
( Brand: Pacific Scientific ), ( Manufacturer Part Number: T21NRLC-LDN-NS-00 ), ( Part Type: Shaft Motor )
The Pacific Scientific T21NRLC-LDN-NS-00 Shaft Stepper Motor is a versatile and reliable electrical actuator designed for precision positioning and control in various applications. This stepper motor features a 1.8 degrees per step resolution, which makes it an excellent choice for applications requiring high-resolution positioning and motion control.
The T21NRLC-LDN-NS-00 is a 2-wire unipolar stepper motor, powered by a 2VDC power supply. It has a maximum current rating of 4A, ensuring smooth and quiet operation even under heavy loads. The motor's shaft diameter is 6mm, providing ample torque to drive mechanical loads with ease.
This stepper motor is constructed with high-quality materials, including a corrosion-resistant and hardened steel shaft, making it suitable for use in harsh environments and industrial applications. The motor's housing is made of durable plastic, which is lightweight and resistant to moisture and corrosion.
The T21NRLC-LDN-NS-00 stepper motor is equipped with a built-in 1.8 micro-step encoder, which enables closed-loop control and improved positioning accuracy. The encoder provides 2000 pulses per revolution, allowing for fine-tuned positioning and motion control.
In addition, the motor comes with a 3-phase winding configuration, which provides increased torque and reduces the risk of motor stalling. The motor's maximum speed is 1300 RPM, making it well-suited for applications that require moderate to high-speed motion.
Overall, the Pacific Scientific T21NRLC-LDN-NS-00 Shaft Stepper Motor is an excellent choice for applications requiring high precision, smooth operation, and reliable performance. With its robust construction, high-quality winding, and built-in encoder, this stepper motor is well-equipped to handle a wide range of motion control applications, from robotics and automation to CNC machines and industrial equipment.
Pros of buying Pacific Scientific T21NRLC-LDN-NS-00 Shaft Stepper Motor 17-2VDC 4A:1. Powerful: This stepper motor has a current rating of 4A, which means it can deliver a significant amount of torque, making it suitable for heavy-duty applications.
2. Voltage Compatibility: The motor operates on 2VDC, which is a low voltage, making it energy-efficient and safe to use.
3. Compact Design: The motor has a compact design with a shaft length of 17mm, making it easy to integrate into various projects.
4. Durable: The motor is made of high-quality materials, ensuring it can withstand long-term use and harsh environments.
Cons of buying Pacific Scientific T21NRLC-LDN-NS-00 Shaft Stepper Motor 17-2VDC 4A:1. Limited Voltage Range: The motor only operates on 2VDC, which might not be suitable for applications that require higher voltage.
2. Limited Speed: The motor's speed is not specified in the product description, and it may not be suitable for high-speed applications.
3. No Built-in Electronics: The motor does not come with any built-in electronics like drivers or controllers, which might require additional purchases.
In conclusion, the Pacific Scientific T21NRLC-LDN-NS-00 Shaft Stepper Motor 17-2VDC 4A is a powerful and energy-efficient option for low-voltage applications. However, its limited voltage range and speed may not be suitable for all applications. Additionally, the lack of built-in electronics may require additional purchases. If these cons do not pose a problem for your application, then this motor is a great choice. Otherwise, it may be worth considering other options with more versatile voltage and speed ranges.
Manufacturer:Pacific Scientific. Comes in non original packaging. Condition: Used. Cosmetic appearance may vary slightly from pictured unit.
Model: T21NRLC-LDN-NS-00. Pacific Scientific T21NRLC-LDN-NS-00 3/4 Shaft Step/Stepper Motor 17.2VDC/0.4A. voltage : 17.2VDC
Buyer pays for all shipping costs. Amperage: 0.40A. This item is guaranteed to be as described. This step motor is in good condition with minor scuffs from prior use.
Notes: This stepper motor was pulled from a working setup, but not tested separately after removal.