Kotak alat perancangan tenaga rumah

Kalkulator Solar, EV dan Tenaga Rumah Percuma

Rancang panel solar, cas EV, bateri sandaran, penjana dan naik taraf tenaga dengan kalkulator dalam talian yang mudah. Masa cas, pulangan solar, masa larian, saiz penjana, penjimatan meter bersih, kos pam haba dan lain-lain.

Direktori Kalkulator

Pilih kalkulator EV, solar atau bateri yang sesuai

Bandingkan masa cas, saiz solar, masa larian bateri dan sandaran sebelum membeli pengecas, panel, bateri atau stesen mudah alih.

Lebih Kalkulator Tenaga

Buka Kalkulator
Kalkulator Perjalanan EVMenganggar hentian, masa cas dan masa memandu berdasarkan jarak, julat, bateri, SOC awal, rizab, SOC sasaran dan kuasa DC.EVKalkulator Pulangan SolarGunakan ITC persekutuan 30%, modelkan kemerosotan 0.5%/tahun dan inflasi tarif 3%/tahun, dan plot penjimatan terkumpul sehingga titik pulang modal.SolarKalkulator Meter BersihBandingkan meter bersih 1:1 dengan kredit eksport sahaja (cth. NEM 3.0). Bil bulanan, kWh dieksport, penggunaan sendiri dan jumlah tahunan.SolarPam Haba lawan GasMenukar permintaan pemanasan kepada kWh dan therm melalui COP dan AFUE serta membandingkan kos tahunan dan CO₂. Menggunakan purata EPA 0.39 kg CO₂/kWh dan 5.3 kg/therm.EnergySaiz PenjanaJumlahkan watt operasi dan tambah motor terbesar (pam, AC, peti sejuk) dengan puncak LRA dan margin keselamatan untuk bahan api dan ketinggian.BackupSewa Solar lawan BeliModelkan pembelian tunai (dengan ITC 30%) berbanding sewa/PPA 25 tahun dengan eskalator. Input: kos, bayaran tahun 1, eskalator, pengeluaran, tarif.SolarKecondongan Panel SolarDapatkan sudut tahunan optimum (≈ latitud), musim panas (lat − 15°) dan musim sejuk (lat + 15°), dengan anggaran keuntungan pengeluaran mengikut penyesuaian bermusim.SolarSaiz PenyongsangNREL dan SEIA mengesyorkan nisbah DC:AC 1.15–1.30. Nisbah lebih tinggi = kos lebih rendah per watt AC tetapi lebih pemangkasan tengah hari.SolarKalkulator Turbin AnginMenganggar kWh tahunan daripada luas sapuan, kelajuan angin purata, ketumpatan udara, faktor kapasiti dan kecekapan turbin. Menggunakan pembetulan Weibull.WindJumlah Kos EV 5 TahunJumlahkan harga (tolak kredit persekutuan), bahan api/elektrik, insurans, penyelenggaraan, pendaftaran selama 5 tahun. Lalai 4.0 mi/kWh, 28 mpg.EV

Nota Formula

Formula telus dalam setiap kalkulator

EV charging time formula

wall kWh = battery kWh x SOC change / charging efficiency

Charging time divides wall energy by charger power. Cost multiplies wall energy by electricity price.

Battery runtime formula

runtime hours = capacity Wh x usable percent x inverter efficiency / load W

Standby draw is included because small always-on loads matter during long outages.

Solar panel sizing formula

solar kW = daily kWh / (peak sun hours x performance factor)

Panel count rounds up from array watts divided by the selected solar panel wattage.

Battery backup formula

coverage days = usable battery kWh / max(0, daily load kWh - daily solar kWh)

Solar production uses a conservative real-world performance factor for inverter and weather losses.

Senario

Berguna sebelum membeli pengecas, panel, bateri atau sandaran

Compare Level 1, Level 2, and DC fast charging assumptions before buying an EV charger.

Estimate whether a portable power station can run a refrigerator, router, CPAP, or workstation.

Size a rooftop solar array and battery bank before requesting installer quotes.

Model blackout coverage before buying batteries, panels, inverters, or generator backup.

Soalan Lazim

Soalan Lazim

What information do I need to use these calculators?

Most estimates only need values you can find on an EV, charger, solar panel, battery label, or electricity bill: capacity, power, load, price, peak sun hours, and efficiency.

Why is EV charging time not just battery energy divided by charger power?

Charging has conversion losses, and real vehicles often taper charging near high state of charge. This calculator models the main loss factor and is best for planning estimates.

How accurate is the solar panel calculator?

It is useful for early sizing. Real output depends on roof angle, shade, weather, inverter clipping, utility rules, and local permitting.

Can I use the results before buying equipment?

Yes. The calculators are designed for early planning and comparison. Always check product manuals, installer recommendations, utility rules, and local electrical codes before purchasing or installing equipment.