USPTO Examiner JONES STEPHEN E - Art Unit 2843

Recent Applications

Detailed information about the 100 most recent patent applications.

Application NumberTitleFiling DateDisposal DateDispositionTime (months)Office ActionsRestrictionsInterviewAppeal
18876768WAVEGUIDE TERMINATION STRUCTURE AND METHOD OF MANUFACTUREDecember 2024March 2025Allow300NoNo
18919999POWER DIVIDER AND SINGLE POLE DOUBLE THROW SWITCH DEVICE USING THE SAMEOctober 2024March 2026Allow1700NoNo
18899636CONTACTLESS HIGH POWER RF CONNECTORSeptember 2024December 2024Allow200NoNo
18778297NOISE FILTER CIRCUITJuly 2024January 2026Allow1800NoNo
18770370High Resolution Attenuator or Phase Shifter with Weighted BitsJuly 2024July 2025Allow1300NoNo
18723699ANTENNA AND CIRCUIT BOARDJune 2024March 2026Allow2010NoNo
18708547FILTERS INCLUDING DETUNED BOX SECTION RESONATOR CONFIGURATIONS AND/OR RESONATORS HAVING BEVELED TOP SURFACESMay 2024February 2026Allow2100NoNo
18654673THERMAL ISOLATOR FOR MICROWAVE COMPONENTS WITH WAVEGUIDE FLANGESMay 2024October 2025Allow1800NoNo
18648408FERROELECTRIC FILM PHASE SHIFTER AND WAFER-LEVEL PHASED ARRAY CHIP SYSTEMApril 2024June 2024Allow100NoNo
18702564RF Filter and Communication Device having the SameApril 2024September 2025Allow1700NoNo
18691393WAVEGUIDEMarch 2024March 2026Allow2420YesNo
18441184ADJUSTMENT METHOD FOR ANTENNA DEVICE AND ANTENNA DEVICEFebruary 2024November 2025Allow2100NoNo
18413834Method for Servicing a Duplexer Having a Radio Frequency AssemblyJanuary 2024August 2024Allow710YesNo
18405299THIN FILM TYPE RESONATOR AND DESIGN METHOD THEREOFJanuary 2024February 2026Allow2511NoNo
18576922ELECTRONIC ELEMENT STORING PACKAGE AND ELECTRONIC DEVICEJanuary 2024July 2025Allow1800NoNo
18574430Fully-Reconfigurable Coaxial FilterDecember 2023August 2025Allow2000NoNo
18393176RESONATOR AND METHOD OF MANUFACTURING THE RESONATORDecember 2023January 2026Allow2501YesNo
18536908INTEGRATED THICK FILM SPACER FOR RF DEVICESDecember 2023October 2024Allow1010NoNo
18518978MAGNETICALLY TUNABLE FERRIMAGNETIC FILTERNovember 2023August 2024Allow810YesNo
1849923724GHZ BAND-PASS FILTERNovember 2023November 2025Allow2500NoNo
18495649VARIABLE REACTANCE CIRCUIT AND IMPEDANCE MATCHING DEVICE PROVIDED WITH SUCH CIRCUITOctober 2023March 2026Allow2811NoNo
18380903MULTI-MODE CAVITY FILTER AND CAVITY FILTERING DEVICEOctober 2023June 2025Allow2000YesNo
18482199DIRECTIONAL COUPLER, HIGH-FREQUENCY MODULE, AND COMMUNICATION DEVICEOctober 2023September 2025Allow2411YesNo
18475560DIELECTRIC FILTERSeptember 2023May 2025Allow2000NoNo
18372834INTEGRATED MICROSTRIP AND SUBSTRATE INTEGRATED WAVEGUIDE CIRCULATORS/ISOLATORS FORMED WITH CO-FIRED MAGNETIC-DIELECTRIC COMPOSITESSeptember 2023July 2024Allow1010NoNo
18371589DIELECTRIC RESONATOR, AND DIELECTRIC FILTER AND MULTIPLEXER USING SAMESeptember 2023January 2026Allow2811NoNo
18371061TUNING STRUCTURE AND ELECTRONIC DEVICE WITH IMPROVED TUNING EFFICIENCYSeptember 2023September 2025Allow2400NoNo
18551728Highly-Integrated Antenna Feed AssemblySeptember 2023November 2025Allow2600NoNo
18370686DIELECTRIC FILTERSeptember 2023May 2025Allow2000NoNo
18236198A MAGNETLESS CRYOGENIC CIRCULATORAugust 2023August 2025Allow2410NoNo
18547250MICROWAVE CIRCULATORAugust 2023November 2025Allow2720NoNo
18230936DIELECTRIC WAVEGUIDE FILTER AND COMMUNICATION DEVICEAugust 2023March 2026Allow3120YesNo
18229212DIELECTRICALLY LOADED FILTER WITH INCREASED POWER LOAD HANDLINGAugust 2023January 2026Abandon2910NoNo
18228315Duplexer Radio Frequency AssemblyJuly 2023November 2023Allow411NoNo
18273985NOVEL DIELECTRIC FILTERJuly 2023February 2025Allow1900NoNo
18224597RADIO FREQUENCY CIRCULATORJuly 2023August 2025Allow2500YesNo
18223398CAVITY FILTERJuly 2023September 2025Allow2611NoNo
18344977MULTIPOLE MULTIBAND ISOLATOR DEVICESJune 2023September 2025Allow2701NoNo
18258941WAVEGUIDEJune 2023January 2026Abandon3110NoNo
18258762ANALOG FRONT-END ARCHITECTURE FOR CAPACITIVE PRESSURE SENSORJune 2023October 2025Allow2800NoNo
18338322MULTI-BAND FILTERJune 2023July 2025Allow2510NoNo
18254452Dielectric FilterMay 2023December 2024Allow1900NoNo
18201211TRANSMISSION LINE AND ELECTRONIC DEVICEMay 2023April 2025Allow2300NoNo
18200011TRANSMISSION LINE AND ELECTRONIC DEVICEMay 2023July 2025Allow2610NoNo
18037666DIELECTRIC FILTERMay 2023December 2024Allow1900NoNo
18033845ResonatorApril 2023February 2026Allow3420NoNo
18138079CERAMIC WAVEGUIDE FILTER FOR ANTENNAApril 2023September 2025Allow2910NoNo
18136337MICRO-SUBMINIATURE MICROWAVE GYROMAGNETIC CIRCULATORApril 2023November 2024Allow1900NoNo
18134011CAVITY FILTER ASSEMBLYApril 2023February 2026Allow3510NoNo
18298357HIGH-FREQUENCY TRANSMISSION ELEMENTApril 2023February 2026Allow3411NoNo
18185756SHORT-WAVELENGTH SPIN WAVE TRANSDUCERMarch 2023March 2025Allow2400NoNo
181831753D FILTER AND FABRICATION METHOD THEREOFMarch 2023August 2025Allow2911NoNo
18120591POWER CONTROL FOR RF IMPEDANCE MATCHING NETWORKMarch 2023February 2025Allow2300NoNo
18180287WAVEGUIDE DEVICE AND METHOD OF MANUFACTURING THIS DEVICEMarch 2023November 2023Allow800NoNo
18116029Frequency Adjustable FilterMarch 2023June 2025Allow2711YesNo
18175098FILTER CIRCUITFebruary 2023July 2025Allow2811NoNo
18174965MULTILAYERED FILTER DEVICEFebruary 2023October 2025Allow3210YesNo
18114228RF FILTER ASSEMBLY FOR ANTENNAFebruary 2023July 2025Allow2910NoNo
18022229DIELECTRIC FILTER, AND AU, RU OR BS HAVING THE SAMEFebruary 2023June 2025Allow2810NoNo
18019017FILTER DEVICEJanuary 2023April 2025Allow2610NoNo
18018342DIGITAL PHASE SHIFTERJanuary 2023January 2025Allow2410NoNo
18096936MICROWAVE CIRCULATOR HAVING DISCONTINUOUS FERRIMAGNETIC ARRAYJanuary 2023August 2024Allow1900NoNo
18152256BROADBAND MAGNETOSTATIC SURFACE WAVE DEVICES WITH CUSTOMIZABLE FREQUENCY RESPONSEJanuary 2023March 2025Allow2600YesNo
18069389TUNABLE FILTERS AND ANTENNAS, AND METHODS OF MAKING AND USING THE SAMEDecember 2022October 2025Allow3410NoNo
18082360High Resolution Attenuator or Phase Shifter with Weighted BitsDecember 2022March 2024Allow1520NoNo
18066957ISOLATOR AND ITS ELECTRONIC SUBASSEMBLYDecember 2022May 2025Allow2910NoNo
18076059BRUSH PHASE SHIFTER ADAPTED FOR MULTIPORT ANTENNADecember 2022January 2025Allow2510YesNo
18071642CROSS-COUPLING STRUCTURE FOR DIELECTRIC CAVITY FILTERSNovember 2022August 2024Allow2100NoNo
17926455HOT HF COMPONENT WITH HF CAVITYNovember 2022January 2025Allow2610NoNo
17989486VARIABLE DIELECTRIC BASED ANTENNA WITH IMPROVED RESPONSE TIMENovember 2022February 2025Allow2701NoNo
18055993WAVEGUIDE CONNECTION STRUCTURE, DETERMINATION METHOD THEREOF, MANUFACTURING METHOD THEREOF, AND WAVEGUIDE SWITCH USING SAMENovember 2022November 2024Allow2400NoNo
17986824DYADIC RADIAL COUPLERNovember 2022June 2025Allow3111NoNo
17981603BAND PASS FILTER AND HIGH FREQUENCY FRONT-END CIRCUIT INCLUDING SAMENovember 2022August 2024Allow2100YesNo
17981415Two Probe Low Profile TunerNovember 2022August 2024Allow2200NoNo
17922819DIGITAL PHASE SHIFTERNovember 2022November 2024Allow2410NoNo
17979180COMBINED RF GENERATOR AND RF SOLID-STATE MATCHING NETWORKNovember 2022January 2024Allow1520NoNo
17974581CIRCUIT BOARD, CIRCUIT BOARD CONNECTION STRUCTURE, AND METHOD OF MANUFACTURING CIRCUIT BOARD CONNECTION STRUCTUREOctober 2022September 2024Allow2300NoNo
17970650FILTER DEVICE AND RADIO FREQUENCY FRONT-END CIRCUIT INCLUDING THE SAMEOctober 2022May 2025Allow3000NoNo
17965900Waveguide Slide Screw Tuner and MethodOctober 2022March 2025Allow2910NoNo
17919247FILTER STRUCTURE AND FILTER DEVICEOctober 2022October 2025Allow3620NoNo
17919246RESONANCE CIRCUIT AND FILTERING DEVICEOctober 2022October 2025Allow3620NoNo
17919084A TUNABLE WAVEGUIDE RESONATOROctober 2022February 2026Allow4030YesNo
17965680CIRCULATOR DESIGN AND METHODS OF FABRICATING THE CIRCULATOROctober 2022April 2025Allow3021YesNo
17964082LC FILTER, AND DIPLEXER AND MULTIPLEXER USING SAMEOctober 2022November 2024Allow2500NoNo
17963693TRANSFORMER FOR LOW LOSS AND APPARATUS INCLUDING THE SAMEOctober 2022January 2025Allow2710NoNo
17917738IRREVERSIBLE CIRCUIT ELEMENT AND METHOD OF MANUFACTURING IRREVERSIBLE CIRCUIT ELEMENTOctober 2022February 2025Allow2800NoNo
17938713BALUNOctober 2022September 2024Allow2300NoNo
17954788INTEGRATED WAVEGUIDE MICROCIRCUITSeptember 2022April 2025Allow3011YesNo
17953770NON-RECIPROCAL CIRCUIT ELEMENT AND COMMUNICATION APPARATUSSeptember 2022May 2024Abandon2010NoNo
17946627POWER DIVIDER AND SINGLE POLE DOUBLE THROW SWITCH DEVICE USING THE SAMESeptember 2022October 2024Allow2511NoNo
17906589PLANE FILTERSeptember 2022October 2024Allow2510NoNo
17945212DUAL-BAND 360 DEGREE PHASE SHIFTER USING SERIES/PARALLEL RESONANCE CIRCUIT FOR PHASED ARRAY ANTENNA SYSTEMSeptember 2022October 2024Allow2510NoNo
17941250WIDE BAND END LAUNCHER FOR COAXIAL LINE TO CO-PLANAR WAVEGUIDESeptember 2022December 2025Abandon3930NoNo
17940705RF MULTIPLEXER OF 5G MMWAVE LOW-LOSS BROADBAND WIRELESS HYBRID TYPE USING WAVEGUIDE CAVITY KA-BANDSeptember 2022December 2025Abandon3910NoNo
17930175DUAL-BAND TRANSFORM CIRCUIT STRUCTURESeptember 2022July 2024Allow2200NoNo
17903328W-BAND E-PLANE WAVEGUIDE BANDPASS FILTERSeptember 2022March 2023Allow700NoNo
17802987CAVITY FILTERS AND FILTER MODULES THEREFORAugust 2022July 2024Allow2300NoNo
17895670DIELECTRIC FILTER AND COMMUNICATION DEVICEAugust 2022March 2024Allow1800NoNo
17799687High-Q multi-mode dielectric resonant structure and dielectric filterAugust 2022April 2024Allow2000NoNo
17886576RADIAL POWER COMBINERAugust 2022August 2025Allow3611YesNo

Appeals Overview

This analysis examines appeal outcomes and the strategic value of filing appeals for examiner JONES, STEPHEN E.

Patent Trial and Appeal Board (PTAB) Decisions

Total PTAB Decisions
3
Examiner Affirmed
2
(66.7%)
Examiner Reversed
1
(33.3%)
Reversal Percentile
52.9%
Higher than average

What This Means

With a 33.3% 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
7
Allowed After Appeal Filing
2
(28.6%)
Not Allowed After Appeal Filing
5
(71.4%)
Filing Benefit Percentile
42.3%
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 JONES, STEPHEN E - Prosecution Strategy Guide

Executive Summary

Examiner JONES, STEPHEN E works in Art Unit 2843 and has examined 432 patent applications in our dataset. With an allowance rate of 91.9%, this examiner allows applications at a higher rate than most examiners at the USPTO. Applications typically reach final disposition in approximately 20 months.

Allowance Patterns

Examiner JONES, STEPHEN E's allowance rate of 91.9% places them in the 77% percentile among all USPTO examiners. This examiner is more likely to allow applications than most examiners at the USPTO.

Office Action Patterns

On average, applications examined by JONES, STEPHEN E receive 0.93 office actions before reaching final disposition. This places the examiner in the 7% 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 JONES, STEPHEN E is 20 months. This places the examiner in the 93% percentile for prosecution speed. Applications move through prosecution relatively quickly with this examiner.

Interview Effectiveness

Conducting an examiner interview provides a +5.6% benefit to allowance rate for applications examined by JONES, STEPHEN E. This interview benefit is in the 31% percentile among all examiners. Recommendation: Interviews provide a below-average benefit with this examiner.

Request for Continued Examination (RCE) Effectiveness

When applicants file an RCE with this examiner, 31.3% of applications are subsequently allowed. This success rate is in the 64% percentile among all examiners. Strategic Insight: RCEs show above-average effectiveness with this examiner. Consider whether your amendments or new arguments are strong enough to warrant an RCE versus filing a continuation.

After-Final Amendment Practice

This examiner enters after-final amendments leading to allowance in 48.5% of cases where such amendments are filed. This entry rate is in the 73% 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, 0.0% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 13% 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 62.5% of appeals filed. This is in the 41% percentile among all examiners. Of these withdrawals, 20.0% 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, 66.7% are granted (fully or in part). This grant rate is in the 73% 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 1.4% of allowed cases (in the 71% percentile). This examiner makes examiner's amendments more often than average to place applications in condition for allowance (MPEP § 1302.04).

Quayle Actions: This examiner issues Ex Parte Quayle actions in 1.0% of allowed cases (in the 61% 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:

    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.