L730-039E84 Sanyo Denki
Wake Industrial LLC is not an authorized distributor of this product.
The L730-039E84 servo motor is part of the Sanmotion series and has a rated power of 170 W with a rated voltage of 32 VDC. It has a no-load speed of 2600 RPM and a maximum speed of 2200 RPM. This motor features an integrated encoder and is CE certified.
Internal Product Review
The Sanyo Denki L730-039E84 servo motor stands out with its 170 W rated power and 32 VDC rated voltage. Its integrated encoder and CE certification ensure reliable automation control.
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Product Description:
The L730-039E84 servo motor offers reliable performance for automation. It provides a rated power of 170 W and operates at a rated voltage of 32 VDC. This motor reaches a no-load speed of 2600 RPM and a maximum speed of 2200 RPM for diverse operational needs. The designers constructed it to become robust, providing stable motion via its Sanmotion series via careful engineering applications, which in turn allows its compatibility for high levels of automated industrial processes. This motor ensures precise control because of its capabilities through robust operations, making it essential for numerous automated applications such as robotics and other similar disciplines. The use of high levels of operational competence is demonstrated through the motor's certifications, illustrating its ability to function well through industrial automation scenarios.
Focusing on operational features, this servo motor includes an integrated encoder for accurate feedback and control as a necessary automation tool. This encoder facilitates precise positioning and speed regulation when used through various functions. Made from metallic components, the housing is designed to withstand industrial environments. The motor is CE certified, affirming its adherence to safety and quality standards across regions, guaranteeing it through different types of use and tests. With an operating temperature that goes up to 45 degrees Celsius, it can operate well through some industrial conditions.
Suited for automation and motion control applications, the small amount of low inertia helps enable fast response times. This makes it appropriate for tasks requiring swift acceleration and deceleration through various industrial automated steps. Its design is targeted toward use through diverse applications, from basic automation to more involved uses through industrial settings.