LS LA63N-4P-D10 Miniature Circuit Breaker - コンタクタ,サーキットブレーカー,センサー,エンコーダ,PLC,コンバータ

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LS LA63N-4P-D10 Miniature Circuit Breaker - コンタクタ,サーキットブレーカー,センサー,エンコーダ,PLC,コンバータ

サーキットブレーカー/

LS LA63N-4P-D10 Miniature Circuit Breaker

ブランド: LS電気 | 製品: LA63N Series MCB Model Description: LA63N: シリーズコード, 6kA breaking capacity 4P: 4-ポール (3 フェーズ + 中性, 4 connection poles) D10: D-curve trip, rated current In=10A ✅ Core Technical Data Item Specification Model LA63N 4P D10 Rated Current In 10A Trip Curve D-type: Instantaneous trip at 10~16In. Suitable for motors, ...

  • 製品詳細

ブランド: LS電気 | 製品: LA63N Series MCB

モデルの説明:

LA63N: シリーズコード, 6kA遮断容量

4P: 4-ポール (3 フェーズ + 中性, 4 connection poles)

D10: D-curve trip, rated current In=10A

✅ Core Technical Data

アイテム仕様
モデルLA63N 4P D10
定格入力電流10あ
トリップカーブD型: Instantaneous trip at 10~16In. Suitable for motors, transformers and inductive loads to avoid tripping on inrush current
定格動作電圧UeAC400V (3-段階); DC 125V
Rated Short-circuit Breaking Capacity Icn6の (IEC60898)
4P (L1/L2/L3+N, simultaneous pole disconnection)
取り付け35mm DINレール取付
保護クラスIP20 (正面)
規格IEC60898-1, GB/T10963.1
機械的耐久性20,000 オペレーション; 電気的耐久性: 10,000 オペレーション
周囲温度-5℃~+40℃

📌 Application

4P MCB with D-curve, for power circuits: 3-相モーター, インバータ 入力, 変圧器, solenoid valves and inductive load distribution. It protects 3 phases and neutral line simultaneously and prevents nuisance tripping caused by high starting inrush current. Not suitable for general lighting (C-curve preferred for lighting).

🧩 Equivalent Replacement Models

  1. Legacy LS model: BKN-4P D10 (LA63N is upgraded version of BKN)
  2. 国内代替品: CHINT NB63-4P D10, Delixi DZ47s 4P D10
  3. Imported alternatives: Schneider iC65N 4P D10, ABB S204M D10

⚠️ Selection & インストールに関する注意事項

  1. D trip characteristic: Instantaneous trip at 10~16 times rated current, immune to motor starting inrush; Cカーブ: 5~10インチ; B カーブ: 3~5In.
  2. 4P feature: Neutral line disconnects together with phase conductors for safe maintenance; 3P+N is available if neutral disconnection is not required.
  3. Breaking capacity 6kA: Sufficient for factory end cabinets and small power panels; upgrade to LA63H (10の) when short-circuit current exceeds 6kA.
  4. No residual current protection. If earth leakage protection is needed, select LA63N series RCBO.

📦 Customs HS Code Reference

8536200000 (低電圧 サーキットブレーカー, rated voltage ≤1000V)

🛠️ Troubleshooting

Trips immediately upon closing: 短絡 / load earth fault

Trips when motor starts: Verify wrong C-curve selection or excessive line voltage drop

Trips after running for a period: 過負荷, check if continuous load current >10あ

Can Schneider MCB E9CN-4P-C16 directly replace LA63N-4P-D10?

結論: Direct replacement is NOT allowed

Although the DIN rail dimension, pole count and breaking capacity allow physical fitting, rated current and trip curve are inconsistent, leading to mismatched protection characteristics.

Parameter Comparison

アイテムLS LA63N-4P-D10 (オリジナル)Schneider E9CN-4P-C16 (Candidate)リスク
定格入力電流10あ16あOverload protection threshold increased, cable loses protection. The original circuit cable is sized for 10A. Replaced with 16A, cable may overheat without breaker tripping, 火災の危険性
トリップカーブD型: Instant trip 10~16In (100~160A)C型: Instant trip 5~10In (80~160A)Original for motor/inductive load. D-curve avoids starting inrush; C-curve tends to nuisance trip during motor startup
4P4P✅ Matched, all poles disconnect together
Rated Short-circuit Breaking Icn6の6の✅ Matched
寸法4P,72mm, DIN35 rail4P,72mm, DIN35 rail✅ Physically mountable

Two Replacement Options

✅ Option1: Fully equivalent replacement (推奨, unchanged protection)

Schneider part: E9CN-4P-D10

In=10A, D trip, 4P,6の; electrical protection fully matches LA63N-4P-D10 for direct swap.

⚠️ Option2: If E9CN-4P-C16 must be used (Rarely acceptable)

All conditions below must be satisfied:

  1. Continuous operating current of load ≤10A
  2. Cable and terminal rating re-checked for 16A
  3. Load is NOT direct-on-line motor / transformer or high-inrush inductive load (otherwise trip on startup)
  4. Drawings, protection schedule and test certificates updated and re-approved

Not recommended for industrial power circuits.

追加メモ

  1. Thermal overload curve is identical for C and D types. Difference lies only in instantaneous magnetic short-circuit trip.
  2. Terminal capacity is similar, top-in bottom-out wiring compatible.
  3. Same HS code: 8536200000.

How to identify load type for proper MCB selection

Core workflow: Classify load type → Determine continuous operating current → Select trip curve (B/C/D) → Choose rated current In → Verify short-circuit breaking capacity Icn → Select pole count

  1. Identify Load Type & Corresponding Trip Curve

Thermal overload protection is identical for B/C/D; difference is instantaneous magnetic trip for short circuit/inrush current.

旅行の種類Instantaneous Magnetic Trip Range代表的な用途備考
B型3~5 InLow-voltage electronics, precision devices, small DC circuits, sensor loopsHighly sensitive to short circuit; rarely used for industrial AC power
C型5~10 In点灯, socket outlets, 抵抗負荷, 小型ファン, general cabinet power supplyMost common for commercial/ordinary distribution; low inrush load
D型10~16 InDirect-on-line motors, 変圧器, 電磁弁, コンデンサバンク, 誘導負荷Withstand high starting inrush and prevent nuisance tripping

Quick reference:

抵抗負荷 (ヒーター, 白熱灯) → C-curve

Inductive loads with high inrush (モーター, 変圧器) → D-curve

Precision low-power DC/electronic circuits → B-curve

  1. Calculate Load Current and Select MCB Rated Current In

1) 抵抗負荷 (Heater, Resistor) 単相

Simplified estimation for 380V 3-phase motor: ~2A per kW

例: 3kW 3-phase motor, rated current≈6A; starting current ~6~8×In → D-curve selected.

Selection rule: MCB rated current ≥ motor rated current and withstand starting inrush.

注記: MCB mainly provides short-circuit protection. Motor overload shall be protected separately by thermal relay. MCB is NOT intended as primary overload protection for motors.

Margin Rule

Continuous duty load: In ≥ 1.1 × continuous load current

Intermittent load: In ≥ continuous load current

❌ Never arbitrarily increase In: Cable ampacity must match MCB rating. Otherwise cable burns without breaker tripping.

  1. Select Pole Count

1P: Protect phase only, neutral permanent connection; for lighting

1P+N: Phase and neutral wired into breaker, phase protected only; ソケット回路

2P: 段階 + neutral both protected, simultaneous disconnection; single-phase equipment

3P: 3-相3線式, disconnect three phases; 3-相モーター

3P+N: 3 フェーズ + 中性, neutral not disconnected; balanced 3-phase distribution

4P: 3 フェーズ + 中性, neutral disconnects together; TN-S system, full isolation for maintenance, UPS and 3-phase inverter input

LS LA63N-4P-D10 above: 4-ポール, neutral synchronized disconnection.

  1. Short-circuit Breaking Capacity Icn (Often Overlooked)

アイコン: Maximum short-circuit current the breaker can safely interrupt.

End cabinet / ordinary workshop distribution: 6の (LS LA63N, Schneider E9CN are 6kA) sufficient

Near transformer or main panel with high prospective short-circuit current: Select 10kA,15kA models

If actual short-circuit current MCB Icn: Breaker may fail and explode during short circuit, cannot cut fault.

  1. On-site Checklist for Load Identification

✅ Check equipment nameplate:

  1. Resistive or coil/motor/transformer load
  2. 定格電圧, 定格電流, 定格電力
  3. Starting method: DOL / Star-delta / ソフトスターター

DOL motor has maximum inrush → D-curve; soft starter reduces inrush, C-curve acceptable in some cases

✅ Field judgment:

Obvious hump and current surge at power-on → High-inrush inductive load → D-curve

Smooth startup without current spike → Resistive / general power supply → C-curve

  1. Common Pitfall Case (Matching previous model comparison)

Original circuit: LS LA63N-4P-D10 (10A D-curve)

負荷: Small DOL 3-phase motor

If replaced with Schneider E9CN-4P-C16:

  1. In rises from10A→16A: Overload protection threshold increased, original cable loses overload protection
  2. C-curve magnetic trip at5~10In: Motor starting inrush may fall into instantaneous trip range → Trip immediately on startup
  3. Full MCB Selection Procedure
  4. Identify load type: 抵抗性 / 誘導的 (Motor/Transformer) / 電子
  5. Read nameplate power/current and calculate continuous operating current
  6. Select trip curve B/C/D based on inrush characteristic
  7. Choose MCB rated In and verify matching cable ampacity
  8. Calculate prospective short-circuit current at installation point and select Icn
  9. Select pole count according to distribution system (TN-S/TN-C) and maintenance requirement
  10. Derating check: Ambient temperature and derating for densely mounted breakers in cabinet

Factors to consider for MCB pole selection

Core concept: Pole count defines which conductors are switched and protected. Selection shall consider distribution system type, 負荷の種類, maintenance safety, neutral fault current and protection requirements.

Available poles:1P,1P+N,2P,3P,3P+N,4P

  1. Distribution System Type (TN-C / TN-S / TN-C-S)

Primary criterion, determines whether neutral line can be disconnected.

TN-C (Combined PEN): PEN conductor must NOT be disconnected. Do NOT use 2P/4P with neutral switching; PEN remains continuous.

TN-S / TN-C-S (Separate N and PE): Neutral is independent. Decide whether to switch neutral according to requirement.

If neutral may carry overvoltage/fault current and full isolation required during maintenance → 4P (3-段階)/2P(単相)

Balanced 3-phase load with negligible neutral current, neutral disconnection unnecessary →3P+N (neutral passes through without switching)

  1. Single-phase or Three-phase Load

Single-phase load: 1P,1P+N,2P

1P: Only phase conductor disconnected, neutral remains connected. リスク: Neutral may become energized if upstream neutral breaks; mainly for lighting.

1P+N: Phase and neutral connected to breaker, only phase has protection, neutral no overload/short-circuit protection, poles open simultaneously.

2P: Both phase and neutral protected and switched together; preferred for sockets and single-phase equipment requiring full isolation.

Three-phase load:3P,3P+N,4P

3P: Protect and disconnect three phase conductors only; balanced 3-phase motors without neutral.

3P+N: 3 phases protected, neutral wired into breaker but neutral has no overload/short-circuit protection, may switch together or pass through; for unbalanced 3-phase load.

4P: L1/L2/L3+N all protected, phase and neutral disconnect simultaneously. LS LA63N-4P belongs to this type.

  1. Maintenance Safety (致命的)

Full isolation required: All conductors de-energized after breaker OFF. Single-phase →2P; Three-phase →4P.

例: Inverter input, UPS, main power of control cabinet. 4P full pole disconnection required before cabinet opening for service.

Ordinary end motor without neutral: Only three phases need isolation for maintenance; 3P is sufficient.

⚠️ Warning: 1P breaker leaves neutral connected to upstream system. If upstream neutral is broken, equipment may become energized. 1P is not recommended for maintenance access.

  1. Neutral Overload, Short-circuit and Harmonic Current

Unbalanced 3-phase load, large quantity of VFD / switching power supply: Heavy harmonic current flows on neutral, neutral may overload.

✅ Neutral conductor requires protection → 4P MCB.

Balanced pure 3-phase motor load, almost zero neutral current: 3P sufficient, no need for 4P.

Typical scenario: Control cabinet with many PLC, 直流電源. Third harmonic summation makes neutral current even larger than phase current → 4P required to protect neutral.

  1. Compatibility with Earth Leakage Protection (RCBO / MCB+ELM)

Residual current detection requires sensing all incoming and outgoing currents including neutral.

Single-phase RCBO: Usually 1P+N or 2P

3-phase earth leakage: 3P+N /4P. Neutral must pass through CT, otherwise leakage protection fails.

If leakage module is planned, pole configuration must include neutral wire.

  1. System Overvoltage & Isolation Requirement

Surge risk, reverse voltage, dual power transfer circuit: Full pole disconnection (2P/4P) recommended to prevent voltage backfeed via neutral and damage downstream equipment.

Ordinary power circuit without special overvoltage risk: 3P acceptable.

  1. Cost and Cabinet Space

Wider pole count occupies more DIN rail space:

3P:54mm; 3P+N:72mm;4P:72mm

Cost ranking:4P>3P+N>3P. 3P/3P+N preferred for space saving when neutral protection is unnecessary.

  1. Distinguish 3P+N vs 4P (Most Confused for 3-phase Circuits)
タイプPhase ProtectionNeutral ProtectionNeutral Switching応用
3PL1/L2/L3 protectedNo neutralNo neutralPure 3-phase motor without neutral
3P+NL1/L2/L3 protectedNeutral no overload/short-circuit protectionNeutral switches together with polesUnbalanced 3-phase load, low harmonic, neutral no overload risk
4PL1/L2/L3 all protectedNeutral with overload & 短絡保護段階 + neutral open togetherHigh harmonic, neutral overload risk, full isolation for maintenance, inverter/UPS input

LS LA63N-4P-D10: 4P, neutral protected and fully switched, suitable for inverter input and 3-phase circuits with neutral requiring maintenance isolation.

✅ Quick Pole Selection Checklist

  1. Single-phase or three-phase load?
  2. Distribution system TN-C / TN-S? Is neutral disconnection permitted?
  3. Neutral present? Heavy harmonic / unbalanced neutral current? Neutral protection required?
  4. Full isolation required during maintenance?
  5. Earth leakage accessory planned? (Neutral must pass through CT)
  6. Space and cost evaluation

Typical Application Reference

  1. 3-phase induction motor without neutral: 3P MCB D-curve
  2. Main power of control cabinet with many switching power supplies, high harmonic, cabinet opening for maintenance: 4P MCB
  3. Ordinary 3-phase lighting, unbalanced load with low harmonic:3P+N C-curve
  4. Single-phase socket circuit:2P C-curve /1P+N RCBO

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