Panasonic MINAS A6 MSMF502L1H5 Servo Motor
Unlock unparalleled precision and performance with the Panasonic MINAS A6 MSMF502L1H5 Servo Motor. Engineered to meet the rigorous demands of advanced industrial applications, this servo motor combines cutting-edge technology with robust design to deliver exceptional torque, speed, and efficiency.
Key Features:
Technical Specifications:
Applications:
The Panasonic MINAS A6 MSMF502L1H5 Servo Motor is ideal for various applications including robotics, CNC machinery, packaging systems, and automation equipment. Its high precision and reliability make it a valuable component in both new designs and retrofit projects.
Why Choose Panasonic MINAS A6 MSMF502L1H5?
Panasonic’s MINAS A6 series is renowned for its superior performance and innovative features. The MSMF502L1H5 model stands out for its robust construction, advanced technology, and exceptional precision, making it an excellent choice for demanding industrial environments.
Contact Us:
For more information about the Panasonic MINAS A6 MSMF502L1H5 Servo Motor or to discuss your specific requirements, please contact our sales team. Discover how this advanced servo motor can enhance your operations with its state-of-the-art technology and reliability.
Item | Specifications |
---|---|
Part Number | MSMF502L1H5 |
Details | Low inertia, Connector type |
Family Name | MINAS A6 |
Series | MSMF Series |
Type | Low inertia |
Enclosure | IP67 |
About Enclosure | Except rotating portion of output shaft and connecting pin part of the motor connector and the encoder connector. |
Environmental Conditions | For more details, please refer to the instruction manual. |
Flange sq. dimension | 130 mm sq. |
Flange sq. dimension (Unit:mm) | 130 |
Motor lead-out configuration | Connector |
Motor encoder connector | Motor connector: JL10, Encoder connector: Small size JN2 |
Power supply capacity (kVA) | 7.8 |
Voltage specifications | 200 V |
Rated output | 5000 W |
Rated current (A (rms)) | 24.0 |
Holding brake | with |
Mass (kg) | 16.1 |
Oil seal | with |
Shaft | Key-way |
Rated torque (N ⋅ m) | 15.9 |
Continuous stall torque (N ⋅ m) | 19.1 |
Momentary Max. peak torque (N ⋅ m) | 47.7 |
Max. current (A (o-p)) | 102 |
Regenerative brake frequency (times/min) | Without option :No limit With option :No limit Option (External regenerative resistor) Part No. : DV0P4285 x 2 in parallel |
About regenerative brake frequency | Please refer to the details of [Motor Specification Description] , Note: 1, and 2. |
Rated rotational speed (r/min) | 3000 |
Rated rotational Max. speed (r/min) | 4500 |
Moment of inertia of rotor ( x10-4 kg ⋅ m²) | 20.2 |
Recommended moment of inertia ratio of the load and the rotor | 15 times or less |
About recommended moment of inertia ratio of the load and the rotor | Please refer to the details of [Motor Specification Description] ,Note: 3. |
Rotary encoder: specifications | 23-bit Absolute/Incremental system |
Notice | When using a rotary encoder as an incremental system (not using multi-turn data), do not connect a battery for absolute encoder. |
Rotary encoder: Resolution | 8388608 |
Item | Specifications |
---|---|
Static friction torque (N ⋅ m) | 22.0 or more |
Engaging time (ms) | 110 or less |
Releasing time (ms) | 50 or less |
Exciting current (DC) (A) | 0.90 ± 10 % |
Releasing voltage (DC) (V) | 2 or more |
Exciting voltage (DC) (V) | 24 ± 2.4 |
About brake specifications | This brake will be released when it is energized. Do not use this for braking the motor in motion. Please refer to the details of [Motor Specification Description] , "Specifications of Built-in Holding Brake" and "Notes on [Motor specification] page, Note: 4. |
Item | Specifications |
---|---|
During assembly: Radial load P-direction (N) | 980 |
During assembly: Thrust load A-direction (N) | 588 |
During assembly: Thrust load B-direction (N) | 686 |
During operation: Radial load P-direction (N) | 784 |
During operation: Thrust load A, B-direction (N) | 343 |
About permissible load | For details, refer to the [Motor Specification Description] "Permissible Load at Output Shaft". |
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