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sales@plasmasolarafrica.com 📍 Libra House, Mombasa Road, Nairobi
Serving Kenya · Uganda · Tanzania · Rwanda
Plasma Solar Africa
Residential solar in Kenya

Reliable home power, designed around the way you live.

Plasma Solar designs residential solar and battery backup systems for Kenyan homes. We identify what must remain powered, how long it should run and how solar can reduce grid use before recommending equipment.

Hybrid solar inverter and lithium battery backup system installed in a Kenyan home
Hybrid inverter and lithium battery backup installation
Load-based designAppliances and operating hours before equipment
Solar plus backupPanels, hybrid inverter and battery working together
Clear prioritiesEssential loads separated from heavy optional loads
Start with the problem

A good home solar system is not chosen by inverter size alone.

Two homes can own the same appliances and still need very different systems. One family may want lights, internet, television and refrigeration through short outages. Another may need water pumping, office equipment, security systems and most household circuits to operate for many hours.

That is why we begin with a load schedule. We record the appliances you want to power, their approximate demand, how many hours they run and which ones may operate at the same time. This establishes the inverter capacity, usable battery energy and solar array required.

The result should be understandable: what the system will power, what it will not power, the expected backup period under stated conditions and how daily solar production is intended to replenish the battery.

What we design

Home solar and battery backup configured for a clear purpose.

01

Essential-load backup

Selected circuits such as lighting, internet, television, security, refrigeration and sockets remain available when the grid fails.

02

Hybrid home solar

Solar, grid and battery are coordinated through a hybrid inverter so daytime solar can serve the home and recharge storage.

03

Higher-autonomy systems

Larger batteries and solar arrays for homes seeking longer backup or reduced dependence on unreliable grid supply.

04

Existing-system upgrades

Assessment of compatible batteries, additional solar capacity, protection and controls before expanding an installed system.

05

Three-phase home systems

Load distribution, phase balance and equipment requirements considered for larger residences with three-phase supply.

06

Monitoring and support

System monitoring, operating guidance and maintenance support help make energy use and faults easier to understand.

What can be backed up

Protect the loads that matter first.

  • Lighting, Wi-Fi, televisions and home-office equipment
  • Refrigerators, freezers and selected kitchen sockets
  • CCTV, alarms, gates and communication equipment
  • Selected water pumps where starting demand is confirmed
  • Medical or accessibility equipment with defined power needs
  • Additional circuits where the inverter and battery are sized for them
What requires care

High-demand appliances change the design.

  • Instant electric showers and water heaters
  • Electric ovens, cookers and kettles used together
  • Air conditioners and large refrigeration equipment
  • Borehole, swimming-pool and pressure pumps
  • Welding equipment, workshops and EV charging
  • Any motor load with a high starting current
Understanding the components

Each part has a different job.

ComponentPrimary roleWhat determines its size
Solar panelsGenerate energy during daylightDaily consumption, available roof area, orientation, shading and charging requirement.
Hybrid inverterManages solar, battery, grid and household loadsSimultaneous demand, surge loads, phase arrangement and future expansion.
Lithium batteryStores energy for outages or use outside solar hoursEssential-load energy, backup duration, usable depth of discharge and discharge power.
Protection and distributionIsolates faults and routes supported circuits safelySystem voltage, current, earthing, surge risk and the existing electrical installation.
MonitoringShows production, consumption, battery state and alarmsInverter platform, connectivity and the level of visibility required.
Battery sizing

Backup time depends on energy, not only battery labels.

A battery rating is only the starting point. Useful backup depends on its usable energy, the power being drawn, inverter losses, battery limits and the minimum state of charge reserved for battery protection.

For example, a home drawing a steady light load will run much longer than the same home using pumps, cooking appliances or air conditioning. Solar production during the outage can extend runtime, but that contribution changes with weather and time of day.

What our backup estimate states

The assumed loads, total demand, usable battery energy and expected operating window. It is an engineering estimate under defined conditions—not a universal promise that ignores how the household is used.

Choosing a configuration

Three common starting points for Kenyan homes.

A

Backup first

Battery and inverter support essential circuits during outages. Solar can be added where the equipment and design allow sensible expansion.

B

Solar plus essential backup

Panels reduce daytime grid use and recharge a battery sized for selected circuits. This is often the most balanced residential objective.

C

High-autonomy home

A larger solar array and battery bank support more circuits for longer. Load discipline and clear limits remain important even with a larger system.

Our process

From household loads to a commissioned system.

Energy discussion

We establish your outage experience, priorities, appliances, bills and future plans.

Load and site assessment

We check demand, roof conditions, shading, electrical distribution and installation routes.

System proposal

You receive a defined scope explaining supported loads, equipment, assumptions and exclusions.

Installation and handover

We install, test and explain safe operation, monitoring and the limits of the completed system.

Safety and longevity

The equipment is only part of a reliable installation.

Correct cable sizing, isolation, over-current protection, surge protection, earthing, ventilation and equipment clearances matter. The existing distribution board and earthing arrangement should be assessed rather than assumed to be suitable.

Batteries and inverters should be installed in an appropriate location, protected from weather, excessive heat, unauthorised access and physical damage. Operating settings should respect the equipment manufacturer’s limits.

Planning for growth

Expansion should be designed, not improvised.

If you expect to add another battery, more panels, a pump, air conditioning or an electric vehicle, mention it during design. Inverter capacity, battery architecture, solar-input limits and distribution space can determine whether expansion is simple or requires replacement equipment.

Compatibility must be checked before mixing battery models, capacities, ages or communication systems.

Common questions

Residential solar and battery questions, answered clearly.

How large a solar system does my home need?

The answer depends on the appliances you want to run, their simultaneous demand, daily energy use, roof conditions and whether your priority is bill reduction, backup or greater autonomy. A load schedule and site assessment provide a more dependable answer than house size alone.

How long will a home battery last during an outage?

Runtime depends on usable battery energy and the loads operating at that moment. Lighting and internet may run for many hours, while pumps, cooking appliances or air conditioning use the stored energy much faster. Our proposal states the loads and assumptions used for the estimate.

Can I install a battery first and add solar panels later?

Often yes, provided the chosen inverter, battery architecture and installation have been planned for solar expansion. It is better to confirm solar-input limits and compatibility before purchasing the initial backup system.

Will solar power my home when the grid is off?

Only when the system is designed for backup operation. A standard grid-tied inverter shuts down during an outage. A hybrid system can support designated circuits using solar and batteries, subject to the available generation, stored energy and inverter capacity.

Can an existing inverter system be expanded with more batteries?

Possibly, but compatibility, inverter limits, battery communication, cable capacity and the condition of the existing equipment must be checked. Batteries should not be added simply because physical connection points are available.

What information is needed for a home assessment?

Share your location, recent electricity bills, outage pattern, a list of priority appliances, any large loads and photographs of the distribution board and proposed equipment area. A site visit or measured load assessment may then be recommended.

Start with your household loads

Let us design the backup your home actually needs.

Tell us which appliances must remain powered, how long your outages normally last and whether reducing the electricity bill is also a priority. We will recommend the next useful step.

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