T511-012EL0 Sanyo Denki
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The Sanyo Denki T511-012EL0 belongs to the Super DC Servo Motors series and provides a rated output of 110 W. It operates at a rated armature voltage of 75 V, with a rated torque of 0.34 N·m. The motor weighs 0.95 kg and features a torque constant of 0.21 N·m/A and an armature resistance of 4.8 Ohms.
Internal Product Review
This top-performance DC servo module T511-012EL0 balances its rated voltage amount with a continuous stall torque of 0.42 Nm for reliable power delivery. Providing high, reliable output aligns with actuator requirements in compact systems which supports matching with mechanical specifications, making it an ideal solution for industrial automation.
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Product Description:
The T511-012EL0, part of Sanyo Denki produced Super DC Servo Motors series, features a voltage constant of 21.8 mV/min⁻¹. This allows for precise speed-to-voltage correlation essential in accurate motion regulation. Its thermal time constant of 20 minutes enables slow heat accumulation, ensuring reliable thermal performance during continuous operation. With an armature resistance of 4.8 Ω, the motor limits current consumption in a controlled manner, simplifying thermal and power system design.
Operating at a rated armature voltage of 75 V, this servo drive integrates easily with standard DC supply configurations. A rated speed of 3000 rpm positions well for moderate-speed motion applications. Drawing a rated current of 2.0 A, it delivers consistent torque, simplifying mechanical load alignment. In addition, its rated torque of 0.34 Nm supports general-purpose torque demands. In stall conditions, it draws 2.1 A, thus helping prevent excessive thermal buildup during temporary halts. The torque constant of 0.21 N·m/A ensures torque scales linearly with current, boosting responsiveness during tuning.
Further, the device delivers 0.42 N·m of continuous stall torque, supporting extended high-load performance. With a rated power output of 110 W, it aligns with the operational needs of compact actuators. A thermal resistance of 2.4 K/W>. allows for effective heat dissipation which contributes to sustaining thermal balance. Peak speed of 5000 rpm supports quick accelerative maneuvers. Featuring armature <<2.4 mH inductance moderates current rise times, aiding in maintaining closed-loop control stability. Efficiency tests show a peak of 85% at 100 W output, making it a power-efficient solution. The low rotor inertia of 0.00008 kg·m² promotes rapid dynamic response in fast-moving applications.