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Andres BlancoThe thruster have arrived correctly. I tested them on the ROV and we are very happy with the result. The epoxy interior finish is very good and the power of the motors in relation to the size is quite good.
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Gregoire LangeThe cooperation between Changzhou Vic-Tech Motor Tech and our company was just great. Good understanding of our needs, great willing to solve our problems. I recommend !
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David MoleveltProfessional and clear communication. Order was shipped in time. Counter connectors where added to the shipment. Driver works like we agreed !
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Buildstorm Private LimitedThe product works as expected, it was packed nicely. Seller responds very quickly and helps in making a buying decision. They are ready to customize the product for you.
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Ashley GriffinShipment was received very quickly. Product was well protected by packaging. Company rep was cordial and kind. A Plus rating!
Nema 14 (35mm) hybrid ball screw stepper motor 1.8° Step Angle Voltage 1.4 / 2.9V Current 1.5A,4 Lead Wires
Place of Origin | China |
---|---|
Brand Name | VIC-TECH |
Certification | RoHS |
Model Number | VSM35BSHSM |
Minimum Order Quantity | 1Unit |
Price | $85~$171/Unit |
Packaging Details | Standard export package, or can be customized |
Delivery Time | 15-30 work days |
Payment Terms | Western Union, T/T, L/C, MoneyGram |
Supply Ability | 1000000 Units/year |

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xMotor Size | 35mm | Step Angle | 1.8° |
---|---|---|---|
Voltage (V) | 1.4 / 2.9 | Current (A) | 1.5 |
Resistance (Ohms) | 0.95 / 1.9 | Inductance (mH) | 1.5 / 2.3 |
Lead Wires | 4 | City | Changzhou |
Nema 14 (35mm) hybrid ball screw stepper motor 1.8° Step Angle Voltage 1.4 / 2.9V Current 1.5A,4 Lead Wires
Nema 14 (35mm) hybrid stepper motor, bipolar, 4-lead, ball screw, low noise, long life, high performance, CE and RoHS certified.
Descriptions:
Product Name |
35mm hybrid ball screw stepper motor |
Model |
VSM35BSHSM |
Type |
hybrid stepper motors |
Step Angle |
1.8° |
Voltage (V) |
1.4 / 2.9 |
Current (A) |
1.5 |
Resistance (Ohms) |
0.95 / 1.9 |
Inductance (mH) |
1.5 / 2.3 |
Lead Wires | 4 |
Motor Length (mm) |
34 / 45 |
Ambient Temperature | -20℃ ~ +50℃ |
Temperature Rise | 80K Max. |
Dielectric Strength | 1mA Max. @ 500V, 1KHz, 1Sec. |
Insulation Resistance | 100MΩ Min. @500Vdc |
Certifications:
Electrical Parameters:
Motor Size |
Voltage/ Phase (V) |
Current/ Phase (A) |
Resistance/ Phase (Ω) |
Inductance/ Phase (mH) |
Number of Lead Wires |
Rotor Inertia (g.cm2) |
Motor Weight (g) |
Motor Length L (mm) |
35 | 1.4 | 1.5 | 0.95 | 1.4 | 4 | 20 | 190 | 34 |
35 | 2.9 | 1.5 | 1.9 | 3.2 | 4 | 30 | 230 | 47 |
VSM35BSHSM standard external motor outline drawing:
Notes:
Lead screw length can be customized
Customized machining is viable at the end of lead screw
Please contact us for more ball screw specifications.
VSM35BSHSMBall nut 0801 or 0802 outline drawing:
VSM35BSHSMBall nut 1202 outline drawing:
VSM35BSHSMBall nut 1205 outline drawing:
VSM35BSHSMBall nut 1210 outline drawing:
Speed and thrust curve:
35 series 34mm motor length bipolar Chopper drive
100% current pulse frequency and thrust curve
35 series 47mm motor length bipolar Chopper drive
100% current pulse frequency and thrust curve
Lead (mm) | Linear velocity (mm/s) | |||||||||
1 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 |
2 | 2 | 4 | 6 | 8 | 10 | 12 | 14 | 16 | 18 | 20 |
5 | 5 | 10 | 15 | 20 | 25 | 30 | 35 | 40 | 45 | 50 |
10 | 10 | 20 | 30 | 40 | 50 | 60 | 70 | 80 | 90 | 100 |
Test condition:Chopper drive, no ramping, half micro-stepping, drive voltage 24V
Areas of application:
Industrial Automation: 35mm hybrid ball screw stepper motors find extensive use in industrial automation applications. They can be employed in automated assembly lines, conveyor systems, robotic arms, and other machinery that require precise positioning and reliable motion control.
CNC Machinery: Computer Numerical Control (CNC) machines utilize 35mm hybrid ball screw stepper motors for their high precision and accuracy. These motors play a crucial role in controlling the movement of the cutting tools, ensuring precise cuts and consistent results in various machining operations.
3D Printing: The 35mm hybrid ball screw stepper motors are suitable for 3D printers, where they provide the necessary control for the movement of the print head or build platform. Their high torque and accuracy contribute to the precise layering and intricate details in 3D-printed objects.
Medical Devices: In the medical field, 35mm hybrid ball screw stepper motors find applications in various medical devices, including diagnostic instruments, surgical robots, automated drug dispensers, and prosthetic devices. These motors offer the required precision and reliability for critical medical procedures and equipment.
Laboratory Equipment: Laboratory instruments and analytical devices often incorporate 35mm hybrid ball screw stepper motors for precise positioning and motion control. They can be found in laboratory robots, liquid handling systems, sample handling mechanisms, and other equipment that demands accurate and repeatable movements.
Optical Systems: Optics and photonics applications, such as laser systems, microscopy, spectroscopy, and optical alignment systems, benefit from the high precision and stability provided by 35mm hybrid ball screw stepper motors. These motors enable precise control of optical components, ensuring accurate beam positioning and alignment.
Packaging and Labeling: Packaging and labeling machines rely on precise motion control to ensure accurate positioning and application of labels, packaging materials, and closures. The high precision and repeatability of 35mm hybrid ball screw stepper motors make them suitable for such applications, improving packaging efficiency and product quality.
Semiconductor Equipment: In the semiconductor industry, 35mm hybrid ball screw stepper motors are utilized in various equipment, including wafer handling systems, inspection tools, and lithography machines. These motors contribute to the precise movement and alignment required for semiconductor fabrication processes.
Advantage:
High Positioning Accuracy: 35mm hybrid ball screw stepper motors offer high positioning accuracy. The ball screw transmission system reduces backlash and provides excellent repeatability, allowing the motor to accurately reach the desired position. This precision is essential in applications where accurate positioning is critical.
Excellent Torque Output: These motors provide high torque output, allowing them to drive larger loads or maintain stable motion even with varying loads. The ball screw mechanism efficiently converts the rotary motion of the motor into linear motion, resulting in effective torque transmission.
High Efficiency: Stepper motors are known for their responsiveness and efficiency. They can quickly respond to control signals and achieve precise positioning and motion control without requiring additional sensors or feedback systems. This efficiency contributes to the overall performance of the motor and the system it is integrated into.
Low Vibration and Noise: 35mm hybrid ball screw stepper motors typically exhibit low levels of vibration and noise during operation. This characteristic is particularly important in applications where low noise levels are desired or where vibration can affect the performance or accuracy of the system.
Reliability and Durability: These motors are generally known for their high reliability and durability. The ball screw transmission system provides good load distribution and extended service life, allowing the motor to maintain stability and reliability during prolonged operation and repeated use.
Compact Size: With a compact form factor, 35mm hybrid ball screw stepper motors can be easily integrated into applications with limited space. They offer high performance and precise control while occupying a smaller footprint, making them suitable for applications where size is a constraint.
Easy Control and Operation: Stepper motors offer a simple control interface, allowing for straightforward operation and integration into various control systems. They can be easily controlled using pulse and direction signals or more advanced control algorithms, depending on the specific application requirements.
Motor Selection Requirements:
►Movement/mounting direction
►Load Requirements
►Stroke Requirements
►End machining requirements
►Precision Requirements
►Encoder Feedback Requirements
►Manual Adjustment Requirements
►Environmental Requirements
Production workshop: