IP Library Granted Patent US 12,592,616
Granted Patent B1
US 12,592,616 · App. 18/783,909 · Granted Mar 31, 2026

Servo actuator with electromagnetic interference shielding

Inventors: Richard Anger (Costa Mesa, CA); Jason Flahie (Costa Mesa, CA); Riley Evers (Costa Mesa, CA); Michael Auda (Costa Mesa, CA); Mehran Ahmadi (Costa Mesa, CA); Hamza Abdul-Ghani (Costa Mesa, CA); Derek Goss (Costa Mesa, CA); Timothy Medina (Costa Mesa, CA); Serge Ossipian (Costa Mesa, CA); Richard David Young (Costa Mesa, CA)
Assignee: Anduril Industries, Inc.
H02K11/02F16H19/08F16H49/001F16H57/029H02K5/06H02K7/083H02K7/116H02K11/215B64C13/50B64U40/10F16H2057/02034F16H2057/02082H02K2211/03
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Quick Facts
Patent No.
US 12,592,616
App. No.
18/783,909
Granted
Mar 31, 2026
Kind
B1
Abstract

A servo actuator comprising an EMI seal positioned between the output shaft and the housing. The EMI seal forms a ring around the output shaft and comprises a plurality of finger springs intermittently positioned around the ring. The finger springs are formed from an electrically conductive material such as beryllium copper.

Claims (40)

1 . A servo actuator comprising:

a housing having a plurality of exterior surfaces defining a cavity, one of the plurality of exterior surfaces defining an opening, the opening having an interior surface extending into the cavity of the housing in a direction orthogonal to the one of the plurality of exterior surfaces;

a motor mounted within the cavity of the housing, the motor having a drive shaft;

a geartrain operatively coupled to the drive shaft, the geartrain having an output shaft positioned in the opening of the housing;

a sensor configured to monitor a position of the output shaft;

one or more control boards electrically connected to the motor and the sensor; and

a sealing ring positioned between the output shaft and the interior surface of the opening, wherein the sealing ring comprises an electrically conductive material and is configured and positioned to fill a gap between the output shaft and the interior surface of the opening, and wherein the sealing ring is configured to provide shielding from electromagnetic interference.

2 . The servo actuator of claim 1 , further comprising a cross roller bearing operatively coupling the output shaft and the interior surface of the opening.

3 . The servo actuator of claim 1 , wherein the sealing ring is a ring comprising at least one spring.

4 . The servo actuator of claim 1 , wherein the sealing ring is radially flexible.

5 . The servo actuator of claim 1 , wherein the sealing ring comprises a plurality of finger springs.

6 . The servo actuator of claim 5 , wherein the plurality of finger springs are made of beryllium copper.

7 . The servo actuator of claim 1 , wherein the sealing ring is secured between the output shaft and the interior surface of the opening with electroconductive epoxy.

8 . The servo actuator of claim 1 , wherein the housing is formed of an electrically conductive material, wherein the housing comprises aluminum, wherein the sensor is an encoder, wherein a width of the output shaft of the geartrain is greater than a length of the output shaft of the geartrain, wherein the drive shaft and the output shaft are coaxial, and wherein the geartrain is a strain wave drive.

9 . A servo actuator comprising:

a housing having a plurality of exterior surfaces defining a first cavity and a second cavity, at least one of the plurality of exterior surfaces defining an opening, the opening having an interior surface extending into the first cavity of the housing in a direction orthogonal to the one of the plurality of exterior surfaces;

a motor mounted within the first cavity of the housing, the motor having a drive shaft;

a strain wave drive mounted within the first cavity of the housing and operatively coupled to the drive shaft at an anterior end, the strain wave drive having an output shaft positioned within the opening of the housing;

a sensor mounted within the first cavity of the housing and configured to monitor an angular position of the output shaft;

a servo driver controller board mounted within the second cavity of the housing and electrically connected to the motor and the sensor;

a servo driver power board mounted in parallel relative to the servo driver controller board within the second cavity of the housing and electrically connected to the servo driver controller board; and

a sealing ring positioned between the output shaft and the interior surface of the opening;

wherein the sealing ring is formed of an electrically conductive material; and

wherein the sealing ring is configured to provide shielding from electromagnetic interference.

10 . The servo actuator of claim 9 , further comprising a cross roller bearing operatively coupling the output shaft and the interior surface of the opening.

11 . The servo actuator of claim 9 , wherein a width of the output shaft of the strain wave drive is greater than a length of the output shaft of the strain wave drive.

12 . The servo actuator of claim 9 , wherein a posterior face of the output shaft is coplanar with a face of the housing.

13 . The servo actuator of claim 9 , wherein the drive shaft and the output shaft are coaxial.

14 . The servo actuator of claim 9 , wherein the sensor is an encoder ring positioned at the anterior end of the strain wave drive.

15 . The servo actuator of claim 9 , wherein the servo actuator has a rotational range from −90 degrees to +90 degrees.

16 . The servo actuator of claim 9 , wherein the servo actuator has a max rotational velocity of more than 160 degrees per second during use.

17 . The servo actuator of claim 9 , wherein the servo actuator has a rotational acceleration of at least 2,000 degrees per second squared and an RMS acceleration of at least 400 degrees per second squared that is maintainable for an operational time of at least twenty-five minutes under a load of up to 33 Newton-meters or more of applied torque during use.

18 . A servo actuator comprising:

a housing having a plurality of exterior surfaces defining a cavity, at least one of the plurality of exterior surfaces defining an opening;

a motor mounted within the cavity of the housing, the motor having a drive shaft;

an output shaft operatively coupled to the drive shaft and positioned within the opening of the housing; and

a sealing ring positioned between the output shaft and an interior surface of the opening;

wherein the housing and the sealing ring are formed of an electrically conductive material; and

wherein the sealing ring is configured to provide shielding from electromagnetic interference.

19 . The servo actuator of claim 18 , wherein the sealing ring is secured between the output shaft and the housing with electroconductive epoxy.

Continuity (1)
Provisional Application 63516795 · Jul 31, 2023
References Cited (9)
US 9616998B2 · Oakley et al. · 2017 [cited by applicant]
US 10057663B2 · Sobanski et al. · 2018 [cited by applicant]
US 10368401B2 · Wen et al. · 2019 [cited by applicant]
US 20120286629A1 · Johnson · 2012 [cited by examiner]
US 20230144408A1 · Thompson · 2023 [cited by examiner]
CA 2938948A1 · 2014 [cited by examiner]
CH 698177B1 · 2009 [cited by examiner]
KR 101856819B1 · 2018 [cited by applicant]
WO WO2007082594A2 · 2007 [cited by examiner]