Solar Panel Installation Across Sussex and the South East

Solar PV installation

Solar PV Designed Around Your Roof, Your Supply and Your Usage

A solar photovoltaic system is an electrical installation on your roof, so we treat it as one. Every enquiry starts with a survey of the roof and the existing wiring: pitch and orientation, the covering and its condition, shading from chimneys, dormers and neighbouring trees, and the route a cable can take from the array down to the inverter.

From that survey we size the array to suit how you actually use electricity rather than simply filling the roof. Panel count, string layout, inverter rating and whether battery storage is worth adding are all set out before you commit, along with what the mounting system will involve and where the isolators, meter and any diverter will sit.

The roof work, the electrical connection and the commissioning are all run as a single job, so nothing is left to fall between trades. We work to the current wiring regulations, BS 7671, and the system is tested and certified on completion. Quotes are free and without obligation, and the price is explained in full before anyone starts work.

Solar Panel Installation by CK Electrical

About this service

What a Solar PV Installation Involves

What the Roof Survey Covers

Before any figures are quoted we get onto the roof, or survey it safely from ground level and the loft. We check the rafters and battens can carry the extra load, look at the age and condition of the tiles or slates, and note anything that would need attention before panels go on top of it.

Shading matters more than most people expect, because a single shaded panel can drag down a whole string. We record where shadows fall through the day and through the year, then design around them with the string layout or with optimisers, so you know what the roof can realistically produce.

Installation, Inverter and Battery Set-Up

Installation begins with the mounting rails and roof anchors, which are fixed to the rafters and weatherproofed as the covering is put back. Panels are then set out, clamped and wired into strings, with DC cabling routed and protected on its way to the inverter position, usually in a loft, garage or utility space.

The AC side is then connected back to the consumer unit on its own protected circuit, with isolators fitted so the array can be shut down safely. Where a battery is included, it is mounted, connected and configured alongside the inverter, and the charge and discharge settings are set to match how the household uses power.

Commissioning, Testing and Grid Notification

Commissioning is where the system is proved rather than just switched on. We test insulation resistance and polarity on the DC side, check string voltages and open-circuit readings against the design, verify the earthing and bonding arrangements, and confirm the inverter shuts down correctly when the supply is lost.

A grid-connected array also has to be notified to the local distribution network operator, and we handle that paperwork as part of the job. You are left with the electrical certification for the new work, the commissioning figures, and a run through the monitoring so you can see what the array is producing day to day.

Maintenance, Repairs and Systems Fitted by Others

Solar installations are low maintenance rather than no maintenance. Inverters can fault, isolators and connectors degrade in the weather, birds nest under the array, and monitoring quietly stops reporting long before anyone notices the bills creeping back up. We service and repair systems we have fitted and systems installed by other companies.

That includes tracing why generation has dropped off, replacing faulty isolators and inverters, sorting out DC connections that have been made up poorly, and adding battery storage to an existing array. If a fault has made the installation unsafe, our engineers are available 24 hours a day, 7 days a week to isolate it.

Response times

What Governs the Wait, and How a Fault Spreads

The honest answer is that it depends, and it is fairer to tell you what it depends on. Where the property sits in Sussex or the wider South East matters, as does the time of day, whether anyone can be there to let an engineer in, and how dangerous the symptoms you describe sound. You are told plainly where things stand when you call, rather than handed a figure that might not hold.

The phone is answered 24 hours a day, every day of the year, nights, weekends and bank holidays included, and the call itself does real work. Describing what you can see, hear and smell lets us sort a genuine hazard from work that is better booked in. A burning smell, scorching, sparking, a shock felt from a tap, or water that has reached wiring is treated ahead of a single dead socket.

Some faults are not ours to fix, and saying so on the phone saves a wasted visit. If the whole street is dark, the fault sits on the supply side and belongs to the distribution network operator, reported free on 105. Where it is yours, turn the installation off at the main switch if it is safe to reach, leave anything scorched or wet alone, and stop resetting a breaker that will not hold.

None of that is caution for its own sake. A loose or high resistance connection gives off heat whenever the circuit is loaded, and that heat carbonises the terminal and the insulation around it, which raises the resistance further, which makes more heat again. An MCB does not see it, because it protects the cable against overload and short circuit rather than the quality of a termination. What starts at one accessory can end as cable to replace and a wall to make good.

A shock works differently. Insulation that has failed can put metalwork at a voltage it should not be at, and a circuit protective conductor that is no longer continuous is what leaves it there, because fault current has no path back to operate the protective device. Completing that path takes a person, which is why what seems harmless in a dry room is another matter in your bathroom or outdoors. Equipment suffers too, since a lost neutral can leave appliances seeing an abnormal voltage.

Inside a modern consumer unit

Our process

How We Work, from First Visit to Final Certificate

  1. 01

    Your Call, Day or Night

    You can call us at any hour, every day of the year, including bank holidays. In an emergency we ask what has stopped working and whether anything is hot, sparking or smelling of burning, and tell you what to switch off until we arrive. Booked work, from a landlord certificate to solar panels or EV charging, starts on the same call.

  2. 02

    Arrival & Making Safe

    A Part P registered and fully insured engineer attends and makes the installation safe before anything else. Where there is a risk, the affected circuit or your fuse board is isolated, and anything that cannot be put right straight away is left in a safe condition. Planned work follows the same rule: circuits are proved dead before they are worked on.

  3. 03

    Diagnosis by Testing, Not Guesswork

    We work from readings rather than assumptions. Testing can include continuity, insulation resistance, polarity, earth fault loop impedance and RCD testing. The results show where a fault sits, what an installation can safely take, and whether a problem is inside your property or on the incoming supply, which belongs to the distribution network operator and is reported free on 105.

  4. 04

    Your Options & the Cost

    Before any repair or installation begins, we explain the options: what needs doing now, what can safely wait, and whether repair or replacement is the sensible choice. Quotes are free and carry no obligation, and nothing goes ahead until you agree the price, so there are no call-out surprises. If parts or a return visit are needed, we tell you then.

  5. 05

    Carrying Out the Work

    The same qualified engineers who took your call carry out the work, whether that is an overnight repair, a fuse board replacement, new lighting, smoke and heat alarms, a rewire, an inspection, solar panels or an EV charging point. It is done to the current wiring regulations, with cables and accessories fixed securely and neatly, and disruption kept to a minimum.

  6. 06

    Final Testing & Certification

    Before we leave, the work is tested and checked in operation, and the working area is left tidy. You are told plainly what was done and anything worth keeping an eye on. Certification is supplied where the work calls for it, so you hold a written record of what was carried out and the results of the testing.

Common questions

Frequently Asked Questions

Will my roof take solar panels?

Most pitched roofs will, but it depends on the structure and the covering as much as the space. We check the rafters, battens and tiles, the pitch and orientation, and how much shade falls across the roof through the day, then tell you honestly if it is not worth doing.

Do I need a battery with my solar panels?

Not necessarily. A battery stores what you generate but do not use during the day, so it suits households that are out until the evening. If most of your usage already happens while the sun is up, the array may serve you well on its own. We’ll set out both options before you decide.

How long does an installation take, and how disruptive is it?

It depends on the size of the array, the roof and the access, so the expected timescale, and whether scaffolding is needed, are set out before the work is booked in. Inside the property the disruption is limited to the inverter position and the run back to the consumer unit, and Inside the property the work is limited to the inverter position and the run back to the consumer unit, and the supply is only switched off while the final connection is made..

Can you repair or take over a system another company installed?

Yes. We take on arrays that have stopped generating, inverters showing fault codes, tripping caused by the solar circuit, and wiring left in poor condition. We test the installation, explain what has failed and what it will take to put right, and confirm the price before starting.

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