Transformator QDTB®

⚡ Kalkulator Arus Hubung Singkat

Hitung arus hubung singkat prospektif dari kVA transformator dan impedansi, lalu dapatkan arus terukur dan kapasitas pemutusan pemutus — dalam ukuran standar IEC atau NEC.

Mulai Menghitung
⚠️ Nilai referensi untuk desain awal. Pengaturan proteksi final harus diverifikasi oleh insinyur berkualifikasi sesuai IEC 60909 / NEC 110.

⚙️ Trafo & Sistem

📊 Result

Untuk perancang dan kontraktor yang menentukan ukuran perlengkapan saklar LV dan pemutus terhadap tingkat gangguan.

Cara menghitungnya

· Arus terukur: In = kVA ÷ (√3 × U).

· Arus hubung singkat: Isc = In ÷ (Z%/100).

· Arus puncak: ip ≈ 2.5 × Isc; rating pemutus ≥ 1.25 × In dan kapasitas pemutusan ≥ Isc.

Standar yang dirujuk

StandardScope
IEC 60909Perhitungan arus hubung singkat dalam sistem AC tiga fasa
IEC 60947-2Pemutus sirkuit tegangan rendah — kapasitas pemutusan terukur
NEC 110.9Rating pemutusan perangkat proteksi arus lebih

Contoh perhitungan — transformator 1000 kVA → gangguan 24 kA

1. 1000 kVA, 0.4 kV, Z = 6% → In = 1000 ÷ (√3 × 0.4) = 1443 A.

2. Isc = 1443 ÷ 0.06 = 24.1 kA; puncak ip ≈ 2.5 × 24.1 = 60 kA.

3. Rating pemutus = 1600 A (IEC) dengan kapasitas pemutusan 25 kA.

4. Kabinet LV yang direkomendasikan: GGD-1600.

FAQ

How do I calculate short-circuit current?

Use IEC 60909: short-circuit current = voltage / (sqrt(3) x total impedance). For a 0.4 kV system, the Transformer impedance dominates. A 1000 kVA, 6% impedance transformer contributes about 24 kA at the LV bus (1000 / (sqrt3 x 0.4 x 0.06) ~ 24 kA). The calculator computes three-phase and single-phase fault currents.

What breaker breaking capacity do I need?

The breaker breaking capacity must exceed the prospective Fault Current at its location. For 24 kA at the bus, select a 36 kA breaker (standard IEC 60947 ratings are 16/25/36/50 kA). Undersizing risks a failure to interrupt a fault, so use a 1.25-1.5 safety margin. The calculator matches the breaker to the fault level.

What is the difference between Icu and Ics?

Icu is the ultimate breaking capacity — the breaker can interrupt it once but may need replacement. Ics is the service breaking capacity — the breaker can interrupt it repeatedly and remain usable. Ics is typically 50-75% of Icu. Select breakers whose Icu exceeds the fault level; the calculator checks against standard ratings.

How does cable length reduce short-circuit current?

Long cables add impedance that reduces fault current downstream. A 50 m run of 35 mm2 copper cable can cut a 24 kA fault to roughly 15-18 kA at the far end. This is why downstream breakers can be lower-rated. The calculator accounts for cable impedance when computing the fault level at the load.

What is the difference between symmetrical and asymmetrical fault current?

Symmetrical fault current is the steady AC component; asymmetrical adds a decaying DC offset, peaking in the first half-cycle. The peak (making) current is 1.5-2.5 times the RMS symmetrical value, so Switchgear has both a breaking (Isc) and a making (peak) rating. IEC 60909 computes both; the calculator reports the symmetrical level for breaker selection.

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Alat terkait

Perkiraan referensi (FOB Qingdao, EXW) untuk desain awal saja — bukan penawaran final. Konfirmasikan ukuran terhadap proyek dan standar lokal Anda.

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