Daikin Air Conditioning Outdoor Unit 4MXM68A9
The Daikin Multi-Split 4MXM68A9 outdoor unit is designed to support the connection of up to four indoor units, allowing efficient cooling and heating across multiple rooms with a single outdoor unit. Each indoor unit can be individually adjusted and operated remotely, offering versatile climate control. Compatible indoor units include wall-mounted, cassette, and duct models from Daikin. Refer to the brochure for detailed combination options.
Energy-Efficient Multi-Split System
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Swing Compressor: Ensures low-noise and energy-efficient performance.
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Installation Flexibility: Can be mounted on a roof, terrace, or outside wall.
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Refrigerant: Uses R32 refrigerant, which has a 68% smaller environmental impact compared to R-410A due to lower energy consumption at low outdoor temperatures, resulting in high energy efficiency.
Efficiency Ratings
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Cooling Efficiency: Up to A++
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Heating Efficiency: Up to A+
Why Choose the Daikin Multi-Split Outdoor Unit?
- ✅ Low-Noise Operation: Equipped with a swing compressor.
- ✅ Versatile Compatibility: Can be combined with various indoor units.
- ✅ Easy Installation: Suitable for roof, balcony, or outside wall mounting.
- ✅ High Seasonal Efficiency: Achieves up to A++ for cooling and A+ for heating.
- ✅ Eco-Friendly Refrigerant: Utilizes R32 refrigerant for lower energy consumption.
Technical Data
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Brand: Daikin
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Model: 4MXM68A9 Multi-Split
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Cooling Pipe Connection Size:
- 4x 1/4″
- 2x 3/8″
- 1x 1/2″
- 1x 5/8″
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Pre-Filled: Up to 30 meters
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Cooling Capacity (nominal): 6.8 kW
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Heating Capacity (nominal): 7.8 kW
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SCOP (Seasonal Coefficient of Performance) of Outdoor Unit: 4.30
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Dimensions of Outdoor Unit (HxWxD): 734 x 958 x 340 mm
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Outdoor Unit Sound Pressure Level:
- Cooling: 48 dB(A)
- Heating: 50 dB(A)
Environmental Aspects
- Contains F-Gases (Fluorinated Greenhouse Gas)
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GWP (Global Warming Potential) Value: 675
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Refrigerant Type: R32
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Refrigerant Content: 2.0 kg
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F-Gas CO2 Equivalent per Tonne: 1.35
Inverter
Inverter compressors continuously adjust compressor speed to actual demand. Fewer power-consuming starts and stops result in decreased energy consumption (up to 30%) and more stable temperatures.