USPTO serial 98680461
Reviewed by CopyMark Law Group
These status codes mean the trademark application is abandoned and no longer pending. Common reasons include missing an Office Action response (600), filing without a valid basis (602), express abandonment by the applicant (604), or failure to respond to an examiner's inquiry (618). Revival may be possible in limited circumstances. If abandonment was unintentional, consult counsel about a petition to revive. Otherwise file a new application if protection is still needed.
If you own this trademark, we can monitor new filings and help with USPTO deadlines. If you do not, we can file a new U.S. application.
The USPTO lists this attorney as the applicant's representative for correspondence on this application.
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; Downloadable and recorded computer software program in the field of subsurface detection of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures. | 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;Platform as a service (PaaS) featuring software for subsurface detection of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures; Data science platform as a service featuring software and artificial intelligence engines for subsurface detection of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures; Data science platform services featuring computer software for subsurface detection of subsurface anomalies, namely, metal and mineral deposits, voids, tunnels, reservoirs, caves, cracks, and fissures | 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 |
|---|---|---|---|
| Jan 5, 2026 | 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. |
| Jan 5, 2026 | 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. |
| Aug 10, 2025 | XELG | APPLICATION EXTENSION GRANTED/RECEIPT PROVIDED | — |
| Aug 10, 2025 | XELR | APPLICATION EXTENSION TO RESPONSE PERIOD - RECEIVED | — |
| May 13, 2025 | 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. |
| May 13, 2025 | 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. |
| May 13, 2025 | 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. |
| May 12, 2025 | TEME | TEAS/EMAIL CORRESPONDENCE ENTERED | — |
| May 12, 2025 | CRFA | CORRESPONDENCE RECEIVED IN LAW OFFICE | — |
| May 12, 2025 | 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. |
| 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 | — |
| Feb 12, 2025 | 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. |
| Feb 12, 2025 | 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. |
| Feb 12, 2025 | 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. |
| Feb 11, 2025 | DOCK | ASSIGNED TO EXAMINER | — |
| Aug 3, 2024 | NWOS | NEW APPLICATION OFFICE SUPPLIED DATA ENTERED | — |
| Aug 2, 2024 | NWAP | NEW APPLICATION ENTERED | — |