TECHNICAL DATA SHEET
A heat pump with silent and eco-friendly efficiency
This series of air-to-water heat pumps with eco-friendly R32 gas with low environmental impact, satisfies the winter and summer air conditioning needs of small and medium-sized residential and commercial systems.
All units are suitable for outdoor installation and, being able to produce water up to 65°C, can be used in radiant systems, fan coils, radiators and for the indirect production of domestic hot water (DHW) via an external boiler.
Ferroli Reversible Monobloc Heat Pump Model OMNIA M 3.2 8 kW With Compressor Including Control and Integrated Wi-Fi Code 2CP000CF
Energy class in heating at 35°C: A+++
Energy class in heating at 55°C: A+++
SCOP heating with water set to 35°C: 5.21
SCOP heating with water set to 45°C: 3.36
SEER cooling with water set at 7°C: 5.83
SEER cooling with water set to 18°C: 8.95
Useful power in heating with water set at 35°C: 8.40 kW
Useful power in heating with water set at 45° C: 8.30 kW
Useful power in heating with water set at 55°C: 8.00 kW
Power consumption with water set at 35°C: 1.63 kW
Power absorbed with water set at 45°C: 2.16 kW
Power consumption with water set at 55°C: 2.36 kW
Compressor type: Twin Rotary DC
Number of compressors: 1
Number of refrigeration circuits: 1
Fan Type: DC Axial
Number of fans: 1
Expansion vessel volume: 2 litres
Water safety valve calibration: 3 bar
Minimum system water content: 15 litres
Sound power level in heating mode: 53 ~ 60 dB(A)
Sound power level in cooling : 52 ~ 60 dB(A)
Dimensions (WxHxD): 1385x864x526 mm
Weight: 105 kg
OMNIA M 
The OMNIA M 3.2 monobloc range has energy class A++ for the production of water at 55ºC and A+++ for water produced at 35°C
Compact external unit
Thanks to the adoption of a compact and small-sized unit, especially for the more powerful models, OMNIA M 3.2 can be easily placed outside the house, ensuring more available space inside.
Quick and easy installation
Being a monoblock unit, installation costs and time are significantly reduced. Refrigerant interconnection between the units is not necessary, as the entire refrigerant circuit is contained within the unit. There's no need to make a fuel connection or create a flue gas exhaust duct. Furthermore, the unit includes all the necessary plumbing components for quick and easy connection to the heating and domestic hot water systems.
Ideal combination with low temperature systems
The OMNIA M 3.2 range can be easily installed in combination with low temperature systems, connecting fan coils, radiators, underfloor heating, to obtain maximum energy efficiency and maximum home comfort.
Easy integration with an existing boiler
OMNIA M 3.2 can be combined and integrated with any boiler in the system. The device's control, based on the outside temperature and required operating conditions, optimizes heat production for heating and DHW, using the most efficient device.
Production of hot water at 65°C with low external temperature
The OMNIA M 3.2 range can provide hot water at 60°C with external temperatures down to -15°C and at 40°C with external temperatures down to -25°C, without any type of support/accessory. In cold but positive temperatures, OMNIA M 3.2 can produce hot water up to 65°C.
Protects hydraulic components from freezing without the need to add glycol
If low outside temperatures are detected, the circulation pump and the electric antifreeze heater of the plate heat exchanger are activated, thus preventing the hydraulic components from freezing. There is therefore no need to add glycol to the system.

Control system Operating principle
The general control system monitors all inverter system functions and ensures the compressor is operating correctly. It also incorporates control algorithms using predefined climate curves that can be selected by the customer, management of a domestic hot water circuit, setting time slots to reduce noise during the night, alarm reporting, pump block prevention, and integration with external heat generators.
The user interface consists of a wired remote controller that allows the management of:

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