New Zealand Β· costs in NZD

Reverse cycle split system air conditioner, wall hung
LG WH30SRU-18 / WH30SRN-18 Heat Pump
LG WH30SRU-18 / WH30SRN-18 is a 8.5 kW reverse cycle split system heat pump registered for sale in New Zealand under the trans-Tasman E3 energy rating scheme (registration AAC7528).
- Energy rating (cooling)
- 3
- Heating: 2
- Annual electricity use
- 3,731 kWh
- 511 cooling + 3,220 heating
- Estimated running cost
- $1,231 / year
- $103 / month Β· $12,312 over 10 years
- Capacity
- 8.5 kW cooling
- 9 kW heating
3% more electricity than the median of 120 comparable 8 kW reverse cycle split system registrations (3,622 kWh a year) in the cold zone. Uses less than 38% of them.
Across all 3,611 air conditioner registrations sold in Australia, it uses less than 50% (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.
LG WH30SRU-18 running cost by climate zone
| Climate zone | kWh / year | Per year | 10 years |
|---|---|---|---|
| Cold zone | 3,731 | $1,231 | $12,312 |
| Mixed zone | 1,980 | $653 | $6,534 |
| Hot zone | 2,543 | $839 | $8,392 |
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 8.5 kW, at least 3% lower annual kWh in the cold zone.
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| Kogan KASSSAC80HA8.2 kW heating8 kW cooling3,283 kWh/yr | 4.5 | $1,083 | |
| Kogan KASSSAC80HE8.2 kW heating8 kW cooling3,283 kWh/yr | 4.5 | $1,083 | |
| Comfee CASG-XG80/CASN-XG808.2 kW heating7.9 kW cooling3,328 kWh/yr | 3.5 | $1,098 | |
| Midea MFXP80WA/MFXP80NA8 kW heating7.6 kW cooling3,333 kWh/yr | 3.5 | $1,100 | |
| Midea MFXS81WA/MFXS81NA8 kW heating7.6 kW cooling3,333 kWh/yr | 3.5 | $1,100 |
Heat pumps similar to the LG WH30SRU-18
Technically comparable registrations: same configuration and type, capacity within 12%.
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| Gree GWH28AGEXH-K6DNA1E/O / GWH28QEXH-K6DNA1E/I9 kW heating8.5 kW cooling3,550 kWh/yr | 4 | $1,172 | |
| Haier 1U85XAGFRA / AS85PFGHRA9.5 kW heating8.5 kW cooling3,660 kWh/yr | 3.5 | $1,208 | |
| Fujitsu AOTH30KNTA/ASTH30KNTA9 kW heating8.5 kW cooling3,477 kWh/yr | 4 | $1,147 | |
| Gree GWH28QEXH-K6DNA1E/O / GWH28QEXH-K6DNA1E/I9 kW heating8.5 kW cooling3,550 kWh/yr | 4 | $1,172 | |
| Actron Air WRC-085CS / WRE-085CS9.4 kW heating8.5 kW cooling5,239 kWh/yr | 3.5 | $1,729 | |
| Fujitsu AOTH30KMTD/ASTH30KMTD9 kW heating8.5 kW cooling3,477 kWh/yr | 4 | $1,147 | |
| Braemar WCHV85D1T/WSHV85D1T9 kW heating8.5 kW cooling3,578 kWh/yr | 4 | $1,181 |
Other LG models of similar capacity
| Model | Stars | Est. cost / yr | Compare |
|---|---|---|---|
| LG LS30S0U DX6ALAP/LS30S0N DX6ALAP8.7 kW heating8.6 kW cooling3,679 kWh/yr | 3 | $1,214 |
Compare WH30SRU-18 / WH30SRN-18 with another model
LG WH30SRU-18 specifications
- Type
- Reverse cycle
- Configuration
- Split system
- Air distribution
- Non-ducted
- Indoor unit
- Wall hung
- Rated cooling capacity (35 Β°C)
- 8.50 kW
- Cooling power input
- 2.26 kW
- Rated heating capacity (7 Β°C)
- 9.00 kW
- Heating power input
- 2.24 kW
- EER, full load (tested)
- 3.79
- COP, full load (tested)
- 4.12
- Rated AEER
- 3.76
- Rated ACOP
- 4.02
- Standby power (PIA)
- 0.3 W
- Compressor
- Variable speed, Inverter
- Refrigerant
- R32
- Power supply
- Single phase
- Indoor sound power
- 69 dB(A)
- Outdoor sound power
- 64.7 dB(A)
- Demand response (AS/NZS 4755)
- Yes
- Country of manufacture
- Thailand
Dimensions are not collected for registrations under the 2019 Determination, so they are shown only where the source has them.
LG WH30SRU-18 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 | 1,170 | 1,026 |
| Coldresidential | residential | 3.0 | 2.0 | 511 | 3,220 |
| Mixedcommercial | commercial | β | β | 1,464 | 529 |
| Mixedresidential | residential | 3.0 | 2.5 | 795 | 1,185 |
| Hotcommercial | commercial | β | β | 3,228 | 106 |
| Hotresidential | residential | 3.0 | 3.0 | 2,375 | 168 |
Part-load test points (20 values)
- h__h2_ext_cap_power_rated
- 3560 W
- c__t1_half_cap_power_rated
- 975 W
- c__t1_have_min_cap_results
- No
- h__h1_half_cap_power_rated
- 920 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
- 8800 W
- h__h1_half_cap_heat_cap_rated
- 4500 W
- h__h2_is_capable_extended_load
- Yes
- c__low_temp_full_cap_power_rated
- 2065.64 W
- c__low_temp_half_cap_power_rated
- 891.15 W
- c__low_temp_have_min_cap_results
- No
- c__t1_half_cap_cooling_cap_rated
- 4250 W
- c__low_temp_have_half_cap_results
- No
- c__low_temp_full_cap_cooling_cap_rated
- 9154.5 W
- c__low_temp_half_cap_cooling_cap_rated
- 4577.25 W
New Zealand E3 registration details
- Registration number
- AAC7528
- GEMS registration id
- 153911
- Status
- approved, available (self-reported)
- Registration expires
- 23 May 2028
- 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 3823.1.1:2012
- MEPS
- 2019
- Product class
- Class 9
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 19 September 2026; last checked 20 September 2026. How the derived figures are calculated.