Gerilim Düşümü Hesaplayıcı
NEC formülünü kullanarak kablo hattındaki gerilim düşümünü, kablo kesiti ve uzunluğuna göre tahmin edin.
Amortisman tablosu
| # | Ödeme | Anapara | Faiz | Bakiye |
|---|---|---|---|---|
Zaman içindeki büyüme
| Yıl | Yatırılan | Değer |
|---|---|---|
Giriş
Voltage Drop Calculator — Estimate voltage drop over a wire run using the NEC formula, by gauge and length. Enter Source voltage (V), Current (A), One-way length (ft), Wire gauge, Conductor material, Phase to get an instant, accurate result.
Formül
NEC Chapter 9, Table 8 approximate method: VD = (2 × K × I × L) / CM for single-phase, or VD = (√3 × K × I × L) / CM for three-phase, where K = 12.9 ohm-cmil/ft for copper (21.2 for aluminum), I is load current, L is one-way conductor length in feet, and CM is the conductor's circular-mil area.
Adım adım
- Enter the Source voltage (V).
- Enter the Current (A).
- Enter the One-way length (ft).
- Enter the Wire gauge.
- Enter the Conductor material.
- Enter the Phase.
- Click Calculate to see your result instantly.
Gerçek dünya örneği
Example: With Source voltage (V) = 120, Current (A) = 20, One-way length (ft) = 100, Wire gauge = 12, Conductor material = copper, Phase = no, the Voltage Drop Calculator gives Voltage Drop V: 7.902, Voltage Drop Pct: 6.585, Circular Mils Used: 6530.
Sıkça Sorulan Sorular
What voltage drop percentage is acceptable?
Why does one-way length matter, not round-trip?
Does wire material matter?
What inputs does the Voltage Drop Calculator need?
How accurate is the Voltage Drop Calculator?
Is the Voltage Drop Calculator free to use?
Gerilim Düşümü Hesaplayıcı Hakkında
The Voltage Drop Calculator uses a real, verifiable formula — NEC Chapter 9, Table 8 approximate method: VD = (2 × K × I × L) / CM for single-phase, or VD = (√3 × K × I × L) / CM for three-phase, where K = 12.9 ohm-cmil/ft for copper (21.2 for aluminum), I is load current, L is one-way conductor length in feet, and CM is the conductor's circular-mil area. — so results are accurate every time, not an approximation.