New Zealand Β· costs in NZD

Reverse cycle split system air conditioner
Fujitsu AOTG45LBTB/ARTG45LHTDP Heat Pump
Fujitsu AOTG45LBTB/ARTG45LHTDP is a 11.5 kW reverse cycle ducted split system heat pump registered for sale in New Zealand under the trans-Tasman E3 energy rating scheme (registration AAC8701).
- Energy rating (cooling)
- 3
- Heating: 1.5
- Annual electricity use
- 6,162 kWh
- 699 cooling + 5,463 heating
- Estimated running cost
- $2,033 / year
- $169 / month Β· $20,335 over 10 years
- Capacity
- 11.5 kW cooling
- 14 kW heating
1% more electricity than the median of 146 comparable 12.5 kW reverse cycle ducted split system registrations (6,125 kWh a year) in the cold zone. Uses less than 47% of them.
Across all 3,611 air conditioner registrations sold in Australia, it uses less than 30% (this compares very different sizes, so the cohort figure above is the useful one).
Annual kWh is the government label figure for a residential user in the cold zone (Canberra climate: Canberra, Hobart, Ballarat, alpine areas). All of New Zealand is the cold zone on the Zoned Energy Rating Label. Cost = kWh Γ 33c/kWh in NZD; change the price above to your tariff.
Fujitsu AOTG45LBTB running cost by climate zone
| Climate zone | kWh / year | Per year | 10 years |
|---|---|---|---|
| Cold zone | 6,162 | $2,033 | $20,335 |
| Mixed zone | 3,063 | $1,011 | $10,108 |
| Hot zone | 3,520 | $1,162 | $11,616 |
At 33c/kWh. Formula: cost = annual kWh Γ price. The kWh figure is the labelβs residential estimate for that zone; commercial-profile figures are in the specifications.
Heat pumps that use less electricity
Same configuration and type, cooling capacity within 12% of 11.5 kW, at least 3% lower annual kWh in the cold zone.
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| Brivis AONSR13B1/AINHU11B111.3 kW heating10.3 kW cooling3,713 kWh/yr | 5 | $1,225 | |
| Midea DUCMI105IHB/UCMI105OB11 kW heating10.5 kW cooling4,207 kWh/yr | 4.5 | $1,388 | |
| Midea DUCMI105IB/UCMI105OB11 kW heating10.5 kW cooling4,207 kWh/yr | 4.5 | $1,388 | |
| Mdv C-UV-105N8-QC3W / CDV-105HN8-QC3W11 kW heating10.5 kW cooling4,244 kWh/yr | 4.5 | $1,401 | |
| Mdv C-UV-105N8-QC3W / CDV-105A6N8-QC3W11 kW heating10.5 kW cooling4,253 kWh/yr | 4.5 | $1,403 |
Heat pumps similar to the Fujitsu AOTG45LBTB
Technically comparable registrations: same configuration and type, capacity within 12%.
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| Braemar KCDB145D1B/KGDB145A1S12.1 kW heating11.6 kW cooling5,325 kWh/yr | 2.5 | $1,757 | |
| APAC S012OVR3SA/S012ILR1SA-11.7 kW heating11.4 kW cooling6,131 kWh/yr | 1 | $2,023 | |
| APAC S012OVR3SA/S012ILR1SA-FR11.7 kW heating11.4 kW cooling6,131 kWh/yr | 1 | $2,023 | |
| Mitsubishi Electric PUZ-M125VKA2-A/PEA-M125HAA214 kW heating12 kW cooling6,455 kWh/yr | 2 | $2,130 | |
| Samsung Electronics AC120TXAPKG/SA / AC120TNHDKG/SA14 kW heating12 kW cooling5,952 kWh/yr | 3 | $1,964 | |
| Brivis AONSR13B1/AINHU13B113.8 kW heating12 kW cooling4,365 kWh/yr | 4.5 | $1,440 | |
| Samsung Electronics AC120TXAPNG/SA / AC120TNHDKG/SA14 kW heating12 kW cooling5,952 kWh/yr | 3 | $1,964 |
Other Fujitsu models of similar capacity
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| Fujitsu AOTG45LBTC/ARTG45LHTA14 kW heating11.5 kW cooling6,406 kWh/yr | 2.5 | $2,114 |
Compare AOTG45LBTB/ARTG45LHTDP with another model
Fujitsu AOTG45LBTB specifications
- Type
- Reverse cycle
- Configuration
- Split system
- Air distribution
- Ducted
- Indoor unit
- β
- Rated cooling capacity (35 Β°C)
- 11.50 kW
- Cooling power input
- 3.33 kW
- Rated heating capacity (7 Β°C)
- 14.00 kW
- Heating power input
- 3.68 kW
- EER, full load (tested)
- 3.51
- COP, full load (tested)
- 3.98
- Rated AEER
- 3.43
- Rated ACOP
- 3.79
- Standby power (PIA)
- 5.5 W
- Compressor
- Variable speed, Inverter
- Refrigerant
- R410A
- Power supply
- Single phase
- Indoor sound power
- β
- Outdoor sound power
- β
- Demand response (AS/NZS 4755)
- No
- Dimensions (WΓHΓD)
- 1400 Γ 300 Γ 700 mm
- Country of manufacture
- Thailand
Dimensions are not collected for registrations under the 2019 Determination, so they are shown only where the source has them.
Fujitsu AOTG45LBTB zoned energy rating figures
As published for each climate zone. Residential figures drive the star ratings; commercial figures assume a commercial usage pattern.
| Zone | Profile | Cooling stars | Heating stars | Cooling kWh | Heating kWh |
|---|---|---|---|---|---|
| Coldcommercial | commercial | β | β | 1,550 | 1,709 |
| Coldresidential | residential | 3.0 | 1.5 | 699 | 5,463 |
| Mixedcommercial | commercial | β | β | 1,953 | 872 |
| Mixedresidential | residential | 2.5 | 2.0 | 1,098 | 1,965 |
| Hotcommercial | commercial | β | β | 4,354 | 179 |
| Hotresidential | residential | 3.0 | 2.5 | 3,238 | 282 |
Part-load test points (16 values)
- h__h2_ext_cap_power_rated
- 4000 W
- c__t1_half_cap_power_rated
- 1250 W
- c__t1_have_min_cap_results
- No
- h__h1_half_cap_power_rated
- 1470 W
- h__h1_have_min_cap_results
- No
- h__h3_have_ext_cap_results
- No
- h__h2_have_full_cap_results
- No
- h__h2_have_half_cap_results
- No
- h__h3_have_full_cap_results
- No
- h__h3_have_half_cap_results
- No
- h__h2_ext_cap_heat_cap_rated
- 11000 W
- h__h1_half_cap_heat_cap_rated
- 7000 W
- h__h2_is_capable_extended_load
- Yes
- c__low_temp_have_min_cap_results
- No
- c__t1_half_cap_cooling_cap_rated
- 5750 W
- c__low_temp_have_half_cap_results
- No
New Zealand E3 registration details
- Registration number
- AAC8701
- GEMS registration id
- 167870
- Status
- approved, available (self-reported)
- Registration expires
- 31 March 2030
- Registered for sale in
- Australia, New Zealand
- Family
- β
- Regulatory standard
- [SEER Non Multi-Split <=65kW] GEMS (Air Conditioners up to 65kW) Determination 2019
- Test standard
- AS/NZS 3823.1.2:2012
- MEPS
- 2019
- Product class
- Class 11
Source: E3 programme registration data (EECA, New Zealand) (trans-Tasman E3 registration data published by DCCEEW on data.gov.au, CC BY 3.0 AU). Dataset published 25 September 2026; last checked 26 September 2026. Manufacturer: fujitsugeneral.com.au. How the derived figures are calculated.