MAC041C-0-TS-4-E/050-B-0/WI651LV
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The Bosch Rexroth Indramat MAC041C-0-TS-4-E/050-B-0/WI651LV Servo Motor ensures precise motion control in demanding automation applications. It features a 21ms acceleration time, 19ms deceleration, and a compact design for easy integration. Equipped with an incremental encoder, it guarantees reliable motion synchronization.
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Product Description:
The industrial automation solutions brand Bosch Rexroth maintains a reputation as an authentic manufacturer worldwide. The company makes high-performance servo motors to provide precision control together with efficiency benefits. The MAC041C-0-TS-4-E/050-B-0/WI651LV Servo Motor satisfies requirements for demanding applications. This electrical motion system delivers precise positioning control to automation platforms.
The MAC041C-0-TS-4-E/050-B-0/WI651LV servo motor functions without requiring a holding brake to maintain its operation. The power connection is located on connector side B. The cable management system achieves its best functionality by placing components at this specific spot. A built-in incremental encoder component is present in the motor system. The encoder functions according to conventional installation parameters for universal compatibility use. This servo motor achieves acceleration operations in 21 milliseconds. The device provides instant reaction when used for quick-speed operations. The rotor part of the system exhibits a moment of inertia that measures 1.9 kgcm². The product design enables high stability in its rotational behavior across different operational loads. The motor's deceleration time measures 19 milliseconds. Using the incremental encoder provides efficient stopping capabilities while enabling fast movement between positions in motion systems. The engineering team devised the MAC041C-0-TS-4-E/050-B-0/WI651LV servo motor for optimal efficiency performance. A high torque-producing engine operates with small energy requirements. The motor's synchronous operation mode maintains reliable performance for automation systems under all operating conditions. This small form factor makes it possible to integrate controlled mechanisms within limited installation areas.
The Bosch MAC Servo Motor performs without disruptions within industrial areas. The device enables dynamic performance that provides sharp acceleration together with precise deceleration abilities. The MAC041C-0-TS-4-E/050-B-0/WI651LV servo motor fulfills all requirements for industrial automation systems. The motor achieves better operational reliability through its integration of an incremental encoder and efficient powering system.
Frequently Asked Questions about MAC041C-0-TS-4-E/050-B-0/WI651LV:
Q: What is the advantage of the MAC041C-0-TS-4-E/050-B-0/WI651LV servo motor’s absence of a holding brake?
A: The absence of a holding brake in the MAC041C-0-TS-4-E/050-B-0/WI651LV allows for continuous, uninterrupted motion, ideal for high-speed applications that require constant rotation.
Q: How does the incremental encoder in the MAC041C-0-TS-4-E/050-B-0/WI651LV servo motor improve performance?
A: The incremental encoder enhances feedback accuracy, improving motion synchronization and precise control within automation systems, ensuring reliable operation in various industrial environments.
Q: Why does the MAC041C-0-TS-4-E/050-B-0/WI651LV have a 21-millisecond acceleration time?
A: The 21-millisecond acceleration time of the MAC041C-0-TS-4-E/050-B-0/WI651LV motor ensures fast response and quick transitions, making it ideal for high-speed applications and precise motion control.
Q: How does the 19-millisecond deceleration time of the MAC041C-0-TS-4-E/050-B-0/WI651LV motor benefit its operation?
A: The 19-millisecond deceleration time allows for controlled stopping and quick reversals, ensuring reliable motion control and preventing overshooting or delays in automated systems.
Q: How does the MAC041C-0-TS-4-E/050-B-0/WI651LV’s compact design benefit integration in automation systems?
A: The compact design of the MAC041C-0-TS-4-E/050-B-0/WI651LV motor allows for seamless integration into systems with limited space while maintaining high performance in dynamic motion control tasks.