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Modul-AIR All-E - Exhaust Air Heat Pump
Modul-AIR All-E - Exhaust Air Heat Pump
Modul-AIR All-E - Exhaust Air Heat Pump

Last verified by manufacturer over a year ago

Joule Hot Water Systems UK Ltd

MODULAIR ALL-E 210 L (HMMC-PP-012)

Last verified by manufacturer over a year ago

Joule Hot Water Systems UK Ltd

MODULAIR ALL-E 150 L (HMMC-PP-009)

Last verified by manufacturer over a year ago

Joule Hot Water Systems UK Ltd

MODULAIR ALL-E 180 L (HMMC-PP-010)

Summary
Exhaust air heat pump system, providing wet central heating, domestic hot water and mechanical ventilation.
Exhaust air heat pump system, providing wet central heating, domestic hot water and mechanical ventilation.
Exhaust air heat pump system, providing wet central heating, domestic hot water and mechanical ventilation.
Application

Installed internally to provide heating, hot water and ventilation.

Installed internally to provide heating, hot water and ventilation.

Installed internally to provide heating, hot water and ventilation.

Description

The Modul-AIR ALL-E Exhaust Air Heat Pump (EAHP) provides domestic hot water (DHW) and wet central heating via radiators or underfloor heating (UFH).

Extracting wasted heat from wet rooms, the Modul-AIR ALL-E also provides cMEV for the dwelling.


Ideal for flats, apartments and smaller dwellings, waste heat from the extract ventilation is passed through a heat pump cycle to provide the heating and hot water for the dwelling. When fitted with the optional Green Comfort the supply air to the habitable space can be pre-heated to increase the occupants comfort level and thus reducing the load on the radiators or underfloor heating in the dwelling.

The Modul-AIR ALL-E Exhaust Air Heat Pump (EAHP) provides domestic hot water (DHW) and wet central heating via radiators or underfloor heating (UFH).

Extracting wasted heat from wet rooms, the Modul-AIR ALL-E also provides cMEV for the dwelling.


Ideal for flats, apartments and smaller dwellings, waste heat from the extract ventilation is passed through a heat pump cycle to provide the heating and hot water for the dwelling. When fitted with the optional Green Comfort the supply air to the habitable space can be pre-heated to increase the occupants comfort level and thus reducing the load on the radiators or underfloor heating in the dwelling.

The Modul-AIR ALL-E Exhaust Air Heat Pump (EAHP) provides domestic hot water (DHW) and wet central heating via radiators or underfloor heating (UFH).

Extracting wasted heat from wet rooms, the Modul-AIR ALL-E also provides cMEV for the dwelling.


Ideal for flats, apartments and smaller dwellings, waste heat from the extract ventilation is passed through a heat pump cycle to provide the heating and hot water for the dwelling. When fitted with the optional Green Comfort the supply air to the habitable space can be pre-heated to increase the occupants comfort level and thus reducing the load on the radiators or underfloor heating in the dwelling.

Digital objects
Color
White
White
White
Finish
Coated
Coated
Coated
Material
Steel, Stainless steel, Copper, Aluminium, Brass
Steel, Stainless steel, Copper, Aluminium, Brass
Steel, Stainless steel, Copper, Aluminium, Brass
Shape
Rectangle, Other
Rectangle, Other
Rectangle, Other
Width
500 mm, 545 mm
500 mm, 545 mm
500 mm, 545 mm
Height
700 mm, 1102 mm, 1293 mm, 1478 mm
700 mm, 1102 mm, 1293 mm, 1478 mm
700 mm, 1102 mm, 1293 mm, 1478 mm
Warranty description
Two year
Two year
Two year
SKU Code
HMMC-PP-009, HMMC-PP-010, HMMC-PP-012
HMMC-PP-009, HMMC-PP-010, HMMC-PP-012
HMMC-PP-009, HMMC-PP-010, HMMC-PP-012

Specification

Classification data
Standards
-
-
-
Safety and environmental
To EN 378: 2016, EN 16147: 2017 and EN 12102-1: 2017.
To EN 378: 2016, EN 16147: 2017 and EN 12102-1: 2017.
To EN 378: 2016, EN 16147: 2017 and EN 12102-1: 2017.
Test requirements
To BS EN 12897:2016, EN 14511-2: 2018, EN 14511-4: 2018, EN 14825: 2018.
To BS EN 12897:2016, EN 14511-2: 2018, EN 14511-4: 2018, EN 14825: 2018.
To BS EN 12897:2016, EN 14511-2: 2018, EN 14511-4: 2018, EN 14825: 2018.
Electrical safety
To EN 61000-3-11: 2019, EN 61000-3-12: 2011+A1 2021, EN 55014-1:2017+A11: 2020, EN 55014-2: 2015, EN 60335-1: 2012+A15: 2021, EN 60335-40: 2003+A13:2013.
To EN 61000-3-11: 2019, EN 61000-3-12: 2011+A1 2021, EN 55014-1:2017+A11: 2020, EN 55014-2: 2015, EN 60335-1: 2012+A15: 2021, EN 60335-40: 2003+A13:2013.
To EN 61000-3-11: 2019, EN 61000-3-12: 2011+A1 2021, EN 55014-1:2017+A11: 2020, EN 55014-2: 2015, EN 60335-1: 2012+A15: 2021, EN 60335-40: 2003+A13:2013.
Heat pump type
Exhaust.
Exhaust.
Exhaust.
Mode
Heating.
Heating.
Heating.
Coefficient of performance (minimum)
4.35/3.02 kW (COP) 4.44/3.56 kW (SCOP).
4.35/3.02 kW (COP) 4.44/3.56 kW (SCOP).
4.35/3.02 kW (COP) 4.44/3.56 kW (SCOP).
Output
-
-
-
Heating
1.45/1.31 kW.
1.45/1.31 kW.
1.45/1.31 kW.
Electrical supply type
Single phase.
Single phase.
Single phase.
Compressor
-
-
-
Type
Fixed.
Fixed.
Fixed.
Accessories
-
-
-
Refrigerant
R134a.
R134a.
R134a.

Additional properties

Dimensions
700 x 500 mm.
700 x 500 mm.
700 x 500 mm.
Efficiency
A++.
A++.
A++.
Current
24 A (MCA); 32 A (MFA).
24 A (MCA); 32 A (MFA).
24 A (MCA); 32 A (MFA).
HeatingWaterFlowRate
4.2 L min.
4.2 L min.
4.2 L min.
Power supply
230 V, 50 Hz.
230 V, 50 Hz.
230 V, 50 Hz.
Global warming potential (GWP)
1430.
1430.
1430.
HeatingCapacity
1.5/3.0/4.5 kW.
1.5/3.0/4.5 kW.
1.5/3.0/4.5 kW.
Overall sound power level
43 db.
43 db.
43 db.
Capacity
210 L.
150 L.
180 L.
Unit weight
45 kg (empty); 248 kg (filled).
38 kg (empty); 184.39 kg (filled).
42 kg (empty); 217.86 kg (filled).
Immersion
2 kW at 230 V.
2 kW at 230 V.
2 kW at 230 V.
Water pressure
10 bar.
10 bar.
10 bar.
Operating pressure (maximum)
7 bar.
7 bar.
7 bar.
Thermal insulation
PU foam.
PU foam.
PU foam.
Body
LDX 2101.
LDX 2101.
LDX 2101.
Casing
Coated mild steel.
Coated mild steel.
Coated mild steel.
Coil
316 L stainless steel.
316 L stainless steel.
316 L stainless steel.
TotalHeatLoss
1.488.
1.272.
1.392.
Cylinder
1478 x 545 mm.
1102 x 545 mm.
1293 x 545 mm.

Sustainability data

Contains Red List materials
No
No
No
Recyclability
Recycling of materials for all, or parts of the product is possible. However, the refrigerant contents of the product should always be recovered prior to processing. Recycling of the product is best completed through fragmentation where the insulation material goes to energy recovery and metals for recycling.
Recycling of materials for all, or parts of the product is possible. However, the refrigerant contents of the product should always be recovered prior to processing. Recycling of the product is best completed through fragmentation where the insulation material goes to energy recovery and metals for recycling.
Recycling of materials for all, or parts of the product is possible. However, the refrigerant contents of the product should always be recovered prior to processing. Recycling of the product is best completed through fragmentation where the insulation material goes to energy recovery and metals for recycling.