P50B05020DXL69
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The Sanyo Denki P50B05020DXL69 is part of the P5 Super BL Servo Motors series, delivering a rated output of 200W. It features a rated speed of 3000 rpm and a peak torque of 1.91 Nm. With an incremental encoder resolution of 2500 ppr, the motor has IP65 protection and weighs approximately 1.6 kilograms.
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Product Description:
The P50B05020DXL69 is a Servo Motor. It is manufactured by the well known company Sanyo Denki to be used in demanding environments.
The P50B05020DXL69 Servo Motor is able to sustain 0.686 Nm of torque indefinitely which makes it suitable for high holding or load bearing applications. This module with ABS-RII encoder weighs 1.20 kg which impacts system inertia and mounting considerations. It operates optimally at 3000 min⁻¹ which makes it ideal for mid speed industrial tasks. It can effectively drive loads with 1.73 × 10⁻⁴ kgm² inertia. It has an electrical time constant of 2.9 msec which reflects how quickly the motor’s current reaches its final value. It is designed to provide 200 watts of continuous mechanical power under rated conditions. It is capable of briefly providing up to 1.96 Nm torque during peak loads and enables short bursts of high force. It has a back EMF per unit speed of 15.2 mV/min⁻¹ which is essential for calculating voltage requirements and tuning. It comes with a torque constant of 0.436 Nm/Arms which is vital for drive compatibility. To deliver rated output it requires 1.6 arms current which is important for drive sizing.
The P5 servo motors series module has a mechanical time constant of 0.9 msec which means it gives faster response to load changes. Its rotor's resistance to changes in speed with ABS- E encoder of 0.198 × 10⁻⁴ kg•m² which influences dynamic response. The module has a 3.4 ohm of phase armature resistance which is high enough to limit current and low enough to ensure efficient energy transfer. It can briefly draw 5.5 arms current during heavy acceleration or stalling events.
Frequently Asked Questions about P50B05020DXL69:
Q: Why is the 3.4 Ω phase armature resistance important in P50B05020DXL69 servo motor?
A: The 3.4 Ω resistance helps limit inrush current and protects the driver electronics. It also supports efficient energy transfer during continuous operation.
Q: How does 0.9 msec mechanical time constant benefit the P50B05020DXL69 servo motor?
A: This low time constant ensures fast response to changing loads. It enhances performance in precision motion control applications.
Q: What role does the 5.5 Arms peak current play in P50B05020DXL69 operation?
A: It allows the motor to manage sudden high-torque demands without stalling. This feature ensures reliability during load spikes.
Q: Why is a 4500 rpm maximum speed significant in servo motor P50B05020DXL69?
A: This enables high-speed positioning tasks in automation systems. It broadens application in dynamic operations like robotics and conveyors.
Q: How does rotor inertia affect the motor’s performance in the P50B05020DXL69 model?
A: Lower rotor inertia allows faster acceleration and deceleration. This improves dynamic control in rapid motion cycles.