PY0A150E01XXYP01

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The PY0A150E01XXYP01 is a servo amplifier with a rated output of 1500 W and a rated revolution speed of 3000 rpm. Manufactured by Sanyo Denki, it is part of the PY Super BL Servo Amplifiers series. This unit offers a continuous stall torque of 4.90 N•m and an instantaneous maximum stall torque of 17.7 N•m.

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Wake Industrial Warranty

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Product Description:

The PY0A150E01XXYP01 is a highly efficient Servo amplifier made by Sanyo Denki. The amplifier is designed to drive compatible motors accurately and efficiently. The amplifier system can work smoothly in industrial automation tasks because it has built-in control and communication links.

The PY0A150E01XXYP01 servo amplifier needs a 200-230V AC three-phase input voltage and a 24V DC control power source to work. External regeneration resistors allow regenerative braking and make the stopping more effective. For emergency stopping, a dynamic brake is built in. There are improved safety features built into the amplifier to protect against overcurrent, overload, overvoltage, and overtemperature. High-resolution encoder support makes sure that the position is correct. CN1 and CN2 make up the control interface. They handle input from the motor encoder and I/O signals. A 7-segment display and software monitoring tools allow users to see alarm codes and get information on how to fix problems. For heat to escape, forced air cooling is needed. The device works without condensation in temperatures between -10°C and 55°C and humidity levels between 20% and 85% RH. For ventilation, the vertical mounting style needs enough space.

The PY0A150E01XXYP01 servo amplifier is made with a servo off procedure that lets it shut down safely when switching between operations. There is an emergency stop feature built into the amplifier that makes it safer. External resistors help with regeneration power handling and make it easier for energy to be lost. The amplifier works with motors from the P2, P3, P5, and P6 lines. All of them can go up to 4500 RPM, but the P6 motor can only go up to 3000 RPM. Diagnostic tools and encoder support are built in to make sure that positioning precision is always reliable.

Continuous Stall Armature Current
6.3 Arms
Continuous Stall Torque
4.90 N•m / 50 kg・cm
Holding Torque (brake Data)
7.84 N•m / 80 kg・cm
Induced Voltage Constant
29.0 mV/min−1 / 29.0 V/krpm
Inertia
2.04×10−4 kg・m2 (GD2/4)
Instantaneous Maximum Stall Armature Current
25 Arms
Instantaneous Maximum Stall Torque
17.7 N•m / 180 kg・cm
Maximum Revolution Speed
3000 min−1 / 3000 rpm
Phase Armature Resistance
0.67 Ω
Rated Armature Current
6.5 Arms
Rated Output
1500 W
Rated Revolution Speed
3000 min−1 / 3000 rpm
Rated Torque
4.79 N•m / 48.8 kg・cm
Torque Constant
0.83 N・m/Arms / 8.5 kg・cm/Arms
Weight
6.5 kg

Frequently Asked Questions about PY0A150E01XXYP01:

Q: Does PY0A150E01XXYP01 support high-resolution motor encoders?

A: Yes, the system is designed for precision control with high-resolution encoder compatibility. This ensures accurate positioning and stable motor performance.

Q: How do CN1 and CN2 interfaces benefit PY0A150E01XXYP01?

A: These interfaces handle motor encoder feedback and I/O signals. They improve control accuracy and simplify system integration.

Q: Why does PY0A150E01XXYP01 require forced air cooling?

A: The servo amplifier generates heat during operation. Forced air cooling ensures optimal thermal management and prevents performance degradation.

Q: Do external resistors improve PY0A150E01XXYP01’s power dissipation?

A: Yes, external resistors enhance regeneration power handling. This prevents excessive heat buildup and ensures safe energy dissipation.

Q: How does PY0A150E01XXYP01 handle emergency stopping?

A: The integrated dynamic brake allows immediate stopping. This ensures safety in high-speed applications.


Internal Product Review

  • ‘‘The PY0A150E01XXYP01 servo amplifier offers precise speed and torque control with high-resolution encoder support. Its advanced protection system ensures stable operation under overcurrent, overvoltage, and overload conditions. The system integrates regenerative braking with external resistors that enhance energy efficiency. Reliable communication through CN1 and CN2 interfaces optimizes motor performance.’’

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