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公开(公告)号:US20200036243A1
公开(公告)日:2020-01-30
申请号:US16522306
申请日:2019-07-25
Applicant: Moog Inc.
Inventor: Steve Zong-Ping Zhao
IPC: H02K1/22
Abstract: A claw-pole motor comprising a non-magnetic rotary shaft having a longitudinal axis, a plurality of flux concentrators extending along the longitudinal axis of the rotary shaft, and a plurality of magnetic claw poles extending along the longitudinal axis of the rotary shaft, each of the plurality of flux concentrators alternating with each of the magnetic claw poles about the rotary shaft, and a stator having a plurality of coil assemblies, each coil assembly including a solenoid coil and an enclosure having a upper portion and lower portion, the upper portion and the lower portion of the enclosure having alternating stator teeth about the longitudinal axis.
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公开(公告)号:US20190192773A1
公开(公告)日:2019-06-27
申请号:US16098895
申请日:2017-05-17
Applicant: Moog Inc.
Inventor: Nate PIERCE , Larry CLAYTON , Timothy RILEY
CPC classification number: A61M5/16886 , A61B5/15 , A61B5/15003 , A61B5/150946 , A61M1/3626 , A61M5/142 , A61M5/168 , A61M37/00 , A61M39/08 , A61M2039/082 , A61M2205/33
Abstract: A multi-lumen sensing system (10) includes medical tubing (20) having a plurality of lumens (22A, 22B) and at least one secondary passageway (24) extending in an axial direction of the medical tubing, wherein the secondary passageway is between the plurality of lumens. The multi-lumen sensing system may include a sensing receptacle (30) defining a channel (32) in which a lengthwise portion of the medical tubing is received. A plurality of ultrasonic transmitting elements (40T, 42T) may be arranged within the secondary passageway of the medical tubing or as part of the sensing receptacle for transmitting respective ultrasonic signals across the lumens to a corresponding plurality of ultrasonic receiving elements (40R, 42R) of the sensing receptacle. Alternatively, the sensing receptacle may include a plurality of ultrasonic transmitting and receiving elements (40, 42, 44) transmitting respective signals across the lumens for return reflection at an interface of the secondary passageway.
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公开(公告)号:US10308355B2
公开(公告)日:2019-06-04
申请号:US15212978
申请日:2016-07-18
Applicant: Moog Inc.
Inventor: Arturo M. Arce
Abstract: An improved vibration control actuation system for a rotary-wing aircraft having a plurality of rotor blades mounted to a rotor hub and driven about a central axis of rotation at an operational speed and in a rotational direction relative to a non-rotating body of the aircraft comprising a vibration control frame adapted to be mounted to the hub and to rotate relative to the hub about the central axis in a rotational direction opposite to the rotational direction of the hub, a frame motor configured to rotate the frame about the central axis, the frame supporting first and second motors configured to rotate first and second masses about first and second axes not concentric with the central axis, and a controller for receiving input signals and outputting command signals to the first and second motors.
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公开(公告)号:US10113565B2
公开(公告)日:2018-10-30
申请号:US15312123
申请日:2015-06-02
Applicant: Moog Inc.
Inventor: John Kopp
Abstract: An actuator synchronization system comprising a control valve in fluid communication with a plurality of actuators; each of the actuators comprising an input member moveable by the control valve, a main valve moveable from a null to an off-null position, an output member moveable from a first to a second output position, and a feedback linkage and a drive link configured such that selective movement of the input member causes movement of the valve from the null to the off-null position and movement of the output member to the second output position causes movement of the valve member from the off-null to the null position; and a mechanical connector between each of the input members or drive links of the actuators configured such that rotational motion of each of the respective drive links is synchronized.
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公开(公告)号:US10033074B2
公开(公告)日:2018-07-24
申请号:US15101993
申请日:2014-12-09
Applicant: Moog Inc.
Inventor: Donnie S. Coleman
Abstract: The present invention provides improved non-contacting rotary joints for the transmission of electrical signals across an interface defined between two relatively-movable members. The improved non-contacting rotary joints broadly include: a signal source (A) operatively arranged to provide a high-speed digital data output signal; a controlled-impedance differential transmission line (C) having a source gap (D) and a termination gap (E); a power divider (B) operatively arranged to receive the high-speed digital data output signal from the signal source, and to supply it to the source gap of the controlled-impedance differential line; a near-field probe (G) arranged in spaced relation to the transmission line for receiving a signal transmitted across the interface; and receiving electronics (H) operatively arranged to receive the signal received by the probe; and wherein the rotary joint exhibits an ultra-wide bandwidth frequency response capability up to 40 GHz.
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公开(公告)号:US20180195373A1
公开(公告)日:2018-07-12
申请号:US15741958
申请日:2016-06-29
Applicant: Moog Inc.
Inventor: Frank Bell , David P. Cardamone , Inderjit Singh , Mark Santacesaria , Daniel J. Halloran , Jonathan Roberts
IPC: E21B43/12 , E21B47/06 , E21B47/00 , F04B17/03 , F04B47/06 , F04B51/00 , F04B49/06 , H02K5/132 , H02K5/22 , H02K7/14 , H02K11/215 , H02K11/25
CPC classification number: E21B43/128 , E21B47/0007 , E21B47/06 , E21B47/065 , F04B17/03 , F04B47/06 , F04B49/065 , F04B51/00 , F04B2201/0201 , F04B2203/0405 , F04B2203/0406 , F04B2205/02 , F04B2205/05 , F04B2205/10 , H02K5/132 , H02K5/225 , H02K7/14 , H02K11/215 , H02K11/25
Abstract: An oil well installation (15) comprising tubing (17) arranged in a well (18), a pump (19) and actuator (20) disposed in the well, a surface controller (50) connected with the linear actuator, multiple downhole sensors (30-35) configured to sense operating parameters of the linear actuator and/or the pump, a downhole signal processor (40) configured to receive sensor data from the sensors and to output serial data, a communication cable (23) between the sensor processor and the surface controller, the communication cable having at least two paired transmission lines (25, 26), a downhole differential signal driver (41) configured to receive the serial data and to output data signals to the paired transmission lines, and a surface receiver (27) connected to the communication cable and configured to receive the signals from the differential signal driver via the paired transmission lines.
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公开(公告)号:US09981543B2
公开(公告)日:2018-05-29
申请号:US15510716
申请日:2015-09-17
Applicant: MOOG INC.
Inventor: Gonzalo Rey , George L. Small
CPC classification number: B60K6/485 , B60K1/00 , B60K6/12 , B60K6/20 , B60K6/26 , B60K6/28 , B60K6/365 , B60K6/38 , B60K6/383 , B60K6/46 , B60K2006/268 , B60K2025/005 , B60K2025/022 , B60Y2200/92 , F16D7/00 , Y10S903/906 , Y10S903/907 , Y10S903/91 , Y10S903/912
Abstract: A hybrid power module efficiently delivers both hydraulic power and electric power. The hybrid power module may regenerate and store energy for later use. The module includes and engine and an electric motor for driving a hydraulic pump. The electric motor is operable as a starter motor for the engine and as an assist motor cooperating with the engine to power the hydraulic pump to improve dynamic response of the hydraulic pump. The module also includes an electric power source which may have an energy storage unit, and the electric motor may be operated as an electric generator providing electric energy to the energy storage unit.
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公开(公告)号:US09937671B2
公开(公告)日:2018-04-10
申请号:US14996922
申请日:2016-01-15
Applicant: Moog Inc.
Inventor: Lowell Van Lund Larson
IPC: B29C70/30 , B29C70/32 , B29C35/02 , B29C70/22 , B64D35/00 , F16C3/02 , B29C70/86 , B29K101/10 , B29K105/08 , B29L23/00 , B29L31/30 , B29L31/00
CPC classification number: B29C70/30 , B29C35/02 , B29C70/222 , B29C70/32 , B29C70/86 , B29K2101/10 , B29K2105/08 , B29K2105/0872 , B29K2995/0082 , B29L2023/005 , B29L2031/3076 , B29L2031/75 , B64D35/00 , F16C3/026
Abstract: A low-cost method of manufacturing an all-composite composite torque tube includes winding fiber tow around a cylindrical mandrel and a plurality of eyelet forms held by an end fixture on the mandrel, whereby a flanged end coupling is formed. The method may include the use of a pre-woven composite fiber end sleeve configured to define the flanged end coupling. The wound fiber, and the end sleeve, are cured together in a single step. Metal eyelets may be installed in the bolt holes.
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公开(公告)号:US09903700B2
公开(公告)日:2018-02-27
申请号:US14987225
申请日:2016-01-04
Applicant: Moog Inc.
Inventor: Andrew H. Smith
CPC classification number: G01B5/012 , G01B21/042 , G01D18/00
Abstract: A fixture enables a stylus extension to be angularly aligned relative to an adapter plate that mounts onto a CMM probe head. Alignment may be carried out on a flat surface remotely from the CMM. The adapter plate is mounted to the fixture, which includes an access hole providing access to adjustment screws at the rear of the adapter plate. One or more lateral extensions are connected to the stylus extension to define a calibration axis perpendicular to a probe axis of the stylus extension and perpendicular to a central axis of the adapter plate about which angular alignment is desired. Angular adjustments of the stylus extension are made while the adapter plate is mounted to the fixture, and a degree to which the calibration axis is parallel to a plane of the flat surface is detected, for example using a dial indicator engaging points on the lateral extension(s).
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公开(公告)号:US20170248251A1
公开(公告)日:2017-08-31
申请号:US15518349
申请日:2015-09-30
Applicant: Moog Inc.
Inventor: John KOPP , Christopher MAZURKIEWICZ
IPC: F16K31/42 , F16K31/08 , F16K31/04 , F15B13/043 , F15B13/044
CPC classification number: F16K31/426 , F15B13/043 , F15B13/0435 , F15B13/0444 , F16K31/047 , F16K31/082
Abstract: A servovalve (15) comprising a motor (16), a motor bias mechanism (20), a first stage valve member (22) adapted to be moved from a first position to a first off-null position, a second stage member (29) adapted to be moved from a first position to a second position with movement of the first valve member (22), a transfer link (34) acting between the first (22) and second (29) valve members, an eccentric drive member (35) acting between the motor (16) and the transfer link (34), the transfer link (34) and drive member (35) configured such that selective movement of the motor (16) causes the transfer link (34) to move the first valve member (22), movement of the first valve member (22) causes the second valve member (29) to move, and movement of the second valve member (29) causes the transfer link (34) to move the first valve member (22) from the first off-null position back to the null position.
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