Company profile

John R. Scannell
Incorporated in
Fiscal year end
Former names
Moog Inc
IRS number

MOG.A stock data



12 Nov 19
11 Dec 19
28 Sep 20


Company financial data Financial data

Quarter (USD) Sep 19 Jun 19 Mar 19 Dec 18
Revenue 765.21M 740.97M 718.81M 679.68M
Net income 45.86M 47.47M 42.36M 44.07M
Diluted EPS 1.31 1.35 1.2 1.25
Net profit margin 5.99% 6.41% 5.89% 6.48%
Operating income 79.8M 84.11M 79.38M
Net change in cash 657K -14.83M
Cash on hand 89.7M 89.05M 110.76M
Cost of revenue 558.2M 529.05M 480.17M
Annual (USD) Sep 19 Sep 14
Revenue 2.9B 2.65B
Net income 179.75M 158.2M
Diluted EPS 5.11 3.52
Net profit margin 6.19% 5.97%
Operating income 321.14M 275.72M
Net change in cash -141.59M
Cash on hand 89.7M 231.29M
Cost of revenue 2.09B 1.85B

Financial data from Moog earnings reports

Financial report summary

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Gearbox torque measurement system
12 Nov 19
A torque transmission apparatus incorporates a differential gear system and a stationary sensor connected to the differential gear system for measuring output torque.
Superconducting devices, such as slip-rings and homopolar motors/generators
15 Oct 19
A device (i.e., a slip-ring or a homopolar motor/generator) (40, 50, 80) is adapted to provide electrical contact between a stator and a rotor (41, 83), and includes: a current-carrying brush-spring (31, 84) mounted on the stator, and having two opposite surfaces; a fibrous brush assembly (35, 69) mounted on the conductor, the brush assembly having a bundle of fibers (36, 71) arranged such that the tips of the fibers will engage the rotor for transferring electrical current between the stator and rotor; a ribbon (33, 85) of superconducting material mounted on each opposite surface of the current-carrying brush-spring and communicating with the stator and the brush assembly; and another ribbon (29, 86) of superconducting material mounted on the rotor.
Position sensor assembly
8 Oct 19
A position sensor assembly comprising (15) a housing (16) having a least one inner cavity, a stator (22) disposed within the housing, a moving element (23) disposed within the housing and configured and arranged to move relative to the stator (22), the stator comprising primary windings (24) and secondary windings (25, 26), the secondary windings configured and arranged to provide an output signal (27) as a function of movement of the moving element (23) relative to the stator (22), electronics (28) disposed in the housing and communicating with the primary windings (24) and the secondary windings (25, 26), the electronics comprising an integrated circuit (29) configured and arranged to provide excitation of the primary windings (24) and to demodulate the output signal (27) of the secondary windings (25, 26), and an input element (35) extending through the housing (16) and connected to the moving element (23).