
  • LFP batteries — Lithium iron phosphate chemistry: why it became the domestic standard, and what it gives up in exchange.
  • Anker SOLIX X1 — a modular hybrid storage system we install regularly.
  • Battery sizing — How storage capacity and power rating are calculated from consumption data rather than from roof size.

Mounting

  • Mounting systems — Hooks, rails, clamps and fixings — the part of the installation that decides whether the roof stays watertight.

Monitoring

  • Monitoring systems — What generation, consumption and battery data actually tells you, and what a system needs fitted to produce it.

Protection

  • Bird protection — Mesh and clip systems that close the gap under an array, why pigeons nest there, and how it is done without damaging the roof.

Property guide

15 property pages.

By property age

  • Pre-1920 homes — Solar on Victorian and Edwardian houses: brittle coverings, irregular rafters, ageing electrics and planning sensitivity.
  • 1920 to 1965 homes — Interwar and early post-war housing: hipped roofs, clay and early concrete tile, central chimneys and modest incoming supplies.
  • Post-1965 homes — Trussed rafter roofs, concrete interlocking tile and modern electrics — the most straightforward housing stock to work on.

By property type

  • Victorian terraces — Narrow slate slopes, party walls, rear back-additions and scaffolding through a shared alley — terraced solar on its own terms.
  • 1930s semi-detached homes — The classic suburban semi — hipped or gabled roof, party wall stack, bay window and a side elevation that changes everything.
  • Bungalows — Large roof area over a small floor plan, low eaves and easy access — with shading and consumption as the real limits.
  • New build homes — Retrofitting or extending solar on a new build — structural warranty notification, shallow pitches, interrupted roof planes and covenants.
  • Listed buildings and conservation areas — Where permitted development rights are reduced or removed, listed building consent is a separate process, and design choices decide the outcome.
  • Barn conversions — Large uninterrupted roof planes, profile sheet or clay tile, long cable runs and rural supplies that shape what is possible.

By roof covering

  • Tile roofs — Concrete interlocking, clay pantile and plain tile — the most common covering we work on, and the most forgiving.
  • Slate roofs — Natural and fibre cement slate — brittle, holed rather than nibbed, and unforgiving of the wrong fixing method.
  • Flat roofs — Ballasted or mechanically fixed frames, membrane life, wind loading and row spacing — flat roof solar is a structural question first.
  • Metal and profile roofs — Standing seam clamps, trapezoidal through-fixings, thermal movement and dissimilar metal corrosion on sheet-covered roofs.

By orientation and shading

  • East-west roofs — Less annual total than south, a flatter daily curve, higher self-consumption — and a design that pairs naturally with storage.
  • North-facing and shaded roofs — Sometimes the answer is no. Where it is not, per-panel electronics, a different roof, an outbuilding or a ground mount.

Areas we cover

15 town pages, with local neighbourhood pages listed beneath the town they sit under. Towns without a page of their own are listed on the areas we cover index.

Completed installations

9 project pages.

Advice and guides

20 articles.

Cost and savings

Sizing a system

Regulation and permissions

Technology

  • In-roof vs on-roof solar — How the two mounting approaches differ in appearance, weathering, cost and suitability for different roofs.
  • Roof orientation and shading — How aspect, pitch and obstructions change what a roof can produce, and what can be done about shading.
  • String inverter vs microinverters — How central and module-level conversion differ in shading tolerance, servicing, monitoring and failure behaviour.

Aftercare and performance

General

Company

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