1 PCS used Control Techniques NTE-212-CONS-0000 motor #LYQ007
1 PCS used Control Techniques NTE-212-CONS-0000 motor #LYQ007
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Parameter
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Specification
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Unit
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Notes (Original Factory Description)
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Brand
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Control Techniques
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-
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Genuine Control Techniques Original Factory Production, 100% Authentic, Industrial-Grade High-Reliability Servo Motor[1]
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Product Model
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NTE-212-CONS-0000
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Original Control Techniques Factory Model, Factory Calibrated, No Modification, Belongs to NTE 212 Series Servo Motors[1]
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Product Name
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Control Techniques NTE-212-CONS-0000 Servo Motor
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High-Precision Servo Motor, Specialized for Industrial Motion Control Systems, Stable and Durable[1]
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Product Type
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Industrial-Grade Servo Motor, Brushless DC Servo Motor
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-
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Brushless Design, Low Noise, Low Wear, Suitable for Continuous High-Precision Motion Control Scenarios[1]
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Rated Power
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1.2 kW (Continuous Operation); 2.4 kW (Peak Power, 10s)
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kW
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Original Factory Calibrated Power Rating, Ensures Stable Power Output Under Rated Working Conditions[1]
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Rated Voltage
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220 VAC (Three-Phase); Allowable Fluctuation: ±10%
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VAC
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Compatible with Global Industrial Power Supply Standards, Wide Voltage Adaptation, Stable Operation[1]
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Rated Current
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6.5 A (Continuous); 13 A (Peak, 10s)
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A
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Low No-Load Current, Energy-Saving, Over-Current Protection Design Complies with Factory Standards[1]
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Rated Speed
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3000 RPM (Continuous); 4500 RPM (Peak, 5s)
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RPM
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High-Speed Stability, Low Speed Ripple, Suitable for High-Precision Speed Control Applications[1]
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Torque Rating
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3.8 N·m (Rated); 7.6 N·m (Peak, 10s)
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N·m
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High Torque Density, Ensures Strong Load-Bearing Capacity in Industrial Motion Control Scenarios[1]
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Encoder Type
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Incremental Encoder, 2500 Lines
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-
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High-Precision Position Feedback, Compatible with Control Techniques Servo Drives, Ensures Accurate Position Control[1]
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Motor Length
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180 mm (Body Length); Tolerance: ±0.5 mm
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mm
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Compact Design, Saves Installation Space, Convenient for Integration into Industrial Equipment[1]
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Shaft Diameter
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14 mm (Standard); Keyway Design: 4 mm × 4 mm
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mm
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High-Strength Shaft Material, Wear-Resistant, Ensures Stable Power Transmission[1]
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Operating Temperature Range
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-20 ~ +70 °C (Ambient Temperature); Max Winding Temperature: 155 °C
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°C
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Wide Temperature Adaptation, Stable Performance in Extreme Industrial Environments, Over-Temperature Protection[1]
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Storage Temperature Range
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-40 ~ +85 °C
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°C
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Suitable for Long-Term Storage and Transportation in Extreme Temperature Conditions Without Performance Degradation[1]
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Relative Humidity
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0 ~ 95% RH (Non-Condensing)
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% RH
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Strong Humidity Resistance, Adaptable to High-Humidity Industrial Sites (e.g., Food Processing, Chemical Plants)[1]
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Protection Level
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IP65 (Standard); Optional IP67 for Harsh Environments
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-
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Dust-Tight and Waterproof, Suitable for Industrial On-Site Installation, Prevents Dust and Water Ingress[1]
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Mounting Type
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Flange Mounting (IEC Standard, 80 mm Flange)
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Standard IEC Flange Design, Easy to Install and Disassemble, Compatible with Standard Industrial Mounting Accessories[1]
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Weight
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Approx. 4.2 kg (Including Encoder and Cable)
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kg
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Lightweight Design, Reduces Load on Mounting Positions, Easy to Transport and Install[1]
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Insulation Class
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Class F
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-
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High Insulation Performance, Prevents Short Circuit, Ensures Safe Operation Under High Temperature Conditions[1]
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Certifications
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CE Certified, UL Certified, IEC 60034 Certified
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Complies with International Industrial Quality and Safety Standards, Applicable to Global Industrial Motion Control Scenarios[1]
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Service Life
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≥ 10 Years (Continuous Operation, Normal Working Condition); ≥ 20,000 Hours MTBF
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Years, Hours
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Long Service Life, Low Maintenance Frequency, Reduces Replacement Costs for Industrial Applications[1]
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Application
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Industrial Motion Control, CNC Machine Tools, Robotics, Packaging Machinery, Printing Machinery
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Widely Used in Various High-Precision Motion Control Scenarios, Providing Stable and Accurate Motion Performance[1]
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Compatible Drives
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Control Techniques Unidrive M, Digitax ST Series Servo Drives
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Perfectly Compatible with Control Techniques Original Servo Drives, Plug-and-Play, Ensures Optimal System Performance[1]
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