USPTO Examiner OYER ANDREW J - Art Unit 1767

Recent Applications

Detailed information about the 100 most recent patent applications.

Application NumberTitleFiling DateDisposal DateDispositionTime (months)Office ActionsRestrictionsInterviewAppeal
18987944METHOD FOR THE PRODUCTION OF A SILICON-GRAPHITE COMPOSITE MATERIALDecember 2024July 2025Allow711NoNo
18927286GRAPHITE SHAPING AND COATING DEVICES, SYSTEMS, AND METHODSOctober 2024March 2025Allow411YesNo
18806600FIRE SUPPRESSION COMPOSITION FORMULATED FOR LITHIUM BATTERIESAugust 2024May 2025Abandon911NoNo
18799814CATHODE MATERIALS, CATHODES, BATTERIES, AND METHODS OF MAKING THEREOFAugust 2024February 2026Abandon1821NoYes
18743745METHOD OF PRODUCING SiC-Si COMPOSITE COMPONENT AND SiC-Si COMPOSITE COMPONENTJune 2024May 2025Allow1100NoNo
18674469COOLING TYPE DRY POWDER FIRE EXTINGUISHING AGENT AND PREPARATION METHOD AND APPLICATION THEREOFMay 2024February 2025Allow811NoNo
18712380TREATMENT AGENT FOR ELASTIC FIBERS, AND ELASTIC FIBERSMay 2024March 2025Allow1020NoNo
18625474SILICON NANOPARTICLES AND METHODS FOR PREPARING SILICON NANOPARTICLESApril 2024January 2026Allow2210NoNo
18613972FIRE-FIGHTING FOAM CONCENTRATEMarch 2024July 2025Allow1510NoNo
18602657LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEMarch 2024June 2024Allow300NoNo
18601173FIRE EXTINGUISHING COMPOSITION AND METHOD OF MAKINGMarch 2024October 2025Allow1911NoNo
18425075LONG-TERM FIRE RETARDANT WITH MAGNESIUM SULFATE AND CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEJanuary 2024March 2026Allow2620NoNo
18423274ENVIRONMENTALLY-CLEAN FIRE INHIBITING AND EXTINGUISHING COMPOSITIONS AND PRODUCTS FOR SORBING FLAMMABLE LIQUIDS WHILE INHIBITING IGNITION AND EXTINGUISHING FIREJanuary 2024February 2026Allow2410NoNo
18404027LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEJanuary 2024July 2024Allow610NoNo
18404387LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEJanuary 2024July 2024Allow610NoNo
18563646TREATMENT AGENT FOR CARBON FIBER PRECURSORS, AND CARBON FIBER PRECURSORNovember 2023October 2024Allow1120YesNo
18497858Improved Catalyst for MWCNT ProductionOctober 2023November 2024Allow1210NoNo
18496896ENVIRONMENTALLY-CLEAN AQUEOUS-BASED FIRE EXTINGUISHING BIOCHEMICAL LIQUID CONCENTRATES FOR MIXING WITH PROPORTIONED QUANTITIES OF WATER TO PRODUCE FIRE EXTINGUISHING WATER STREAMSOctober 2023January 2026Allow2710NoNo
18496864ENVIRONMENTALLY-CLEAN FIRE INHIBITING BIOCHEMICAL COMPOSITIONS FOR FORMING THIN POTASSIUM SALT CRYSTALLINE COATINGS ON COMBUSTIBLE SURFACES TO BE PROTECTED AGAINST FIREOctober 2023February 2026Allow2810NoNo
18496865CLASS-A FIRE-PROTECTED WOOD BUILDING PRODUCTS PROVIDED WITH CLASS-A FIRE PROTECTION, AND SURFACE TREATMENT PROCESS FOR PRODUCING THE SAMEOctober 2023January 2026Allow2710NoNo
18496866SYSTEM FOR PROACTIVELY PROTECTING COMBUSTIBLE PROPERTY SURFACES AGAINST FIRE IGNITION AND FLAME SPREAD BY FORMING ENVIRONMENTALLY-CLEAN THIN POTASSIUM SALT CRYSTALLINE COATINGS ON THE COMBUSTIBLE PROPERTY SURFACESOctober 2023August 2024Allow1000YesNo
18496862ENVIRONMENTALLY-CLEAN FIRE INHIBITING BIOCHEMICAL LIQUID COMPOSITIONS FOR FORMING THIN ALKALI METAL SALT CRYSTALLINE COATINGS ON COMBUSTIBLE SURFACES TO BE PROTECTED AGAINST FIREOctober 2023February 2026Allow2710NoNo
18381779MAGNETIC MATERIALS WITH HIGH CURIE TEMPERATURES AND DIELECTRIC CONSTANTSOctober 2023April 2025Allow1820YesNo
18472214CARBON-SILICON THREE-DIMENSIONAL STRUCTURAL COMPOSITE MATERIAL AND PREPARATION METHOD THEREOFSeptember 2023March 2025Allow1820YesNo
18450892LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEAugust 2023March 2024Allow720NoNo
18228844LITHIUM METAL COMPOSITE OXIDE POWDER WITH SUPPRESSED GAS GENERATIONAugust 2023August 2025Allow2511YesNo
18351030POLYMER MATRIX COMPOSITES COMPRISING FUNCTIONAL PARTICLES AND METHODS OF MAKING THE SAMEJuly 2023February 2025Allow1910NoNo
18323876Color Stable and Low Wear Polymer Composition and Articles Made TherefromMay 2023August 2024Allow1410NoNo
18143769LIQUID CONCENTRATE FIRE RETARDANT COMPOSITIONS CONTAINING MIXTURES OF AMMONIUM PHOSPHATESMay 2023August 2025Allow2720NoNo
18143590FIRE SUPPRESSION COMPOSITION AND METHOD OF ENCAPSULATION, THERMAL RUNAWAY PREVENTIONMay 2023February 2024Allow921YesNo
18140765Processing Ultra High Temperature Zirconium Carbide Microencapsulated Nuclear FuelApril 2023April 2024Allow1210NoNo
18299525LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEApril 2023August 2023Allow410NoNo
18126023COMPOSITION CONTAINING REFRIGERANT, AND REFRIGERATION METHOD USING SAID COMPOSITION, OPERATING METHOD FOR REFRIGERATION DEVICE, AND REFRIGERATION DEVICEMarch 2023July 2024Allow1610NoNo
18123305AQUEOUS METHODS OF MACRO-PARTICLE MANUFACTURINGMarch 2023May 2024Allow1431YesNo
18182198LONG-TERM FIRE RETARDANT WITH MAGNESIUM SULFATE AND CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEMarch 2023September 2023Allow610YesNo
18168989Microcapsule ClustersFebruary 2023December 2023Abandon1010NoNo
18100165HEAT TRANSFER MIXTURE AND METHODJanuary 2023February 2026Allow3610NoNo
18005670BINDER COMPOSITION FOR ELECTROCHEMICAL DEVICE, CONDUCTIVE MATERIAL DISPERSION LIQUID FOR ELECTROCHEMICAL DEVICE, SLURRY COMPOSITION FOR ELECTROCHEMICAL DEVICE ELECTRODE, ELECTRODE FOR ELECTROCHEMICAL DEVICE, AND ELECTROCHEMICAL DEVICEJanuary 2023January 2024Allow1220NoNo
18004304DISPERSANT COMPOSITION FOR ELECTROCHEMICAL DEVICE, CONDUCTIVE MATERIAL DISPERSION LIQUID FOR ELECTROCHEMICAL DEVICE, SLURRY FOR ELECTROCHEMICAL DEVICE ELECTRODE, ELECTRODE FOR ELECTROCHEMICAL DEVICE, AND ELECTROCHEMICAL DEVICEJanuary 2023July 2024Allow1930NoNo
18085025Electrode Mixture Manufacturing Method And Electrode MixtureDecember 2022September 2023Allow910YesNo
18002107SILICONE COMPOSITION AND A THERMALLY CONDUCTIVE SILICONE CURED PRODUCT HAVING HIGH THERMAL CONDUCTIVITYDecember 2022March 2026Allow3910YesNo
18002197SECONDARY BATTERY, MANUFACTURING METHOD OF SECONDARY BATTERY, ELECTRONIC DEVICE, AND VEHICLEDecember 2022February 2026Abandon3811NoNo
18061542LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEDecember 2022January 2024Allow1320NoNo
18074856COMPOUND, CMP SLURRY COMPOSITION INCLUDING THE SAME AND POLISHING METHOD USING THE SAMEDecember 2022February 2026Allow3910NoNo
17928932Cu-DOPED Sb-Te SYSTEM PHASE CHANGE MATERIAL, PHASE CHANGE MEMORY AND PREPARATION METHOD THEREOFDecember 2022August 2023Allow900NoNo
18060946LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEDecember 2022August 2023Allow910YesNo
17928854Novel method for producing conglomeration graphiteNovember 2022July 2023Allow710NoNo
18000048IMPROVED CATALYST FOR MWCNT PRODUCTIONNovember 2022July 2023Allow800NoNo
17927789COMPOSITE PARTICLES, NEGATIVE ELECTRODE MATERIAL, AND LITHIUM-ION SECONDARY BATTERYNovember 2022August 2025Allow3200NoNo
17992378SOFT MAGNETIC METAL POWDER, DUST CORE, MAGNETIC COMPONENT, AND ELECTRONIC COMPONENTNovember 2022February 2026Allow3900NoNo
17989199FORMULAS AND METHODS FOR MAKING SHELF-STABLE ANTIMICROBIAL BIPHASIC POLYMERSNovember 2022August 2023Allow900NoNo
18053492LIQUID COMPOSITION, STORAGE CONTAINER, AND APPARATUS AND METHOD FOR PRODUCING SOLID ELECTROLYTE LAYER OR ELECTRODE MIXTURE LAYERNovember 2022April 2024Allow1711NoNo
17978872ORGANIC ELECTROLUMINESCENT COMPOUND, A PLURALITY OF HOST MATERIALS AND ORGANIC ELECTROLUMINESCENT DEVICE COMPRISING THE SAMENovember 2022March 2026Allow4110NoNo
17967655FIRE-FIGHTING FOAM CONCENTRATEOctober 2022March 2024Allow1730NoNo
17996334SILICON-OXYGEN COMPOSITE ANODE MATERIAL, PREPARATION METHOD THEREOF AND LITHIUM-ION BATTERYOctober 2022March 2026Allow4110NoNo
17964060PREPARATION OF ECO-FRIENDLY FIRE EXTINGUISHER MICROCAPSULES AND APPLICATIONS THEREOFOctober 2022March 2026Allow4110NoNo
17995551METHOD FOR PRODUCING CARBONACEOUS MATERIAL FOR NEGATIVE ELECTRODE OF NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, METHOD FOR PRODUCING ELECTRODE OF NON-AQUEOUS ELECTROLYTE SECONDARY BATTERY, AND METHOD FOR PRODUCING NON-AQUEOUS ELECTROLYTE SECONDARY BATTERYOctober 2022April 2025Abandon3010NoNo
17954945CO-PRODUCTION OF HYDROGEN, CARBON, ELECTRICITY, AND CARBON MONOXIDE WITH CARBON DIOXIDE CAPTURE FOR REFINING OF CRUDE OILSeptember 2022July 2025Allow3400NoNo
17907429CATHODE MATERIAL AND PROCESSSeptember 2022March 2026Abandon4110NoNo
17907461CATHODE MATERIAL AND PROCESSSeptember 2022July 2024Abandon2210NoNo
17913989METHOD FOR CLEANING SEMICONDUCTOR SUBSTRATE, METHOD FOR PRODUCING PROCESSED SEMICONDUCTOR SUBSTRATE, AND PEELING COMPOSITIONSeptember 2022April 2025Abandon3131NoNo
17913739LITHIUM IRON COMPLEX OXIDE, CATHODE MATERIAL, CATHODE, AND LITHIUM-ION SECONDARY BATTERYSeptember 2022June 2025Allow3300NoNo
17906830FIXING BELTSeptember 2022March 2026Allow4210NoNo
17940725Dispersion of Coal Tar Pitch for Coating Graphitic Materials and Use in Li-Ion Battery Electrode ProductionSeptember 2022February 2025Allow3011NoNo
17907815FIRE-FIGHTING FOAM CONCENTRATE WITH SILICONE SURFACTANTAugust 2022May 2025Allow3310YesNo
17896199POLYVINYLIDENE FLUORIDE, BINDER, ELECTRODE MIXTURE, ELECTRODE, AND SECONDARY BATTERYAugust 2022January 2026Allow4110YesNo
17904991BINDER FOR SECONDARY BATTERYAugust 2022February 2024Allow1820NoNo
17893660COMPOSITION, BINDER, ELECTRODE MIXTURE, ELECTRODE, AND SECONDARY BATTERYAugust 2022September 2025Allow3621NoNo
17801634METHODS FOR MANUFACTURING POSITIVE ELECTRODE ACTIVE MATERIAL PRECURSOR MATERIAL AND POSITIVE ELECTRODE ACTIVE MATERIAL FOR SECONDARY LITHIUM BATTERY, AND POSITIVE ELECTRODE ACTIVE MATERIAL FOR SECONDARY LITHIUM BATTERY MANUFACTURED THEREBYAugust 2022March 2026Allow4211NoNo
17821060LONG-TERM FIRE RETARDANT WITH CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEAugust 2022February 2023Allow610NoNo
17799752Method of Preparing Positive Electrode Active MaterialAugust 2022August 2024Allow2420YesNo
17881685THERMOSETTING LIQUID COMPOSITION FOR ENCAPSULANT IN ORGANIC LIGHT-EMITTING DEVICEAugust 2022December 2024Allow2820NoNo
17875611CARBON-SILICON THREE-DIMENSIONAL STRUCTURAL COMPOSITE MATERIAL AND PREPARATION METHOD THEREOFJuly 2022July 2023Allow1221NoNo
17795436COMPOSITIONSJuly 2022October 2025Allow3811NoNo
17793762THERMALLY CONDUCTIVE URETHANE RESIN COMPOSITION AND CURED PRODUCTJuly 2022June 2024Abandon2310NoNo
17867107PREPARATION METHOD FOR A FLAME RETARDANT POLYSTYRENEJuly 2022July 2023Allow1211NoNo
17865188MAGNETIC MATERIALS WITH HIGH CURIE TEMPERATURES AND DIELECTRIC CONSTANTSJuly 2022July 2023Allow1210NoNo
17758728CATHODE ACTIVE MATERIAL AND METHOD FOR MAKING SUCH CATHODE ACTIVE MATERIALJuly 2022December 2024Allow2911NoNo
17791060USE OF A HEAT TRANSFER COMPOSITION FOR CONTROLLING THE TEMPERATURE OF A BATTERYJuly 2022January 2026Abandon4301NoNo
17854786POROUS POLYMER COMPOSITE FOR DAYTIME RADIATIVE COOLING AND METHOD OF MAKING A POROUS POLYMER COMPOSITEJune 2022September 2025Allow3801YesNo
17851693METHOD FOR ENHANCING THERMAL ENERGY STORAGE PERFORMANCE OF INDUSTRIAL GRADE HYDRATED SALTS BASED ON PHASE CHANGEJune 2022June 2023Allow1110NoNo
17809038FIRE SUPPRESSANTJune 2022February 2026Allow4410NoNo
17849421REFRIGERATION CYCLE APPARATUS, REFRIGERATING MACHINE OIL AND REFRIGERANT LEAKAGE PREVENTION AGENTJune 2022March 2026Allow4420YesNo
17847801POSITIVE ACTIVE MATERIAL AND LITHIUM-ION BATTERYJune 2022August 2024Allow2631YesNo
17845569LONG-TERM FIRE RETARDANT WITH MAGNESIUM SULFATE AND CORROSION INHIBITORS AND METHODS FOR MAKING AND USING SAMEJune 2022November 2022Allow510NoNo
17782621PHOTOINDUCED THERMOCHROMIC OR THERMOLUMINESCENT COMPOSITIONJune 2022August 2025Allow3910NoNo
17781741REINFORCED FLAME RETARDANT POLYCARBONATE COMPOSITIONS WITH IMPROVED MELT VOLUME RATESJune 2022June 2025Allow3600NoNo
17780718ELECTRODE MATERIALMay 2022March 2024Allow2200NoNo
17779951REFRIGERANT COMPOSITIONS COMPRISING R-32, R-134A, AND CF3IMay 2022January 2026Abandon4401NoNo
17746489RUBBER COMPOSITION INCLUDING A SPECIFIC HYDROCARBON RESINMay 2022June 2023Allow1310NoNo
17743932Novel Intermediate Material Between Precursor and Cathode Active MaterialMay 2022July 2024Allow2611NoNo
17737970DEVICE AND METHOD OF PREPARING SIOX, AND SIOX ANODE MATERIALMay 2022March 2025Allow3501NoNo
17736426DIRECT REGENERATION OF LITHIUM ION CATHODES BY IONOTHERMAL RELITHIATIONMay 2022January 2024Allow2020YesNo
17730845ELECTRODE MANUFACTURINGApril 2022May 2022Allow100YesNo
17728495THREE-DIMENSIONALLY PATTERNABLE THERMAL INTERFACEApril 2022August 2025Allow4011YesNo
17724672COMPOSITION FOR HEAT CYCLE SYSTEM, AND HEAT CYCLE SYSTEMApril 2022January 2026Abandon4410NoNo
17722991FIRE-FIGHTING FOAM CONCENTRATEApril 2022August 2022Allow420NoNo
17769720LI/NA-ION BATTERY ANODE MATERIALSApril 2022June 2025Allow3810NoNo
17718782Fine and Ultrafine Powders and Nanopowders of Lithium Metal Oxides for Battery ApplicationsApril 2022February 2023Allow1010NoNo
17712646PHOSPHOR COMPOSITIONApril 2022February 2023Allow1010NoNo

Appeals Overview

This analysis examines appeal outcomes and the strategic value of filing appeals for examiner OYER, ANDREW J.

Patent Trial and Appeal Board (PTAB) Decisions

Total PTAB Decisions
6
Examiner Affirmed
3
(50.0%)
Examiner Reversed
3
(50.0%)
Reversal Percentile
70.9%
Higher than average

What This Means

With a 50.0% reversal rate, the PTAB reverses the examiner's rejections in a meaningful percentage of cases. This reversal rate is above the USPTO average, indicating that appeals have better success here than typical.

Strategic Value of Filing an Appeal

Total Appeal Filings
21
Allowed After Appeal Filing
6
(28.6%)
Not Allowed After Appeal Filing
15
(71.4%)
Filing Benefit Percentile
41.9%
Lower than average

Understanding Appeal Filing Strategy

Filing a Notice of Appeal can sometimes lead to allowance even before the appeal is fully briefed or decided by the PTAB. This occurs when the examiner or their supervisor reconsiders the rejection during the mandatory appeal conference (MPEP § 1207.01) after the appeal is filed.

In this dataset, 28.6% of applications that filed an appeal were subsequently allowed. This appeal filing benefit rate is below the USPTO average, suggesting that filing an appeal has limited effectiveness in prompting favorable reconsideration.

Strategic Recommendations

Appeals to PTAB show good success rates. If you have a strong case on the merits, consider fully prosecuting the appeal to a Board decision.

Filing a Notice of Appeal shows limited benefit. Consider other strategies like interviews or amendments before appealing.

Examiner OYER, ANDREW J - Prosecution Strategy Guide

Executive Summary

Examiner OYER, ANDREW J works in Art Unit 1767 and has examined 564 patent applications in our dataset. With an allowance rate of 76.2%, this examiner has a below-average tendency to allow applications. Applications typically reach final disposition in approximately 30 months.

Allowance Patterns

Examiner OYER, ANDREW J's allowance rate of 76.2% places them in the 42% percentile among all USPTO examiners. This examiner has a below-average tendency to allow applications.

Office Action Patterns

On average, applications examined by OYER, ANDREW J receive 1.80 office actions before reaching final disposition. This places the examiner in the 40% percentile for office actions issued. This examiner issues fewer office actions than average, which may indicate efficient prosecution or a more lenient examination style.

Prosecution Timeline

The median time to disposition (half-life) for applications examined by OYER, ANDREW J is 30 months. This places the examiner in the 58% percentile for prosecution speed. Prosecution timelines are slightly faster than average with this examiner.

Interview Effectiveness

Conducting an examiner interview provides a +19.9% benefit to allowance rate for applications examined by OYER, ANDREW J. This interview benefit is in the 63% percentile among all examiners. Recommendation: Interviews provide an above-average benefit with this examiner and are worth considering.

Request for Continued Examination (RCE) Effectiveness

When applicants file an RCE with this examiner, 27.4% of applications are subsequently allowed. This success rate is in the 48% percentile among all examiners. Strategic Insight: RCEs show below-average effectiveness with this examiner. Carefully evaluate whether an RCE or continuation is the better strategy.

After-Final Amendment Practice

This examiner enters after-final amendments leading to allowance in 34.5% of cases where such amendments are filed. This entry rate is in the 51% percentile among all examiners. Strategic Recommendation: This examiner shows above-average receptiveness to after-final amendments. If your amendments clearly overcome the rejections and do not raise new issues, consider filing after-final amendments before resorting to an RCE.

Pre-Appeal Conference Effectiveness

When applicants request a pre-appeal conference (PAC) with this examiner, 66.7% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 53% percentile among all examiners. Strategic Recommendation: Pre-appeal conferences show above-average effectiveness with this examiner. If you have strong arguments, a PAC request may result in favorable reconsideration.

Appeal Withdrawal and Reconsideration

This examiner withdraws rejections or reopens prosecution in 64.7% of appeals filed. This is in the 45% percentile among all examiners. Of these withdrawals, 54.5% occur early in the appeal process (after Notice of Appeal but before Appeal Brief). Strategic Insight: This examiner shows below-average willingness to reconsider rejections during appeals. Be prepared to fully prosecute appeals if filed.

Petition Practice

When applicants file petitions regarding this examiner's actions, 58.1% are granted (fully or in part). This grant rate is in the 61% percentile among all examiners. Strategic Note: Petitions show above-average success regarding this examiner's actions. Petitionable matters include restriction requirements (MPEP § 1002.02(c)(2)) and various procedural issues.

Examiner Cooperation and Flexibility

Examiner's Amendments: This examiner makes examiner's amendments in 0.0% of allowed cases (in the 7% percentile). This examiner rarely makes examiner's amendments compared to other examiners. You should expect to make all necessary claim amendments yourself through formal amendment practice.

Quayle Actions: This examiner issues Ex Parte Quayle actions in 4.2% of allowed cases (in the 78% percentile). Per MPEP § 714.14, a Quayle action indicates that all claims are allowable but formal matters remain. This examiner frequently uses Quayle actions compared to other examiners, which is a positive indicator that once substantive issues are resolved, allowance follows quickly.

Prosecution Strategy Recommendations

Based on the statistical analysis of this examiner's prosecution patterns, here are tailored strategic recommendations:

    Relevant MPEP Sections for Prosecution Strategy

    • MPEP § 713.10: Examiner interviews - available before Notice of Allowance or transfer to PTAB
    • MPEP § 714.12: After-final amendments - may be entered "under justifiable circumstances"
    • MPEP § 1002.02(c): Petitionable matters to Technology Center Director
    • MPEP § 1004: Actions requiring primary examiner signature (allowances, final rejections, examiner's answers)
    • MPEP § 1207.01: Appeal conferences - mandatory for all appeals
    • MPEP § 1214.07: Reopening prosecution after appeal

    Important Disclaimer

    Not Legal Advice: The information provided in this report is for informational purposes only and does not constitute legal advice. You should consult with a qualified patent attorney or agent for advice specific to your situation.

    No Guarantees: We do not provide any guarantees as to the accuracy, completeness, or timeliness of the statistics presented above. Patent prosecution statistics are derived from publicly available USPTO data and are subject to data quality limitations, processing errors, and changes in USPTO practices over time.

    Limitation of Liability: Under no circumstances will IronCrow AI be liable for any outcome, decision, or action resulting from your reliance on the statistics, analysis, or recommendations presented in this report. Past prosecution patterns do not guarantee future results.

    Use at Your Own Risk: While we strive to provide accurate and useful prosecution statistics, you should independently verify any information that is material to your prosecution strategy and use your professional judgment in all patent prosecution matters.