L511T-021 Sanyo Denki
Wake Industrial LLC is not an authorized distributor of this product.
The L511T-021 servo motor delivers a rated output of 100 W, a rated voltage of 24 V DC, a rated torque of 0.32 N·m, and a maximum rotating speed of 5000 rpm. Part of the Super DC Servo Motors series by Sanyo Denki, it has a mass of 1.55 kg and features an instantaneous maximum torque of 1.9 N·m.
Internal Product Review
The L511T-021 is a powerful DC servo motor designed by Sanyo Denki under the Super L motor series. Featuring a circular motor housing, this motor has efficient thermal performance and high-speed characteristics.
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Product Description:
The L511T-021 is a compact and portable Super DC motor manufactured by Sanyo Denki under the Super L product series. Featuring a modular construction, this DC servo motor is characterized by its space-saving design and optimal shaft construction. Unlike other available DC servo motors on the market today, the L511T-021 comes with a circular motor housing, which maximizes heat dissipation during operation. With its set of screw-in mounting holes, this servo motor can easily be mounted through its flange to a mounting structure or another industrial machine.
To achieve nominal operating conditions, the L511T-021 must be connected to a voltage supply having a terminal value of 24 V. At this supply voltage, the servo motor achieves a rated power output of 100 W and draws a total current of 6.2 A. Within this rated operating range, the expected rotational speed of the shaft is around 3000 rpm. Since the shaft rotates, the rotational speed is different from the linear speed. For motors, the rotational speed is typically expressed in rpm or revolutions per minute. For typical linear motion, the unit can be expressed in centimeters per second or meters per second.
Aside from the L511T-021’s impressive motor housing and nominal output characteristics, this servo motor also features an excellent voltage constant. Based on the product’s nameplate, the voltage constant for this automation device is 7 mV per 1000 rpm. This voltage constant implies that for every 7 mV increase in the voltage supply, the shaft velocity can increase by around 1000 rpm. Although this voltage constant is a good metric for the motor’s performance, it is important to know that the motor must not be operated beyond the recommended voltage supply range.