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TBB RIIO Inverter charger
TBB RIIO Inverter charger
Price range: KSh 63,360.00 through KSh 72,600.00 Select options This product has multiple variants. The options may be chosen on the product page

Shop Inverter Chargers in Kenya

Maintain dependable backup electricity with inverter chargers from Wayad Connect. These devices combine power conversion and battery-charging functions, allowing compatible batteries to supply household appliances, office equipment, security systems and other essential electrical loads. Whether you need backup power for a home, office, shop, telecommunications installation or commercial property, Wayad Connect offers inverter charger options for different battery voltages, power requirements and applications across Kenya.

What Is an Inverter Charger?

An inverter charger combines two main functions within one device:
  • An inverter converts direct-current electricity stored in batteries into alternating-current electricity used by appliances and equipment.
  • A battery charger uses an available AC power source to recharge the connected battery bank.
A combined battery charger and inverter can automatically manage these functions according to the available power supply and selected system settings. When mains electricity is available, the device may supply connected equipment while charging the batteries. When electricity is interrupted, it can use stored battery energy to continue powering selected loads. The exact operation depends on the inverter charger model and installation configuration.

How a Power Inverter and Charger Works

A power inverter and charger is normally connected to a battery bank and an AC power source such as the electricity grid or a compatible generator. During normal operation, the system may:
  • Supply electricity to connected appliances
  • Recharge the battery bank
  • Maintain the battery at a suitable charge level
  • Monitor battery voltage
  • Transfer between mains and battery power
  • Protect the system against selected electrical faults
During an outage, the inverter converts battery power into usable AC electricity. When mains electricity returns, the charger replenishes the battery in preparation for the next interruption.

Inverter Chargers for Backup Power

Inverter chargers are commonly used in properties that experience unreliable electricity or need essential equipment to remain operational during outages. Depending on the inverter and battery capacity, they may support:
  • Lighting
  • Wi-Fi routers
  • Televisions
  • Computers
  • Point-of-sale equipment
  • CCTV cameras
  • Access control systems
  • Intercom systems
  • Communication devices
  • Refrigerators
  • Selected office equipment
  • Small household appliances
The appliances that can be powered will depend on the inverter’s continuous output, surge capacity and connected battery storage.

Inverter Chargers for Homes

A home inverter charger can provide temporary electricity for essential appliances when grid power is unavailable. Common residential applications include:
  • Keeping lights operational
  • Maintaining internet access
  • Powering televisions
  • Charging phones and laptops
  • Supporting home-security equipment
  • Operating selected refrigeration equipment
  • Maintaining essential home-office devices
Before choosing an inverter charger, determine which appliances need backup power and how many hours they should operate. High-consumption appliances such as electric cookers, water heaters, irons and air conditioners may require significantly larger systems.

Inverter Chargers for Businesses

Businesses can use inverter chargers to reduce interruptions to important equipment and daily operations. Suitable applications may include:
  • Offices
  • Retail shops
  • Schools
  • Clinics
  • Hotels and restaurants
  • Security control rooms
  • Warehouses
  • Telecommunications sites
  • Small data installations
  • Commercial buildings
A correctly sized system may help keep computers, internet equipment, lighting, security devices and payment systems operational during short power interruptions. Commercial systems should be designed according to the property’s total load and required backup duration.

Pure Sine Wave Inverter Chargers

Pure sine wave inverter chargers produce an AC output designed to operate a broad range of electrical equipment. They may be suitable for sensitive devices such as:
  • Computers
  • Televisions
  • Communication equipment
  • Refrigerators
  • Audio equipment
  • Medical devices
  • Motor-driven appliances
Before purchasing, check the inverter’s output waveform and confirm that it is suitable for the intended equipment.

Inverter Charger Capacity

Inverter charger capacity may be stated in watts, kilowatts or volt-amperes. The correct capacity depends on the combined wattage of all appliances that may operate at the same time. When sizing an inverter charger, consider:
  • Continuous appliance load
  • Starting power required by motors
  • Number of appliances
  • Future additional loads
  • Battery discharge capability
  • Required backup circuits
  • Charging requirements
Refrigerators, pumps, freezers and other motor-driven appliances may briefly require more power when starting. The inverter should therefore have enough continuous and surge capacity for the connected equipment.

Battery Voltage Compatibility

Inverter chargers are designed to work with specific battery-bank voltages. Common system voltages may include:
  • 12V
  • 24V
  • 48V
  • Higher-voltage systems for selected applications
The battery-bank voltage must match the inverter charger’s supported voltage. Do not connect a battery system with a different voltage unless the manufacturer specifically permits it.

Compatible Battery Types

Depending on the model, inverter chargers may support selected battery technologies such as:
  • Lead-acid batteries
  • AGM batteries
  • Gel batteries
  • Lead-carbon batteries
  • Lithium batteries
  • Deep-cycle batteries
  • Telecom batteries
Before connecting a battery, confirm:
  • Battery voltage
  • Battery capacity
  • Recommended charging voltage
  • Maximum charging current
  • Battery communication requirements
  • Inverter charger compatibility
  • Manufacturer-recommended settings
Lithium batteries may require communication with a compatible inverter charger through a supported battery management protocol. Matching battery voltage alone may not confirm complete compatibility.

Understanding Charging Current

Charging current affects how quickly an inverter charger replenishes the battery bank. A higher charging current may reduce charging time, but it must remain within the limits recommended for the battery. When evaluating charging performance, consider:
  • Battery technology
  • Total battery capacity
  • Maximum permitted charging current
  • Available grid or generator supply
  • Charger efficiency
  • Charging-stage settings
  • Battery temperature
Charging the battery too quickly or using unsuitable voltage settings can reduce battery life or cause equipment problems.

Multi-Stage Battery Charging

Some inverter chargers use multi-stage charging to manage the battery during different parts of the charging cycle. Depending on the model, charging stages may include:
  • Bulk charging
  • Absorption charging
  • Float charging
  • Equalisation for supported battery types
The available charging stages and settings vary between products. Battery settings should be configured according to the battery manufacturer’s recommendations.

Automatic Power Transfer

Many inverter chargers include a transfer function that changes the power source when grid electricity fails or returns. A properly configured system may:
  • Use mains power when it is available
  • Charge connected batteries
  • Switch to battery power during an outage
  • Return to mains power when electricity is restored
  • Resume charging automatically
Transfer speed varies between models. Sensitive equipment may require a device designed to provide sufficiently fast transfer for the intended application.

Inverter Chargers with Generator Support

Some inverter chargers can work with compatible generators as an alternative charging source. This may be useful in:
  • Remote properties
  • Farms
  • Telecommunications sites
  • Commercial buildings
  • Areas with extended outages
  • Off-grid installations
Before connecting a generator, confirm:
  • Generator output quality
  • Voltage and frequency compatibility
  • Required generator capacity
  • Charger input-current settings
  • Manufacturer recommendations
  • Earthing and protection requirements
Professional configuration is recommended to prevent overloading the generator or damaging connected equipment.

Inverter Chargers and Solar Systems

An inverter charger may form part of a solar or backup energy system, but not every inverter charger includes a solar charge controller. A complete solar installation may require:
  • Solar panels
  • A compatible solar charge controller
  • Inverter charger
  • Battery bank
  • Solar cables
  • Battery cables
  • Circuit breakers
  • Fuses
  • Isolators
  • Surge protection
  • Monitoring equipment
Some models may include solar charging functions, while others require a separate charge controller. Check the product specifications before connecting solar panels.

Choosing the Right Inverter Charger

Consider the following before purchasing an inverter charger:
  • Total connected appliance load
  • Required backup duration
  • Starting power of motor-driven equipment
  • Battery-bank voltage
  • Battery technology
  • Required charging current
  • Pure sine wave or other output type
  • Transfer time
  • Generator compatibility
  • Solar charging requirements
  • Monitoring features
  • Future expansion plans
  • Residential or commercial application
A professional load assessment can help determine the correct inverter and battery capacity.

Calculating the Required Battery Capacity

Battery capacity determines how long the inverter charger can supply connected appliances during an outage. To estimate the required capacity, identify:
  • Wattage of each appliance
  • Number of appliances used at once
  • Required backup hours
  • Battery voltage
  • Recommended depth of discharge
  • Inverter efficiency
  • Future additional loads
A system powering only lights, internet equipment and a television will normally require less storage than one supporting refrigeration, pumps or commercial equipment. The battery bank should be large enough for the required backup period and compatible with the inverter charger’s charging capacity.

Connecting Multiple Batteries

Some inverter charger systems use multiple batteries connected in series or parallel. When building a battery bank:
  • Use matching battery technologies
  • Use batteries with the same voltage and capacity
  • Avoid mixing old and new batteries
  • Follow the approved connection arrangement
  • Use correctly sized cables
  • Install suitable fuses or circuit breakers
  • Confirm inverter charger limits
  • Maintain secure and balanced connections
Lithium battery expansion should follow the battery and inverter manufacturer’s instructions.

Inverter Charger Monitoring

Some inverter chargers provide operating information through:
  • Built-in LCD screens
  • Indicator lights
  • Mobile applications
  • Wi-Fi monitoring
  • Remote-control panels
  • Online monitoring platforms
Available information may include:
  • Battery charge level
  • Input voltage
  • Output voltage
  • Connected load
  • Charging status
  • Power-source status
  • System warnings
  • Fault notifications
Monitoring features vary between brands and models.

Installation Requirements

A complete inverter charger installation may require:
  • Inverter charger
  • Compatible batteries
  • Battery cables
  • AC input and output cables
  • Circuit breakers
  • Battery fuses
  • Isolator switches
  • Distribution equipment
  • Earthing accessories
  • Surge protection
  • Battery racks or cabinets
  • Monitoring equipment
All cables and protective devices should be correctly rated for the inverter, battery bank and connected load.

Professional Inverter Charger Installation

Inverter chargers should be installed by a qualified electrician, solar technician or backup-power specialist. Professional installation can help ensure:
  • Correct inverter sizing
  • Suitable battery-bank configuration
  • Correct cable sizes
  • Appropriate circuit protection
  • Safe AC input and output connections
  • Correct battery charging settings
  • Effective ventilation
  • Secure equipment mounting
  • Proper earthing
  • Reliable power transfer
  • Complete system testing
The unit should be installed in a dry and ventilated location protected from excessive heat, dust, moisture and direct sunlight unless designed for exposed installation.

Maintaining an Inverter Charger

To help maintain dependable operation:
  • Keep ventilation openings clear
  • Avoid overloading the inverter
  • Monitor warning indicators
  • Check battery condition
  • Inspect cables and terminals
  • Keep the installation area dry
  • Use compatible charging settings
  • Check circuit-protection devices
  • Follow manufacturer maintenance instructions
  • Arrange professional inspection when faults occur
Do not open or repair an inverter charger unless you are qualified and authorised to do so.

Buy Inverter Chargers from Wayad Connect

Shop inverter chargers in Kenya from Wayad Connect. Compare available power ratings, battery voltages, charging capacities, transfer features and battery compatibility to find a suitable battery charger and inverter for your home, office or commercial property. Professional system sizing and installation are recommended to ensure that the inverter charger, battery bank, electrical protection and connected appliances work together safely and reliably.

Frequently Asked Questions

What is an inverter charger?

An inverter charger converts stored DC battery power into AC electricity and recharges the batteries when a suitable mains or generator supply is available.

What is the difference between an inverter and an inverter charger?

A standard inverter converts battery power into AC electricity. An inverter charger also includes a built-in charging function for replenishing compatible batteries.

Can an inverter charger work with solar panels?

Some models include solar charging functions, while others require a separate solar charge controller. Check the individual product specifications.

Which batteries can be used with an inverter charger?

Supported batteries may include lithium, lead-acid, AGM, gel and lead-carbon batteries. Compatibility depends on battery voltage, charging settings and communication requirements.

How do I choose the correct inverter charger size?

Calculate the total wattage of appliances that may operate simultaneously and include the additional starting power required by refrigerators, pumps and other motor-driven equipment.

How long will an inverter charger provide backup power?

Backup time depends on battery capacity, connected load, inverter efficiency, battery condition and the recommended depth of discharge.

Can an inverter charger work with a generator?

Some models support generator input. The generator voltage, frequency and capacity must be compatible with the inverter charger.