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supremeheating.com.au
Index
Heatseeker Nova
Inverter Heat Pump
1. GENERAL INFORNMATION 1
1.1 Introduction to Heatseeker Nova 1
1.2 Consumer and Safety Infornmation 2
2. SPECIFICATIONS 3
2.1 Technical Specications 3
2.2 Dimensions 4
3. INSTALLATION AND CONNECTION 5
3.1 Installation Safety Notes 5
3.2
Heat Pump Location 5
3.3 Distance From Your Swimming Pool 6
3.4
Check Valve Installation 6
3.5
Typical Arrangement 8
3.6
Adjusting The Bypass 8
3.7
Electrical Connection 9
3.8
Initial Operation 10
3.9
Condensation 12
4. ACCESSORIES 12
4.1
12
4.2
Installation Accessories 12
5. ELECTRICAL WIRING 13
supremeheating.com.au
Index
Heatseeker Nova
Inverter Heat Pump
6. OPERATION 16
6.1 Controller Overview 16
6.2.1 Start 16
6.2.2 Mode Controls 16
6.2.3 Water Temperature Settings 16
6.2.4 Checking The Time 17
6.2.5 Setting The Time 17
6.2.6 Setting The Automatic Start Time 18
6.2.8 Setting The Automatic Stop Time 18
6.2.9 System Reset Function 18
6.2.10 System Parameters 18
7. HEAT PUMP MODES 19
7.1
19
8. TROUBLE SHOOTING 20
8.1 Error Code Displayed On LED Controller 20
8.2
Other Malfunctions and Solutions - No LED Error Displayed 23
9. MAINTENANCE 24
10. APPENDIX 25
11. WARRANTY AGREEMENT 26
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General
Heatseker Nova
Inverter Heat Pump
supremeheating.com.au 1
1. General Infornmation
1.1 Introduction to Heatseeker Nova
Supreme Heating, 2015 SPASA Australia Awards of Excellence
winner, is proud to include the Heatseeker Nova inverter heat
pump in it’s range. Chosen by an expert panel of judges from
numerous award entrants, the Heatseeker Nova inverter heat
pump demonstrated the best savings of energy, being awarded
Gold in the category of Sustainability.
The award winning Heatseeker Nova is an inverter heat pump
designed to eciently and consistently heat your pool year-round,
while using up to 30 percent less electricity. The inverter heat pump
heats your swimming pool water using the same principals of
reverse cycle air-conditioner that heats your home.
This manual provides installation and operation instructions for the
Heatseeker Nova Inverter Heat Pump. Read this manual carefully
before proceeding with the installation and operation of your
Heatseeker Nova Inverter Heat Pump. Consult your Heatseeker
Nova distributor with any questions regarding this equipment.
Installation and service must be performed by a qualied installer.
The manufacturer will not be responsible for any damage to the
unit caused by improper installation, operation or maintenance.
General
Heatseker Nova
Inverter Heat Pump
supremeheating.com.au 2
1.2 Consumer and Safety Infornmation
EARTHING
CONNECT THE GROUND WIRE BEFORE
OPERATION.
CIRCUIT BREAKER
USE AN EXCLUSIVE POWER SOURCE WITH A
CIRCUIT BREAKER.
POWER SUPPLY
TURN OFF THE POWER SUPPLY BEFORE OPENING
THE CABINET WHEN PERFORMING MAINTENANCE.
EXCERCISE CAUTION
NEVER USE DAMAGED ELECTRIC WIRES OR
UNSPECIFIED ELECTRIC WIRES.
KEEP CLEAR
DO NOT INSERT AY OBJECTS INTO THE VENT
OUTLET.
DO NOT OBSTRUCT
DO NOT POUR WATER ON THE HEAT PUMP OR
COVER WITH PAINT OR INSECTICIDAL MATERIAL.
WINTER COVER
PLACE THE WINTER COVER ON THE HEAT PUMP
WHILE THE UNIT IS UNUSED DURING THE WINTER.
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SPECIFICATIONS
MODEL 13 kW 17 kW 21 kW
Heat Output (Max/Std/Min) (kW)
Power Consumption (kW)
12.5/9.3/6.3
1.23
17/12.8/8.5
1.69
21/15.8/10.5
2.08
10 kW
10/7.5/5
0.99
Heating Capacity at Air 27°C & Water 27°C
Heat Output (Max/Std/Min) (kW)
Power Consumption (kW)
9/6.8/4.5
1.21
12/9/6
1.61
15/11.3/7.5
2.02
7.2/5.4/3.6
0.99
Heating Capacity at Air 15°C & Water 27°C
COP
5.6 5.6
5.6
5.6
Rated Current (Amps)
Fuse Current (Amps)
5.4
15
7.2
20
9
25
4.6
10
General
Pool Volume- Cold Climate (cm³)
30,000L 40,000L
50,000L
20,000L
Pool Volume- Warm Climate (cm³)
Advised Flow Rate
40,000L
150 L/m
50,000L
165 L/m
60,000L
200 L/m
30,000L
100 L/m
Inlet / Outlet
50mm 50mm
50mm
50mm
Compressor / Brand
Hitachi Hitachi
Panasonic
Hitachi
Noise Level (1m)
52 db 53 db
56 db
49 db
Noise Level (10m)
Refrigerant (R410A)
43 db
1300g
44 db
1400g
47 db
2200g
40 db
1100g
Net Weight / Gross Weight (kg)
Net Dimensions (mm)
78/83
1065*360*775
88/98
1065*360*775
91/101
1085*410*920
70/75
1010*355*560
Packing Dimensions (mm)
1160*387*820 1160*387*820 1145*450*10501070*400*690
*Cold Climate:- Air 15°C + Water 27°C
*Warm Climate:- Air 27°C + Water 27°C **Power Supply:- Single Phase 220-240v/50hz
Discharge Side Discharge
Top Discharge
Weight / Dimensions (L x W x H)
26 kW 35 kW
26/19.5/13
2.56
33/24.8/16.5
3.26
7.6 7.6
20/15/10
2.67
25/18.7/12.5
3.34
5.6 5.6
11.9
35
14.9
40
60,000L 80,000L
80,000L
200 L/m
120,000L
240 L/m
50mm 50mm
Panasonic Panasonic
59 db 60 db
50 db
2800g
52 db
3100g
130/142
1085*410*920
145/157
1050*430*1215
1145*450*10501110*480*1350
17 kW 26 kW
17/12.8/8.5
1.69
26/19.5/13
2.56
13 kW
12.5/9.3/6.3
1.23
7.6
7.6
7.6
12/9/6
1.61
20/15/10
2.67
9/6.8/4.5
1.21
5.6 5.65.6
7.2
20
11.9
3515
40,000L 60,000L30,000L
50,000L
165 L/m
80,000L
200 L/m
40,000L
150 L/m
50mm 50mm50mm
Hitachi
Panasonic
Hitachi
53 db 59 db52 db
44 db
1400g
50 db
2800g
43 db
1300g
88/98
850*750*1010
130/142
910*800*1260
78/83
850*750*1010
900*800*1100 980*850*1320
900*800*1100
5.4
Specications
Heatseker Nova
Inverter Heat Pump
supremeheating.com.au 3
2. Specications
2.1 Technical Specications
Specications
Heatseker Nova
Inverter Heat Pump
supremeheating.com.au 4
2.2 Dimensions
MALFUNCTION ERROR REASON SOLUTION
MODEL
13kW
TOP DISCHARGE DIMENSIONS
17kW
26kW
C Height
1010mm
B Depth
750mm
A
Length
850mm
1010mm
750mm
1260mm
800mm
910mm
CODE
SHEATPUMPDCVI13
SHEATPUMPDCVI17
SHEATPUMPDCVI26
850mm
MALFUNCTION ERROR REASON SOLUTION
MODEL
10kW
SIDE DISCHARGE DIMENSIONS
13kW
17kW
C Height
560mm
B Depth
355mm
A
Length
1010mm
775mm
360mm
775mm
360mm
1065mm
CODE
SHEATPUMP10CSI
SHEATPUMPNI13kW
SHEATPUMPNI17kW
21kW
26kW
35kW
920mm
410mm
1085mm
920mm
410mm
1085mm
1215mm
430mm
1050mm
SHEATPUMP21CSI
SHEATPUMPNI26kW
SHEATPUMP35CSI
1065mm
C
A
B
B
C
A
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Installation + Connection
Heatseker Nova
Inverter Heat Pump
supremeheating.com.au 5
3. Installation and Connection
3.1 Installation Safety Notes
The factory supplies the heat pump only. All other components,
including a bypass if necessary, must be provided by the user or
installer.
1. Any addition of chemicals must take in the piping located down-
stream from the pump.
2. Install a bypass if the water ow from the swimming pool is
more than 20% greater than the allowable ow through the heat
exchanger.
3. Always place the heat pump on a solid foundation and use the
included rubber mounts to avoid vibration and noise.
4. Always hold the heat pump upright. If the unit has been held at
an angle, wait at least 24 hours before starting the heat pump.
3.2 Heat Pump Location
The unit will work properly in any location as long as the following
three items are present :
1. Fresh Air 2. Electricity 3. Swimming
pool lters
The unit may be installed in virtually any outdoor location as long
as the specied minimum
distances to other objects are maintained (as per the following
diagram). Please consult your installer for indoor pool applications.
ATTENTION
THE FOLLOWING INSTRUCTIONS MUST BE FOLLOWED WHEN
INSTALLING THE HEAT PUMP:
ATTENTION
NEVER INSTALL THE UNIT IN A CLOSED ROOM WITH A LIMITED
AIR VOLUME IN WHICH THE AIR EXPELLED FROM THE UNIT
WILL BE RE-USED, OR CLOSE TO SHRUBBERY THAT COULD
BLOCK THE INLET. SUCH LOCATIONS IMPAIR THE
CONTINUOUS SUPPLY OF FRESH AIR, RESULTING IN REDUCED
EFFICIENCY AND POSSIBLE PREVENTION OF SUFFICIENT HEAT
OUTPUT.
SEE DRAWING ON THE FOLLOWING PAGE FOR MINIMUM
CLEARANCE DIMENSIONS.
Installation + Connection
Heatseker Nova
Inverter Heat Pump
3.3 DISTANCE FROM YOUR SWIMMING POOL
The heat pump is usually installed within a perimeter area
extending 7.5 m from the swimming pool. The greater the distance
from the pool, the greater the heat loss in the pipes. As the pipes
are mostly underground, the heat loss is low for distances up to
30m (15 m from and to the pump; 30 m in total) unless the ground
is wet or the groundwater level is high. A rough estimate of the
heat loss per 30 m is 0.6 kWh (2,000 BTU) for every 5 °C dierence
between the water temperature in the pool and the temperature of
the soil surrounding the pipe. This increases the operating time by
3% to 5%.
1 Side Discharge
1 Top Discharge
2.5m
From Front
Discharge
400mm
From Side
400mm
From Back
2.5m
From Top
Discharge
400mm
From Side
400mm
From Front