Pacific Scientific E42HLLB-LNK-NS-01 Stepper Motor, Precision Control for Industrial Automation
The Pacific Scientific E42HLLB-LNK-NS-01 is a high-performance stepping motor designed for precision applications in automation, robotics, and machinery requiring precise control and positioning.
Detailed content
Motor Type:Precision Step Motor
Model:E42HLLB-LNK-NS-01
Stepping Angle:1.8 Degrees
Rated Voltage:24V DC
Rated Current:1.5A
Max Torque:0.6Nm
Speed:Up to 2000 RPM
Enclosure Type:IP54
Connectivity:Hall Effect Sensor Interface
Material:Stainless Steel Construction
The Pacific Scientific E42HLLB-LNK-NS-01 precision step motor is engineered to deliver exceptional performance in demanding environments. With a compact design measuring just 42mm in diameter, it seamlessly integrates into space-constrained systems without compromising on functionality.
Featuring a step angle of 1.8 degrees, this motor ensures precise positioning and control, ideal for applications requiring high accuracy such as robotics and automation. Its 500 steps per revolution allows for fine adjustments, making it perfect for intricate machinery and devices.
Equipped with a robust construction, the E42HLLB-LNK-NS-01 can withstand a rated voltage of 24V DC and operates at a nominal current of 0.7A, ensuring reliable performance under various conditions. It is capable of delivering a maximum torque of 10 oz-in or 7 N-mm, providing the necessary force for most applications.
Designed with efficiency in mind, the motor operates at up to 1500 RPM, allowing for quick response times and smooth operation. Its noise level is kept to a minimum, ensuring a quieter environment, which is particularly beneficial in sensitive operations.
The E42HLLB-LNK-NS-01 comes with an IP54-rated enclosure, protecting it against dust and splashes of water, making it suitable for outdoor or industrial use where environmental conditions may vary. It is also temperature-resistant, functioning effectively within the range of -20°C to +70°C, ensuring longevity and reliability in diverse operational settings.