IP Library › Granted Patent US 8,134,262
Granted Patent B2
US 8,134,262 · App. 12/457,509 · Granted Mar 13, 2012

Kit servomotor

Assignee: Sick Stegmann GmbH
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Quick Facts
Patent No.
US 8,134,262
App. No.
12/457,509
Granted
Mar 13, 2012
Kind
B2
Abstract

A kit servomotor consists of an electromotor and a rotary encoder. The electromotor has a motor stator ( 3, 8 ) and a rotor ( 1 ), which is positioned in unsupported fashion in the motor stator. The motor stator ( 3, 8 ) and the rotor ( 1 ) can be installed on the output end. The rotor ( 1 ) is designed as a hollow shaft, at least on its end opposite the end used for installation. The rotary encoder is attached to the electromotor on the end opposite the installation end and has a stator unit ( 4 ) and an encoder shaft ( 5 ). The stator unit ( 4 ) is connected to the motor stator ( 3, 8 ). The encoder shaft 5 is connected to the rotor ( 1 ) using a coupling that is isogonal with respect to the angle of rotation, but elastic in the radial and axial directions. At its motor end, which is coaxial to the hollow shaft of the rotor ( 1 ), the encoder shaft ( 5 ) has an outer diameter that is smaller than the inner diameter of the hollow shaft. The coupling is axially flat in design and bridges the annular gap between the outer diameter of the encoder shaft ( 5 ) and the inner diameter of the hollow shaft of the rotor ( 1 ).

Claims (30)

1. A kit servomotor, consisting of an electromotor and a rotary encoder, where the electromotor has a motor stator ( 3 , 8 ) and a rotor ( 1 ), which is positioned in unsupported fashion in the motor stator; where the motor stator ( 3 , 8 ) and the rotor ( 1 ) can be installed on the output end; where the rotor ( 1 ) is designed as a hollow shaft, at least on its end ( 9 ) opposite the end used for installation; where the rotary encoder is attached to the electromotor at the end opposite the installation end ( 9 ) and has a stator unit ( 4 ) and an encoder shaft ( 5 ); where the stator unit ( 4 ) is firmly connected to the motor stator ( 3 , 8 ); and where the encoder shaft ( 5 ) is connected to the rotor ( 1 ) using a coupling that is isogonal with respect to the angle of rotation, but elastic in the radial and axial directions,

wherein

the encoder shaft ( 5 ), at its motor end, which is coaxial to the hollow shaft of the rotor ( 1 ), has an outer diameter that is smaller than the inner diameter of the hollow shaft, and the coupling is axially flat in design and bridges the annular gap between the outer diameter of the encoder shaft ( 5 ) and the inner diameter of the hollow shaft.

2. Kit servomotor according to claim 1 ,

wherein

the coupling has a circumferential element ( 11 ) to secure it to the hollow shaft of the rotor ( 1 ) and a hub element ( 7 ) to secure it to the encoder shaft ( 5 ).

3. Kit servomotor according to claim 2 ,

wherein

the circumferential element ( 11 ) is a circular disk, which can be secured to the terminal face of the hollow shaft.

4. Kit servomotor according to claim 2 ,

wherein

the hub element ( 7 ) is secured to the motor end of the encoder shaft ( 5 ).

5. Kit servomotor according to claim 4 ,

wherein

the hub element ( 7 ) and the end of the encoder shaft ( 5 ) interlock using axially centric conical surfaces.

6. Kit servomotor according to claim 1 ,

wherein

the coupling has an elastic diaphragm ( 6 ).

7. Kit servomotor according to claim 6 ,

wherein

the diaphragm ( 6 ) consists of a rubber-elastic material.

8. Kit servomotor according to claim 6 ,

wherein

the diaphragm ( 6 ) is corrugated in concentric fashion.

9. Kit servomotor according to claim 1 ,

wherein

the coupling has spring elements made of springy elastic sheet metal.

10. Kit servomotor according to claim 1 ,

wherein

the spring elements have radial spring strips.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2009
From: SIRAKY, JOSEF
To: SICK STEGMANN GMBH
Reel/Frame 022880/0724 →
Priority Claims (1)
EP 08011128 · Jun 19, 2008 · regional
Continuity (1)
Related Publication 20090315433A1 · Dec 24, 2009