Detailed information about the 100 most recent patent applications.
| Application Number | Title | Filing Date | Disposal Date | Disposition | Time (months) | Office Actions | Restrictions | Interview | Appeal |
|---|---|---|---|---|---|---|---|---|---|
| 18876768 | WAVEGUIDE TERMINATION STRUCTURE AND METHOD OF MANUFACTURE | December 2024 | March 2025 | Allow | 3 | 0 | 0 | No | No |
| 18919999 | POWER DIVIDER AND SINGLE POLE DOUBLE THROW SWITCH DEVICE USING THE SAME | October 2024 | March 2026 | Allow | 17 | 0 | 0 | No | No |
| 18899636 | CONTACTLESS HIGH POWER RF CONNECTOR | September 2024 | December 2024 | Allow | 2 | 0 | 0 | No | No |
| 18778297 | NOISE FILTER CIRCUIT | July 2024 | January 2026 | Allow | 18 | 0 | 0 | No | No |
| 18770370 | High Resolution Attenuator or Phase Shifter with Weighted Bits | July 2024 | July 2025 | Allow | 13 | 0 | 0 | No | No |
| 18723699 | ANTENNA AND CIRCUIT BOARD | June 2024 | March 2026 | Allow | 20 | 1 | 0 | No | No |
| 18708547 | FILTERS INCLUDING DETUNED BOX SECTION RESONATOR CONFIGURATIONS AND/OR RESONATORS HAVING BEVELED TOP SURFACES | May 2024 | February 2026 | Allow | 21 | 0 | 0 | No | No |
| 18654673 | THERMAL ISOLATOR FOR MICROWAVE COMPONENTS WITH WAVEGUIDE FLANGES | May 2024 | October 2025 | Allow | 18 | 0 | 0 | No | No |
| 18648408 | FERROELECTRIC FILM PHASE SHIFTER AND WAFER-LEVEL PHASED ARRAY CHIP SYSTEM | April 2024 | June 2024 | Allow | 1 | 0 | 0 | No | No |
| 18702564 | RF Filter and Communication Device having the Same | April 2024 | September 2025 | Allow | 17 | 0 | 0 | No | No |
| 18691393 | WAVEGUIDE | March 2024 | March 2026 | Allow | 24 | 2 | 0 | Yes | No |
| 18441184 | ADJUSTMENT METHOD FOR ANTENNA DEVICE AND ANTENNA DEVICE | February 2024 | November 2025 | Allow | 21 | 0 | 0 | No | No |
| 18413834 | Method for Servicing a Duplexer Having a Radio Frequency Assembly | January 2024 | August 2024 | Allow | 7 | 1 | 0 | Yes | No |
| 18405299 | THIN FILM TYPE RESONATOR AND DESIGN METHOD THEREOF | January 2024 | February 2026 | Allow | 25 | 1 | 1 | No | No |
| 18576922 | ELECTRONIC ELEMENT STORING PACKAGE AND ELECTRONIC DEVICE | January 2024 | July 2025 | Allow | 18 | 0 | 0 | No | No |
| 18574430 | Fully-Reconfigurable Coaxial Filter | December 2023 | August 2025 | Allow | 20 | 0 | 0 | No | No |
| 18393176 | RESONATOR AND METHOD OF MANUFACTURING THE RESONATOR | December 2023 | January 2026 | Allow | 25 | 0 | 1 | Yes | No |
| 18536908 | INTEGRATED THICK FILM SPACER FOR RF DEVICES | December 2023 | October 2024 | Allow | 10 | 1 | 0 | No | No |
| 18518978 | MAGNETICALLY TUNABLE FERRIMAGNETIC FILTER | November 2023 | August 2024 | Allow | 8 | 1 | 0 | Yes | No |
| 18499237 | 24GHZ BAND-PASS FILTER | November 2023 | November 2025 | Allow | 25 | 0 | 0 | No | No |
| 18495649 | VARIABLE REACTANCE CIRCUIT AND IMPEDANCE MATCHING DEVICE PROVIDED WITH SUCH CIRCUIT | October 2023 | March 2026 | Allow | 28 | 1 | 1 | No | No |
| 18380903 | MULTI-MODE CAVITY FILTER AND CAVITY FILTERING DEVICE | October 2023 | June 2025 | Allow | 20 | 0 | 0 | Yes | No |
| 18482199 | DIRECTIONAL COUPLER, HIGH-FREQUENCY MODULE, AND COMMUNICATION DEVICE | October 2023 | September 2025 | Allow | 24 | 1 | 1 | Yes | No |
| 18475560 | DIELECTRIC FILTER | September 2023 | May 2025 | Allow | 20 | 0 | 0 | No | No |
| 18372834 | INTEGRATED MICROSTRIP AND SUBSTRATE INTEGRATED WAVEGUIDE CIRCULATORS/ISOLATORS FORMED WITH CO-FIRED MAGNETIC-DIELECTRIC COMPOSITES | September 2023 | July 2024 | Allow | 10 | 1 | 0 | No | No |
| 18371589 | DIELECTRIC RESONATOR, AND DIELECTRIC FILTER AND MULTIPLEXER USING SAME | September 2023 | January 2026 | Allow | 28 | 1 | 1 | No | No |
| 18371061 | TUNING STRUCTURE AND ELECTRONIC DEVICE WITH IMPROVED TUNING EFFICIENCY | September 2023 | September 2025 | Allow | 24 | 0 | 0 | No | No |
| 18551728 | Highly-Integrated Antenna Feed Assembly | September 2023 | November 2025 | Allow | 26 | 0 | 0 | No | No |
| 18370686 | DIELECTRIC FILTER | September 2023 | May 2025 | Allow | 20 | 0 | 0 | No | No |
| 18236198 | A MAGNETLESS CRYOGENIC CIRCULATOR | August 2023 | August 2025 | Allow | 24 | 1 | 0 | No | No |
| 18547250 | MICROWAVE CIRCULATOR | August 2023 | November 2025 | Allow | 27 | 2 | 0 | No | No |
| 18230936 | DIELECTRIC WAVEGUIDE FILTER AND COMMUNICATION DEVICE | August 2023 | March 2026 | Allow | 31 | 2 | 0 | Yes | No |
| 18229212 | DIELECTRICALLY LOADED FILTER WITH INCREASED POWER LOAD HANDLING | August 2023 | January 2026 | Abandon | 29 | 1 | 0 | No | No |
| 18228315 | Duplexer Radio Frequency Assembly | July 2023 | November 2023 | Allow | 4 | 1 | 1 | No | No |
| 18273985 | NOVEL DIELECTRIC FILTER | July 2023 | February 2025 | Allow | 19 | 0 | 0 | No | No |
| 18224597 | RADIO FREQUENCY CIRCULATOR | July 2023 | August 2025 | Allow | 25 | 0 | 0 | Yes | No |
| 18223398 | CAVITY FILTER | July 2023 | September 2025 | Allow | 26 | 1 | 1 | No | No |
| 18344977 | MULTIPOLE MULTIBAND ISOLATOR DEVICES | June 2023 | September 2025 | Allow | 27 | 0 | 1 | No | No |
| 18258941 | WAVEGUIDE | June 2023 | January 2026 | Abandon | 31 | 1 | 0 | No | No |
| 18258762 | ANALOG FRONT-END ARCHITECTURE FOR CAPACITIVE PRESSURE SENSOR | June 2023 | October 2025 | Allow | 28 | 0 | 0 | No | No |
| 18338322 | MULTI-BAND FILTER | June 2023 | July 2025 | Allow | 25 | 1 | 0 | No | No |
| 18254452 | Dielectric Filter | May 2023 | December 2024 | Allow | 19 | 0 | 0 | No | No |
| 18201211 | TRANSMISSION LINE AND ELECTRONIC DEVICE | May 2023 | April 2025 | Allow | 23 | 0 | 0 | No | No |
| 18200011 | TRANSMISSION LINE AND ELECTRONIC DEVICE | May 2023 | July 2025 | Allow | 26 | 1 | 0 | No | No |
| 18037666 | DIELECTRIC FILTER | May 2023 | December 2024 | Allow | 19 | 0 | 0 | No | No |
| 18033845 | Resonator | April 2023 | February 2026 | Allow | 34 | 2 | 0 | No | No |
| 18138079 | CERAMIC WAVEGUIDE FILTER FOR ANTENNA | April 2023 | September 2025 | Allow | 29 | 1 | 0 | No | No |
| 18136337 | MICRO-SUBMINIATURE MICROWAVE GYROMAGNETIC CIRCULATOR | April 2023 | November 2024 | Allow | 19 | 0 | 0 | No | No |
| 18134011 | CAVITY FILTER ASSEMBLY | April 2023 | February 2026 | Allow | 35 | 1 | 0 | No | No |
| 18298357 | HIGH-FREQUENCY TRANSMISSION ELEMENT | April 2023 | February 2026 | Allow | 34 | 1 | 1 | No | No |
| 18185756 | SHORT-WAVELENGTH SPIN WAVE TRANSDUCER | March 2023 | March 2025 | Allow | 24 | 0 | 0 | No | No |
| 18183175 | 3D FILTER AND FABRICATION METHOD THEREOF | March 2023 | August 2025 | Allow | 29 | 1 | 1 | No | No |
| 18120591 | POWER CONTROL FOR RF IMPEDANCE MATCHING NETWORK | March 2023 | February 2025 | Allow | 23 | 0 | 0 | No | No |
| 18180287 | WAVEGUIDE DEVICE AND METHOD OF MANUFACTURING THIS DEVICE | March 2023 | November 2023 | Allow | 8 | 0 | 0 | No | No |
| 18116029 | Frequency Adjustable Filter | March 2023 | June 2025 | Allow | 27 | 1 | 1 | Yes | No |
| 18175098 | FILTER CIRCUIT | February 2023 | July 2025 | Allow | 28 | 1 | 1 | No | No |
| 18174965 | MULTILAYERED FILTER DEVICE | February 2023 | October 2025 | Allow | 32 | 1 | 0 | Yes | No |
| 18114228 | RF FILTER ASSEMBLY FOR ANTENNA | February 2023 | July 2025 | Allow | 29 | 1 | 0 | No | No |
| 18022229 | DIELECTRIC FILTER, AND AU, RU OR BS HAVING THE SAME | February 2023 | June 2025 | Allow | 28 | 1 | 0 | No | No |
| 18019017 | FILTER DEVICE | January 2023 | April 2025 | Allow | 26 | 1 | 0 | No | No |
| 18018342 | DIGITAL PHASE SHIFTER | January 2023 | January 2025 | Allow | 24 | 1 | 0 | No | No |
| 18096936 | MICROWAVE CIRCULATOR HAVING DISCONTINUOUS FERRIMAGNETIC ARRAY | January 2023 | August 2024 | Allow | 19 | 0 | 0 | No | No |
| 18152256 | BROADBAND MAGNETOSTATIC SURFACE WAVE DEVICES WITH CUSTOMIZABLE FREQUENCY RESPONSE | January 2023 | March 2025 | Allow | 26 | 0 | 0 | Yes | No |
| 18069389 | TUNABLE FILTERS AND ANTENNAS, AND METHODS OF MAKING AND USING THE SAME | December 2022 | October 2025 | Allow | 34 | 1 | 0 | No | No |
| 18082360 | High Resolution Attenuator or Phase Shifter with Weighted Bits | December 2022 | March 2024 | Allow | 15 | 2 | 0 | No | No |
| 18066957 | ISOLATOR AND ITS ELECTRONIC SUBASSEMBLY | December 2022 | May 2025 | Allow | 29 | 1 | 0 | No | No |
| 18076059 | BRUSH PHASE SHIFTER ADAPTED FOR MULTIPORT ANTENNA | December 2022 | January 2025 | Allow | 25 | 1 | 0 | Yes | No |
| 18071642 | CROSS-COUPLING STRUCTURE FOR DIELECTRIC CAVITY FILTERS | November 2022 | August 2024 | Allow | 21 | 0 | 0 | No | No |
| 17926455 | HOT HF COMPONENT WITH HF CAVITY | November 2022 | January 2025 | Allow | 26 | 1 | 0 | No | No |
| 17989486 | VARIABLE DIELECTRIC BASED ANTENNA WITH IMPROVED RESPONSE TIME | November 2022 | February 2025 | Allow | 27 | 0 | 1 | No | No |
| 18055993 | WAVEGUIDE CONNECTION STRUCTURE, DETERMINATION METHOD THEREOF, MANUFACTURING METHOD THEREOF, AND WAVEGUIDE SWITCH USING SAME | November 2022 | November 2024 | Allow | 24 | 0 | 0 | No | No |
| 17986824 | DYADIC RADIAL COUPLER | November 2022 | June 2025 | Allow | 31 | 1 | 1 | No | No |
| 17981603 | BAND PASS FILTER AND HIGH FREQUENCY FRONT-END CIRCUIT INCLUDING SAME | November 2022 | August 2024 | Allow | 21 | 0 | 0 | Yes | No |
| 17981415 | Two Probe Low Profile Tuner | November 2022 | August 2024 | Allow | 22 | 0 | 0 | No | No |
| 17922819 | DIGITAL PHASE SHIFTER | November 2022 | November 2024 | Allow | 24 | 1 | 0 | No | No |
| 17979180 | COMBINED RF GENERATOR AND RF SOLID-STATE MATCHING NETWORK | November 2022 | January 2024 | Allow | 15 | 2 | 0 | No | No |
| 17974581 | CIRCUIT BOARD, CIRCUIT BOARD CONNECTION STRUCTURE, AND METHOD OF MANUFACTURING CIRCUIT BOARD CONNECTION STRUCTURE | October 2022 | September 2024 | Allow | 23 | 0 | 0 | No | No |
| 17970650 | FILTER DEVICE AND RADIO FREQUENCY FRONT-END CIRCUIT INCLUDING THE SAME | October 2022 | May 2025 | Allow | 30 | 0 | 0 | No | No |
| 17965900 | Waveguide Slide Screw Tuner and Method | October 2022 | March 2025 | Allow | 29 | 1 | 0 | No | No |
| 17919247 | FILTER STRUCTURE AND FILTER DEVICE | October 2022 | October 2025 | Allow | 36 | 2 | 0 | No | No |
| 17919246 | RESONANCE CIRCUIT AND FILTERING DEVICE | October 2022 | October 2025 | Allow | 36 | 2 | 0 | No | No |
| 17919084 | A TUNABLE WAVEGUIDE RESONATOR | October 2022 | February 2026 | Allow | 40 | 3 | 0 | Yes | No |
| 17965680 | CIRCULATOR DESIGN AND METHODS OF FABRICATING THE CIRCULATOR | October 2022 | April 2025 | Allow | 30 | 2 | 1 | Yes | No |
| 17964082 | LC FILTER, AND DIPLEXER AND MULTIPLEXER USING SAME | October 2022 | November 2024 | Allow | 25 | 0 | 0 | No | No |
| 17963693 | TRANSFORMER FOR LOW LOSS AND APPARATUS INCLUDING THE SAME | October 2022 | January 2025 | Allow | 27 | 1 | 0 | No | No |
| 17917738 | IRREVERSIBLE CIRCUIT ELEMENT AND METHOD OF MANUFACTURING IRREVERSIBLE CIRCUIT ELEMENT | October 2022 | February 2025 | Allow | 28 | 0 | 0 | No | No |
| 17938713 | BALUN | October 2022 | September 2024 | Allow | 23 | 0 | 0 | No | No |
| 17954788 | INTEGRATED WAVEGUIDE MICROCIRCUIT | September 2022 | April 2025 | Allow | 30 | 1 | 1 | Yes | No |
| 17953770 | NON-RECIPROCAL CIRCUIT ELEMENT AND COMMUNICATION APPARATUS | September 2022 | May 2024 | Abandon | 20 | 1 | 0 | No | No |
| 17946627 | POWER DIVIDER AND SINGLE POLE DOUBLE THROW SWITCH DEVICE USING THE SAME | September 2022 | October 2024 | Allow | 25 | 1 | 1 | No | No |
| 17906589 | PLANE FILTER | September 2022 | October 2024 | Allow | 25 | 1 | 0 | No | No |
| 17945212 | DUAL-BAND 360 DEGREE PHASE SHIFTER USING SERIES/PARALLEL RESONANCE CIRCUIT FOR PHASED ARRAY ANTENNA SYSTEM | September 2022 | October 2024 | Allow | 25 | 1 | 0 | No | No |
| 17941250 | WIDE BAND END LAUNCHER FOR COAXIAL LINE TO CO-PLANAR WAVEGUIDE | September 2022 | December 2025 | Abandon | 39 | 3 | 0 | No | No |
| 17940705 | RF MULTIPLEXER OF 5G MMWAVE LOW-LOSS BROADBAND WIRELESS HYBRID TYPE USING WAVEGUIDE CAVITY KA-BAND | September 2022 | December 2025 | Abandon | 39 | 1 | 0 | No | No |
| 17930175 | DUAL-BAND TRANSFORM CIRCUIT STRUCTURE | September 2022 | July 2024 | Allow | 22 | 0 | 0 | No | No |
| 17903328 | W-BAND E-PLANE WAVEGUIDE BANDPASS FILTER | September 2022 | March 2023 | Allow | 7 | 0 | 0 | No | No |
| 17802987 | CAVITY FILTERS AND FILTER MODULES THEREFOR | August 2022 | July 2024 | Allow | 23 | 0 | 0 | No | No |
| 17895670 | DIELECTRIC FILTER AND COMMUNICATION DEVICE | August 2022 | March 2024 | Allow | 18 | 0 | 0 | No | No |
| 17799687 | High-Q multi-mode dielectric resonant structure and dielectric filter | August 2022 | April 2024 | Allow | 20 | 0 | 0 | No | No |
| 17886576 | RADIAL POWER COMBINER | August 2022 | August 2025 | Allow | 36 | 1 | 1 | Yes | No |
This analysis examines appeal outcomes and the strategic value of filing appeals for examiner JONES, STEPHEN E.
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.
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.
✓ 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 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.
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.
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.
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.
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.
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.
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.
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.
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.
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'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).
Based on the statistical analysis of this examiner's prosecution patterns, here are tailored strategic recommendations:
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.