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US Patent 11448487 Vibration resistant initiator assembly having exploding foil initiator

Patent 11448487 was granted and assigned to REYNOLDS SYSTEMS, INC. on September, 2022 by the United States Patent and Trademark Office.

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TimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
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REYNOLDS SYSTEMS, INC.
1
Current Assignee
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REYNOLDS SYSTEMS, INC.
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
114484871
Date of Patent
September 20, 2022
1
Patent Application Number
173958831
Date Filed
August 6, 2021
1
Patent Citations
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US Patent 11009319 Initiator assembly that is resistant to shock
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US Patent 10794670 Initiation system having plastic housing, which encapsulates an initiator, and a lid that hermetically seals the housing
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US Patent 10267604 Initiator assembly that is resistant to shock
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US Patent 10267605 High G-force resistant initiator assembly having an exploding foil initiator
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US Patent 10345084 Initiator assembly with exploding foil initiator and detonation detection switch
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US Patent 10557692 Vibration resistant initiator assembly having exploding foil initiator
1
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US Patent 10605576 Dual mode initiator system
Patent Citations Received
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US Patent 12092437 Firing circuit and related method for operating a firing circuit
11
Patent Primary Examiner
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Samir Abdosh
1
CPC Code
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F42B 3/124
1
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F42B 3/125
1

An initiator assembly that includes a housing, a base, an exploding foil initiator and an input charge assembly. The housing defines a cavity. The base coupled to the housing and closes the cavity. The exploding foil initiator is mounted to the base and has a barrel that defines an initiation axis. The input charge assembly is received in the cavity and includes a holder and an input charge. The holder has a first axial end and a second axial end that are spaced apart along the initiation axis. The first axial end is closer to an output of the barrel than the second axial end. A charge aperture is formed through the first axial end of the holder and does not extend through the second axial end of the holder. The input charge is formed of an explosive material and is received into the charge aperture.

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