Heat Pumps Line 2021

Heat Pumps Line 2021
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Heat Pumps Line 2021

Product catalog summary
Introduction to Heat Pumps
Heat pumps are devices that transfer heat using the thermodynamic cycle of refrigerant fluids, making them efficient for both heating and cooling in residential and commercial settings.
Renewable Energy Source
Heat pumps utilize the abundant energy in the air, qualifying them as renewable energy systems under the RES Directive. They are efficient solutions for heating, air-conditioning, and domestic hot water production.
Ecological and Economic Benefits
Operating with renewable thermal power, heat pumps do not emit CO2 on-site and offer 60% higher energy efficiency than traditional systems, providing ecological and economic benefits.
Inverter Technology
Inverter technology in heat pumps adjusts compressor speed to maintain efficiency and reduce electrical consumption, even as temperatures drop.
ATHENA R32 Heat Pump
The ATHENA R32 heat pump can produce technical water up to 55°C and DHW up to 50°C, even at -20°C. It features full DC inverter technology and an electronic microprocessor for optimal management.
Technical Specifications
The ATHENA R32 models include detailed specifications such as cooling and heating capacities, electrical consumption, and energy efficiency ratios. They operate efficiently across a wide temperature range and use Mitsubishi DC Inverter compressors.
Performance and Efficiency
Designed to operate from -20°C to +43°C, ATHENA R32 units offer high seasonal energy efficiency and can reduce energy consumption by up to 70%. They are suitable for various building types.
Installation and Connectivity
The ATHENA R32 SPLIT version simplifies installation by not requiring ethylene glycol. Up to 8 units can be connected for a maximum power of 104 kW, with remote control options available.
Environmental Impact
Using R32 refrigerant, these units comply with European Fgas 2025 regulations, offering high performance with reduced environmental impact.
Accessories and Additional Features
Accessories include antivibration bases and a three-way valve for DHW production. The units are compatible with hydronic fan coils and terminals.
Performance Metrics
Graphs illustrate the COP trend and heating power trend, providing insights into performance under different conditions.
Specifications
Details for rotary compressors and hydronic terminals include power consumption, refrigerant type, and sound levels. The Ginevra series offers ultra-slim design and Wi-Fi readiness.
Installation Procedures
Installation options for the Ginevra series include floor and wall setups, with flexibility due to reduced thickness.
Standards and Recommendations
Ginevra terminals are designed for energy efficiency and low noise, with optional features like touch screen controls and Wi-Fi connectivity.
Key Features and Accessories
Features include full DC inverter, energy-saving capabilities, and ultra-silent operation. Accessories enhance versatility and performance.
Technical Data and Performance
Performance data for cooling and heating capacities, air flow rates, and electrical consumption are provided for different models.
Conclusion
The Ginevra hydronic terminals are customizable, efficient, and versatile solutions for climate control, suitable for various applications.
Overview
The document details heat pump models focusing on hydronic terminals and fan coils with brushless motors, suitable for diverse installations.
Specifications
  • Cooling and Heating Capacities: Lists nominal, maximum, and minimum capacities with specific water flow rates and pressure drops.
  • Air Flow and Sound Levels: Provides air flow rates and sound pressure levels at different fan speeds.
  • Power Supply and Consumption: Models operate on 230V, 50Hz, single-phase power, with detailed electrical consumption.
  • Dimensions and Weight: Includes dimensions and weights for each model, with specifications for hydraulic pipes and drains.
Features
  • Brushless Motors: Enhance efficiency and reduce noise.
  • Remote Control Options: Offer infrared and optional wired control panels.
  • Energy Efficiency: Classified as A+ energy efficiency, supporting fiscal deductions.
  • Design and Installation: Modern, compact design suitable for versatile installations.
Testing Conditions
Specifies conditions for cooling and heating, including water and ambient temperatures.
Additional Features
Includes turbo functions, dehumidification, night mode, and automatic restart capabilities.
See more

Catalog excerpts

Heat Pumps Line 2021-2

POMPE DI CALORE POMPES À CHALEUR HEAT PUMPS POMPE DI CALORE PER LA PRODUZIONE DI ACQUA CALDA SANITARIA E RISCALDAMENTO AD USO RESIDENZIALE E COMMERCIALE. LES POMPES À CHALEUR POUR LA PRODUCTION D’EAU CHAUDE SANITAIRE ET LE CHAUFFAGE À USAGE RÉSIDENTIEL ET COMMERCIAL. HEAT PUMPS FOR THE PRODUCTION OF DOMESTIC HOT WATER AND HEATING FOR RESIDENTIAL AND COMMERCIAL U

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Heat Pumps Line 2021-3

POMPA DI CALORE? SI, PERCHÉ? POMPES À CHALEUR - SPLIT HEAT PUMPS 1 U N A S C E LTA E C O L O G I C A UN CHOIX ÉCOLOGIQU AN ECOLOGICAL CHOICE La P.D.C. è uno strumento che utilizza energia termica rinnovabile che non emette CO2 nel luogo di installazione L’aria e l’irradiazione solare come fonte di energia “Rinnovabile” vuol dire una fonte illimitata di energia gratuita fuori dalla nostra casa: sfruttiamola! Le pompe di calore usano l’energia inesauribile presente nell’aria: ecco perchè la direttiva RES le identifica come sistemi che impegnano energie rinnovabili, ed ecco perchè una pompa di calore...

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Heat Pumps Line 2021-4

COME FUNZIONA UNA POMPA DI CALORE? POMPES À CHALEUR - SPLIT HEAT PUMPS Introduzione - Introduction - Introduction Come vediamo sotto, la potenza erogata da una pompa di calore è quattro volte superiore a quella assorbita: Potenza elettrica assorbita Energia termica assorbita dall’aria Energia termica ottenuta Energia elettrica assorbita La pompa di calore è una macchina che sfrutta il ciclo termodinamico del fluido refrigerante, trasferendo il calore da una sorgente all’altra. In pratica, l’energia termica presente nell’aria viene sfruttata per generare capacità frigorifera o riscaldamento. La...

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Heat Pumps Line 2021-5

ATHENA R32 e ATHENA R32 SPLIT La pompe à chaleur ATHENA R32 produit de l’eau technique jusqu’à 55°C (même avec une limite de température extérieure de -20°C) et ECS jusqu’à 50°C. Gestion complète de la température donc, grâce à l’utilisation des accumulations ECS et ET. Technologie air-eau full DC Inverter et microprocesseur électronique pour une gestion parfaite du détendeur électronique, du compresseur et du ventilateur. The ATHENA R32 heat pump produces technical water up to 55°C (even with an external temperature limit of -20°C) and DHW up to 50°C. Complete management of the temperature therefore,...

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Heat Pumps Line 2021-6

Athena R32 e Athena R32 SPLIT ATHENA R32 POMPA DI CALORE DC INVERTER ARIA-ACQUA MONOBLOCCO POMPE A CHALEUR DC INVERTER MONOBLOCK AIR-EAU MONOBLOCK HEAT PUMP AIR-WATER DC INVERTER Pompa di calore DC Inverter aria-acqua trivalente Pompe a chaleur air-eau trivalente DC Inverter DC Inverter trivalent air-water heat pump *TEST CONDITION: 1. A7/W35: outdoor air temperature 7°C DB/6°C WB, water inlet/outlet temperature 30°C/35°C 2. A35/W7: outdoor air temperature 35°C , water inlet/outlet temperature 12°C/7°C

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Heat Pumps Line 2021-7

ATHENA R32 e ATHENA R32 SPLIT ATHENA R32 SPLIT POMPA DI CALORE DC INVERTER ARIA-ACQUA SPLITTATA POMPE À CHALEUR DC INVERTER SPLIT AIR-EAU SPLIT HEAT PUMP AIR-WATER DC INVERTER La pompa di calore ATHENA R32 SPLIT produce acqua tecnica fino a 55°C (anche con temperatura esterna limite di -20°C) e ACS fino a 50°C. Tecnologia Full DC inverter e microprocessore elettronico per una perfetta gestione della EEV, del compressore e del ventilatore. La versione splitatta non ha necessità di glicole etilenico nell’acqua di ricircolo. La pompe à chaleur ATHENA R32 SPLIT produit de l’eau technique jusqu’à...

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Heat Pumps Line 2021-8

Athena R32 e Athena R32 SPLIT ATHENA R32 SPLIT POMPA DI CALORE DC INVERTER ARIA-ACQUA SPLITTATA POMPE A CHALEUR DC INVERTER SPLIT AIR-EAU SPLIT HEAT PUMP AIR-WATER DC INVERTER Pompa di calore DC Inverter aria-acqua trivalente Pompe a chaleur air-eau trivalente DC Inverter DC Inverter trivalent air-water heat pump *TEST CONDITION: 1. A7/W35: outdoor air temperature 7°C DB/6°C WB, water inlet/outlet temperature 30°C/35°C 2. A35/W7: outdoor air temperature 35°C , water inlet/outlet temperature 12°C/7°C

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Heat Pumps Line 2021-9

ATHENA R32 e ATHENA R32 SPLIT ATHENA R32 e ATHENA R32 SPLIT Schema di funzionamento di massima ATHENA R32 e ATHENA R32 Split Schéma de fonctionnement d’ATHENA R32 et ATHENA R32 Split Operating scheme of ATHENA R32 and ATHENA R32 Split Floor heating Hydraulic Separator Athena indoor unit Water inlet Athena outdoor unit Domestic Hot Water tank Unità collegabili in sequenza Unités connectées en séquence Units connected in sequence Attraverso una connessione BUS sulla porta RS485 della scheda elettronica, è possibile connettere tra loro fino a 8 unità Athena. La potenza massima ottenibile arriva...

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Heat Pumps Line 2021-10

ATHENA R32 e ATHENA R32 SPLIT PERCHÉ SCEGLIERE ATHENA? POURQUOI CHOISIR ATHENA? WHY CHOOSE ATHENA? Adatta a tutti gli edifici_Applicable à tous les bâtiments_Suitable for all buildings Gas R32 _Gaz R32_Gas R32 L’impiego di R32 nei nostri prodotti garantisce elevate performance con un impatto ambientale ridotto, in linea con quanto richiesto dalle normative. Il gas R32 infatti, rispetta le normative europee Fgas 2025. L’utilisation du R32 dans nos produits garantit des performances élevées avec un impact sur l’environnement réduit, conformément aux exigences de la réglementation européenne. Le...

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Heat Pumps Line 2021-11

ATHENA R32 e ATHENA R32 SPLIT- technical datas 215,2 166,1 ATHENA R32 e ATHENA R32 SPLI

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Heat Pumps Line 2021-12

ATHENA R32 e ATHENA R32 SPLIT ATHENA R32 e ATHENA R32 SPLIT - Performance Andamento del COP in rapporto alla temperatura esterna Tendance COP en relation avec la température extérieure COP trend in relation to the external temperature Il coefficente di prestazione COP (Coefficient of Performance) misura l’efficienza di una pompa di calore. Viene calcolato dal rapporto tra energia resa ed energia elettrica consumata. Più la macchina è efficiente (basso consumo) più sarà alto il coefficente COP. Le coefficient de performance COP (Coefficient of Performance) mesure le rendement d’une pompe à chaleur....

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.