P20B10150HXSH3E
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The Sanyo Denki P20B10150HXSH3E motor, part of the P2 Super BL Servo Motors series, delivers a rated output of 1.5 kW at 3000 min⁻¹. It features a rated torque of 4.79 N·m, a maximum rotating speed of 4500 min⁻¹, and weighs 6.5 kg. The motor offers continuous stall torque of 4.90 N·m.
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Product Description:
Sanyo Denki designs the P20B10150HXSH3E as a P2 series AC servo motor to deliver superb speeds using low inertia technology. It has 100 mm flange size which allows installation in restrictive spaces and accommodates assembly thrust with radial loads of 100 N and 30 N while operational thrust and radial loads of 70 N and 20 N respectively.
The P20B10150HXSH3E BL servo motor requires 200VAC voltage and as a permanent magnet excitation motor it delivers 4.79 Nm of rated torque and 4.90 Nm of continuous locked rotor torque. Its peak speed is 3000 revolutions/min and has an electrical response time constant of 13×10⁻³ sec. The P20B101 BL servo motor exhibits the phase armature impedance of 0.67Ω and manages to self-cool in its enclosure structure. As per its reduced wiring incremental feedback encoder, the inertia values fall within an average range of 2.04 × 10⁻⁴ kg·m². The P20B101 servo motor’s holding brake consumes either 0.83 A or 0.22 A at 24 or 90 VDC ±10%, produces 7.84 Nm of minimum torque and has a weight of 1.5 kg making the overall motor weigh up to 7.5 kg. The P20B101 servo motor is fully insulated under the Class-F category. The insulation resistance of the motor at 500 VDC voltage is above 10 MΩ.
The P20B10150HXSH3E BL servo motor is designed to operate perfectly under 0°C to 40°C ambient conditions. The allowed humidity range for this P2 series motor is 20-90%. The P20B101 servo motor functions at 6.5 A rated armature current with a torque constant of 0.83 Nm/A and voltage constant of 29.0 mV/min⁻¹. It features V10 vibration classification. This P2 series servo motor can be ordered from Wake Industrial.
Frequently Asked Questions about P20B10150HXSH3E:
Q: Why is the 0.67Ω phase armature impedance important in P20B10150HXSH3E?
A: It helps regulate the current draw, improving the thermal behavior and enhancing protection against sudden current surges during dynamic loads.
Q: How does the low inertia design in P20B10150HXSH3E benefit dynamic applications?
A: It reduces the response time and allows the motor to accelerate or decelerate faster, improving performance in high-speed automation tasks.
Q: How does the V10 vibration classification affect installation or operation?
A: The V10 rating ensures the motor withstands moderate mechanical vibrations, protecting internal components during operation in unstable environments.
Q: How does the P20B10150HXSH3E servo motor support long-term durability?
A: With an insulation class F and dielectric strength of 1500 VAC, it resists breakdown under thermal stress and high-voltage exposure.
Q: What is the benefit of using 24 or 90 VDC holding brake in P20B10150HXSH3E?
A: This flexibility allows integration into various control circuits, while maintaining secure positioning with a 7.84 Nm braking force.