Unlike bulky portable or wall units, only a small hole is needed to link the outdoor compressor/condenser to the stream-lined air-handler mounted inside.  The noisiest and largest parts (the compressor and condenser fan) are isolated outside resulting in saved space as well as less indoor sound pollution.  Split A/C’s deliver more Cooling Efficiency per BTU than any other add-on-unit and match the effectiveness of central air conditioning systems without the expense of retrofitting ductwork.

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How does a ductless Split Air Conditioner work?
Every building and every situation presents it's own problems with climate control. Architects and engineers have realized this for years, of course, and they have struggled to adapt air-conditioning technology to modern living and working demands. Ductless systems now make the job much easier. Going ductless can mean changing indoor climates from variable and unpredictable to cool and consistent, without expensive renovation work or compromising the integrity of the structure. And the work can often be done by a professional in a matter of hours.

With a ductless system, simple copper tubing and electrical wiring to indoor units connects a separately installed outdoor unit. Refrigerant is pumped from the outdoor condenser coil and compressor through the tubing to the indoor unit or units. A fan then quietly distributes cool air drawn across the unit's evaporator coil.

The amount of cold air entering the room can he controlled by a thermostat or it can be regulated by an infra-red remote controller, like a TV remote. If multiple zones (air handlers) are being utilized, one room - area of a building can maintain a different temperature from another area in the same building thereby satisfying endless comfort levels.

In a central air-conditioning system, refrigerant is also pumped from the outdoor condenser coil indoors to a single indoor coil from which cooled air is distributed to each room through a system of ducts. In many houses and businesses, the amount of cold air in one room cannot be regulated without changing the temperature of every room in the building. This is one of the operational and mechanical factors that results in ductless systems being much more energy efficienct than central and duct forced designs. The others being avoiding pump loss, energy loss and friction loss experienced by pumping airflow through a series of ductwork as opposed to being cooled right at the source.

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