Motor Type:AC Servo Motor
Model:A06B-0501-B002
Brand:Fanuc
Application Category:General Electronics
Operating Voltage:230V
Maximum Output Torque:2.2 Nm
Speed Range:0.1 – 3000 rpm
Rotation Direction:Reversible
Torque Constant:1.5 Nm/A
Torque Ripple:< 0.1%
Noise Level:≤ 60 dB
Efficiency:≥ 90%
Protection Class:IP54
Motor Size:Standard
Weight:3.5 kg
Operating Temperature:-10°C to +60°C
Storage Temperature:-20°C to +80°C
Certifications:CE, UL, CSA
The Fanuc A06B-0501-B002 GE Servo Motor is a cornerstone of advanced manufacturing systems, designed with cutting-edge technology to meet the stringent demands of today’s high-speed production environments. Its robust design ensures durability and longevity, making it a reliable choice for industries requiring precise control over machinery operations.
Featuring an optimized balance between power output and efficiency, this motor is capable of delivering consistent torque at various speeds, enabling seamless integration into complex assembly lines. Its compatibility with Fanuc’s proprietary control protocol facilitates seamless communication with other components, enhancing system integration and reducing setup time.
With a compact size and lightweight construction, the A06B-0501-B002 GE Servo Motor offers unparalleled flexibility in installation. It can be easily mounted in tight spaces without compromising performance, ensuring that it can adapt to diverse manufacturing settings.
This servo motor is designed with an IP54 protection class, safeguarding against dust and splashing water. This makes it ideal for use in harsh environments where maintenance and downtime are critical factors. The integrated design reduces the risk of mechanical failures, contributing to overall system reliability and uptime.
Incorporating the latest advancements in motor technology, the A06B-0501-B002 GE Servo Motor is a testament to Fanuc’s commitment to innovation and quality. It stands as an essential component for achieving high-precision automation, offering operators the ability to enhance productivity, reduce errors, and maintain optimal operational conditions.
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