USPTO Examiner GREENE JASON M - Art Unit 1773

Recent Applications

Detailed information about the 100 most recent patent applications.

Application NumberTitleFiling DateDisposal DateDispositionTime (months)Office ActionsRestrictionsInterviewAppeal
18607137GAS SEPARATION METHOD WITH MULTILAYER MEMBRANEMarch 2024July 2024Allow400YesNo
18607129METHOD FOR MAKING AND USING A GAS SEPARATION MEMBRANEMarch 2024July 2024Allow400YesNo
18607160MEMBRANE PERMEATION GAS SEPARATION METHODMarch 2024August 2024Allow500YesNo
18607198METHOD FOR SEPARATING A GAS STREAM TO ISOLATE CARBON DIOXIDEMarch 2024August 2024Allow500YesNo
18607186CO2 GAS ENRICHMENT METHODMarch 2024July 2024Allow410NoNo
18607055METHOD FOR SEPARATING CARBON DIOXIDE AND METHANEMarch 2024July 2024Allow400YesNo
18685248EQUIPMENT AND METHOD FOR THE PRODUCTION OF FILTERING PANELSFebruary 2024November 2024Allow910NoNo
18424094System and Method for Cleaning of BiogasJanuary 2024December 2024Allow1120NoNo
18502885FILTER MEDIA, ELEMENTS, AND METHODSNovember 2023December 2024Allow1310NoNo
18212040MEMBRANE-BASED HYDROGEN PURIFIERSJune 2023November 2024Allow1710NoNo
18143758GAS SEPARATION MEMBRANE USING FURAN-BASED POLYMERSMay 2023October 2024Abandon1820NoNo
18119648SYSTEMS FOR ELIMINATING AND/OR REDUCING AEROSOL EMISSIONS FROM A HEATER/COOLERMarch 2023October 2024Allow1910NoNo
18165235MIXED MATRIX MEMBRANE (MMM) AND METHOD OF H2/CO2 GAS SEPARATION BY USING MMMFebruary 2023September 2023Allow710NoNo
18102544SYSTEM AND METHOD FOR SOLVENT REGENERATIONJanuary 2023September 2024Allow2010NoNo
18154169METHOD FOR SEPARATING A GAS MIXTUREJanuary 2023February 2024Allow1310NoNo
18154157GAS FILTER FOR SEPARATING GASEOUS COMPOSITIONSJanuary 2023February 2024Allow1310NoNo
18147058MONOLAYER, COMPOSITE, GAS SEPARATION MATERIAL, FILTER, GAS SEPARATION DEVICE AND METHOD FOR MANUFACTURING COMPOSITEDecember 2022July 2024Allow1820NoNo
18047287SYSTEM AND METHOD FOR SEPARATING A GAS MIXTUREOctober 2022December 2023Allow1410NoNo
17958123FILTER MEDIA INCLUDING ADHESIVESSeptember 2022February 2024Allow1720NoNo
17894415MOISTURE REMOVING DEVICE FOR A LAUNDRY APPLIANCE THAT INCORPORATES A NANOPORE MEMBRANEAugust 2022August 2023Allow1210NoNo
17794405POROUS POLYTETRAFLUOROETHYLENE MEMBRANE, GAS-PERMEABLE MEMBRANE, AND GAS-PERMEABLE MEMBERJuly 2022April 2023Allow910NoNo
17862792SYSTEM AND METHOD OF PRODUCING COOLED DRY GASJuly 2022January 2025Allow3010NoNo
17811399PAINT MIST COLLECTION DEVICEJuly 2022January 2025Allow3010NoNo
17856534METHOD OF FORMING A PD-AU ALLOY LAYER ON A SUBSTRATEJuly 2022August 2024Allow2521NoNo
17850624HYDROGEN PURIFICATION USING MOLECULAR DYNAMICSJune 2022January 2023Allow710NoNo
17845477FILTER MEDIA INCLUDING ADHESIVES AND/OR OLEOPHOBIC PROPERTIESJune 2022April 2024Allow2220NoNo
17840630Fresh Air Conditioning SystemJune 2022January 2025Allow3110NoNo
17784580CARBON MOLECULAR SIEVE MEMBRANE AND ITS USE IN SEPARATION PROCESSESJune 2022January 2025Allow3110NoNo
17706933COLD MEMBRANE NITROGEN REJECTION PROCESS AND SYSTEMMarch 2022June 2023Abandon1510NoNo
17764627FILTER SECUREMENT ASSEMBLYMarch 2022December 2024Allow3310NoNo
17691150Apparatus and Method for Mixing Transmission and Separation of Hydrogen Gas and Natural Gas Recovered Based on Pressure EnergyMarch 2022July 2024Allow2820NoNo
17687807SURFACE MODIFIED FILTER MEDIAMarch 2022December 2023Abandon2110NoNo
17679299FILTER ELEMENT WITH AN ANNULAR SEAL HAVING A POSITIONING AND SEALING SECTION WITH CONCENTRIC ANNULAR SEAL RINGS FORMING A SEALING GROOVEFebruary 2022August 2024Allow3010NoNo
17671408Apparatus and Method for Direct Air Capture of Carbon Dioxide from the AtmosphereFebruary 2022February 2023Allow1210NoNo
17626412METAL AIR FILTERJanuary 2022September 2024Allow3210NoNo
17564427REFRIGERATORDecember 2021July 2024Allow3010NoNo
17623274MODIFIED POROUS MEMBRANE MATERIAL AND PREPARATION METHOD THEREOF, AND LIQUID MEMBRANE SEPARATION METHOD OF CARBON DIOXIDEDecember 2021December 2022Allow1210NoNo
17550675HYGIENE MANAGEMENT DEVICE FOR ENTRANCE HALLDecember 2021December 2024Allow3610NoNo
17618381MEMBRANES FOR CONTAMINANT REMOVAL FROM NATURAL GAS AND METHODS FOR USE THEREOFDecember 2021September 2024Allow3430NoYes
17546078FOLDABLE FILTER ARRANGEMENT CONSISTING OF A PLURALITY OF INDIVIDUAL FILTER ELEMENTSDecember 2021June 2024Allow3010NoNo
17596058VENTILATION COMPONENTDecember 2021July 2024Allow3110NoNo
17522285GAS SEPARATION MEMBRANE USING FURAN-BASED POLYMERSNovember 2021May 2023Abandon1810NoNo
17512725INTERFACE SEAL ASSEMBLY FOR A TUBULAR FILTER ELEMENTOctober 2021March 2024Allow2910NoNo
17508782MEMBRANE PROCESS FOR NATURAL GAS LIQUIDS RECOVERY AND HYDROCARBON DEW POINT CONTROLOctober 2021August 2023Allow2210NoNo
17605370HUMIDITY CONTROL DEVICEOctober 2021September 2024Abandon3410NoNo
17498890BIOGAS UPGRADING APPARATUS AND PROCESSOctober 2021February 2024Allow2820NoNo
17499746FILTER MEDIA, ELEMENTS, AND METHODSOctober 2021August 2023Allow2220NoNo
17602490ZEOLITE MEMBRANES, MOLECULAR SEPARATION METHODS, AND MANUFACTURING PROCESSES FOR ZEOLITE MEMBRANESOctober 2021January 2024Allow2710NoNo
17497468COLLAPSIBLE AIR FILTER ASSEMBLIESOctober 2021May 2024Allow3110NoNo
17602636VACUUM DEAERATOROctober 2021September 2024Allow3520YesNo
17493916Folding Air Filter Assembly and ApparatusOctober 2021July 2023Allow2210NoNo
17494763METHOD AND SYSTEM FOR PURIFICATION OF HELIUM USING CRYOGENIC, MEMBRANE, AND ADSORPTION TECHNIQUESOctober 2021December 2023Allow2610NoNo
17598437SEPARATION MEMBRANESeptember 2021November 2023Allow2520NoNo
16642888PHOTOCATALYTIC FILTER MODULE AND AIR PURIFIER INCLUDING THE SAMESeptember 2021September 2024Abandon5510NoNo
17440343GAS SEPARATION SYSTEMSeptember 2021January 2024Allow2820NoNo
17439221ABSORPTION SOLVENT REGENERATION DEVICE, CO2 RECOVERY DEVICE, AND METHOD FOR MODIFYING ABSORPTION SOLVENT REGENERATION DEVICESeptember 2021April 2024Allow3110YesNo
17465069ADSORPTIVE GAS SEPARATION PROCESS AND SYSTEMSeptember 2021July 2023Allow2210NoNo
17459523Carbon Dioxide Recycle Stream Processing with Ethylene Glycol Dehydrating in an Enhanced Oil Recovery ProcessAugust 2021October 2024Allow3810NoNo
17412244POLYMER AND METHOD FOR PRODUCING THE SAME, GAS SEPARATION MEMBRANE, GAS SEPARATION MODULE, AND GAS SEPARATION APPARATUS USING THE POLYMER, AND m-PHENYLENEDIAMINE COMPOUNDAugust 2021August 2023Allow2410NoNo
17300556Magnetic air separatorAugust 2021December 2024Abandon4010NoNo
17430783BARRIER ASSEMBLYAugust 2021January 2024Allow2921NoNo
17444851METHOD OF PRODUCING ZEOLITE MEMBRANE COMPLEX AND ZEOLITE MEMBRANE COMPLEXAugust 2021April 2022Allow810NoNo
17399276Defoamer composition based on organofunctionally modified polysiloxanesAugust 2021April 2024Allow3210NoNo
17444755ZEOLITE MEMBRANE COMPLEX, METHOD OF PRODUCING ZEOLITE MEMBRANE COMPLEX, METHOD OF TREATING ZEOLITE MEMBRANE COMPLEX, AND SEPARATION METHODAugust 2021August 2024Allow3730YesNo
17392901Active Material Container, Battery Housing, and Method for Mounting the Active Material Container in the Battery HousingAugust 2021August 2024Allow3610NoNo
17427506AIR PURIFYING SYSTEMJuly 2021November 2023Allow2720YesNo
17389014HYDROGEN PURIFICATION USING MOLECULAR DYNAMICSJuly 2021May 2022Allow920NoNo
17382715CARBON SEQUESTRATION METHODS AND SYSTEMSJuly 2021May 2024Allow3410NoNo
17379340NANOFIBER FILTER MATERIAL AND RESPIRATORY SYSTEM AND AIR FILTERING ARTICLEJuly 2021July 2023Allow2410NoNo
17376923AIR PURIFICATION SYSTEM AND INTERNET OF THINGS ARTIFICIAL INTELLIGENCE CONTROL APPARATUSJuly 2021March 2024Allow3210NoNo
17377202APPARATUS FOR TRAPPING MULTIPLE REACTION BY-PRODUCTS FOR SEMICONDUCTOR PROCESSJuly 2021August 2024Allow3710NoNo
17421516SYSTEM AND METHOD FOR CO2 CAPTURE FROM A FLEET OF CO2 PRODUCING ASSETSJuly 2021August 2024Allow3820NoNo
17421310FILTER WITH COMMUNICATORJuly 2021February 2025Abandon4420NoNo
17421314FILTER ELEMENT AND METHOD FOR SERVICING A FILTER SYSTEMJuly 2021August 2024Allow3810NoNo
17419630DETECTION DEVICE, DETECTION METHOD, AND EXHAUST PURIFICATION DEVICE WITH DETECTION DEVICEJune 2021January 2024Allow3010NoNo
17416349ZEOLITIC AGGLOMERATED MATERIAL, PREPARATION PROCESS AND USE FOR NON-CRYOGENIC GAS SEPARATIONJune 2021April 2024Allow3410NoNo
17416042METHOD AND DEVICE FOR REDUCING THE INCREASE IN TEMPERATURE AT THE SURFACE OF THE TERRESTRIAL GLOBE, VEHICLE AND STATION FOR IMPLEMENTING SAID METHODJune 2021September 2024Allow3910NoNo
17350912GAS RECOVERING APPARATUS, SEMICONDUCTOR MANUFACTURING SYSTEM, AND GAS RECOVERING METHODJune 2021May 2023Allow2310NoNo
17348914POROUS SUPPORT-ZEOLITE MEMBRANE COMPOSITE, AND METHOD FOR PRODUCING POROUS SUPPORT-ZEOLITE MEMBRANE COMPOSITEJune 2021December 2023Abandon3020NoNo
17345750Safety CabinetJune 2021March 2024Allow3310NoNo
17345852LIQUID-TO-AIR MEMBRANE ENERGY EXCHANGERJune 2021March 2024Allow3320NoNo
17311900POWER GENERATION SYSTEMJune 2021July 2024Abandon3710NoNo
17326649GAS SEPARATION MEMBRANE CONTAINING HETEROGENEOUS ZEOLITES AND PREPARATION METHOD THEREOFMay 2021June 2023Allow2520NoNo
17324314Device for Separating Components of a Gas MixtureMay 2021September 2023Allow2810NoNo
17317819DIRECT CAPTURE SUBSTRATE, DEVICE AND METHODMay 2021March 2025Abandon4611NoNo
17291940ELECTROSTATIC INDUCTION-TYPE AIR FILTRATION DUST COLLECTING APPARATUS AND METHODMay 2021April 2024Abandon3610NoNo
17288751GAS PERMEABLE MEMBRANES AND METHODS OF USING THEREOFApril 2021May 2024Allow3710NoNo
17239662FLUE GAS LOW-TEMPERATURE ADSORPTION DENITRATION SYSTEM AND PROCESSApril 2021February 2024Allow3310NoNo
17288481DEVICE, SYSTEM, AND METHOD FOR PASSIVE COLLECTION OF ATMOSPHERIC CARBON DIOXIDEApril 2021April 2024Allow3610NoNo
17238318GAS AND LIQUID SEPARATION PASSAGE ARRANGEMENTApril 2021March 2023Allow2310NoNo
17287976METHOD AND SYSTEM FOR REMOVING DUST FROM EXHAUST GAS OF ENGINEApril 2021May 2024Abandon3710NoNo
17287982ENHANCED SORBENT MEMBRANE FOR CARBON DIOXIDE CAPTURE AND METHOD FOR SAMEApril 2021February 2024Abandon3420NoNo
17236084FILTER MEDIA INCLUDING FLAME RETARDANT FIBERSApril 2021April 2023Allow2410NoNo
17230464SEPARATION OF GASES VIA CARBONIZED VINYLIDENE CHLORIDE COPOLYMER GAS SEPARATION MEMBRANES AND PROCESSES THEREFOREApril 2021February 2024Abandon3430NoNo
17230606CARBON DIOXIDE AND EXHAUST GAS CAPTURE DEVICEApril 2021August 2024Abandon4010NoNo
17285243A SYSTEM, METHOD AND GENERATOR FOR GENERATING NANOBUBBLES OR NANODROPLETSApril 2021August 2024Allow4020YesNo
17285245A SYSTEM AND METHOD FOR THE TREATMENT OF BIOGAS AND WASTEWATERApril 2021February 2024Allow3410NoNo
17284374SYSTEM AND METHOD FOR SEPARATING PARTS OF A LIQUID BASED ON GAS CONTENTApril 2021January 2024Allow3410NoNo
17224188TWO-STAGE METHOD FOR REMOVING CO2 FROM SYNTHESIS GASApril 2021May 2024Allow3720NoNo
17221115ZEOLITE SEPARATION MEMBRANE AND PRODUCTION METHOD THEREFORApril 2021January 2023Allow2210NoNo

Appeals Overview

This analysis examines appeal outcomes and the strategic value of filing appeals for examiner GREENE, JASON M.

Strategic Value of Filing an Appeal

Total Appeal Filings
6
Allowed After Appeal Filing
3
(50.0%)
Not Allowed After Appeal Filing
3
(50.0%)
Filing Benefit Percentile
77.8%
Higher 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, 50.0% of applications that filed an appeal were subsequently allowed. This appeal filing benefit rate is in the top 25% across the USPTO, indicating that filing appeals is particularly effective here. The act of filing often prompts favorable reconsideration during the mandatory appeal conference.

Strategic Recommendations

Filing a Notice of Appeal is strategically valuable. The act of filing often prompts favorable reconsideration during the mandatory appeal conference.

Examiner GREENE, JASON M - Prosecution Strategy Guide

Executive Summary

Examiner GREENE, JASON M works in Art Unit 1773 and has examined 805 patent applications in our dataset. With an allowance rate of 81.9%, this examiner has an above-average tendency to allow applications. Applications typically reach final disposition in approximately 25 months.

Allowance Patterns

Examiner GREENE, JASON M's allowance rate of 81.9% places them in the 53% percentile among all USPTO examiners. This examiner has an above-average tendency to allow applications.

Office Action Patterns

On average, applications examined by GREENE, JASON M receive 1.45 office actions before reaching final disposition. This places the examiner in the 24% percentile for office actions issued. This examiner issues significantly fewer office actions than most examiners.

Prosecution Timeline

The median time to disposition (half-life) for applications examined by GREENE, JASON M is 25 months. This places the examiner in the 78% percentile for prosecution speed. Applications move through prosecution relatively quickly with this examiner.

Interview Effectiveness

Conducting an examiner interview provides a +18.9% benefit to allowance rate for applications examined by GREENE, JASON M. This interview benefit is in the 62% 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, 38.3% of applications are subsequently allowed. This success rate is in the 88% percentile among all examiners. Strategic Insight: RCEs are highly effective with this examiner compared to others. If you receive a final rejection, filing an RCE with substantive amendments or arguments has a strong likelihood of success.

After-Final Amendment Practice

This examiner enters after-final amendments leading to allowance in 82.8% of cases where such amendments are filed. This entry rate is in the 97% percentile among all examiners. Strategic Recommendation: This examiner is highly receptive to after-final amendments compared to other examiners. Per MPEP § 714.12, after-final amendments may be entered "under justifiable circumstances." Consider filing after-final amendments with a clear showing of allowability rather than immediately filing an RCE, as this examiner frequently enters such amendments.

Pre-Appeal Conference Effectiveness

When applicants request a pre-appeal conference (PAC) with this examiner, 0.0% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 4% percentile among all examiners. Note: Pre-appeal conferences show limited success with this examiner compared to others. While still worth considering, be prepared to proceed with a full appeal brief if the PAC does not result in favorable action.

Appeal Withdrawal and Reconsideration

This examiner withdraws rejections or reopens prosecution in 100.0% of appeals filed. This is in the 88% percentile among all examiners. Of these withdrawals, 60.0% occur early in the appeal process (after Notice of Appeal but before Appeal Brief). Strategic Insight: This examiner frequently reconsiders rejections during the appeal process compared to other examiners. Per MPEP § 1207.01, all appeals must go through a mandatory appeal conference. Filing a Notice of Appeal may prompt favorable reconsideration even before you file an Appeal Brief.

Petition Practice

When applicants file petitions regarding this examiner's actions, 64.7% are granted (fully or in part). This grant rate is in the 70% 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 0.1% of allowed cases (in the 50% percentile). This examiner makes examiner's amendments less often than average. You may need to make most claim amendments yourself.

Quayle Actions: This examiner issues Ex Parte Quayle actions in 3.0% of allowed cases (in the 74% percentile). This examiner issues Quayle actions more often than average when claims are allowable but formal matters remain (MPEP § 714.14).

Prosecution Strategy Recommendations

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

  • Consider after-final amendments: This examiner frequently enters after-final amendments. If you can clearly overcome rejections with claim amendments, file an after-final amendment before resorting to an RCE.
  • RCEs are effective: This examiner has a high allowance rate after RCE compared to others. If you receive a final rejection and have substantive amendments or arguments, an RCE is likely to be successful.
  • Appeal filing as negotiation tool: This examiner frequently reconsiders rejections during the appeal process. Filing a Notice of Appeal may prompt favorable reconsideration during the mandatory appeal conference.

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.