Description
Emerson IS561410N
Technical Specifications
- Motor Type: Permanent magnet synchronous AC servo motor
- Encoder: Built‑in high‑resolution position encoder
- Operating Ambient Temperature: 0℃ ~ 40℃
- Storage Temperature: -20℃ ~ 80℃
- Relative Humidity: 5% ~ 90%, non‑condensing
- Protection Grade: IP65
- Mounting Form: Flange mounting
- Bearing structure supports continuous high‑speed rotation
Functional Features Permanent magnet rotor structure realizes high torque density and fast dynamic response.
Built‑in high‑resolution encoder feeds back rotor angle and speed signal to servo drive for closed‑loop motion control.
Low torque ripple design ensures smooth rotation under low‑speed working condition.
High‑strength motor housing protects internal stator winding and rotor assembly.
Standard flange mounting structure supports convenient installation on automation machinery.
Built‑in temperature sensor monitors winding temperature and provides overheat protection signal.
Application Scenarios Packaging machines, textile machinery, printing equipment, robotic actuators and material handling automation equipment.
It provides precise rotary motion and positioning control for mechanical transmission structure.
Performance Parameters Motor maintains stable torque output within rated speed range.
Encoder delivers accurate position feedback signal for closed‑loop control.
Stator winding keeps stable insulation performance under continuous operation.
Motor bearing supports long‑time continuous rotation under rated load.
Temperature sensor accurately monitors winding temperature change.
Material Composition Cast aluminum alloy motor housing.
Copper enameled wire for stator winding.
High‑performance rare earth permanent magnet for rotor.
High‑precision ball bearing assembly.
Glass scale encoder component.
Sealing rubber rings for shaft and cable port.
Structural Features Flange mounting structure at front end of motor housing.
Rotary output shaft with keyway for mechanical load connection.
Built‑in encoder installed at rear end of motor.
Cable connector ports for power cable and encoder signal cable.
Internal sealing structure ensures IP65 protection grade.
Heat dissipation rib on housing surface accelerates heat dissipation.
Working Principle Servo drive outputs three‑phase alternating current to stator winding of servo motor.
Stator winding generates rotating magnetic field to drive permanent magnet rotor to rotate.
Built‑in encoder detects rotor real‑time position and speed and feeds back signal to servo drive.
Servo drive adjusts output current and frequency continuously according to position deviation to realize precise speed and position closed‑loop control.
Built‑in temperature sensor detects winding temperature and transmits temperature signal to servo drive for overheat protection.
Installation Requirements Fix motor flange on rigid mechanical mounting base and tighten mounting bolts to specified torque.
Align motor output shaft with mechanical load shaft and adopt flexible coupling for connection.
Use shielded servo power cable and shielded encoder cable, separate from high‑power cables.
Install motor in well‑ventilated position to guarantee heat dissipation.
Complete motor parameter configuration and origin calibration in servo drive after installation.
Precautions for Use Do not apply axial impact load to motor shaft during installation.
Check cable connector tightness regularly to prevent loose contact.
Do not exceed rated speed and rated torque range during operation.
Keep motor surface clean without oil dust accumulation.
Do not disassemble motor housing, internal encoder and winding cannot be maintained on site.




