Check if solar is right for you - before you buy

Engynious Solar Offer Benchmark Tool
Homeowner comparing solar offers for their home
NZ homeowner benchmark tool

Solar Offer Reality Check

This single-offer tool helps a homeowner benchmark a solar quote against broad New Zealand public guidance. It is designed to help users ask good questions if an offer appears to rely on unusually high generation, unusually high self-consumption, or unclear export assumptions.

What this tool checks

  • Adjusted $/kWp using a battery-cost allowance when storage is included
  • Annual generation per kWp against a broad NZ roof-performance range
  • Self-consumption realism against a broad household-use benchmark
  • Export limit, panel efficiency, and inverter sizing for extra sense-checking
Benchmark basis: This tool uses broad sanity-check bands informed by EECA home solar guidance and example systems, NIWA SolarView solar-resource guidance, and Electricity Authority export-limit guidance. These are homeowner screening ranges, not exact guarantees for a specific roof.

1. Enter the offer details

Use the numbers from the quote or design report

2. Reality-check summary

One offer benchmarked against NZ public guidance

Array size

Adjusted $/kWp

Battery-adjusted when storage is entered

Generation intensity

Quoted annual generation per kWp

Self / export

Export is the remainder of generation

Estimated annual value

Using your import and export values
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Enter the offer details

The tool will highlight where the offer looks aligned with broad NZ norms and where you may want supporting evidence.

Rotary Dial 1 — Adjusted price per kWp

The green zone is a broad NZ solar-only benchmark zone. If a battery is included, a standard battery allowance is removed before calculating $/kWp.

Offer result:
benchmark zone
$1,500Green zone: $2,000–$2,900$4,000
For solar-only systems, EECA example systems imply a broad residential range around $2,000–$2,900 per kWp. If a battery is included, this tool first subtracts a standard battery allowance.

Rotary Dial 2 — Annual generation per kWp

The green zone is the broad rooftop-output band for the selected NZ roof/location type.

Offer result:
selected roof band
700Green zone: 950–1,3501,600
Choose the roof/location band above to match a conservative, typical or sunny NZ roof. The quote should usually sit somewhere within, or close to, that band.

Rotary Dial 3 — Self-consumption realism

The green zone is the broad self-consumption band for your daytime-use profile and battery setting.

Offer result:
selected use profile
0%Green zone: 35–60%100%
If a quote assumes much higher self-consumption than normal, it can make payback look better. Ask how the figure was calculated and whether any manual override was used.

Questions or flags raised

  • Enter the quote values to begin.
Panel efficiency fact-check

Typical modern residential panels often sit around the low-20% range. Always compare with the manufacturer datasheet.

Export-limit sensitivity

If the offer depends heavily on exports, the approved network export limit matters. If it is not stated, ask for it in writing.

Inverter sizing check

A moderate DC/AC oversize can be normal, but if the array is much larger than the inverter the quote should explain clipping assumptions.

!

This tool is designed to be neutral

It does not say another installer is wrong. It simply asks whether the quote sits within a broad NZ reality range and whether the assumptions appear to have been clearly disclosed.

3. Questions to ask if the offer looks too good

Use these to keep the discussion factual and fair
  1. Can you show the design report with annual generation, kWh/year per kWp, self-consumption, export percentage, tariffs and export limit?
  2. Has the self-consumption percentage been manually overridden? If yes, what is the reason?
  3. Can you provide the exact solar panel datasheet showing wattage and efficiency?
  4. What export limit has the network approved for this property, and is export curtailment reflected in the savings model?
  5. Does the quote assume the household will shift more electricity use into the daytime?
  6. If a battery is included, what operating assumptions were used to increase self-consumption?
  7. If the array is oversized relative to the inverter, how much clipping has been allowed for in the annual generation figure?
  8. Can you provide the same quote using standard assumptions, without manual overrides, so I can sense-check it against NZ public guidance?
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Suggested homeowner wording

“I’m not saying your quote is wrong — I’m just checking whether the generation, self-consumption and export assumptions sit within normal NZ ranges and whether they’ve been fully explained.”

Public guidance references for the web page copy: EECA home solar pages and example systems, NIWA SolarView guidance for rooftop solar resource, and Electricity Authority guidance on default 10 kW export limits for straightforward small-scale residential distributed generation.

Solar Optimiser | NZ Solar Savings Estimator

☀️ Solar Optimiser

Powered by NIWA data – instant updates

$300

Store excess solar for evening use

✨ Spot-On not set
Fewer panels 14 panels More panels
4 (2.0 kWp)~15 (7.5 kWp)30 (15.0 kWp)

Maximum panels limited to 30 (typical residential inverter size)

System Size

7.0 kWp

Annual Savings

$0

New Monthly Bill

$---

Payback Period

-- yrs

* 500W panels, 82% performance, 29c/kWh import, 15c/kWh export, no shading assumed.

Professional engineer will contact you within 24h — obligation-free

Heat Pump Savings | Hot Water + Home Heating | NZ

💧 Heat Pump Savings

Compare gas vs solar heat pump for hot water OR home heating

💧 HOT WATER SAVINGS CALCULATOR Gas infinity vs solar + heat pump

Based on NZ research: A family of 4 uses ~3,250 kWh of thermal energy for hot water per year.

📊 Your Household

2
1
Solo
2-3
Couple
4-5
Family
6+
Large
150
☀️ SOLAR PV ADVANTAGE Heat pump powered by solar = huge savings

With a solar PV system + heat pump, your hot water running cost is up to 85% lower than gas. The calculator below assumes solar covers 92% of your heat pump's needs.

Gas Infinity

$0

Annual cost (including line fee)

Solar + Heat Pump

$0

Annual cost (92% solar)

$0
ANNUAL SAVINGS BY SWITCHING TO SOLAR + HEAT PUMP

Plus you eliminate the $401/year gas line fee entirely

🔧 Heat Pump Hot Water Upgrade Cost (Installed)

$3,500 - $6,000 (Unit)
$2,000 - $3,000 (Plumbing & install)
$800 - $1,500 (Electrical work)
$200 - $400 (Gas decommissioning)

Total installed: $8,000 – $12,000 for a family of 4 (270L tank)

🔥 HOME HEATING SAVINGS CALCULATOR Gas ducted vs solar + heat pump

Based on NZ research: A typical 3-bedroom home uses 2,500-3,500 kWh of gas for winter heating.

📊 Your Energy Setup

2500 kWh
500
Small home
2,500
3-bedroom
5,000
Large home
10,000+
Very large
💡 Gas rates: 12c/kWh + $1.10/day line fee | Electricity: 29c/kWh
☀️ SOLAR PV ADVANTAGE Heat pump powered by solar = huge savings

With a solar PV system, you can offset up to 50% of your heat pump's electricity usage. Adding a battery can increase this to 70-80%.

🔋 BATTERY PERFORMANCE (10kWh) Based on NZ family of 4 research
Solar Only
~50% offset
Solar + Battery (Mild Days)
80-90% offset
Solar + Battery (Deep Winter)
40-50% offset
📋 RECOMMENDED SYSTEM

Single-Split Heat Pump

For your gas usage, a single-split unit (5-7kW) is sufficient for your main living area.

💡 Estimated installed cost: $2,500 – $4,000

Gas Heating

$0

Annual cost (including line fee)

Solar + Heat Pump

$0

Annual cost (with solar offset)

$0
ANNUAL SAVINGS BY SWITCHING TO SOLAR + HEAT PUMP

✨ Plus you eliminate the $401/year gas line fee

☀️ Extra solar panels needed: 0 panels

Professional installer will contact you within 24h — obligation-free quote

Important Information Regarding Our Saving Calculators

Please Note: Our Saving Calculators utilise advanced artificial intelligence (AI) tools to generate projections and insights. While these tools are designed to provide helpful estimates, good practice dictates that you review all outputs with caution. AI-generated results are intended for informational purposes only and should not be taken as definitive financial advice. We strongly recommend cross-checking these calculations and consulting with a qualified professional engineer before making any major financial decisions.

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