1. Hybrid Linear Stepper Motors with Brake Overview
In the manufacturing industry, the hybrid linear stepper motor with brake can be used for automatic production lines and assembly systems to control the positioning, movement and assembly of parts and components. The brake function can ensure that the parts stop movement when needed to assemble, welded or other processing operations.
Hybrid linear stepper motor with brake can be used to control the movement of robots and automated robots. In the application of accurate grasp, positioning, and placing objects, the brake function can ensure that the robot stops exercise at appropriate.
In the automated warehousing and material handling system, the hybrid linear stepper motor with brake can be used to control the movement of the shelves, conveyor belts and handling devices. The brake function can ensure that the goods stop exercise when needed to retrieve, store or sort.
In automatic packaging and packaging equipment, the hybrid linear stepper motor with brake can be used to control the location and movement of the packaging material to ensure the accurate location of the product during the packaging process.
In the automatic detection and quality control system, the hybrid linear stepper motor with brake can be used to control the position of the detection device to ensure the accurate position of the product during the detection process for various measurement and detection operations.
In the automated testing system, the hybrid linear stepper motor with brake can be used to control the motion of the test equipment and move the test sample to the appropriate position for various testing and evaluation operations.
In the laboratory, the hybrid linear stepper motor with brake can be used to control the movement of the experimental table to adjust the position and angle of the sample to support various experiments and research operations.
2. Hybrid Stepper Motor Naming Rules and General Technical Specifications
Linear stepper motor naming rules,
General Specifications,
Step Angle | 1.8° (2 Phase) |
Step Angle Accuracy | ±0.09° |
Size | Nema23, 57mm |
Insulation Grade | 500VDC, 20 MΩ Min. ,Class B |
Dielectric Strengt | 500 VAC for 1 Minute |
Temperature Rise | Less than 80℃ (Rated Current) |
Suface Temperature | Max.Allowed 100℃ |
Humidity Range | 20% to 90% RH |
IP Grade | IP40 |
Certificates | Rohs, CE, CCC |
3. Hybrid Linear Stepper Motor Performance Datasheet
Model | Current | Resistance | Inductance | Min Thrust | Rotor Inertia | Bi/Unipolar | Screw Lead | Screw Length | Weight | Motor Length | Driver |
A/Ø | Ω/Ø | mH/Ø | N @10RPS | g.cm2 | # of Wires | mm | mm | kg | mm | ||
57LHS3004E | 3.0 | 1.1 | 3.2 | 100 | 280 | Bi (4) | 10 | 200 | 0.71 | 92 | Y2SD2 |
Model | Brake Voltage | Brake Power | Brake Torque | Reaction Time | Connection | |
DC V | W | N.m | ms | 24V+ | GND | |
57LHS3004E -200BR | 24 | 4 | 1.5 | 50 | BLK | BLK |
Note: Customization of motor specifications available.
4. Mechanical Dimensions (in mm)
5. Wirings