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Heat Pump Energy Saving Tips
If you do not plan to use hot water for a prolonged period, then you might choose to turn the heat
pump off or decrease the temp. setting of the control several degrees to minimize energy
consumption.
We offer the following recommendations to help conserve energy and minimize the cost of
operating your heat pump without sacrificing comfort.
1. A maximum water temp. of 60°C is recommended.
2. It is recommended to turn off the heat pump when ambient air temp. is less than -30
℃
or if on
vacation for longer than a week.
3. To save energy, it is recommended that the heat pump is operated during daytime when the
ambient temp. is higher.
4. Try to install the heat pump at the ventilated places indoor. If it must be installed outdoor, where
possible, shelter the heat pump from prevailing winds, rain and snow. Always use a shelter
when practical, which will reduce the possibility of frosting and icing.
General Installation Information
1. Installation and service must be performed by a qualified installer or service agent, and must
conform to all national, state, and local codes and/or safety regulations.
2. This EVI DC Inverter Air Source Heat Pump is specifically designed for domestic hot water &
house heating.
Section 1
Introduction
Product Overview
EVI DC Inverter Air Source heat pumps transfer heat from the ambient air to water, providing
high-temp. hot water up to 60°C. The unique high-temp. heat pump is widely used for house
warming. With innovative & advanced technology, the heat pump can operate very well at -30
℃
ambient temp. with high output temp.s up to 60
℃
, which ensures the compatibility with normal sized
radiator based systems without supplementation. Compared with traditional oil/LPG boilers, EVI DC
Inverter heat pump produces up to 50% less CO
2
whilst saves 80% running cost.
Our heat pumps are not only highly efficient, but also easy and safe to operate.
General Features
1. Low running costs and high efficiency
·A high coefficient of performance (COP) of up to 5 results in lower running costs compared with
traditional ASHP technology.
·No immersion heater supplement is required.
2. Reduced Capital Costs
·Simple installation
3. High Comfort Levels
·High storage temp. results in increased hot water availability.
Summary of Contents for V1 Series
Page 9: ...8 V1 18 V1 23 V1 28 V1 35...
Page 10: ...9 Exploded view V1 08...
Page 11: ...10 V1 13...
Page 12: ...11 V1 18 23...
Page 13: ...12 V1 28 35...
Page 16: ...15 Figure 2 Figure 3...
Page 18: ...17 Figure 7 Figure 8...
Page 20: ...19 Figure 11 Figure 12 Figure 13...
Page 23: ...22 Electrical Wiring Diagram 1 Single phase system V1 08...
Page 24: ...23 2 Three phase system V1 13 18 23...