Schneider LUCM12BL is a multifunction motor control unit of the TeSys Ultra series, Diseñado específicamente para motores monofásicos/trifásicos con corriente nominal de 3 a 12 A.. Proporciona una protección integral, funciones de diagnóstico y comunicación. Como modelo clásico de TeSys Ultra, su valor fundamental reside en la capacidad de control integrada del arrancador de motor todo en uno. When matched with the LUB series power base, it realizes motor protection, control and status monitoring. This model is discontinued and now only supplied as a spare part. Para la selección, priority shall be given to upgraded models in the same series (p.ej. LUCD12BL) to balance performance improvement and system compatibility.
- Definición del segmento del modelo (Precise Decoding)
| Segmento | Código | Descripción | Características clave |
| Product Family ID | LUC | Schneider TeSys Ultra series control unit (L=TeSys series, U=Ultra, C=Control) | Compatible with TeSys Ultra all-in-one motor starter system |
| Tipo de función | METRO | Multifunction type | Equipped with LCD display and 4-key keypad, supports advanced diagnosis and parameter setting |
| Rango actual | 12 | Suitable for motor rated current 3–12A (Ir adjustable) | Compatible with 5.5kW(400V)/9kilovatios(690V) three-phase motors and 2.2kW(400V) single-phase motors |
| Voltaje de control | licenciado en Derecho | 24V DC control coil (B=24V, L=DC) | Control circuit requires external 24V DC power supply; power consumption approx. 5W. |
- Core Specification Table (High-Density Technical Parameters)
| Categoría de parámetro | Especificaciones detalladas | Observaciones |
| Core Performance | • Rated current range: 3–12A (Ir continuously adjustable) | Supports single/three-phase motors, covering most small and medium motor application scenarios |
| • Overload class: Class 5–30 optional | ||
| • Short-circuit protection: 13×Irmax (instantáneo) | ||
| • Overcurrent protection: 14.2×Ir (time-delay) | ||
| • Motor compatibility: 5.5kilovatios(400V)/9kilovatios(690V) trifásico, 2.2kilovatios(400V) monofásico | ||
| Fuente de alimentación | • Control circuit: 24En DC, aprox. 5W power consumption | Independent power supply for control unit and power base improves system reliability |
| • Operating voltage: AC 200–690V, 50/60Hz | ||
| • Power base connection: controlled via A1/A2 terminals | ||
| Características físicas | • Dimensions: 60mm×45mm×60mm (Depth×Width×Height) | Compact design saves cabinet space and fits standard industrial installation environments |
| • Weight: 0.175kilos (net) / 0.210kilos (gross) | ||
| • Mounting: Carril DIN estándar de 35 mm | ||
| • Protection class: IP20 (instalación del gabinete) | ||
| Environmental Ratings | • Operating temperature: -25°C ~ +70°C | Meets industrial reliability requirements, Cumple con IEC 60947-6-2 |
| • Storage temperature: -40°C ~ +85°C | ||
| • Humidity: 5%–95% (sin condensación) | ||
| • Vibration resistance: 10–150Hz, 0.5mm double amplitude | ||
| • Shock resistance: 15gramo (11EM) | ||
| Funciones de protección | • Overload / protección contra cortocircuitos (termomagnético) | Supports manual / automatic reset; records the last 5 trip events for fault analysis |
| • Phase loss / phase unbalance protection | ||
| • Insulation fault protection (equipment side) | ||
| • No-load / underload operation protection | ||
| • Stall / long start protection | ||
| • Differentiated diagnosis of thermal overload and magnetic faults | ||
| Interface Capabilities | • Control input: 2 configurable digital inputs | Supports remote monitoring and parameter configuration; integrable into SCADA/PLC systems |
| • Status output: 2 salidas de relé (NA+NC) | ||
| • Communication: RS485 Modbus RTU, RJ45 port | ||
| • Display: LCD screen + 4-key keypad (real-time display of current, Voltaje, fuerza, etc.) | ||
| Product Lifecycle | • Status: Obsolete / Interrumpido | Supplied only as spare parts; upgrade replacement is recommended |
| • Recommended replacement: LUCD12BL (enhanced digital display version) | ||
| • Discontinued around 2020 | ||
| Certificaciones & Cumplimiento | • Green Premium (RoHS/REACh) | Compliant with global industrial safety and environmental regulations |
| • IEC 60947-6-2 estándar | ||
| • CE certification |
- Lista de accesorios (Complete Supporting Parts)
| Tipo de accesorio | Modelo recomendado | Descripción de la función | Compatibilidad |
| Power Base | LUB12 / LUB32 / LUB38 / LUB120 | Provides main circuit connection and short-circuit protection; snap-on connection with control unit | Totalmente compatible, must be used together |
| Cable de conexión | Schneider dedicated connection cable | Internal connection between control unit and power base to ensure signal transmission | Original accessory ensuring communication stability |
| Riel de montaje | Standard DIN 35mm rail | For cabinet installation and fixing, ensuring heat dissipation and shock resistance | Universal industrial standard, compatible with all TeSys Ultra products |
| Power Adapter | Schneider 24V DC industrial power supply | Provides stable power for the control unit to ensure reliable system operation | Original power supply recommended to avoid voltage fluctuation impact |
| Communication Module | Optional Modbus RTU module | Expands communication function for connection with PLC or SCADA | Plug-and-play, no additional programming required |
| Configuration Software | TeSys Ultra Configuration Tool | For parameter setting, fault diagnosis and data logging | Free download, supports offline / online configuration |
| Function Expansion Module | LUFDA (alarm indication) / LULC (mando a distancia) | Extends local alarm indication or remote control functions | Direct snap-on mounting, sin cableado adicional |
- Competidor & Referencia entre marcas (Selection Guidance)
4.1 Schneider Internal Upgrade Replacement Models (Recommended Priority)
| Modelo de reemplazo | Diferencia central | Performance Upgrade | Compatibility Description |
| LUCD12BL | Enhanced digital display version with more diagnosis functions | Higher display accuracy; supports trend recording and fault analysis | Reemplazo directo, no system modification required, fully function compatible |
| LUCA12BL | Standard version with fixed Class 10 sobrecarga | Lower cost for basic protection needs | Direct replacement with slightly simplified protection functions |
| LUCL12BL | Standard control unit without display | Lowest cost for simple control scenarios | Totalmente compatible, only without LCD and keypad operation |
| LUCM18BL | Current range 3–18A for higher power motors | Extended current range for 7.5kW(400V) motores | Requires LUB18 series power base; suitable for capacity expansion |
4.2 Cross-Brand Replacement Solutions (System Adaptation Required)
| Marca | Modelo | Parámetros principales | Adaptation Description |
| siemens | 3RW5024-1BB14 | Soft starter control unit, 3–12A, 24En DC | Control logic reconfiguration required; matches Siemens soft starter base |
| TEJIDO | PSR12-600-70 | Soft starter, 3–12A, comunicación modbus | Supports Modbus; parameter adjustment needed for motor protection matching |
| Eaton | DS7-12 | Motor protection controller, 3–12A, 24En DC | Base and interface replacement required; protection performance equivalent to LUCM12BL |
| Moeller | DILM12-10+Z012 | contactor + thermal overload relay combination, 3–12A | Sólo protección básica; no communication or diagnosis functions; lowest cost |
- Directrices de selección & Replacement Strategy (Mnemonic Rules + Guía de operación)
5.1 Selection Mnemonic
Three Principles for TeSys Ultra Selection:
Check Current: 3–12A choose 12 serie; 12–18A choose 18 serie; match motor power accordingly (5.5kW/400V corresponds to 12A)
Check Function: Basic protection choose LUCA/LUCL; advanced diagnosis choose LUCM/LUCD (with LCD)
Check Supply Voltage: 24V DC = suffix BL; 110V AC = suffix FU; 230V AC = suffix FE
5.2 Replacement Priority for Fault Replacement
- Same Model Spare Replacement: LUCM12BL (simplest, plug-and-play without configuration)
- Actualización de la misma serie: LUCD12BL (enhanced digital version, direct replacement with upgraded functions)
- Function Downgrade Replacement: LUCA12BL (standard version, lower cost for budget-limited scenarios)
- New Platform Replacement: TeSys Island series (IoT-enabled, hardware adaptation required for system upgrade)
5.3 Notas de aplicación
Compatibilidad: Only applicable to TeSys Ultra series; must be used with LUB power base, incompatible with TeSys Classic series
Instalación: Snap-on connection between control unit and power base; cut off power before installation and ensure correct wiring of A1/A2 terminals
Configuración de parámetros: Configure via LCD keypad or TeSys Ultra Configuration Tool; parameter backup recommended
Mantenimiento: Regularly check heat dissipation and dust cleaning; record trip events for fault analysis
Upgrade Matters: When replacing with higher-version control units, synchronously update parameters to ensure normal protection functions
Lifecycle Management: As a discontinued product, stock up on key spare parts or upgrade entirely to TeSys Island platform (supports remote monitoring and predictive maintenance)
Schneider LUCM12BL is a classic multifunction control unit in the TeSys Ultra series. Featuring compact design, protección total, advanced diagnosis and Modbus communication, it is widely applied in small and medium motor control fields. Though discontinued, it remains valuable as spare parts for legacy equipment maintenance. Follow the priority: Current Matching → Function Requirement → Supply Voltage → Lifecycle. For obsolete models, prioritize same-series upgraded replacement such as LUCD12BL to ensure system stability and easy maintenance.
Selected Application Cases of Schneider LUCM12BL (5 Major Industry Scenarios)
As a multifunction motor control unit of the TeSys Ultra series, Schneider LUCM12BL features 3–12A current adaptation, funciones de protección completa, LCD diagnostic display and Modbus communication capability. It realizes reliable motor control and intelligent monitoring across multiple industrial sectors. Below are 5 typical application cases covering process industry, manufacturing and infrastructure, highlighting its advantages in fault prevention, maintenance efficiency improvement and system integration.
- Wastewater Treatment Plant – Submersible Pump Motor Protection & Monitoreo remoto
Application Background
An urban wastewater treatment plant is equipped with 20 sets of 5.5kW submersible pumps (400V, rated current 11A) for sewage lifting and aeration systems. The traditional contactor + thermal overload relay solution had limited protection functions, difficult fault location and no remote monitoring, resulting in high equipment failure rate (3–5 times/month), high maintenance cost and unstable treatment efficiency.
Solución
Adopt LUCM12BL + LUB12 power base to replace the original protection device with the following configuration:
Protección contra sobrecarga: Clase 10 (adapted to heavy starting characteristics of submersible pumps)
Phase loss / phase unbalance protection: Prevent motor burnout caused by phase loss
Insulation fault protection: Monitor winding insulation status of submersible pumps to prevent electric leakage
comunicación modbus: Connect to PLC via RS485 for remote start/stop and parameter monitoring
Registro de fallas: Store the last 5 trip events for rapid diagnosis
Implementation Effect
| Indicator | Before Improvement | After Improvement | Improvement Range |
| Equipment Failure Rate | 3–5 times/month | 0–1 time/month | Reduced over 80% |
| Fault Troubleshooting Time | 2–4 hours/time | 15–30 minutes/time | Reduced over 75% |
| Annual Maintenance Cost | 120,000 CNY | 35,000 CNY | Reduced over 70% |
| System Availability | 88% | 99.50% | Increased by 11.5% |
Valor clave
Predictive Maintenance: Early detection of winding aging via insulation monitoring to avoid sudden failure
Remote Management: Central control room real-time monitoring of pump current, Voltaje, power and optimization of operation strategy
Data-Driven Decision: Optimize maintenance schedule and extend equipment service life based on fault record analysis
- Automotive Parts Factory – Intelligent Control of Conveyor Line Motors
Application Background
The stamping workshop of an auto parts factory has 15 automatic conveyor lines, each equipped with 3–5 sets of 2.2–5.5kW three-phase motors (400V, rated current 4–11A) for workpiece handling and positioning. Traditional magnetic starters had low protection accuracy, unable to distinguish fault types and lack of status monitoring, causing frequent production line shutdowns (6–8 times/month) and affecting production rhythm.
Solución
Equip each conveyor motor with LUCM12BL + LUB32 power base and connect to the workshop SCADA system via Modbus RTU:
Adjustable overload class (Class 5–30): Adapt to conveyor motors with different load characteristics
Stall / long start protection: Prevent motor burnout caused by workpiece jamming
No-load operation protection: Timely detect abnormal conditions such as conveyor chain breakage
Real-time status display: LCD directly shows current, voltage and power for on-site inspection
Remote diagnosis: SCADA centrally displays all motor operating status for fast fault location
Implementation Effect
Monthly production line downtime reduced from 48 hours to 8 horas; production efficiency increased by 25%
Motor replacement frequency reduced from 3–4 units per quarter to 1 unit every six months; spare parts cost reduced by 60%
Maintenance response time shortened from 30 minutes to 10 minutos; oh&M efficiency increased by 67%
Energy saving optimized by monitoring no-load operation and adjusting conveyor start-stop strategy timely; power saving by 12%
Innovative Application
Utilize LUCM12BL’s differentiated diagnosis of thermal overload and magnetic faults to build a motor fault knowledge base, enabling automatic fault identification and maintenance recommendation, transforming traditional breakdown maintenance into preventive maintenance + precise maintenance.
- Alimento & Beverage Factory – Motor Protection for Stirring & Mixing Equipment
Application Background
The fermentation workshop of a large dairy plant has 10 sets of 5.5kW stirring motors (400V, rated current 11A) for yogurt and cheese fermentation. The original simple protection scheme had protection blind spots such as phase unbalance and insulation faults, and no fault process recording, resulting in batch product scrapping and severe economic losses due to motor failures.
Solución
Adopt LUCM12BL + LUB38 power base with customized configuration for food processing environment:
Protección contra sobrecarga: Clase 20 (adapted to high inertia load during stirring equipment startup)
Phase unbalance protection: Threshold set at 15% to prevent motor overheating due to phase loss
Insulation fault protection: Monitor equipment-side insulation resistance to prevent electric leakage in humid environment
Reinicio automático: Auto reset for short-term overload faults to avoid manual intervention and ensure continuous production
Data recording: Store current and voltage data 10 seconds before trip for fault analysis
Implementation Effect
Product scrapping rate reduced from 2–3 batches/month to zero; annual economic loss avoided over 500,000 CNY
Equipment reliability raised to 99.8%, meeting strict continuous production requirements of food industry
Maintenance efficiency improved: Hidden faults such as agitator blade wear and bearing damage quickly located via fault data
Compliance upgraded: Meets HACCP certification requirements and realizes full traceability of key equipment
Industry Adaptation Points
Select IP20 control unit with sealed cabinet design for humid and corrosive food processing environment
Realize MES system docking via Modbus communication to record equipment operation data and meet production traceability requirements
- Pharmaceutical Factory – Fan & Water Pump Control for HVAC System
Application Background
The HVAC system in the clean workshop of a biopharmaceutical factory includes 8 sets of 3.7–5.5kW fans and 6 sets of 5.5kW water pumps (400V, rated current 8–11A) to maintain constant temperature, humidity and air cleanliness. The original decentralized control had low control accuracy, high energy consumption and difficult maintenance, failing to meet strict GMP environmental parameter requirements.
Solución
Adopt LUCM12BL + LUB120 advanced power base to build a centralized motor control and monitoring system:
control del ventilador: Clase 10 overload protection with variable frequency linkage via air volume sensors
Control de bomba de agua: Clase 15 overload protection with constant pressure water supply via pressure sensors
Integración de comunicación: Connect to Building Automation System (BAJO) via Modbus RTU for centralized HVAC management
Status monitoring: LCD real-time display of motor parameters with on-site parameter adjustment and fault diagnosis
Alarm linkage: Automatic sound-light alarm upon motor fault and maintenance notification via BAS
Implementation Effect
Environmental parameter stability improved: Temperature fluctuation reduced from ±1.5°C to ±0.5°C; humidity fluctuation from ±5%RH to ±2%RH, fully meeting GMP standards
Energy consumption reduced: Encima 20% power saving for fan and water pump system via frequency conversion linkage and no-load monitoring
Maintenance efficiency improved: Remote diagnosis shortens fault troubleshooting from 2 hours to 30 minutos
System integration upgraded: Seamless connection between HVAC and production management system improves overall automation level
Key Technical Highlights
Upgrade traditional motor control to intelligent nodes via LUCM12BL’s multi-protection and communication capability, laying a foundation for digital transformation of pharmaceutical plants
Batch parameter configuration and backup supported by TeSys Ultra Configuration Tool improves system commissioning efficiency
- Mining Machinery – Motor Protection for Belt Conveyors
Application Background
The raw coal conveying system of an open-pit coal mine has 12 sets of 5.5kW belt conveyor motors (690V, rated current 6A) for short-distance raw coal transportation. Harsh mining environment (temperatura alta, polvo, vibración) caused traditional protection devices to have poor anti-interference, frequent failures and high maintenance costs, affecting coal conveying efficiency.
Solución
Adopt LUCM12BL + LUB380 advanced power base with enhanced configuration for mining conditions:
Protección contra sobrecarga: Clase 30 (adapted to heavy start and frequent start-stop of belt conveyors)
Stall protection: Threshold set at 200%Ir to prevent motor stall caused by raw coal accumulation
Anti-vibration design: Special mounting bracket improves stability under vibration conditions
Wide temperature adaptability: Operating range -25°C ~ +70°C adapts to extreme mine temperatures
Registro de fallas: Store last 5 trip events for analyzing causes such as belt slippage and raw coal overload
Implementation Effect
Equipment failure rate reduced from 4–6 times/month to 0–1 time/month; conveying efficiency increased by 15%
Maintenance cost reduced: Spare parts consumption down 60% and manual maintenance cost down 50%
Reliability enhanced: Stable operation under high temperature, dust and vibration with MTBF over 8000 horas
Safety improved: Insulation and phase loss protection effectively prevent motor electric leakage and burnout, ensuring personnel safety
Environmental Adaptation Points
Install control unit in sealed cabinet with dust-proof fan to avoid dust ingress affecting operation
Use shielded communication cable to improve Modbus communication reliability under strong electromagnetic interference in mines
- Application Case Summary & Puntos clave de selección
6.1 Summary of Core Application Scenarios
| Industria | Typical Equipment | Applicable Power | Core Protection Requirements | LUCM12BL Advantages |
| Tratamiento de agua | Submersible pump, aeration pump | 3.7–5.5kW | Insulation fault, pérdida de fase, sobrecarga | Monitoreo remoto, registro de fallas, mantenimiento predictivo |
| Fabricación | Conveyor line, machine tool | 2.2–5.5kW | Stall, no-load, phase unbalance | Intelligent diagnosis, fast fault location |
| Alimento & Beverage | Stirrer, mixer | 3.7–5.5kW | Sobrecarga, phase unbalance, insulation fault | Data recording, compliance traceability |
| Farmacéutico | HVAC fan, bomba de agua | 3.7–5.5kW | Sobrecarga, no-load, control preciso | System integration, energy optimization |
| Minería | Belt conveyor | 5.5kilovatios(690V) | Heavy start, parar, resistencia a las vibraciones | Wide temperature adaptability, análisis de fallas |
6.2 Selection Mnemonic (Application Version)
Three Matching Rules for LUCM12BL Selection:
Coincidencia actual: 3–12A motors choose 12 serie, adecuado para 5,5kW(400V)/9kilovatios(690V) motores
Coincidencia de carga: Heavy start choose Class 20–30; light load choose Class 5–10
Environment Matching: Severe environment adopt advanced power base (LUB120/LUB320/LUB380) with sealed installation
6.3 Key Implementation Points
- Matching Selection: Must be used with LUB series power base to realize complete protection functions
- Configuración de parámetros: Set proper protection parameters via LCD keypad or software according to motor type and load characteristics
- Communication Integration: Connect with PLC/SCADA via Modbus RTU to improve system intelligence
- Maintenance Management: Back up parameters regularly, analyze equipment operation status via fault records and optimize maintenance plans
- Recomendación de reemplazo
Considering LUCM12BL is discontinued, priority is recommended for the following solutions in new projects or system upgrades:
- Actualización de la misma serie: LUCD12BL (enhanced digital display version, fully compatible with stronger diagnosis capability)
- Expansión de funciones: TeSys Island series (IoT connectivity supporting remote monitoring and predictive maintenance)
- Cross-Series Replacement: TeSys Advanced series (supports higher power motors and more communication protocols)
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