103H6704-5040 Sanyo Denki
Wake Industrial LLC is not an authorized distributor of this product.
The 103H6704-5040 stepper motor boasts a holding torque of 0.52 N·m, a rated current of 2 A per phase, a winding inductance of 3.8 mH per phase, and a motor mass of 0.55 kilograms. Part of the StepSyn Stepping Motors series by Sanyo Denki, it features a source voltage of 24 VDC and a compact length of 55.8 millimeters.
Internal Product Review
The 103H6704-5040 is a small stepping motor with a length of 55.8 mm and a mass of 0.55 kilogram. Sanyo Denki's StepSyn Stepping Motors have a holding torque of 0.52 N·m. This motor uses a supply voltage of 24 VDC.
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Product Description:
A Sanyo Denki 103H6704-5040 stepper motor from the StepSyn Stepping Motors Series, is a strikingly compact solution for advanced precision motion control bearing applications. Sanyo Denki 103H6704-5040’s compact dimensions magnify its capabilities as a motor with a length of 55.8 mm (millimeters) and mass of 0.55 kg (kilograms). The 103H6704-5040 stepper motor is ideal for high-precision, low-repetitive tasks due to its bipolar winding configuration – an industrial design choice that maximizes efficiency and torque.
In addition, the 103H6704-5040 motor’s IP65 rating protection class ensures reliability in industrial environments as it is safeguarded from water and particle ingress. The motor's construction details are provided in Figure 3 (User Manual). The construction details might be required where space is limited and slight adjustments need to be made. Both flange and end cap are of the aligned inner radius type meaning they are put together and are bound to the stator as the inner radius serves as a standard. The circular center now transformed into square features no dwelling. The rotor collar designed for use with motors 127 mm (millimeters) long is uniquely engineered to reduce inertia to improve overall performance in devices with 96.5 mm (millimeters).
Fig. 4 (User Manual) depicts the motor components and shows the construction of the stator. The same standard items for a given size are used, so the lead connection plate method was used for the lead connection. Unlike, the lead wires that are associated with the new motor are routed under the connection plate so that the finishing works can be performed after the lead connection has been done.