XSM165-95-402-S-0KA

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The Kollmorgen XSM165-95-402-S-0KA is part of the XSM Centurion Servo Motors series, featuring a peak torque of 24.3 Nm and a motor weight of 9.8 kg. It delivers a continuous torque of 10.7 Nm and has a torque constant of 0.54 Nm/amp. The motor's rotor inertia is 0.00078 kg-m².

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Product Description:

The XSM165-95-402-S-0KA is a quick-response servo motor in the Kollmorgen range of advanced motion solutions. It is engineered to provide rapid and accurate control of movement in automated machinery, ensuring optimal coordination and minimal lagging. The motor features a specialized stator design that enhances thermal transfer, effectively managing heat during high-performance operation. This design ensures that the motor remains cool, even during intense workloads, reducing the risk of overheating. This thermal efficiency helps to extend the lifespan of the motor and connected components, minimizing the risk of damage from overloads.

The XSM165-95-402-S-0KA features a shaft end thread measuring M10 x 1.5-6 mm that provides a secure interface for stable mechanical connections. This thread size offers broad compatibility with various couplings, pulleys and other custom fixtures. The precision-machined thread promotes a tight and reliable fit, maintaining proper alignment and reducing the risk of vibration during high-speed operation. The motor is designed to operate at a nominal torque of 10.7 Nm, delivering power efficiently under normal operating loads. In high-load scenarios, the motor can generate a maximum force of 24.3 Nm, providing the extra burst of energy needed to handle high mechanical loads.

This motor is well-suited for installation with direct-mount pinions and belt pulleys, providing a cost-effective solution for various mechanical drive systems. This feature simplifies integration by allowing the motor to be directly coupled to power transmission components without the need for additional adapters. For energy-conscious setups, the motor is designed to deliver controlled torque levels with relatively low current draw, which helps reduce energy consumption. This design also limits heat generation during operation, ensures smooth and stable motion with improved overall efficiency.

Added Length With Brake Option
2.03 inches
Back Emf Constant Ke Volts/krpm
65
Continuous Torque Lb-in
95
Continuous Torque Nm
10.7
Motor Weight (kg)
9.8
Motor Weight (lb)
21.5
Peak Torque Lb-in
215
Peak Torque Nm
24.3
Rotor Inertia (kg-m²)
0.00078
Rotor Inertia (lb-in-s²)
0.0069
Shaft End Thread
M10 x 1.5-6 mm
Thread Depth
22 mm (0.87 in)
Torque Constant Kt Nm/amp
0.54
Winding Inductance (mh)
7.0
Winding Resistance At 25°c (ohms)
0.4

Frequently Asked Questions about XSM165-95-402-S-0KA:

Q: What is the peak torque of the XSM165-95-402-S-0KA motor?

A: The XSM165-95-402-S-0KA has a peak torque of 24.3 Nm, providing the motor with the ability to handle high-performance applications with greater load tolerance and stability.

Q: What is the weight of the XSM165-95-402-S-0KA motor?

A: The XSM165-95-402-S-0KA motor weighs 9.8 kg, offering a balance between durability and ease of integration into industrial systems.

Q: What is the Back EMF constant of the XSM165-95-402-S-0KA motor?

A: The XSM165-95-402-S-0KA has a Back EMF constant of 65 Volts/kRPM, providing efficient speed-to-voltage conversion.

Q: What type of shaft end thread does the XSM165-95-402-S-0KA motor have?

A: The XSM165-95-402-S-0KA motor features an M10 x 1.5-6 mm shaft end thread, offering compatibility with various mechanical components for simplified integration.

Q: What is the rotor inertia of the XSM165-95-402-S-0KA motor?

A: The XSM165-95-402-S-0KA motor has a rotor inertia of 0.00078 kg-m², which ensures fast acceleration and deceleration, making it ideal for dynamic applications.


Internal Product Review

  • ‘‘The XSM165-95-402-S-0KA offers excellent dynamic performance, making it a reliable choice for precision motion control in demanding automation tasks. However, its weight may require careful consideration during installation in weight-sensitive systems.’’

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