PY2C015U0XXXC04

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The PY2C015U0XXXC04 is a servo amplifier with a rated output power of 1500 W and a continuous stall torque of 8.8 N·m. Manufactured by Sanyo Denki as part of the PY Super BL Servo Amplifiers series, it has a rated revolution speed of 2000 rpm. Its torque constant is 1.34 N·m/Arms, and the electrical time constant is 5.3 ms.

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Product Description:

This new unit is developed by Sanyo Denki top-rated Super BL Servo Amplifiers range and is labeled as PY2C015U0XXXC04 part number. It comes with a rated armature current of 6.9 arms which guarantees a reliable electrical drive. It can continuously stall with an armature current of 7.9 Arms and maintain these levels for prolonged periods under load. It can also handle instantaneous maximum stall armature current of 17.9 Arms during peak times.

When diving into technical specifications, the unit comes equipped with a 47.0V/krpm rated voltage constant. The phase armature resistance is 0.84 Ohms and is quite low relative to other models. The unit can deliver energy up to 1500 watts making it capable of driving mechanical loads. The amplifier has a rated revolution speed of 2000 RPM while also allowing for continuous movement at this speed. This machine unit also comes with a rated torque of 7.4 Nm which assists in providing smooth motion.

The Sanyo Denki manufacturer indeed managed to enhance the PY2C015U0XXXC04 amplifier’s performance. It has a continuous stall torque of 8.8 Nm and can generate an instantaneous maximum stall torque of 19.6 Nm to cope with sudden load spikes. The unit’s electric time constant of 5.3 ms and the mechanical time constant of 4.9 ms enable prompt authority response. The drive weighs 16.1 kg which makes it a powerful solution for the system while compact enough for placement within industrial systems. Moreover, this amplifier is rated and operates reliably at 92% efficiency between 0°C and 50°C ambient temperature with 10% to 90% humidity (non-condensing).

Continuous Stall Armature Current
7.9 Arms
Continuous Stall Torque
8.8 N·m
Electrical Time Constant
5.3 ms
Induced Voltage Constant
47.0 V/krpm
Instantaneous Maximum Stall Armature Current
17.9 Arms
Instantaneous Maximum Stall Torque
19.6 N·m
Maximum Revolution Speed
2000 rpm
Mechanical Time Constant
4.9 ms
Phase Armature Resistance
0.84 Ω
Rated Armature Current
6.9 Arms
Rated Output Power
1500 W
Rated Revolution Speed
2000 rpm
Rated Torque
7.4 N·m
Torque Constant
1.34 N·m/Arms
Weight (including Wiring-saved Inc)
16.1 kg

Frequently Asked Questions about PY2C015U0XXXC04:

Q: What role does a torque constant play in the amplifier's function?

A: The torque constant of 1.34 Nm/A directly relates the input current to the output torque, ensuring accurate force generation.

Q: Why is the electrical time constant of 5.3 ms significant for PY2C015U0XXXC04?

A: A low electrical time constant ensures rapid response to control signals. This results in improved dynamic performance and faster system adjustments.

Q: How does an induced voltage constant of 47.0 V/krpm enhance this model’s performance?

A: This constant ensures that voltage output increases proportionally with PY2C015U0XXXC04 speed, allowing precise control over dynamic operations. It is critical for maintaining stable and predictable performance.

Q: What advantage is provided by the amplifier’s continuous stall armature current?

A: A continuous stall current of 7.9 Arms allows the unit to maintain performance during extended load conditions. Further, the PY2C015U0XXXC04 protects against performance drop-offs during high-demand scenarios.

Q: How does a rated armature current of 6.9 Arms benefit the PY2C015U0XXXC04?

A: This current rating ensures that the amplifier provides a steady drive under normal operating conditions. It supports reliable performance in precision control applications.


Internal Product Review

  • ‘‘Developed by the Sanyo Denki brand, the PY2C015U0XXXC04 falls under the PY Super BL Servo Amplifiers product range. It operates at a rated revolution speed of 2000 rpm and maintains smooth and consistent motion. Its solid architecture simplifies integration and enhances control precision, making it a valuable solution for high-performance industrial applications.’’

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