Detailed information about the 100 most recent patent applications.
| Application Number | Title | Filing Date | Disposal Date | Disposition | Time (months) | Office Actions | Restrictions | Interview | Appeal |
|---|---|---|---|---|---|---|---|---|---|
| 18964068 | SYSTEMS AND METHODS FOR ESTIMATING SYMBOL TIMING IN RECEIVED DATA FRAMES | November 2024 | February 2025 | Allow | 2 | 0 | 0 | No | No |
| 18904166 | DELTA SIGMA MODULATION CIRCUIT, DIGITAL TRANSMISSION CIRCUIT, AND DIGITAL TRANSMITTER | October 2024 | January 2026 | Allow | 15 | 0 | 0 | No | No |
| 18903709 | COMPOSITE RECONFIGURABLE INTELLIGENT SURFACE SYSTEM FOR REAL TIME BEAM STEERING AND METHOD THEREOF | October 2024 | January 2026 | Allow | 16 | 0 | 0 | No | No |
| 18848483 | PROBABILISTIC CONSTELLATION SHAPING SCHEMES FOR MULTIPLE LAYER TRANSMISSIONS | September 2024 | March 2026 | Allow | 18 | 1 | 0 | No | No |
| 18844522 | METHODS AND WIRELESS DEVICES FOR ESTIMATING ANTENNA CALIBRATION ERROR IN A WIRELESS COMMUNICATION NETWORK | September 2024 | February 2026 | Allow | 17 | 1 | 0 | No | No |
| 18843570 | EQUALIZATION METHOD, EQUALIZATION DEVICE AND RECEIVING SYSTEM | September 2024 | October 2025 | Allow | 14 | 0 | 0 | No | No |
| 18819924 | METHOD AND APPARATUS FOR COMMUNICATION OF SIGNALS | August 2024 | February 2026 | Allow | 17 | 0 | 1 | No | No |
| 18817739 | TIME-ALIGNING DEVICE TRACE DATA | August 2024 | February 2026 | Allow | 18 | 0 | 0 | No | No |
| 18800049 | SYSTEM AND METHODS FOR OFFSET AND THRESHOLD CALIBRATION IN LOSS OF SIGNAL DETECTION CIRCUITS | August 2024 | October 2025 | Allow | 14 | 0 | 0 | No | No |
| 18797768 | RESPONDER AND POSITIONING SYSTEM | August 2024 | September 2025 | Allow | 14 | 0 | 0 | No | No |
| 18793128 | PHASE-LOCKED LOOP CIRCUIT AND CORRESPONDING METHOD OF OPERATION | August 2024 | September 2025 | Allow | 13 | 0 | 0 | No | No |
| 18785020 | CDR LOCK DETECTION BASED ON FREQUENCY DIFFERENTIALS | July 2024 | October 2025 | Allow | 14 | 0 | 0 | No | No |
| 18833070 | WIRELESS COMMUNICATION METHOD, WIRELESS COMMUNICATION SYSTEM, AND WIRELESS TRANSMISSION DEVICE | July 2024 | August 2025 | Allow | 13 | 0 | 0 | No | No |
| 18729416 | SIGNAL TRANSMISSION BASED ON TRANSFORMED SIGNAL CONSTELLATION | July 2024 | November 2025 | Allow | 16 | 1 | 0 | No | No |
| 18774825 | DIGITAL AIDED CLIPPING METHODS AND DEVICES FOR DIGITAL POWER AMPLIFIER | July 2024 | October 2025 | Allow | 15 | 1 | 0 | No | No |
| 18764807 | JOINT TIMING OFFSET, FREQUENCY OFFSET, AND CHANNEL ESTIMATION | July 2024 | November 2025 | Allow | 16 | 0 | 1 | No | No |
| 18720335 | TRANSMITTING DEVICE, RECEIVING DEVICE AND RECEIVING METHOD | June 2024 | March 2026 | Allow | 21 | 1 | 1 | No | No |
| 18719660 | TRANSMITTING DEVICE, RECEIVING DEVICE, AND MODULATION METHOD | June 2024 | December 2025 | Allow | 19 | 1 | 0 | No | No |
| 18677540 | MODIFIED SUPER-QUADRATURE AMPLITUDE MODULATION (QAM) MODULATION SCHEMES BASED ON LOW ORDER MOTHER QAM | May 2024 | July 2025 | Allow | 14 | 1 | 0 | Yes | No |
| 18671430 | DETECTION AND ACQUISITION OF SIGNALS OVER LARGE DOPPLER FREQUENCY RANGES | May 2024 | July 2025 | Allow | 14 | 0 | 0 | No | No |
| 18645362 | TRANSMITTER AND METHOD FOR DYNAMICALLY SETTING CURRENT MODE OF TRANSMITTER | April 2024 | August 2025 | Allow | 16 | 0 | 0 | No | No |
| 18633392 | Methods of Receiving Data Transmitted using Non-Uniform Multidimensional Constellation and Code Rate Pairs | April 2024 | October 2025 | Allow | 18 | 0 | 0 | No | No |
| 18631996 | LINEAR REDRIVER WITH TUNABLE LOW FREQUENCY AND HIGH FREQUENCY ZERO AT EQUALIZER STAGE | April 2024 | September 2025 | Allow | 18 | 0 | 0 | No | No |
| 18623658 | CODING AND MODULATION APPARATUS USING NON-UNIFORM CONSTELLATION | April 2024 | February 2025 | Allow | 10 | 1 | 0 | No | No |
| 18624025 | SYSTEM AND METHOD FOR COMMUNICATION UNDER STRONG AND DYNAMIC CO-CHANNEL INTERFERENCE | April 2024 | October 2024 | Allow | 6 | 0 | 0 | No | No |
| 18620869 | COMMUNICATING NONUNIFORM SOURCES USING SYSTEMATIC CODES | March 2024 | July 2025 | Allow | 15 | 0 | 0 | No | No |
| 18614780 | RECEIVER AND CLOCK AND DATA RECOVERY METHOD THEREOF | March 2024 | December 2025 | Allow | 20 | 0 | 0 | No | No |
| 18601471 | NON-BINARY POLAR CODES FOR PROBABILISTIC AMPLITUDE SHAPING | March 2024 | August 2025 | Allow | 17 | 0 | 1 | No | No |
| 18593861 | MODULATION CLASSIFICATION AND DEMODULATION SYSTEM WITH A NEURAL NETWORK | March 2024 | June 2025 | Allow | 15 | 0 | 0 | No | No |
| 18592298 | METHOD AND AN APPARATUS FOR GENERATING AN OUTPUT CLOCK IN A MULTI-LOOP PLL SYSTEM | February 2024 | August 2025 | Allow | 18 | 0 | 0 | No | No |
| 18585600 | PHASE SWEEPING PROCEDURE FOR AMBIENT INTERNET OF THINGS DEVICES | February 2024 | February 2026 | Allow | 24 | 1 | 0 | Yes | No |
| 18683780 | WIRELESS COMMUNICATION SYSTEM, WIRELESS COMMUNICATION METHOD, AND RECEPTION APPARATUS | February 2024 | May 2025 | Allow | 15 | 0 | 0 | No | No |
| 18440797 | FEED FORWARD EQUALIZERS WITH CURRENT MODE SAMPLING | February 2024 | October 2025 | Allow | 20 | 0 | 1 | No | No |
| 18424362 | SYSTEM AND METHOD OF PERFORMING CHANNEL SOUNDING FOR MODELING ULTRAWIDEBAND RADIO FREQUENCY CHANNELS | January 2024 | April 2025 | Allow | 15 | 0 | 0 | No | No |
| 18420807 | APPARATUS, METHOD AND RECORDING MEDIUM FOR DIGITAL CLOCK AND DATA RECOVERY | January 2024 | October 2025 | Allow | 20 | 0 | 0 | No | No |
| 18415386 | DEMODULATION FOR PROBABILISTIC AMPLITUDE SHAPED SIGNAL | January 2024 | January 2026 | Allow | 24 | 1 | 0 | No | No |
| 18412451 | System and Method for Real-Time Ultrabroadband Wireless Communications | January 2024 | May 2025 | Allow | 16 | 0 | 0 | No | No |
| 18404856 | CHANNEL RECIPROCITY-BASED PRECODING MATRIX CONFIGURATION METHOD AND APPARATUS | January 2024 | May 2025 | Allow | 16 | 2 | 0 | No | No |
| 18392526 | SIGNAL-TO-NOISE RATIO ADJUSTMENT | December 2023 | January 2026 | Allow | 25 | 1 | 0 | Yes | No |
| 18392172 | TRANSMITTER AND SIGNAL TRANSMITTING METHOD THEREOF | December 2023 | April 2025 | Allow | 16 | 0 | 0 | No | No |
| 18543765 | PACKET FORMATS FOR VEHICULAR NETWORKS | December 2023 | February 2025 | Allow | 14 | 1 | 0 | No | No |
| 18539638 | METHOD AND APPARATUS FOR INTEGRATION-BASED TIMING RECOVERY | December 2023 | August 2025 | Allow | 20 | 0 | 0 | No | No |
| 18566060 | DATA TRANSMISSION METHOD, COMMUNICATION NODE, AND COMPUTER READABLE STORAGE MEDIUM | November 2023 | March 2026 | Allow | 27 | 2 | 0 | No | No |
| 18524463 | PRETAP EQUALIZABLE CONTINUOUS TIME LINEAR EQUALIZER | November 2023 | March 2025 | Allow | 16 | 0 | 0 | No | No |
| 18516182 | Reflection Cancellation for Single-Ended Signaling | November 2023 | April 2025 | Allow | 16 | 0 | 0 | No | No |
| 18514009 | RADIO RECEIVER DEVICES | November 2023 | May 2025 | Allow | 18 | 1 | 0 | No | No |
| 18508820 | ENCODER-INTEGRATED TRANSMITTER AND TELEMETRY SYSTEM INCLUDING THE SAME | November 2023 | September 2025 | Allow | 22 | 2 | 0 | No | No |
| 18504476 | METHOD FOR IMPROVED SYNCHRONIZATION BETWEEN A TRANSMITTER AND A RECEIVER ON A WIRELESS NETWORK | November 2023 | June 2024 | Allow | 7 | 0 | 0 | No | No |
| 18504523 | METHOD FOR IMPROVED SYNCHRONIZATION BETWEEN A TRANSMITTER AND A RECEIVER ON A WIRELESS NETWORK | November 2023 | July 2024 | Allow | 8 | 1 | 0 | No | No |
| 18504496 | METHOD FOR IMPROVED SYNCHRONIZATION BETWEEN A TRANSMITTER AND A RECEIVER ON A WIRELESS NETWORK | November 2023 | June 2024 | Allow | 7 | 0 | 0 | No | No |
| 18557037 | VARIABLE-TO-FIXED DISTRIBUTION MATCHING FOR PROBABILISTIC CONSTELLATION SHAPING IN WIRELESS COMMUNICATIONS | October 2023 | February 2025 | Allow | 16 | 0 | 0 | No | No |
| 18287733 | SYSTEM AND METHOD FOR REMOTE DIGITAL TIME TRANSFER | October 2023 | February 2025 | Allow | 16 | 0 | 0 | No | No |
| 18490605 | TRANSMIT SPUR DETECTION AND MITIGATION FOR WIRELESS COMMUNICATIONS DEVICES | October 2023 | January 2025 | Allow | 15 | 2 | 0 | No | No |
| 18483040 | Secure And Energy Efficient Communication System For Nextgen Wireless Networks Overcoming High Peak-To-Average Power Ratio And Disguised Jamming | October 2023 | February 2025 | Allow | 16 | 0 | 0 | No | No |
| 18473348 | SIGNAL TRANSMISSION METHOD AND COMMUNICATION APPARATUS | September 2023 | July 2025 | Allow | 21 | 0 | 0 | No | No |
| 18468986 | ELECTRONIC DEVICE FOR HETEROGENEOUS PROTOCOL COMMUNICATION, COMMUNICATION SYSTEM INCLUDING THE SAME, AND OPERATING METHOD THEREOF | September 2023 | October 2025 | Allow | 25 | 1 | 0 | Yes | No |
| 18368262 | ELECTRONIC DEVICE AND OFFSET CALIBRATION METHOD | September 2023 | May 2025 | Allow | 20 | 0 | 0 | No | No |
| 18466438 | PHASE LOCKED LOOP CIRCUIT AND SEMICONDUCTOR DEVICE INCLUDING THE SAME | September 2023 | April 2025 | Allow | 19 | 0 | 0 | No | No |
| 18464263 | PBCH TIMING AND ASPECTS OF POLAR CODE DESIGN | September 2023 | April 2024 | Allow | 7 | 0 | 0 | No | No |
| 18547577 | METHOD FOR DETERMINING FULL-POWER TRANSMISSION CODEBOOK SUBSET AND DEVICE | August 2023 | November 2024 | Allow | 15 | 0 | 0 | No | No |
| 18363669 | TONE ROTATION SELECTION | August 2023 | July 2025 | Allow | 24 | 1 | 1 | No | No |
| 18261637 | COUNTING ACTIVE REFERENCE SIGNALS FOR A JOINT CHANNEL STATE INFORMATION REPORT | July 2023 | March 2025 | Allow | 20 | 0 | 0 | No | No |
| 18348628 | Interference and/or Clutter Cancellation Using Cross-Channel Equalization | July 2023 | April 2025 | Allow | 21 | 0 | 0 | No | No |
| 18347957 | METHOD AND DEVICE FOR CONFIGURING TIME BLOCK STRUCTURE FOR UWB COMMUNICATION | July 2023 | March 2025 | Allow | 20 | 0 | 0 | No | No |
| 18260299 | BASIS FUNCTION BASED BEAM SHAPE ASSISTANCE FOR DOWNLINK ANGLE OF DEPARTURE POSITIONING | July 2023 | July 2025 | Allow | 25 | 0 | 1 | No | No |
| 18345267 | AMPLITUDE MIRRORING DETECTION USING ADDITIONAL SHARED INFORMATION | June 2023 | August 2024 | Allow | 14 | 0 | 0 | No | No |
| 18345628 | Baseband Data Transmission Method and System | June 2023 | August 2024 | Allow | 14 | 0 | 0 | No | No |
| 18343564 | TIMING DETECTION DEVICE AND METHOD THEREOF | June 2023 | January 2025 | Allow | 19 | 1 | 0 | No | No |
| 18334884 | CODING AND MODULATION APPARATUS USING NON-UNIFORM CONSTELLATION | June 2023 | January 2024 | Allow | 7 | 0 | 0 | No | No |
| 18333248 | EQUALIZATION IN HIGH-SPEED DATA CHANNEL HAVING SPARSE IMPULSE RESPONSE | June 2023 | February 2024 | Allow | 8 | 1 | 0 | No | No |
| 18331267 | Splitting Unit for a Single Pair Ethernet Hybrid Line and Hybrid Ethernet Power System | June 2023 | July 2025 | Allow | 25 | 1 | 0 | No | No |
| 18205845 | SYSTEM AND METHOD FOR PHASE LOCKED LOOP (PLL) BASED REMOVAL OF MODULATED INTERFERENCE | June 2023 | August 2024 | Allow | 14 | 0 | 0 | No | No |
| 18204807 | CONTINUOUS TIME LINEAR EQUALIZER WITH PROGRAMMABLE INDUCTIVE HIGH FREQUENCY BOOST | June 2023 | September 2024 | Allow | 16 | 0 | 0 | No | No |
| 18252082 | SIGNALING STRUCTURE FOR WIRELESS COMMUNICATION NETWORK | May 2023 | November 2024 | Allow | 18 | 1 | 0 | No | No |
| 18143687 | COMMUNICATION SYSTEM AND COMMUNICATION METHOD | May 2023 | June 2024 | Allow | 13 | 1 | 0 | No | No |
| 18033670 | TRANSMITTER USING SYMBOL CONSTELLATION ROTATION AND SPECTRUM SHAPING, TRANSMISSION METHOD THEREOF, RECEIVER AND RECEPTION METHOD THEREOF IN COMMUNICATION SYSTEM | April 2023 | October 2024 | Allow | 18 | 1 | 0 | No | No |
| 18249778 | Dual Carrier Index Modulation (DC-IM) | April 2023 | August 2024 | Allow | 16 | 0 | 0 | No | No |
| 18302744 | HANDSHAKE OPERATION IN POINT-TO-MULTIPOINT ACCESS FROM DISTRIBUTION POINT | April 2023 | September 2024 | Allow | 17 | 2 | 0 | No | No |
| 18300717 | INFORMATION SENDING METHOD, INFORMATION RECEIVING METHOD, AND RELATED DEVICE | April 2023 | August 2024 | Allow | 16 | 0 | 0 | No | No |
| 18301152 | Clock Recovery Optimization in Data Interfaces | April 2023 | June 2024 | Allow | 15 | 0 | 0 | No | No |
| 18133976 | DECISION FEEDBACK EQUALIZATION EMBEDDED IN SLICER | April 2023 | February 2024 | Allow | 10 | 1 | 0 | No | No |
| 18245096 | TECHNIQUES FOR DETERMINING ORBITAL ANGULAR MOMENTUM TRANSMITTER CIRCLES | March 2023 | November 2025 | Allow | 32 | 2 | 0 | No | No |
| 18025424 | ANTI-INTERFERENCE CONTROL APPARATUS AND METHOD, TERMINAL DEVICE, AND READABLE STORAGE MEDIUM | March 2023 | April 2024 | Allow | 14 | 0 | 0 | No | No |
| 18044733 | SIGNAL PROCESSING APPARATUS, SIGNAL PROCESSING METHOD, AND RECEIVING APPARATUS | March 2023 | February 2025 | Allow | 23 | 0 | 0 | No | No |
| 18116912 | PROCESSING SYSTEM, RELATED INTEGRATED CIRCUIT, SYSTEM AND METHOD | March 2023 | April 2024 | Allow | 14 | 0 | 0 | No | No |
| 18178151 | RADIO FREQUENCY COMPONENT PREFERENCES IN HYBRID BEAMFORMING OPERATIONS AT MILLIMETER WAVE BANDS | March 2023 | May 2024 | Allow | 15 | 2 | 0 | Yes | No |
| 18174727 | CUSTOMIZED CFR NOISE SHAPING OVER SPECTRUM | February 2023 | December 2024 | Abandon | 22 | 1 | 0 | No | No |
| 18170261 | DUAL MODE POWER CONTROL CIRCUITS FOR RF TRANSMITTERS | February 2023 | May 2024 | Allow | 15 | 0 | 0 | No | No |
| 18041038 | OBSERVED ENVIRONMENTAL VECTOR FEEDBACK FOR WIRELESS COMMUNICATION | February 2023 | April 2025 | Allow | 26 | 1 | 0 | No | No |
| 18165786 | CONTINUOUS TIME LINEAR EQUALIZATION AND BANDWIDTH ADAPTATION USING ASYNCHRONOUS SAMPLING | February 2023 | July 2023 | Allow | 5 | 0 | 0 | No | No |
| 18158883 | SYSTEM AND METHOD FOR TRANSITION ENCODING WITH FLEXIBLE WORD-SIZE | January 2023 | September 2023 | Allow | 8 | 1 | 0 | No | No |
| 18154976 | COMMUNICATION DEVICE AND OPERATING METHOD | January 2023 | April 2024 | Allow | 15 | 0 | 0 | No | No |
| 18004839 | FEDERATED LEARNING FOR CLASSIFIERS AND AUTOENCODERS FOR WIRELESS COMMUNICATION | January 2023 | October 2024 | Allow | 21 | 0 | 0 | No | No |
| 18094584 | PACKET FORMATS FOR VEHICULAR NETWORKS | January 2023 | August 2023 | Allow | 7 | 0 | 0 | No | No |
| 18014936 | DATA MODULATION METHOD, COMMUNICATION DEVICE AND STORAGE MEDIUM | January 2023 | July 2024 | Allow | 18 | 1 | 0 | No | No |
| 18151171 | User-Configurable High-Speed Line Driver | January 2023 | September 2024 | Allow | 20 | 2 | 0 | No | No |
| 18092691 | CONVERGED RADIO UNIT CONFIGURED FOR SEMANTIC-LESS RETRANSMISSIONS | January 2023 | March 2025 | Allow | 26 | 0 | 0 | No | No |
| 18092112 | WIRELESS COMMUNICATION MODULATION USING ELECTROMAGNETIC POLARIZATION | December 2022 | September 2024 | Allow | 21 | 1 | 0 | No | No |
| 18090731 | TRANSMISSION METHOD, TRANSMISSION DEVICE, RECEPTION METHOD AND RECEPTION DEVICE | December 2022 | October 2023 | Allow | 9 | 1 | 0 | No | No |
| 18012876 | SWITCHING PERIOD SYMBOL LOCATION FOR RECEIVER SWITCHING | December 2022 | August 2024 | Allow | 20 | 0 | 0 | No | No |
This analysis examines appeal outcomes and the strategic value of filing appeals for examiner AGHDAM, FRESHTEH N.
With a 66.7% reversal rate, the PTAB has reversed the examiner's rejections more often than affirming them. This reversal rate is in the top 25% across the USPTO, indicating that appeals are more successful here than in most other areas.
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, 38.5% of applications that filed an appeal were subsequently allowed. This appeal filing benefit rate is above the USPTO average, suggesting that filing an appeal can be an effective strategy for prompting 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 is strategically valuable. The act of filing often prompts favorable reconsideration during the mandatory appeal conference.
Examiner AGHDAM, FRESHTEH N works in Art Unit 2632 and has examined 682 patent applications in our dataset. With an allowance rate of 93.8%, this examiner allows applications at a higher rate than most examiners at the USPTO. Applications typically reach final disposition in approximately 15 months.
Examiner AGHDAM, FRESHTEH N's allowance rate of 93.8% places them in the 82% percentile among all USPTO examiners. This examiner is more likely to allow applications than most examiners at the USPTO.
On average, applications examined by AGHDAM, FRESHTEH N receive 1.42 office actions before reaching final disposition. This places the examiner in the 23% 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 AGHDAM, FRESHTEH N is 15 months. This places the examiner in the 99% percentile for prosecution speed. Applications move through prosecution relatively quickly with this examiner.
Conducting an examiner interview provides a +6.5% benefit to allowance rate for applications examined by AGHDAM, FRESHTEH N. This interview benefit is in the 34% 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 41.5% of cases where such amendments are filed. This entry rate is in the 63% 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, 47.6% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 42% percentile among all examiners. Note: Pre-appeal conferences show below-average success with this examiner. Consider whether your arguments are strong enough to warrant a PAC request.
This examiner withdraws rejections or reopens prosecution in 75.7% of appeals filed. This is in the 67% percentile among all examiners. Of these withdrawals, 35.7% occur early in the appeal process (after Notice of Appeal but before Appeal Brief). Strategic Insight: This examiner shows above-average willingness to reconsider rejections during appeals. The mandatory appeal conference (MPEP § 1207.01) provides an opportunity for reconsideration.
When applicants file petitions regarding this examiner's actions, 36.7% are granted (fully or in part). This grant rate is in the 25% percentile among all examiners. Strategic Note: Petitions are rarely granted regarding this examiner's actions compared to other examiners. Ensure you have a strong procedural basis before filing a petition, as the Technology Center Director typically upholds this examiner's decisions.
Examiner's Amendments: This examiner makes examiner's amendments in 1.6% of allowed cases (in the 72% 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 48.8% of allowed cases (in the 97% 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.
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.