Biggest changeIssue Date Expiration Date DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,804 9/955,404 24-Apr-2018 14-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193802.2 60 2016 012 782.2 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,872 10,069,739 04-Sep-2018 08-Nov-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193806.3 60 2016 020 735.4 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,928 10,085,195 25-Sep-2018 11-Nov-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS EP 16193810.5 EP3157208B 29-May-2024 13-Oct-1936 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/294,022 10,368,286 30-Jul-2019 10-Feb-2037 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193812.1 60 2016 004 769.1 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193812.1 3157305 15-Aug-2018 13-Oct-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT DE 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT ES 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT FR 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT IT 16197551.1 502020000114245 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT GB 16197551.1 3169096 16-Sep-2020 07-Nov-2036 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS US 15/459,908 10,917,928 09-Feb-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS DE 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS ES 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS FR 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS IT 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS GB 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS US 17/135,190 12207326 21-Jan-2025 28-Dec-2040 12 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER US 15/616,281 11,050,671 29-Jun-2021 07-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER DE 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER FR 17174554 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER ES 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER IT 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER GB 17174554.0 3264697 06-Apr-2022 06-Jun-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT US 15/459,874 10,230,637 12-Mar-2019 28-Apr-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT DE 17161091.8 60 2017 019 214.7 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT FR 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT IT 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT ES 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT GB 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNITS AND WIRELESS COMMUNICATION SYSTEM AND METHODS TO SUPPORT BEACON TECHNOLOGY EP 17205102.1 11889580 30-Jan-2024 04-Dec-2037 WIRELESS COMMUNICATION UNITS AND WIRELESS COMMUNICATION SYSTEM AND METHODS TO SUPPORT BEACON TECHNOLOGY US 17/380,973 11889580 30-Jan-2024 17-Feb-2037 EDGE COMPUTING SYSTEM US 15/838,672 11,277,488 15-Mar-2022 02-Mar-2038 EDGE COMPUTING SYSTEM DE 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM ES 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM FR 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM GB 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM IT 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM US 15/838,644 11,095,713 17-Aug-2021 12-Nov-2038 EDGE COMPUTING SYSTEM US 17/365,259 11394771 19-Jul-2022 12-Dec-2037 EDGE COMPUTING SYSTEM US 17/867,194 11,606,419 14-Mar-2023 01-Jul-2041 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK US 15/830,427 10491562 26-Nov-2019 05-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK DE 17205104.7 602017015130.0 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK FR 17205104.7 3334126 22-Apr-2020 04-Dec-2037 13 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK IT 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK US 15/850,332 12,057,229 06-Aug-2024 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK DE 17209308.0 60 2017 011 602.5 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK FR 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK IT 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK EP 21169930.1 3890280 31-Jul-2024 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 19181830.1 3579587 02-Jun-2021 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK DE 19181830.1 3579587 02-Jun-2021 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK FR 19181830.1 3579587 02-Jun-2021 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK IT 19181830.1 3579587 02-Jun-2021 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 19181830.1 3579587 02-Jun-2021 21-Dec-2037 EDGE COMPUTING CONTAINER SYSTEM US 16/223,772 10,944,851 09-Mar-2021 01-Jan-2039 EDGE COMPUTING CONTAINER SYSTEM US 16/223,384 11,159,647 26-Oct-2021 04-Feb-2041 EDGE COMPUTING CONTAINER SYSTEM US 17/167,636 11,159,647 26-Oct-2021 18-Dec-2038 Edge Communication Device US 29/713,470 D958778 26-Jul-2022 26-Jul-2037 Edge Communication Device EM 006478186-0001 006478186-0001 17-May-2019 17-May-2044 Edge Communication Device EM 006478186-0002 006478186-0002 17-May-2019 17-May-2044 Edge Communication Device GB 90064781860001 90064781860001 17-May-2019 17-May-2044 Edge Communication Device GB 90064781860002 90064781860002 17-May-2019 17-May-2044 Integrated antenna-heatsink for wireless device applications US 17/110,744 11,563,262 B2 24-Jan-2023 09-Dec-2040 Integrated antenna-heatsink for wireless device applications US 18/086,069 11,949,147 B2 02-Apr-2024 09-Dec-2040 Expandable product architecture bus for consumer electronics gateways US 17/126,858 11,695,438 04-Jul-2023 15-Sep-2041 Module identification method for expandable gateway applications US 17/158,266 11,258,889 22-Feb-2022 26-Jan-2041 Module identification method for expandable gateway applications US 17/872,095 11,641,413 B2 02-May-2023 26-Jan-2041 Resilient Antenna Securing Mechanism US 17/148,846 11,431,075 30-Aug-2022 25-Mar-2041 Resilient Antenna Securing Mechanism US 17/872,095 11,837,773 05-Dec-2023 14-Jan-2041 14 Method and System for IoT Edge Computing using Containers US 17/238,436 11,838,794 05-Dec-2023 30-Aug-2041 Method and Procedure for miniaturing a multilayer PCB US 17/313,073 11,523,502 B2 06-Dec-2022 06-May-2041 Method and Procedure for miniaturing a multilayer PCB US 18/053,264 12,150,237 19-Nov-2024 07-Nov-2043 Method and Procedure for miniaturing a multilayer PCB US 17/946,450 11,950,361 B2 02-Apr-2024 06-May-2041 Cable Pull Tab US 17/342,191 11,695,238 04-Jul-2023 31-Jul-2041 Systems and Methods for Collaborative Edge Computing (AR/VR Edge Devices) US 17/592,798 12,156,293 26-Nov-2024 26-Nov-1944 Method and System for Secure Container Application Framework US 17/592,632 12,015,613 B2 18-Jun-2024 04-Feb-2044 Method and System for Secure Container Application Framework US 17/592,667 12,126,622 22-Oct-2024 22-Oct-2044 VHC25 heatsink and antenna structure US 29/722,411 D910,582 16-Feb-2021 16-Feb-2036 VHC25 heatsink and antenna structure US 29/722,413 D942,959 S 08-Feb-2022 08-Feb-2037 VHC25 heatsink and antenna structure US 29/722,415 D910,583 16-Feb-2021 16-Feb-2036 Stacker Electromagnetic Interference Shield US 29/722,059 D922337 15-Jun-2021 15-Jun-2036 Stacker Electromagnetic Interference Shield US 29/722,060 D922338 15-Jun-2021 15-Jun-2036 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined Brazil BR302022001478-8 BR302022001478-8 24-Jan-2023 23-Mar-2047 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined Canada 211383 211383 24-Jan-2024 24-Mar-2037 Stacker Base Module China ZL202230157775.5 ZL202230157775.5 19-Jul-2024 24-Mar-2037 Stacker Base Module EU 008916001-0001 008916001-0001 30-Mar-2022 23-Mar-2047 LTE Stacker Module EU 008916001-0002 008916001-0002 30-Mar-2022 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) EU 008916001-0003 008916001-0003 30-Mar-2022 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) GB 6197729 6197729 24-Mar-2022 23-Mar-2047 Stacker Base Module GB 6197727 6197727 24-Mar-2022 23-Mar-2047 LTE Stacker Module GB 6197728 6197728 24-Mar-2022 23-Mar-2047 Stacker Base Module India 361109-001 361109-001 08-May-2023 24-Sep-2036 Stacker Base Module Japan 2022-006084 1733800 23-Dec-2022 24-Mar-2047 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2022-0011328 30-1222487 29-Jun-2023 23-Mar-2042 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2023-0010640 30-1245065 03-Jan-2024 23-Mar-2042 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2023-0010641 30-1245066 03-Jan-2024 23-Mar-2042 Stacker Base Module Mexico MX/f/2022/000838 69708 18-Apr-2024 22-Mar-2047 LTE Stacker Module US 29/809,525 6197728 23-Mar-2022 23-Mar-2047 LTE Stacker Module India 361107-001 361107-001 23-Feb-2023 28-Sep-2036 LTE Stacker Module Japan 2022-006085 1733801 23-Dec-2022 24-Mar-2047 Stacker Base Module with LTE Stacker Module combined US 29/809,755 D1025047 22-Mar-2024 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) India 361108-001 361108-001 04-May-2023 29-Sep-2036 Stacker Base Module with LTE Stacker Module (combined) Japan 2022-006086 1733802 23-Dec-2022 24-Mar-2047 15 Manufacturing We rely on two contract manufacturers in Taiwan and China to manufacture our VeeaHub Ò devices.
Biggest changeIssue Date Expiration Date DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,804 9/955,404 24-Apr-2018 14-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193802.2 60 2016 012 782.2 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193802.2 3157304 24-Apr-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,872 10,069,739 04-Sep-2018 08-Nov-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193806.3 60 2016 020 735.4 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193806.3 3157207 18-Sep-2019 13-Oct-2036 15 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193806.3 3157207 18-Sep-2019 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/293,928 10,085,195 25-Sep-2018 11-Nov-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS EP 16193810.5 EP3157208B 29-May-2024 13-Oct-1936 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS US 15/294,022 10,368,286 30-Jul-2019 10-Feb-2037 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS DE 16193812.1 60 2016 004 769.1 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS FR 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS IT 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS ES 16193812.1 3157305 15-Aug-2018 13-Oct-2036 DYNAMIC ROUTER FUNCTIONALITY IN CELLULAR NETWORKS GB 16193812.1 3157305 15-Aug-2018 13-Oct-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT DE 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT ES 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT FR 16197551.1 3169096 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT IT 16197551.1 502020000114245 16-Sep-2020 07-Nov-2036 COMMUNICATION UNIT EMPLOYED AS A REMOTE ROUTER AND METHOD FOR ENFORCEMENT GB 16197551.1 3169096 16-Sep-2020 07-Nov-2036 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS US 15/459,908 10,917,928 09-Feb-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS DE 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS ES 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS FR 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS IT 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS GB 17161092.6 3223545 06-Jan-2021 15-Mar-2037 CONTENT TRANSFER FUNCTIONALITY BEYOND OR WITHIN CELLULAR NETWORKS US 17/135,190 12207326 21-Jan-2025 28-Dec-2040 16 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER US 15/616,281 11,050,671 29-Jun-2021 07-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER DE 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER FR 17174554 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER ES 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER IT 17174554.0 3264697 06-Apr-2022 06-Jun-2037 MOBILE WIRELESS COMMUNICATION UNIT AND METHOD FOR CONTENT TRANSFER GB 17174554.0 3264697 06-Apr-2022 06-Jun-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT US 15/459,874 10,230,637 12-Mar-2019 28-Apr-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT DE 17161091.8 60 2017 019 214.7 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT FR 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT IT 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT ES 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNIT AND METHOD FOR SHARING DELAY TOLERANT CONTENT GB 17161091.8 3220612 08-Jul-2020 15-Mar-2037 WIRELESS COMMUNICATION UNITS AND WIRELESS COMMUNICATION SYSTEM AND METHODS TO SUPPORT BEACON TECHNOLOGY EP 17205102.1 11889580 30-Jan-2024 04-Dec-2037 WIRELESS COMMUNICATION UNITS AND WIRELESS COMMUNICATION SYSTEM AND METHODS TO SUPPORT BEACON TECHNOLOGY US 17/380,973 11889580 30-Jan-2024 17-Feb-2037 EDGE COMPUTING SYSTEM US 15/838,672 11,277,488 15-Mar-2022 02-Mar-2038 EDGE COMPUTING SYSTEM DE 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM ES 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM FR 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM GB 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM IT 17206464.4 3343363 27-Jul-2022 11-Dec-2037 EDGE COMPUTING SYSTEM US 15/838,644 11,095,713 17-Aug-2021 12-Nov-2038 17 EDGE COMPUTING SYSTEM US 17/365,259 11394771 19-Jul-2022 12-Dec-2037 EDGE COMPUTING SYSTEM US 17/867,194 11,606,419 14-Mar-2023 01-Jul-2041 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK US 15/830,427 10491562 26-Nov-2019 05-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK DE 17205104.7 602017015130.0 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK FR 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK IT 17205104.7 3334126 22-Apr-2020 04-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK US 15/850,332 12,057,229 06-Aug-2024 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 17209308.0 3340579 12-Feb-2020 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK EP 21169930.1 3890280 31-Jul-2024 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK ES 19181830.1 3579587 02-Jun-2021 21-Dec-2037 ROUTER NODE, NETWORK AND METHOD TO ALLOW SERVICE DISCOVERY IN A NETWORK GB 19181830.1 3579587 02-Jun-2021 21-Dec-2037 EDGE COMPUTING CONTAINER SYSTEM US 16/223,772 10,944,851 09-Mar-2021 01-Jan-2039 EDGE COMPUTING CONTAINER SYSTEM US 16/223,384 11,159,647 26-Oct-2021 04-Feb-2041 EDGE COMPUTING CONTAINER SYSTEM US 17/167,636 11,159,647 26-Oct-2021 18-Dec-2038 METHOD AND APPARATUS FOR PROCESSING A SIGNAL US 17/993,499 11,159,647 26-Oct-2021 18-Dec-2042 Edge Communication Device US 29/713,470 D958778 26-Jul-2022 26-Jul-2037 Integrated antenna-heatsink for wireless device applications US 17/110,744 11,563,262 B2 24-Jan-2023 09-Dec-2040 18 Integrated antenna-heatsink for wireless device applications US 18/086,069 11,949,147 B2 02-Apr-2024 09-Dec-2040 Integrated antenna-heatsink for wireless device applications EU 20829134.4 4073882 12-Feb-2025 07-Dec-2040 Expandable product architecture bus for consumer electronics gateways US 17/126,858 11,695,438 04-Jul-2023 15-Sep-2041 Module identification method for expandable gateway applications US 17/158,266 11,258,889 22-Feb-2022 26-Jan-2041 Module identification method for expandable gateway applications US 17/872,095 11,641,413 B2 02-May-2023 26-Jan-2041 Resilient Antenna Securing Mechanism US 17/148,846 11,431,075 30-Aug-2022 25-Mar-2041 Resilient Antenna Securing Mechanism US 17/872,095 11,837,773 05-Dec-2023 14-Jan-2041 Method and System for IoT Edge Computing using Containers US 17/238,436 11,838,794 05-Dec-2023 30-Aug-2041 Method and Procedure for miniaturing a multilayer PCB US 17/313,073 11,523,502 B2 06-Dec-2022 06-May-2041 Method and Procedure for miniaturing a multilayer PCB US 18/053,264 12,150,237 19-Nov-2024 07-Nov-2043 Method and Procedure for miniaturing a multilayer PCB US 17/946,450 11,950,361 B2 02-Apr-2024 06-May-2041 Cable Pull Tab US 17/342,191 11,695,238 04-Jul-2023 31-Jul-2041 Systems and Methods for Collaborative Edge Computing (AR/VR Edge Devices) US 17/592,798 12,156,293 26-Nov-2024 16-Dec-42 Method and System for Secure Container Application Framework US 17/592,632 12,015,613 B2 18-Jun-2024 04-Feb-1942 Method and System for Secure Container Application Framework US 17/592,667 12,126,622 22-Oct-2024 6-May-43 VHC25 heatsink and antenna structure US 29/722,411 D910,582 16-Feb-2021 16-Feb-2036 VHC25 heatsink and antenna structure US 29/722,413 D942,959 S 08-Feb-2022 08-Feb-2037 VHC25 heatsink and antenna structure US 29/722,415 D910,583 16-Feb-2021 16-Feb-2036 Stacker Electromagnetic Interference Shield US 29/722,059 D922337 15-Jun-2021 15-Jun-2036 Stacker Electromagnetic Interference Shield US 29/722,060 D922338 15-Jun-2021 15-Jun-2036 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined Brazil BR302022001478-8 BR302022001478-8 24-Jan-2023 23-Mar-2047 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined Canada 211383 211383 24-Jan-2024 24-Mar-2037 Stacker Base Module China ZL202230157775.5 ZL202230157775.5 19-Jul-2024 24-Mar-2037 Stacker Base Module US 29/809,102 D1067233 18-Mar-2025 25-Sep-2046 Stacker Base Module EU 008916001-0001 008916001-0001 30-Mar-2022 23-Mar-2047 LTE Stacker Module EU 008916001-0002 008916001-0002 30-Mar-2022 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) EU 008916001-0003 008916001-0003 30-Mar-2022 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) GB 6197729 6197729 24-Mar-2022 23-Mar-2047 Stacker Base Module GB 6197727 6197727 24-Mar-2022 23-Mar-2047 LTE Stacker Module GB 6197728 6197728 24-Mar-2022 23-Mar-2047 Stacker Base Module India 361109-001 361109-001 08-May-2023 24-Sep-2036 Stacker Base Module Japan 2022-006084 1733800 23-Dec-2022 24-Mar-2047 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2022-0011328 30-1222487 29-Jun-2023 23-Mar-2042 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2023-0010640 30-1245065 03-Jan-2024 23-Mar-2042 Stacker Base Module, LTE Stacker Module, Mase and Stacker combined S Korea 30-2023-0010641 30-1245066 03-Jan-2024 23-Mar-2042 Stacker Base Module Mexico MX/f/2022/000838 69708 18-Apr-2024 22-Mar-2047 19 LTE Stacker Module US 29/809,525 6197728 23-Mar-2022 23-Mar-2047 LTE Stacker Module India 361107-001 361107-001 23-Feb-2023 28-Sep-2036 LTE Stacker Module Japan 2022-006085 1733801 23-Dec-2022 24-Mar-2047 Stacker Base Module with LTE Stacker Module combined US 29/809,755 D1025047 22-Mar-2024 23-Mar-2047 Stacker Base Module with LTE Stacker Module (combined) India 361108-001 361108-001 04-May-2023 29-Sep-2036 Stacker Base Module with LTE Stacker Module (combined) Japan 2022-006086 1733802 23-Dec-2022 24-Mar-2047 Workforce data management US 14/829,101 9471900 B1 18-Oct-2016 18-Aug-2036 Manufacturing We rely on two contract manufacturers in Taiwan and China to manufacture our VeeaHub® devices.
We empower our customers by delivering intuitive software and unified hardware solutions that enable local computing, intelligent networking, and advanced AI applications to work together seamlessly. By making these solutions easy to deploy, orchestrate, and scale, we remove technological barriers, freeing innovators to innovate. Our tagline, “Intelligently Connected,” reflects this commitment.
We empower our customers by delivering intuitive software and unified hardware solutions that enable local computing, intelligent networking, and advanced AI applications to work together seamlessly. By making these solutions easy to deploy, orchestrate, and scale, we aim to remove technological barriers, freeing innovators to innovate. Our tagline, “Intelligently Connected,” reflects this commitment.
In addition, we have independent contractors whose services we are using on an as-needed basis to assist with our sales and marketing activities and engineering activities. 16 ITEM 1A. RISK FACTORS. Our future operating results could differ materially from the results described in this Annual Report due to the risks and uncertainties described below.
In addition, we have independent contractors whose services we are using on an as-needed basis to assist with our sales and marketing activities and engineering activities. ITEM 1A. RISK FACTORS. Our future operating results could differ materially from the results described in this Annual Report due to the risks and uncertainties described below.
ITEM 1. BUSINESS. Overview We were originally incorporated under the name “Plum Acquisition Corp. I.” as a blank check company incorporated as a Cayman Islands exempted company and formed for the purpose of effecting a merger, share exchange, asset acquisition, share purchase, reorganization, or similar business combination with one or more businesses.
ITEM 1. BUSINESS. We were originally incorporated under the name “Plum Acquisition Corp. I.” as a blank check company incorporated as a Cayman Islands exempted company and formed for the purpose of effecting a merger, share exchange, asset acquisition, share purchase, reorganization, or similar business combination with one or more businesses.
We seek to protect our proprietary rights through a variety of methods, including confidentiality agreements and proprietary information agreements with suppliers, employees, consultants, and others who may have access to proprietary information, under which they are bound to assign to us their inventions. 11 Patent Family Country Application No. Patent No.
We seek to protect our proprietary rights through a variety of methods, including confidentiality agreements and proprietary information agreements with suppliers, employees, consultants, and others who may have access to proprietary information, under which they are bound to assign to us their inventions. Patent Family Country Application No. Patent No.
Factors that could cause or contribute to such differences include those factors discussed below. Summary of Risk Factors Investing in our common stock involves risks. In addition, our business and operations are subject to a number of risks, which you should be aware of prior to making a decision to invest in our common stock.
Factors that could cause or contribute to such differences include those factors discussed below. 20 Summary of Risk Factors Investing in our common stock involves risks. In addition, our business and operations are subject to a number of risks, which you should be aware of prior to making a decision to invest in our common stock.
These patents cover jurisdictions in the United States, United Kingdom, Europe, South Korea, Japan, and India. All of our current-issued patents are projected to expire between 2036 and 2047. We also have 25 patent applications pending. Qualcomm Inc.
These patents cover jurisdictions in the United States, United Kingdom, Europe, South Korea, Japan, and India. All of our current-issued patents are projected to expire between 2036 and 2047. We also have 26 patent applications pending. Qualcomm Inc.
Proven integrations to a wide variety of industry leading platforms, including Microsoft’s Azure, AWS IoT Greengrass, Tridium’s Niagara Framework, and LoRaWAN ChirpStack. ● Unique implementation of fully integrated LoRaWAN Gateway that runs at the edge without cloud-dependency. ● Unified Cloud management platform combines network and device management with applications management through the Control Center Other platforms focus on network or applications management but not all three ● Comprehensive remote management tools for deployment, configuration, and over the air updates and troubleshooting Intellectual Property As of December 31, 2024, we had a patent portfolio consisting of 121 exclusively owned patents, as summarized in the table below.
Proven integrations to a wide variety of industry leading platforms, including Microsoft’s Azure, AWS IoT Greengrass, Tridium’s Niagara Framework, and LoRaWAN ChirpStack. ● Unique implementation of fully integrated LoRaWAN Gateway that runs at the edge without cloud-dependency. ● Unified Cloud management platform combines network and device management with applications management through the Control Center Other platforms focus on network or applications management but not all three. ● Comprehensive remote management tools for deployment, configuration, and over the air updates and troubleshooting. 14 Intellectual Property As of December 31, 2025, we had a patent portfolio consisting of 116 exclusively owned issued patents, as summarized in the table below.
With an extensive patent portfolio of 125 granted patents and 25 pending patent applications that cover 26 patent families, our end-to-end Hybrid Edge-Cloud Computing platform represents a new product category that has the potential for wide scale customer adoption in large segments of consumer and enterprise markets.
With an extensive patent portfolio of approximately 123 granted patents and 32 pending patent applications that cover 26 patent families, our end-to-end Hybrid Edge-Cloud Computing platform represents a new product category that has the potential for wide scale customer adoption in large segments of consumer and enterprise markets.
Market Reports World in its research report published in October 2023 named Private Veea as one of the top 10 Edge AI solution providers alongside of IBM, Microsoft, Amazon Web Services (“ AWS ”) and others. 1 Private Veea was founded in 2014 by Allen Salmasi, our Chief Executive Officer and a pioneering wireless technology leader. Mr.
We were also named in a recent Market Reports World in its research report published in October 2023 as one of the top 10 Edge AI solution providers alongside of IBM, Microsoft and Amazon Web Services (“ AWS ”). Private Veea was founded in 2014 by Allen Salmasi, our Chief Executive Officer and a pioneering wireless technology leader. Mr.
However, to our knowledge, we are the first to market with patented technologies that a) bring virtualized data center capabilities to the far edge of the network, commonly referred to as the Device Edge, where all wired and wireless devices connect to the network (the “Edge”), b) spawns hyperconvergence of computing, multiaccess communications and storage, (“Edge Computing”) c) provides for Cloud-managed applications at the Edge (“Hybrid Edge-Cloud Computing”), d) enables machine learning with AI training, inferencing, and Agentic AI at the Edge (“Edge AI”) including AI-driven cybersecurity for heterogenous networks.
However, to our knowledge, we are one of the first to market with patented technologies that a) bring virtualized data center capabilities to the far edge of the network, commonly referred to as the Device Edge, where all wired and wireless devices connect to the network (the “ Edge ”), b) spawns hyperconvergence of computing, multiaccess communications and storage, (“ Edge Computing ”) c) provides for Cloud-managed applications at the Edge (“ Hybrid Edge-Cloud Computing ”), and d) enables machine learning with AI training, inferencing, and Agentic AI at the Edge (“ Edge AI ”) including AI-driven cybersecurity for heterogenous networks.
The Company has five wholly owned subsidiaries, VeeaSystems Inc., formerly known as Veea Inc. a Delaware corporation, Veea Solutions Inc., a Delaware corporation, VeeaSystems Development Inc., formerly known as Veea Systems Inc., a Delaware corporation, Veea Systems Ltd., a company organized under the laws of England and Wales and VeeaSystems SAS, a French simplified joint stock company; and one majority owned subsidiary, VeeaSystems Mexico, S. de R.L. de C.V., a limited capital company organized under the laws of Mexico (“VeeaSystems MX”).
The Company has six wholly owned subsidiaries, VeeaSystems Inc., formerly known as Veea Inc. a Delaware corporation, Veea Solutions Inc., a Delaware corporation, VeeaSystems Development Inc., formerly known as Veea Systems Inc., a Delaware corporation, Veea Systems Ltd., a company organized under the laws of England and Wales, VeeaSystems SAS, a French simplified joint stock company and VeeaSystems CK Inc., a Delaware corporation; and one majority owned subsidiary, VeeaSystems Mexico, S. de R.L. de C.V., a limited capital company organized under the laws of Mexico (“ VeeaSystems MX ”).
The VeeaEdge Platform Ô offers an alternative to cloud computing by enabling the formation of highly secure, but easily accessible, private clouds and networks across one or multiple user(s) or enterprise location(s) across the globe.
VeeaONE platform offers an alternative to cloud computing by enabling the formation of highly secure, but easily accessible, private clouds and networks with VeeaHub products across one or multiple user(s) or enterprise location(s) across the globe.
Our products and services have been deployed across multiple countries and industries; however, we are focused on high-growth market segments such as fixed-line or 5G-based fixed wireless broadband access, and subscription-based managed Wi-Fi for unserved / underserved communities.
To date, our products and services have been successfully deployed across multiple countries and industries. We remain focused on high-growth market segments such as fixed-line or 5G-based fixed wireless broadband access, and subscription-based managed Wi-Fi for unserved and underserved communities.
VeeaHub products, about the size of a typical Wi-Fi Access Point (AP), are offered in variety of form factors with different capabilities for indoor and outdoor coverage and are both locally- and cloud-managed.
VeeaHub products, about the size of a typical Wi-Fi Access Point (“ AP ”), are offered in multiple form factors having different capabilities for indoor and outdoor coverage and are both locally- and cloud-managed.
The Veea Edge Platform has several key differentiating features, including: ● Rapid scaling through meshing of multiple nodes to expand connectivity coverage, adding more computing power, memory or storage capacity. vMesh is more extensible than mesh networking offered in comparable consumer or enterprise products ● High degree of integration reduces the number of hardware elements needed to deliver solutions, reducing initial capital outlay, installation costs and reducing ongoing management complexity and other operating costs (i.e. power consumption). ● VeeaWare OS with patented software architecture supporting a virtualized software environment and Secured Docker container for distributed computing with applications orchestrated over a connectivity mesh, that provides for an application and microservices mesh, with hyperconverged networking at the edge. ● Flexible choice of wired and wireless interfaces results in reduced installation cost and time. ● Pervasive security, to virtually segment traffic at a device or group level. 10 ● Zero-touch installation supports pre-provisioning of devices before installation. ● Non-skilled installers can mount the systems locally and then automatic or semi-automatic configuration is done from the cloud. ● Standards-based approach with fixed and wireless technologies for interoperability into globally deployed wired and wireless infrastructure.
VeeaONE platform’s key differentiating features include: ● VeeaWare OS with patented software architecture supporting a virtualized software environment and Secured Docker container for distributed computing with applications orchestrated over a connectivity mesh, that provides for an application and microservices mesh, with hyperconverged networking at the edge. ● vMesh, enabling a networking mesh, a computing mesh, an application mesh, a microservices mesh, and an Edge Intelligence mesh, is more extensible than mesh networking offered in comparable consumer or enterprise products. ● Rapid scaling at the Device Edge through mesh networking of VeeaHub and third-party product nodes to expand connectivity and coverage for wired and wireless protocols on a heterogenous network, while adding more computing power, memory or storage capacity. ● Edge AI Total Fabric capabilities. ● Pervasive security, to virtually segment traffic at a device or group level. ● Zero-touch installation supports pre-provisioning of devices before installation. ● High degree of integration reduces the number of hardware elements needed to deliver solutions, reducing initial capital outlay, installation costs and reducing ongoing management complexity and other operating costs (i.e. power consumption). ● Flexible choice of wired and wireless interfaces results in reduced installation cost and time. ● Non-skilled installers can mount the systems locally and then automatic or semi-automatic configuration is done from the cloud. ● Standards-based approach with fixed and wireless technologies for interoperability into globally deployed wired and wireless infrastructure.
Facilities We are headquartered in New York City, New York. We have engineering offices in Iselin, New Jersey; Bath, United Kingdom; and Juvigny, France. We also maintain sales and marketing offices in Paris, France and Mexico City, Mexico. Employees As of December 31, 2024, we employed 45 full-time employees.
Facilities We are headquartered in New York City, New York. We have engineering offices in San Diego, CA, Bath, United Kingdom, and Juvigny, France. We also maintain sales and marketing offices in Paris, France and Mexico City, Mexico. Employees As of December 31, 2025, we employed 45 full-time employees.
We believe we are uniquely positioned in the marketplace, leveraging our strengths with our business model, including the following: ● Comprehensive, full suite of hardware and software services with a strategic focus on high-growth segments in emerging markets and underserved areas in mature markets for broadband services and edge applications including climate smart energy and sustainability solutions. ● Aligned customers with value propositions where Veea and our customers benefit in the creation of new revenue streams. ● Innovation-driven, a technology-centric platform that redefines capabilities of connecting people, places, and things to the internet with greater efficiency with edge applications. ● Highly automated capabilities for network service providers and enterprises to harness the power of software for improved customer experiences and reduced manual labor. ● Climate-smart platform technology advancements that bring greater productivity to emerging and mature markets, with measured improvements to the environment.
We believe we are uniquely positioned in the marketplace, leveraging our strengths with our business model, including the following: ● Comprehensive, full suite of hardware and software services with a strategic focus on high-growth segments in emerging markets and underserved areas in mature markets for broadband services and edge applications including cybersecurity, smart buildings, smart energy and sustainability solutions. ● Aligned customers with value propositions where Veea and our customers benefit in the creation of new revenue streams with recurring revenue. ● Innovation-driven, a technology-centric platform that redefines capabilities of connecting people, places, and things to the internet with greater efficiency with edge applications. ● Highly automated capabilities for network service providers and enterprises to harness the power of software for improved customer experiences and reduced manual labor. 5 Business Strategy Our target markets represent the fastest growing market segments for a new generation of Edge AI-driven broadband services, IT/OT, and cybersecurity.
Veea Edge Platform’s products, applications, and services with a distributed computing architecture, offered as a Platform-as-a-Service (“ ePaaS ”) capability, empowering companies to capitalize on the transformative potential of Edge AI, where most of the data from smartphones, tablets, laptops, cameras, sensors, and other devices is generated, with data privacy and sovereignty, reliability, low latency for real-time decisions, bandwidth efficiency, scalability, and reduced costs compared to alternatives.
VeeaONE’s products, applications, and services with a distributed computing architecture, offered as a Platform-as-a-Service (“ PaaS ”) capability, empowering companies to capitalize on the transformative potential of Edge AI, where most of the data from smartphones, tablets, laptops, cameras, sensors, and other devices is generated, with data privacy and sovereignty, reliability, low latency for real-time decisions, bandwidth efficiency for lower data transport costs, scalability, cybersecurity, reduced costs compared to alternatives, as well as “always-on” availability for mission critical applications, and contextual awareness for people, devices and things connected to the Internet.
Such networks have given rise through any combination of our developed devices and third-party devices, with CPUs, GPUs, TPUs, DPUs and/or NPUs, that run on the Veea Edge Platform’s software stack (“VeeaWare”).
Such networks have given rise through any combination of our developed devices and third-party devices, with CPUs, GPUs, TPUs, DPUs and/or NPUs, that run on the VeeaONE™ platform’s software stack VeeaWare™ (“ VeeaWare ”). Our end-to-end edge-cloud platform is referred to as VeeaONE™ (“ VeeaONE ”) platform.
Key focus of the Company’s research and development activities include (i) the use of AI to optimize network and applications distribution and performance at the edge, (ii) support for elastic scaling and dynamic cloud to edge orchestration, (iii) real time radio and mesh tuning, (iv) partial and full air-gapped deployment between the public cloud and the edge, (v) optimized AI model execution across devices, the Veea Edge Platform and the cloud and (vi) fully integrated online ordering, fulfillment and activation to support large scale, hierarchical distribution partners.
Key focus of the Company’s research and development activities include (i) the use of AI to optimize network and applications distribution and performance at the edge, (ii) support for elastic scaling and dynamic cloud to edge orchestration, (iii) partial and full air-gapped deployment between the public cloud and the edge, and (iv) optimized AI model execution across devices, the VeeaONE platform and the cloud.
In both cases, broadband or Internet connectivity services are offered with a variety of Edge applications and value-added services, including advanced AI-driven cybersecurity, through Mobile Network Operators (“MNOs”), Multiple System Operators (MSOs), Internet Service Providers (“ISPs”) and other types of Managed Service Providers (“MSPs”).
In both cases, broadband or Internet connectivity services include an offering of Edge applications and value-added services, including advanced AI-driven cybersecurity, through mobile network operators (“ MNOs”) , multiple system operators (“ MSOs ”), Internet Service Providers (“ ISPs ”), Managed Service Providers (“ MSPs ”), system integrators and major distributors.
We are focused on markets - Fixed-line or 5G-based Fixed Wireless Broadband Access, Unserved / Underserved Communities, Climate Smart Buildings, Converged Private Networks, and Smart Retail – that we believe offer high potential for growth and can benefit from our products and services offerings in a way that transforms their businesses and business models in a secure, cost-effective, and meaningful manner.
VeeaONE platform provides for large scale management of VeeaHub products and third-party devices and AI-enabled applications and services with Hybrid Edge-Cloud Computing. 1 We have developed products and solutions for wireline and/or 5G-based fixed wireless broadband access, subscription-based managed Wi-Fi for unserved and underserved communities, converged private networks, Smart Buildings, Smart Construction, Smart Warehouses and Smart Retail – that we believe offer high potential for growth and can benefit from our products and services offerings in a way that transforms their businesses and business models in a secure, cost-effective, and meaningful manner.
The industrial applications include climate smart buildings, smart farming with precision agriculture, smart warehouses and smart retail as cloud-managed converged private networks. Gartner recognized the innovativeness and capabilities of the platform by naming Private Veea a Leading Smart Edge Platform in 2023 and Cool Vendor in Edge Computing in 2021.
The industrial applications include climate smart buildings, smart farming with precision agriculture, smart warehouses and smart retail as cloud-managed converged private networks.
We’re not merely connecting devices or networks; we're connecting businesses to outcomes, ideas to reality, and complexity to simplicity. Our platform creates intelligent connectivity, transforming intricate technological landscapes into streamlined environments that anyone can leverage.
Our Vision We are not merely connecting devices or networks; we’re connecting businesses to outcomes, converting ideas to reality, and turning complexity into simplicity.
Given the significant increases in the data transport costs to the cloud as well as data ownership and privacy concerns around cloud-based applications, we believe that there is pent-up demand for low-latency and cost-effective private and public network solutions and applications at the edge that increase productivity and generate value for enterprises, people, places, and things connecting to the Internet, which will in turn will help network operators offering broadband services capture a greater enterprise value for connecting their customers to the internet. 5 Our business model is partially based on global demands from the Americas, EMEA and APAC regions for a product platform and software services for the generation of new revenue streams, with lower recurring costs, compared to traditional network infrastructure that lacks automation of service delivery and entails substantial ongoing operational support and network maintenance costs.
Our business model is partially based on global demands from the Americas, EMEA and APAC regions for a product platform and software services for the generation of new revenue streams, with lower recurring costs, compared to traditional network infrastructure that lacks automation of service delivery and entails substantial ongoing operational support and network maintenance costs (e.g., traditional cybersecurity solutions for small businesses).
Veea Edge Platform architecture and business model, VeeaHub Ò and third-party devices on Veea Edge Platform with Hybrid Edge-Cloud Computing and AI-enabled applications and services, to a certain degree is similar to Android OS platform architecture and business model for Android devices.
VeeaONE platform provides for large scale management of VeeaHub products and third-party devices and AI-enabled applications and services with Hybrid Edge-Cloud Computing similar to how Android OS platform does it for Android devices. Our platform flexibly supports a highly scalable business model for B2B and B2B2C delivery of products and services to a diverse range of customers.
Business Strategy Our business strategy is focused on leveraging three key paths to market: ● Technology Partnerships - Complementary technologies that are amplified with Veea technology capabilities. ● Distribution Channels - Aligned with our core edge-focused technology franchise, large-scale system integrators working to digitally transform industries, distributors and resellers of Niagara framework. ● Network Operators and Managed Service Providers - Providing for dedicated private networks end-to-end or monetization of their network assets, with the introduction of edge computing, Edge AI and their own customized applications, developed through the Veea developer portal to offer highly differentiated services that locks in the current customer base and reduces churn.
Growth Strategy Our business growth strategy is focused on leveraging three key paths to market: ● Service Providers - Providing for broadband access, cybersecurity, or dedicated private networks with the offerings that may include any combination of 5G fixed wireless access, subscription-based managed Wi-Fi, variations of edge computing and standardized MEC, solution-specific Edge AI (e.g., loss protection, inventory management, common area surveillance, etc., with computer vision models) and, in some cases, their own customized applications, developed through the Veea developer portal to offer highly differentiated services that locks in the current customer base and reduces churn. ● System Integrators – Aligned with our edge-focused products and services, system integrators working on digital transformations incorporate VeeaONE platform capabilities with solutions customized for enterprise customers. ● Major Distributors – Major distributors and resellers of Honeywell Niagara framework or those specializing in telecommunications and security technology.
Enables CPE-less deployment models reducing ongoing operation expense. Competitive Strengths To our knowledge, the Veea Edge Platform Ô and its key building block the VeeaHub is the only edge computing product that infuses a single physical device with the traits of a networking device, IoT gateway, Linux server, storage and security gateway.
Competitive Strengths To our knowledge, VeeaONE platform capabilities are highly differentiated including VeeaHub product as the only edge computing product that infuses a single physical device with the traits of a networking device with a broad range of wired and wireless capabilities, IoT gateway, Linux server, multiple storage options, router and firewall with AI-driven cybersecurity.
These risks are discussed more-fully in this “ Item 1A. Risk Factors ” section of this Annual Report beginning on page 18.
These risks are discussed more-fully in this “