Produto: F23 Series Square Sensor de proximidade indutivo | Item nº.: 033499
✅ Model Code Definition
N: Inductive sensor
NC: Montagem não embutida
100: Distância de detecção nominal 100 milímetros
F23: Large square housing series
E2: 3-wire DC PNP normally open (NÃO)
V1: Conector M12 de 4 pinos
📋 Core Electrical Specifications
| Parâmetro | Especificação |
| Rated sensing distance Sn | 100 milímetros (não nivelado) |
| Usable operating distance Sa | 0…81 mm |
| Actual working range Sr | 90…110 mm |
| Saída | PNP NÃO, 3-fio CC |
| Tensão de alimentação | CC 10 … 30 V |
| Máx.. corrente de carga | 200 mA |
| Frequência de comutação | 10 Hz |
| Histerese | Típico 8% |
| Proteção | Proteção contra polaridade reversa, proteção pulsada contra curto-circuito |
| Queda de tensão (Estado LIGADO) | ≤3 V, typical 1.9V@200mA |
| Corrente sem carga | ≤20 mA |
| Power-up ready delay | ≤90 ms |
| Indicator LEDs | Green = Power; Yellow = Switching action |
Metal Reduction Factors (Critical for Selection)
304 aço inoxidável: 1.0 (no reduction)
Latão: 0.47
Alumínio: 0.37
Cobre: 0.35
The effective sensing distance will decrease significantly for aluminum/copper targets. Factor calculation is mandatory during selection.
🧱 Mechanical & Dados Ambientais
Habitação: ABS plastic, aluminum base
Forma: Square large housing, fixed by mounting holes
Conexão: M12×1 male 4-pin connector
1: BN Brown DC+
2: WH White
3: BU Blue DC-
4: BK Black Signal output
Temperatura operacional: -25 ~ +70 ℃
Temperatura de armazenamento: -40 ~ +85 ℃
Certificações: cULus, CE
⚙️ Typical Applications
Long-range metal detection for:
Position limit of overhead cranes
Large material presence detection
Trolley positioning in warehousing logistics
Metal target detection for heavy machinery
Observação: Switching frequency only 10Hz, not suitable for high-speed moving targets.
🛠️ Installation Guidelines
- Montagem não embutida. Sensing face shall NOT be embedded in metal; sufficient metal clearance must be reserved around the sensing surface.
- Stainless steel target plate is recommended. For aluminum/copper targets, use larger target size or reduce installation distance.
- Power-up initialization delay up to 90ms. PLC program shall account for this to avoid false triggering at startup.
- Use matched M12 connector. Shielded cable is recommended to reduce interference from frequency converters.
🔁 Replacement & Peças de reposição
Mesma série: NCN100-F23-E0-V1 (NPN NO version)
Domestic replacement guideline: Square long-range inductive sensor, PNP NÃO, 100mm não nivelado, Conector M12. Observação: Reduction factors vary widely for domestic long-distance sensors, on-site testing required.
📌 Customs HS Code
85365019 (Other switching devices)
⚠️ Troubleshooting Checklist
- LED verde apagado: Sem fonte de alimentação ou polaridade invertida
- Green LED on, yellow LED never triggers: Target too far / aluminum/copper target with heavy reduction / insufficient target area
- Yellow LED flickering: Curto-circuito, overload or cable insulation damage
- Falso acionamento: Large nearby metal mass or electromagnetic interference (Inversores de frequência)
Typical Application Cases of Pepperl+Fuchs NCN100-F23-E2-V1
Core selection premise: 100mm ultra-long sensing distance, não nivelado, PNP NÃO, switching frequency only 10Hz. Suitable for low-speed position limit / detecção de presença, not for high-speed counting. Classificação IP67, -25~70℃, suitable for dusty, humid heavy-duty environments.
Caso 1: End Limit for Bridge Crane / Overhead Crane Trolley (Mais Comum)
Indústria: Metalurgia, steel warehouse, heavy-duty workshop cranes
Solução:
The sensor is mounted on the side of the crane rail. A stainless steel target plate is fitted at the end of the trolley. When the trolley approaches the rail end within the 81mm reliable operating distance, the sensor sends a PNP signal to PLC to trigger deceleration and emergency stop protection, preventing rail overtravel.
Vantagens: Long sensing distance allows flexible installation space. M12 connector enables quick replacement under heavy vibration; IP67 withstands dust and cooling water splashes.
Notas:
- Low trolley travel speed matches 10Hz switching frequency.
- Stainless steel target plate preferred. For aluminum targets, calculate distance using reduction factor.
- Keep large steel structures away from the sensing face to prevent false triggering.
Caso 2: Horizontal Rough Positioning for AS/RS Stacker Cranes in Automated Warehouses
Indústria: Armazenagem inteligente, armazenamento refrigerado
Solução:
NCN100-F23-E2-V1 sensors are installed in segments along the stacker travel rail. When the stacker’s metal baffle passes the sensor, it provides a rough position presence signal, working together with encoders for position calibration.
Função: Confirm the stacker arrives at the storage location and trigger deceleration. Avoid failure of photoelectric sensors caused by dust and moisture.
Limitação: Only rough positioning, not high-precision positioning; provides digital presence signal only, no distance measurement.
Caso 3: Station Presence Detection for Heavy-Duty AGVs
Indústria: Factory heavy-load AGVs, mining material transfer vehicles
Solução:
Sensors are mounted at ground stations, and metal target blocks are fitted on AGV side panels. When AGV enters the station and the target enters sensing range, the sensor outputs a presence signal for PLC to lock wheels and start loading/unloading.
Vantagens: Long sensing distance permits larger docking tolerance and lowers navigation accuracy requirements. Resists workshop dust and oil contamination, more stable than photoelectric sensors.
Restrição: Not for high-speed AGVs. 10Hz switching frequency may cause missed detection for fast-moving targets.
Caso 4: Presence Detection for Heavy Transfer Trolleys in Steel & Cement Plants
Indústria: Metalurgia, cimento, sintering plants
Solução:
Sensors are mounted rail-side for sintering trolleys and steel billet transfer trolleys. The sensor detects when the trolley metal baffle arrives at unloading / loading station.
Condições operacionais: High radiant heat, heavy dust and strong vibration. Sensor operating temperature -25~70℃ meets requirements. Large metal targets ensure stable detection.
Dica de comissionamento: Mass steel structures exist on site, metal clearance must be reserved to avoid constant false triggering by background metal.
Caso 5: Position Monitoring for Large Hydraulic/Pneumatic Heavy-Duty Gates & Flaps
Indústria: Tratamento de águas residuais, mining silo gates
Solução:
One NCN100-F23-E2-V1 is fitted at fully-open and fully-closed positions of silo discharge gates respectively, to detect arrival of the metal actuator baffle. Position feedback is sent to PLC to confirm gate status and interlock upstream/downstream belt conveyors.
Características: Slow gate movement perfectly matches low switching frequency. Remote sensor installation keeps it away from sediment and material impact.
Caso 6: Trolley Limit Protection for Gantry Cranes in Container & Steel Yards
Indústria: Portas, steel logistics yards
Solução: Sensor used for travel limit protection of gantry crane trolley. Detects trolley approaching metal end stop to trigger pre-deceleration as secondary safety limit.
Observação: It is only a position switch, NOT a SIL safety rated sensor. Cannot be used as sole safety protection; mechanical limit switch is recommended as backup.
📌 General Application Notes (Aplicável a todos os casos)
- Target material reduction: Stainless steel target factor =1.0; aluminum =0.37. Effective distance drops greatly for aluminum targets, must be calculated in selection.
- Movement speed constraint: Max switching frequency 10Hz. Only for limit and presence confirmation; strictly prohibited for high-speed counting.
- Instalação: Montagem não embutida. Sensing face cannot be embedded into metal. Adequate metal clearance around sensor.
- Power-up delay: Up to 90ms initialization time. PLC logic needs power-up delay to prevent false signals on startup.
- Target plate size: Target area cannot be too small. Target must fully cover the sensor sensing face, otherwise unstable detection occurs.
🔎 Application Quick Selection Table
| Cenário | Recomendação | Brief Reason |
| Despesas gerais / gantry crane trolley limit | ✅ Highly recommended | Baixa velocidade, longa distância, poeira pesada & vibração |
| AS/RS stacker rough positioning | ✅ Recomendado | Alternative to easily contaminated photoelectric sensors |
| Workpiece counting on high-speed conveyor | ❌ Não recomendado | Frequência de comutação insuficiente, detecção perdida |
| Long-range detection of aluminum workpieces | ⚠️ Use with caution | Low reduction factor reduces effective sensing distance |
| High-precision position measurement | ❌ Não recomendado | Digital switch output only, no analog distance value |
Working Principle of Inductive Proximity Sensors
Princípio Fundamental: Alternating Magnetic Field + Eddy Current Effect in Metal Conductors
Inductive proximity sensors detect metal objects only. Non-metals (plástico, madeira, vidro, borracha) cannot be sensed.
Internal Components
- LC Oscillator Circuit (Bobina + Capacitor): Generates high-frequency alternating electromagnetic field radiating outward from the sensing face after power-on.
- Demodulation & Comparator Circuit: Monitors oscillation amplitude variation
- Output Driver Circuit: Saída transistorizada (NPN / PNP)
- Fonte de energia, indicator LEDs
Complete Operating Sequence
- After sensor power-up, the LC circuit starts oscillation. The coil emits high-frequency alternating magnetic field.
- Nenhum alvo de metal presente: Little energy loss in magnetic field, oscillation is maintained. Circuit judges no target, output stays in original state.
- Metal target enters magnetic sensing zone: Alternating magnetic field penetrates metal surface and induces eddy current inside metal via electromagnetic induction.
- Eddy current generates reverse magnetic field counteracting the original coil field → energy of oscillator circuit is consumed and oscillation amplitude attenuates.
- The detection circuit detects amplitude drop below threshold, confirms metal presence and toggles transistor output (NO contact closes / NC contact opens), meanwhile the switching LED lights up.
- Metal moves out of sensing zone: Eddy current disappears, magnetic field recovers and oscillation resumes, sensor output resets.
Resumo de uma frase: Coil generates alternating magnetic field; metal creates eddy current to consume magnetic energy; circuit identifies energy change and outputs switch signal.
Características principais (Referencing NCN100-F23-E2-V1)
- Distância de detecção & Material Reduction
Eddy current strength depends on metal conductivity and permeability:
Ferromagnetic metals (aço, aço inoxidável): Strong eddy current, long sensing distance (reduction factor≈1)
Alumínio, cobre: Non-ferromagnetic, weaker eddy current, effective sensing distance greatly reduced (Al:0.37, Cu:0.35, matching previous parameters)
- Lavar / Non-Flush Mounting
Lavar: Can be embedded into metal base; magnetic field concentrated on front face; alcance de detecção mais curto
Não nivelado (NCN100 is this type): Cannot be embedded in metal; magnetic field diverges wider, maior distância de detecção, but side metal may cause false triggering
- Frequência de comutação
Time is required for magnetic field build-up and eddy current decay, hence maximum response frequency. NCN100 only 10Hz, not for fast-moving workpieces.
- Histerese
Trigger distance on approach is larger than reset distance on departure. Propósito: prevent signal chattering caused by mechanical vibration.
Simple Comparison vs Photoelectric Sensors
Indutivo: Detecção apenas de metal. Immune to dust, moisture and oil. Long-range models cost higher and subject to material reduction.
Photoelectric: Detects metal and non-metal. Prone to failure when lens contaminated by dust or water mist.
Suplemento
⚠️ Inductive proximity sensors are NOT distance measuring sensors. They only provide a binary signal indicating whether metal enters the threshold distance, no numerical distance output.
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