Shunli Custom 12v 6000rpm Dc Motor for Hair Dryer /toy Car Electric Dc Motor

Product Description

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12v 6000rpm DC Motor for Hair Dryer / Toy Car / Electric DC Motor

📋 Product Details
Product Details

✔ Motor Customized Specification Available

📐 Reference Drawings
Model: RS - 365 RS-365 Drawing
Model: RS - 385 RS-385 Drawing
Model: RS - 395 RS-395 Drawing

📏 The length of shaft can be customized.

📊 PMDC Motor Technical Data
Model Rated Voltage (V) No-Load Rated Performance
Series Sub-Model Range Nominal Speed (RPM) Current (A) Speed (RPM) Current (A) Torque (mN.m) Power (W)
RS-390SH 20156R 6.0~12.0 12VDC 5000 0.08 4243 0.33 6.07 2.72
2975 6.0~12.0 12VDC 12000 0.29 10165 0.33 5.75 1.31
RS-395SH 15130 6.0~12.0 12VDC 3650 0.66 2949 0.25 5.83 1.8
15100R 6.0~24.0 24VDC 10300 0.07 8893 0.38 7.09 6.68
📷 Product Gallery
Motor View 1 Motor View 2 Motor View 3 Motor View 4 Motor View 5 Motor View 6 Motor View 7
Frequently Asked Questions
What is the typical application for this 12V DC motor?
This motor is versatile and commonly used in hair dryers, toy cars, small household appliances, and various personal care electronic devices.
Can the motor shaft be customized?
Yes, the shaft length and shape can be customized according to your specific requirements to fit your application perfectly.
What is the operating voltage range for these motors?
The standard operating range is typically between 6.0V and 24.0V DC, depending on the specific sub-model selected (e.g., RS-390 vs RS-395).
What performance can I expect at 6000rpm?
The motor is designed for high efficiency. At around 6000rpm, it provides a stable balance between torque and power consumption, ideal for battery-operated toys and devices.
Are different speed configurations available?
Yes, we offer various models like the RS-390SH which can reach up to 12,000 RPM at no-load condition, or the RS-395SH which provides lower speed with higher efficiency.
Do these motors support bidirectional rotation?
As PMDC motors, rotation direction can be easily changed by reversing the polarity of the power supply.

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