USPTO serial 90226099
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Status 686 means your mark is published in the USPTO Official Gazette and in the 30-day opposition period. If no opposition is filed, prosecution typically continues toward registration or a Notice of Allowance. Monitor the opposition window. After it closes, watch for Notice of Allowance (intent-to-use) or registration (use-based).
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COREY A. DONALDSON
COREY A. DONALDSON FERGUSON CASE ORR PATERSON LLP1050 SOUTH KIMBALL ROADVENTURA, CA 93004United States| Class | Description | Status | First use |
|---|---|---|---|
| 009 | Subsurface detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Underground detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Cosmic particle detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Cosmic ray detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Elementary particle detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Muon detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Cosmic particle imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Cosmic ray imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Elementary particle imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Muon imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Geotomography particle imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Subsurface mapping systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Subsurface imaging systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Subsurface modelling systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Subsurface density profiling systems comprising measuring instruments for measuring density of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Subsurface inversion modelling systems comprising measuring instruments for measuring density of subsurface anomalies, namely, and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, detecting instruments for detecting subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, monitoring instruments for monitoring subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures, temperature and location indicators, power and Ethernet controllers, muon and temperature sensors, counting instruments for counting muons, alignment instruments in the nature of accelerometers, calibrating instruments for calibrating muon flux, and recorded software for operating the muon detector and processing muon data; Geophysics instruments, namely, instruments for retrieving and viewing of geographic information and associated metadata; Geophysics detectors for detecting mineral and metal deposits, air voids, liquids, cracks, fissures, and caves | ACTIVE | — |
| 042 | Data acquisition services for detecting and measuring density of metals, minerals, liquids, anomalies, voids, and fractures in the field of subsurface tomography; Geophysics analysis, namely, analysis of geophysics data for detecting measuring density of subsurface mineral and metal deposits, air voids, liquids, cracks, fissures, and caves; Cosmic ray tomographic detection, imaging, and modelling services; Cosmic particle tomographic detection, imaging, and modelling services; Elementary particle tomographic detection, imaging, and modelling services; Muon tomographic detection, imaging, and modelling services; Geotomography services, namely, cosmic-ray muon tomographic detection, imaging, and modelling services; Subsurface imaging services for surveying and exploration; Radiographic imaging services for surveying and exploration; Cosmic ray imaging services for surveying and exploration; Cosmic particle imaging services for surveying and exploration; Elementary particle imaging services for surveying and exploration; Muon imaging services for surveying and exploration; Subsurface mapping services; Underground mapping services; Cosmic ray intensity mapping services; Cosmic particle intensity mapping services; Elementary particle intensity mapping services; Muon intensity mapping services; Subsurface particle intensity mapping services; Computer modeling services, namely, subsurface modelling services; Computer modeling services, namely, subsurface inversion modelling services; Geological exploration and surveying services in the nature of subsurface density profiling services for the identification of metals, minerals, liquids, anomalies, voids, and fractures; Software as a service (SaaS) featuring software for analysis and modelling in the field of subsurface tomography; Software as a service (SaaS) featuring software for analysis and modelling in the field of underground tomography; Software as a service (SaaS) featuring software for analysis and modelling in the field of subsurface mapping; Software as a service (SaaS) featuring software for analysis and modelling in the field of subsurface imaging; Software as a service (SaaS) featuring software for analysis and modelling in the field of subsurface density modelling; Software as a service (SaaS) featuring software for analysis and modelling in the field of subsurface density profiling; Geological exploration and surveying services in the nature of profiling subsurface anomalies, namely, imaging, analyzing, and providing density profiles of subsurface anomalies such as mineral and metal deposits, air voids, liquids, cracks, fissures, and caves | ACTIVE | — |
CopyMark links this record to cited §2(d) serials, the owner's other marks, Nice classes, similar mark names, and recently changed USPTO applications.
| Date | Code | Event | What it means |
|---|---|---|---|
| Aug 4, 2026 | NPUB | OFFICIAL GAZETTE PUBLICATION CONFIRMATION E-MAILED | — |
| Aug 4, 2026 | PUBO | PUBLISHED FOR OPPOSITION | Your mark was published in the USPTO Official Gazette for a 30-day opposition window. During that period, third parties who believe they would be harmed can file an opposition. If no opposition is filed, prosecution usually continues toward registration or a Notice of Allowance. |
| Jul 29, 2026 | NONP | NOTIFICATION OF NOTICE OF PUBLICATION E-MAILED | — |
| Jul 7, 2026 | CNSA | APPROVED FOR PUB - PRINCIPAL REGISTER | — |
| Jun 16, 2026 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Jun 16, 2026 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Jun 16, 2026 | ERSI | TEAS RESPONSE TO SUSPENSION INQUIRY RECEIVED | — |
| Jun 15, 2026 | IUAA | USE AMENDMENT ACCEPTED | — |
| Jun 14, 2026 | AUPC | AMENDMENT TO USE PROCESSING COMPLETE | — |
| Jun 14, 2026 | IUAF | USE AMENDMENT FILED | — |
| Jun 14, 2026 | EAAU | TEAS AMENDMENT OF USE RECEIVED | — |
| May 5, 2026 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| May 5, 2026 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| May 5, 2026 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Apr 29, 2026 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Apr 29, 2026 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Apr 27, 2026 | ERSI | TEAS RESPONSE TO SUSPENSION INQUIRY RECEIVED | — |
| Mar 17, 2026 | TCCA | TEAS CHANGE OF CORRESPONDENCE RECEIVED | — |
| Mar 17, 2026 | CHAN | APPLICANT/CORRESPONDENCE CHANGES (NON-RESPONSIVE) ENTERED | — |
| Mar 17, 2026 | COAR | TEAS CHANGE OF OWNER ADDRESS RECEIVED | — |
| Jan 26, 2026 | GNS2 | NOTIFICATION OF INQUIRY AS TO SUSPENSION E-MAILED | — |
| Jan 26, 2026 | GNSI | INQUIRY TO SUSPENSION E-MAILED | — |
| Jan 26, 2026 | CNSI | SUSPENSION INQUIRY WRITTEN | — |
| Jan 24, 2026 | RCCK | SUSPENSION CHECKED - TO ATTORNEY FOR ACTION | — |
| Jul 23, 2025 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| Jul 23, 2025 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| Jul 23, 2025 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Jun 24, 2025 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Jun 24, 2025 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Jun 24, 2025 | ALIE | ASSIGNED TO LIE | — |
| May 2, 2025 | TCCA | TEAS CHANGE OF CORRESPONDENCE RECEIVED | — |
| May 2, 2025 | ECDR | TEAS CHANGE OF DOMESTIC REPRESENTATIVES ADDRESS | — |
| May 2, 2025 | ARAA | ATTORNEY/DOM.REP.REVOKED AND/OR APPOINTED | This event means the applicant filed a response to a USPTO Office Action — typically arguments, amendments, or evidence addressing the examiner's objections. The USPTO will review the response and either allow the mark to proceed or issue another action. |
| May 2, 2025 | REAP | TEAS REVOKE/APP/CHANGE ADDR OF ATTY/DOM REP RECEIVED | — |
| May 2, 2025 | CHAN | APPLICANT/CORRESPONDENCE CHANGES (NON-RESPONSIVE) ENTERED | — |
| May 2, 2025 | COAR | TEAS CHANGE OF OWNER ADDRESS RECEIVED | — |
| Jul 30, 2024 | NREV | NOTICE OF REVIVAL - E-MAILED | — |
| Jul 30, 2024 | PGRR | PETITION GRANTED - RESPONSE RECEIVED | — |
| Jul 29, 2024 | APET | ASSIGNED TO PETITION STAFF | — |
| Jul 25, 2024 | TROA | TEAS RESPONSE TO OFFICE ACTION RECEIVED | This event means the applicant filed a response to a USPTO Office Action — typically arguments, amendments, or evidence addressing the examiner's objections. The USPTO will review the response and either allow the mark to proceed or issue another action. |
| Jul 25, 2024 | PROA | TEAS PETITION TO REVIVE RECEIVED | — |
| May 31, 2024 | MAB2 | ABANDONMENT NOTICE E-MAILED - FAILURE TO RESPOND | The trademark application was abandoned because a required response or document was not filed by the deadline — usually a missed Office Action response. The application is dead unless a petition to revive is granted within a limited time. |
| May 31, 2024 | ABN2 | ABANDONMENT - FAILURE TO RESPOND OR LATE RESPONSE | The trademark application was abandoned because a required response or document was not filed by the deadline — usually a missed Office Action response. The application is dead unless a petition to revive is granted within a limited time. |
| Feb 12, 2024 | GNS2 | NOTIFICATION OF INQUIRY AS TO SUSPENSION E-MAILED | — |
| Feb 12, 2024 | GNSI | INQUIRY TO SUSPENSION E-MAILED | — |
| Feb 12, 2024 | CNSI | SUSPENSION INQUIRY WRITTEN | — |
| Feb 12, 2024 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| Feb 12, 2024 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| Feb 12, 2024 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Feb 7, 2024 | RCCK | SUSPENSION CHECKED - TO ATTORNEY FOR ACTION | — |
| Jul 24, 2023 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| Jul 24, 2023 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| Jul 24, 2023 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Jun 26, 2023 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Jun 26, 2023 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Jun 23, 2023 | ERSI | TEAS RESPONSE TO SUSPENSION INQUIRY RECEIVED | — |
| Jun 22, 2023 | RCCK | SUSPENSION CHECKED - TO ATTORNEY FOR ACTION | — |
| Jun 21, 2023 | GNS2 | NOTIFICATION OF INQUIRY AS TO SUSPENSION E-MAILED | — |
| Jun 21, 2023 | GNSI | INQUIRY TO SUSPENSION E-MAILED | — |
| Jun 21, 2023 | CNSI | SUSPENSION INQUIRY WRITTEN | — |
| Jun 21, 2023 | RCCK | SUSPENSION CHECKED - TO ATTORNEY FOR ACTION | — |
| Dec 6, 2022 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| Dec 6, 2022 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| Dec 6, 2022 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Nov 30, 2022 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Nov 30, 2022 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Nov 30, 2022 | ALIE | ASSIGNED TO LIE | — |
| Nov 22, 2022 | ERSI | TEAS RESPONSE TO SUSPENSION INQUIRY RECEIVED | — |
| May 23, 2022 | GNS2 | NOTIFICATION OF INQUIRY AS TO SUSPENSION E-MAILED | — |
| May 23, 2022 | GNSI | INQUIRY TO SUSPENSION E-MAILED | — |
| May 23, 2022 | CNSI | SUSPENSION INQUIRY WRITTEN | — |
| May 18, 2022 | RCCK | SUSPENSION CHECKED - TO ATTORNEY FOR ACTION | — |
| Oct 5, 2021 | GNS3 | NOTIFICATION OF LETTER OF SUSPENSION E-MAILED | — |
| Oct 5, 2021 | GNSL | LETTER OF SUSPENSION E-MAILED | — |
| Oct 5, 2021 | CNSL | SUSPENSION LETTER WRITTEN | — |
| Oct 5, 2021 | XAEC | EXAMINER'S AMENDMENT ENTERED | — |
| Oct 5, 2021 | GNEN | NOTIFICATION OF EXAMINERS AMENDMENT E-MAILED | — |
| Oct 5, 2021 | GNEA | EXAMINERS AMENDMENT E-MAILED | — |
| Oct 5, 2021 | CNEA | EXAMINERS AMENDMENT -WRITTEN | — |
| Sep 2, 2021 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Sep 2, 2021 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Aug 26, 2021 | ERFR | TEAS REQUEST FOR RECONSIDERATION RECEIVED | — |
| Mar 4, 2021 | GNFN | NOTIFICATION OF FINAL REFUSAL EMAILED | — |
| Mar 4, 2021 | GNFR | FINAL REFUSAL E-MAILED | A final Office Action (final refusal) means the examining attorney is maintaining at least one refusal and your options are narrower. You can file a response addressing the refusal, appeal to the Trademark Trial and Appeal Board, or let the application abandon. |
| Mar 4, 2021 | CNFR | FINAL REFUSAL WRITTEN | A final Office Action (final refusal) means the examining attorney is maintaining at least one refusal and your options are narrower. You can file a response addressing the refusal, appeal to the Trademark Trial and Appeal Board, or let the application abandon. |
| Feb 11, 2021 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| Feb 11, 2021 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| Feb 9, 2021 | ALIE | ASSIGNED TO LIE | — |
| Nov 5, 2020 | TROA | TEAS RESPONSE TO OFFICE ACTION RECEIVED | This event means the applicant filed a response to a USPTO Office Action — typically arguments, amendments, or evidence addressing the examiner's objections. The USPTO will review the response and either allow the mark to proceed or issue another action. |
| Oct 15, 2020 | GNRN | NOTIFICATION OF NON-FINAL ACTION E-MAILED | A non-final Office Action means the USPTO examining attorney has raised at least one issue with your trademark application but has not made a final decision. You usually have three months to respond with arguments, amendments, or evidence. Missing the deadline can abandon the application. |
| Oct 15, 2020 | GNRT | NON-FINAL ACTION E-MAILED | A non-final Office Action means the USPTO examining attorney has raised at least one issue with your trademark application but has not made a final decision. You usually have three months to respond with arguments, amendments, or evidence. Missing the deadline can abandon the application. |
| Oct 15, 2020 | CNRT | NON-FINAL ACTION WRITTEN | A non-final Office Action means the USPTO examining attorney has raised at least one issue with your trademark application but has not made a final decision. You usually have three months to respond with arguments, amendments, or evidence. Missing the deadline can abandon the application. |
| Oct 15, 2020 | DOCK | ASSIGNED TO EXAMINER | — |
| Oct 15, 2020 | DOCK | ASSIGNED TO EXAMINER | — |
| Oct 15, 2020 | DOCK | ASSIGNED TO EXAMINER | — |
| Oct 15, 2020 | PMSG | PETITION TO DIRECTOR - MAKE SPECIAL - GRANTED | — |
| Oct 14, 2020 | NWOS | NEW APPLICATION OFFICE SUPPLIED DATA ENTERED | — |
| Oct 14, 2020 | APET | ASSIGNED TO PETITION STAFF | — |
| Oct 5, 2020 | TPMS | TEAS PETITION TO DIRECTOR-MAKE SPECIAL-RECEIVED | — |
| Oct 3, 2020 | NWAP | NEW APPLICATION ENTERED | — |