Patents Assigned to Fenix Group, Inc.
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Publication number: 20250080404Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: ApplicationFiled: November 19, 2024Publication date: March 6, 2025Applicant: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Patent number: 12192050Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: GrantFiled: November 27, 2023Date of Patent: January 7, 2025Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Publication number: 20240195739Abstract: Disclosed is a self-contained mesh radio extension unit, comprising a receiving sleeve having an open volume and a first data connector for communicative coupling to a communication device or cellular phone inserted in the open volume. A low-gain internal antenna and a high-gain external antenna are coupled to a digital data link (DDL) with a first DDL operating frequency. The DDL provides bidirectional internet protocol (IP) connectivity between the first data connector and a peer-to-peer meshed communication network, controlling one or more of the antennae as transceivers at the first DDL operating frequency. An integrated power supply system powers the DDL and includes a rechargeable internal battery and an external power interface. A control system automatically routes IP packets received or transmitted by the DDL and includes a network address translation (NAT) router and an IP addressing service for assigning and tracking IP addresses across the peer-to-peer meshed communication network.Type: ApplicationFiled: January 12, 2024Publication date: June 13, 2024Applicant: Fenix Group, Inc.Inventors: Matthew Drapp, Stefan Schaner, Michael Wong
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Publication number: 20240188056Abstract: Disclosed is a wireless communication station including an edge server configured to establish a wireless connection with a network and receive first and second data from the network, and a baseband radio configured to receive the first and second data from the edge server and convert the first and second data to first and second digital transmission data. The wireless communication station further includes first and second radio frequency (RF) front end modules removably attached to the baseband radio and operable in first and second frequency bands, respectively, and configured to receive the first and second digital transmission data, convert the first and second digital transmission data to first and second RF transmission data, and transmit the first and second RF transmission data. The edge server, the baseband radio, and the first and second RF front end modules are provided in the housing, and the first and second frequency bands are different.Type: ApplicationFiled: January 8, 2024Publication date: June 6, 2024Applicant: Fenix Group, Inc.Inventors: David Peterson, Stefan SCHANER, Aaron HOOGLAND
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Publication number: 20240179046Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: ApplicationFiled: November 27, 2023Publication date: May 30, 2024Applicant: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Publication number: 20240179161Abstract: Disclosed are systems and methods for a robotic mobile perimeter and telecommunication network. One or more stationary ground units are associated with a perimeter protected entity and comprise a broadband cellular network core for providing a private telecommunication network, and secondary transceivers for providing a second telecommunication network. Mobile robotic units comprise a broadband cellular network node for extending the private telecommunication network, secondary transceivers, a plurality of sensors, a locomotion device, and a controller.Type: ApplicationFiled: December 11, 2023Publication date: May 30, 2024Applicant: Fenix Group, Inc.Inventors: Savanna Horan, Taylor Thomas, David Peterson, Rashmi Rogers
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Patent number: 11882129Abstract: Disclosed are systems and methods for a robotic mobile perimeter and telecommunication network. One or more stationary ground units are associated with a perimeter protected entity and comprise a broadband cellular network core for providing a private telecommunication network, and secondary transceivers for providing a second telecommunication network. Mobile robotic units comprise a broadband cellular network node for extending the private telecommunication network, secondary transceivers, a plurality of sensors, a locomotion device, and a controller.Type: GrantFiled: November 16, 2020Date of Patent: January 23, 2024Assignee: Fenix Group, Inc.Inventors: Savanna Horan, Taylor Thompson, David Peterson, Rashmi Rogers
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Patent number: 11877353Abstract: Disclosed is a self-contained mesh radio extension unit, comprising a receiving sleeve having an open volume and a first data connector for communicative coupling to a communication device or cellular phone inserted in the open volume. A low-gain internal antenna and a high-gain external antenna are coupled to a digital data link (DDL) with a first DDL operating frequency. The DDL provides bidirectional internet protocol (IP) connectivity between the first data connector and a peer-to-peer meshed communication network, controlling one or more of the antennae as transceivers at the first DDL operating frequency. An integrated power supply system powers the DDL and includes a rechargeable internal battery and an external power interface. A control system automatically routes IP packets received or transmitted by the DDL and includes a network address translation (NAT) router and an IP addressing service for assigning and tracking IP addresses across the peer-to-peer meshed communication network.Type: GrantFiled: August 11, 2021Date of Patent: January 16, 2024Assignee: Fenix Group, Inc.Inventors: Matthew Drapp, Stefan Schaner, Michael Wong
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Patent number: 11871393Abstract: Disclosed is a wireless communication station including an edge server configured to establish a wireless connection with a network and receive first and second data from the network, and a baseband radio configured to receive the first and second data from the edge server and convert the first and second data to first and second digital transmission data. The wireless communication station further includes first and second radio frequency (RF) front end modules removably attached to the baseband radio and operable in first and second frequency bands, respectively, and configured to receive the first and second digital transmission data, convert the first and second digital transmission data to first and second RF transmission data, and transmit the first and second RF transmission data. The edge server, the baseband radio, and the first and second RF front end modules are provided in the housing, and the first and second frequency bands are different.Type: GrantFiled: December 9, 2022Date of Patent: January 9, 2024Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Aaron Hoogland
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Patent number: 11870640Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: GrantFiled: November 21, 2022Date of Patent: January 9, 2024Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Publication number: 20230397300Abstract: Disclosed is a self-contained mesh radio extension unit, comprising a receiving sleeve having an open volume and a first data connector for communicative coupling to a communication device or cellular phone inserted in the open volume. A low-gain internal antenna and a high-gain external antenna are coupled to a digital data link (DDL) with a first DDL operating frequency. The DDL provides bidirectional internet protocol (IP) connectivity between the first data connector and a peer-to-peer meshed communication network, controlling one or more of the antennae as transceivers at the first DDL operating frequency. An integrated power supply system powers the DDL and includes a rechargeable internal battery and an external power interface. A control system automatically routes IP packets received or transmitted by the DDL and includes a network address translation (NAT) router and an IP addressing service for assigning and tracking IP addresses across the peer-to-peer meshed communication network.Type: ApplicationFiled: August 11, 2021Publication date: December 7, 2023Applicant: Fenix Group, Inc.Inventors: Matthew Drapp, Stefan Schaner
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Publication number: 20230179470Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: ApplicationFiled: November 21, 2022Publication date: June 8, 2023Applicant: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Patent number: 11646966Abstract: Disclosed is a self-contained mesh radio extension unit, comprising a receiving sleeve having an open volume and a first data connector for communicative coupling to a communication device or cellular phone inserted in the open volume. A low-gain internal antenna and a high-gain external antenna are coupled to a digital data link (DDL) with a first DDL operating frequency. The DDL provides bidirectional internet protocol (IP) connectivity between the first data connector and a peer-to-peer meshed communication network, controlling one or more of the antennae as transceivers at the first DDL operating frequency. An integrated power supply system powers the DDL and includes a rechargeable internal battery and an external power interface. A control system automatically routes IP packets received or transmitted by the DDL and includes a network address translation (NAT) router and an IP addressing service for assigning and tracking IP addresses across the peer-to-peer meshed communication network.Type: GrantFiled: February 26, 2021Date of Patent: May 9, 2023Assignee: Fenix Group, Inc.Inventors: Matthew Drapp, Stefan Schaner
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Patent number: 11614307Abstract: Systems and methods for deploying smart munitions may provide targeting metadata generated by surveillance networks to munitions deployment and guidance systems for smart munitions. Targeting metadata may be received by a conduit system and automatically processed to generate guidance and deployment data actionable by a munitions deployment platform.Type: GrantFiled: June 3, 2021Date of Patent: March 28, 2023Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner
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Patent number: 11601330Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: GrantFiled: August 11, 2021Date of Patent: March 7, 2023Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Patent number: 11533724Abstract: Disclosed is a wireless communication station including an edge server configured to establish a wireless connection with a network and receive first and second data from the network, and a baseband radio configured to receive the first and second data from the edge server and convert the first and second data to first and second digital transmission data. The wireless communication station further includes first and second radio frequency (RF) front end modules removably attached to the baseband radio and operable in first and second frequency bands, respectively, and configured to receive the first and second digital transmission data, convert the first and second digital transmission data to first and second RF transmission data, and transmit the first and second RF transmission data. The edge server, the baseband radio, and the first and second RF front end modules are provided in the housing, and the first and second frequency bands are different.Type: GrantFiled: March 1, 2020Date of Patent: December 20, 2022Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Aaron Hoogland
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Patent number: 11509521Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: GrantFiled: November 9, 2020Date of Patent: November 22, 2022Assignee: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Publication number: 20220278929Abstract: Disclosed is a self-contained mesh radio extension unit, comprising a receiving sleeve having an open volume and a first data connector for communicative coupling to a communication device or cellular phone inserted in the open volume. A low-gain internal antenna and a high-gain external antenna are coupled to a digital data link (DDL) with a first DDL operating frequency. The DDL provides bidirectional internet protocol (IP) connectivity between the first data connector and a peer-to-peer meshed communication network, controlling one or more of the antennae as transceivers at the first DDL operating frequency. An integrated power supply system powers the DDL and includes a rechargeable internal battery and an external power interface. A control system automatically routes IP packets received or transmitted by the DDL and includes a network address translation (NAT) router and an IP addressing service for assigning and tracking IP addresses across the peer-to-peer meshed communication network.Type: ApplicationFiled: February 26, 2021Publication date: September 1, 2022Applicant: Fenix Group, Inc.Inventors: Matthew Drapp, Stefan Schaner
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Publication number: 20220224594Abstract: Disclosed are systems and methods for a self-contained multi-modal communication system. The multi-modal communication system comprises a first mobile telecommunication node, which provides a private telecommunication network, a layer 2 (L2) backhaul wireless transceiver, an ethernet switch and an embedded edge cloud compute device. The edge cloud compute device includes an automatic failover detection system, wherein the automatic failover detection system receives as input a plurality of network parameters and automatically performs failover and communication modality switching for one or more communication devices associated with the self-contained multi-modal communication system.Type: ApplicationFiled: August 11, 2021Publication date: July 14, 2022Applicant: Fenix Group, Inc.Inventors: David Peterson, Stefan Schaner, Taylor Thompson, Bryan Coxwell, Aaron Hoogland
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Publication number: 20220021688Abstract: Disclosed are systems and methods for a robotic mobile perimeter and telecommunication network. One or more stationary ground units are associated with a perimeter protected entity and comprise a broadband cellular network core for providing a private telecommunication network, and secondary transceivers for providing a second telecommunication network. Mobile robotic units comprise a broadband cellular network node for extending the private telecommunication network, secondary transceivers, a plurality of sensors, a locomotion device, and a controller.Type: ApplicationFiled: November 16, 2020Publication date: January 20, 2022Applicant: Fenix Group, Inc.Inventors: Savanna Horan, Taylor Thompson, David Peterson, Rashmi Rogers