Product ID: SMON6125
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ZR Micro Linear Motors incorporate a suite of cutting-edge features specifically designed for high-precision and high-performance applications. Engineered with a coreless, brushless, and direct-drive system, these motors guarantee seamless operation and accurate positioning. Their innovative toothless design effectively eradicates cogging and minimizes thrust ripple, ensuring uniform and reliable performance. Capable of delivering substantial thrust under light loads, they exhibit smooth thrust characteristics and swift acceleration, making them perfectly suited for dynamic environments. Exceptional thermal management is achieved through low thermal resistance and superior heat dissipation, enabling efficient performance even during prolonged use. The integration of lightweight, thermally conductive materials further optimizes thermal control. For enhanced versatility, optional integrated Hall commutation is available. Additionally, the modular stator design supports nearly limitless stroke lengths, and a wide range of customization options are provided to meet specific application needs. ZR Micro Linear Motors are the ideal choice for applications demanding unparalleled precision, dependability, and outstanding performance.
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Rated Performance |
||
Total Stroke |
mm |
30.0 |
Peak Force |
N |
39.6 |
Continuous Force @ 120℃ |
N |
12.0 |
Thrust Constant |
N/A |
7.5 |
Back EMF |
Vrms/(m/s) |
8.6 |
Coil gap |
mm |
0.7 |
Electrical Specifications |
||
Peak Voltage |
V |
27.0 |
Peak Current |
A |
5.3 |
Thrust Constant |
N/√W |
3.8 |
Peak Power |
W |
107.0 |
Electrical Time Constant |
ms |
0.22 |
Resistance |
Ohms |
5.1 |
Inductance |
mH |
1.1 |
Max. Winding Temperature |
℃ |
125.0 |
Mechanical Characteristics |
||
Mover Weight (Coil) |
g |
50.0 |
Magnetic Track Weight (magnetic track) |
g |
169.0 |
Mover Length |
mm |
47.0 |
Stator Length * Width |
mm |
78.8*30 |
Motor Thickness * Combined Height |
mm |
20*38 |
Optical equipment: Autofocus systems in cameras and microscopes.
Scanning systems: For precise movement in scanning electron microscopes (SEM) or atomic force microscopes (AFM).
Robotic surgery: For precise control of surgical instruments in robotic systems.
Hearing aids: For fine-tuning volume or frequency response.
Therapeutic devices: Such as in automatic drug delivery pumps.
Vibration motors: Used in smartphones, game controllers, and wearables for haptic feedback.
Miniature actuators: In devices like smartwatches or fitness trackers for dynamic response.
Robotics: Precision movement in robotic arms, grippers, and assembly lines.
3D printers: For fine motion control of print heads or extruders.
Satellites: Micro VCMs for positioning antennas, cameras, or other components.
Autonomous vehicles: Actuators for precise movement of sensors or cameras.
Drones and UAVs: For stabilizing and controlling flight systems.
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United States
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