Detailed information about the 100 most recent patent applications.
| Application Number | Title | Filing Date | Disposal Date | Disposition | Time (months) | Office Actions | Restrictions | Interview | Appeal |
|---|---|---|---|---|---|---|---|---|---|
| 18810236 | Auto-Engaging Electrical Connections for Solar Panels | August 2024 | October 2024 | Allow | 1 | 2 | 0 | Yes | No |
| 18768878 | STACKED CELL AND PREPARATION METHOD THEREOF | July 2024 | March 2025 | Allow | 8 | 1 | 1 | Yes | No |
| 18647246 | SYSTEMS AND METHODS OF REMOTE OBJECT TRACKING | April 2024 | August 2024 | Allow | 4 | 1 | 0 | No | No |
| 18642631 | WINDOW-INTEGRATED TRANSPARENT PHOTOVOLTAIC MODULE | April 2024 | September 2025 | Abandon | 16 | 0 | 1 | No | No |
| 18440596 | Seebeck Effect renewable Energy Arrangement | February 2024 | July 2024 | Allow | 5 | 1 | 0 | Yes | No |
| 18436060 | THERMAL GRAPHENE POWER GENERATION DEVICES | February 2024 | June 2025 | Allow | 17 | 1 | 0 | No | No |
| 18420573 | METHOD OF MANUFACTURING THERMOELECTRIC TRANSDUCER | January 2024 | June 2025 | Abandon | 17 | 1 | 0 | No | No |
| 18411782 | PHOTOVOLTAIC DEVICES AND METHOD OF MAKING | January 2024 | March 2025 | Allow | 14 | 1 | 0 | Yes | No |
| 18408441 | Tandem Photovoltaic and Thermophotovoltaic Cell Assemblies for Converting Solar Energy to Electricity and Methods and Systems Therefor | January 2024 | September 2025 | Abandon | 21 | 1 | 0 | No | No |
| 18402713 | Solar Panel Environmental Isolation System | January 2024 | April 2025 | Allow | 16 | 1 | 1 | No | No |
| 18574080 | THERMOELECTRIC CONVERSION ELEMENT, THERMOELECTRIC CONVERSION MODULE, AND METHOD OF PRODUCING THERMOELECTRIC CONVERSION ELEMENT | December 2023 | February 2025 | Allow | 14 | 0 | 0 | No | No |
| 18395409 | DOUBLE-SIDED THERMOELECTRIC DEVICES WITH INSULATORS | December 2023 | May 2025 | Allow | 17 | 1 | 1 | Yes | No |
| 18572489 | THERMOELECTRIC DEVICE | December 2023 | January 2025 | Allow | 13 | 0 | 0 | No | No |
| 18569516 | PHOTOVOLTAIC STRING | December 2023 | July 2025 | Abandon | 19 | 1 | 0 | No | No |
| 18531654 | SOLAR CELL AND PHOTOVOLTAIC MODULE | December 2023 | July 2024 | Allow | 7 | 1 | 0 | No | No |
| 18529581 | PHOTOVOLTAIC MODULE AND MANUFACTURING METHOD THEREOF | December 2023 | July 2025 | Allow | 19 | 1 | 1 | Yes | No |
| 18525950 | THERMOELECTRIC CONVERSION MATERIAL, THERMOELECTRIC CONVERSION ELEMENT, THERMOELECTRIC CONVERSION MODULE, AND METHOD FOR PRODUCING THE THERMOELECTRIC CONVERSION MATERIAL | December 2023 | December 2024 | Allow | 13 | 0 | 0 | No | No |
| 18525139 | CELL MODULE | November 2023 | June 2025 | Allow | 19 | 1 | 0 | No | No |
| 18515335 | THERMOELECTRIC CONVERSION ELEMENT, THERMOELECTRIC CONVERSION MODULE, AND THERMOELECTRIC CONVERSION ELEMENT PRODUCING METHOD | November 2023 | July 2025 | Abandon | 20 | 1 | 0 | No | No |
| 18509206 | SUPPORTING SYSTEM FOR ROTATING SHAFTS AND SOLAR TRACKER WITH SAID SYSTEM | November 2023 | May 2025 | Allow | 18 | 1 | 0 | Yes | No |
| 18506088 | PHOTOVOLTAIC MODULE AND METHOD FOR PREPARING THE PHOTOVOLTAIC MODULE | November 2023 | November 2024 | Allow | 12 | 0 | 0 | No | No |
| 18501236 | SOLAR CELLS | November 2023 | June 2025 | Allow | 20 | 0 | 1 | Yes | No |
| 18558473 | COMPOSITIONS AND METHODS FOR MODIFYING PEROVSKITE SURFACES | November 2023 | April 2025 | Allow | 17 | 1 | 1 | Yes | No |
| 18556676 | PEROVSKITE/SILICON HETEROJUNCTION TANDEM SOLAR CELL AND PREPARATION METHOD THEREOF | October 2023 | November 2024 | Allow | 13 | 2 | 1 | No | No |
| 18487880 | ALGINATE HYDROGEL-BASED THIN-FILM HEAT FLUX SENSOR FOR BILLET CRYSTALLIZER | October 2023 | March 2025 | Allow | 17 | 0 | 0 | No | No |
| 18458074 | METHOD FOR MANUFACTURING PHOTOVOLTAIC MODULE AND PHOTOVOLTAIC MODULE | August 2023 | April 2024 | Allow | 8 | 1 | 1 | No | No |
| 18234845 | BUSBAR-FREE INTERDIGITATED BACK CONTACT SOLAR CELL AND INTERDIGITATED BACK CONTACT SOLAR CELL MODULE | August 2023 | September 2024 | Allow | 13 | 1 | 0 | Yes | No |
| 18341473 | ALL-BACK-CONTACT PHOTOVOLTAIC DEVICES USING CRACKED FILM LITHOGRAPHY | June 2023 | January 2024 | Allow | 7 | 0 | 1 | No | No |
| 18334480 | HYBRID SYSTEM FOR ELECTRICITY AND WATER GENERATION, PASSIVE COOLING INDUCED CO-GENERATOR APPARATUS, AND MANUFACTURING METHOD THEREFOR | June 2023 | April 2024 | Allow | 11 | 1 | 1 | Yes | No |
| 18333027 | ARTIFICIAL INDOOR PHOTOVOLTAIC CELL AND MANUFACTURING METHOD THEREOF | June 2023 | February 2025 | Abandon | 20 | 3 | 0 | Yes | No |
| 18255178 | HIGH-POWER SHINGLED PHOTOVOLTAIC STRING CONTROLLABLE IN LENGTH AND WIDTH AND METHOD FOR MANUFACTURING MODULE THEREOF | May 2023 | May 2025 | Allow | 23 | 1 | 0 | Yes | No |
| 18321136 | EFFICIENT AND STABLE P-I-N STRUCTURED PEROVSKITE SOLAR CELLS | May 2023 | June 2024 | Allow | 13 | 1 | 1 | Yes | No |
| 18037286 | TANDEM PHOTOVOLTAIC DEVICE | May 2023 | February 2025 | Allow | 21 | 0 | 0 | No | No |
| 18317774 | Window Systems and Components | May 2023 | March 2024 | Allow | 10 | 1 | 0 | No | No |
| 18314412 | MULTILAYER JUNCTION PHOTOELECTRIC CONVERSION ELEMENT AND METHOD FOR MANUFACTURING THE SAME | May 2023 | June 2025 | Abandon | 25 | 2 | 1 | No | No |
| 18313847 | SOLAR ENERGY RECEIVER | May 2023 | March 2025 | Allow | 22 | 3 | 0 | Yes | No |
| 18312534 | SYSTEMS AND METHODS OF REMOTE OBJECT TRACKING | May 2023 | March 2024 | Allow | 11 | 1 | 0 | Yes | No |
| 18306576 | MATERIALS FOR STABILIZING SEMICONDUCTORS AND METHODS OF MAKING THE SAME | April 2023 | June 2024 | Allow | 14 | 1 | 1 | Yes | No |
| 18027180 | THERMOELECTRIC ELEMENT | March 2023 | June 2025 | Allow | 27 | 1 | 1 | Yes | No |
| 18027066 | THERMOELECTRIC MODULE AND POWER GENERATION DEVICE INCLUDING SAME | March 2023 | September 2024 | Allow | 18 | 2 | 0 | Yes | No |
| 18121620 | INTERLOCKING SOLAR ROOF PANELS, METHOD OF INSTALLATION THEREOF, AND KIT | March 2023 | December 2024 | Abandon | 21 | 1 | 1 | No | No |
| 18044917 | QUINOXALINE-BASED CONJUGATED POLYMER, CONTAINING CYANO GROUP, FOR POLYMER SOLAR CELL DONOR, AND POLYMER SOLAR CELL COMPRISING SAME | March 2023 | December 2024 | Abandon | 22 | 1 | 1 | No | No |
| 18178407 | PHOTOELECTRIC CONVERSION APPARATUS HAVING FILLER MEMBER AND AIRGAP ARRANGED IN INTERIOR OF TRENCH PORTION, PHOTOELECTRIC CONVERSION SYSTEM, AND MOVING BODY | March 2023 | April 2025 | Allow | 25 | 1 | 0 | Yes | No |
| 18172984 | PHOTOVOLTAIC SHUTDOWN CIRCUIT AND PHOTOVOLTAIC SYSTEM | February 2023 | September 2024 | Allow | 19 | 0 | 0 | No | No |
| 18106481 | SOLAR POWER GENERATION SYSTEM | February 2023 | November 2024 | Allow | 21 | 1 | 1 | Yes | No |
| 18163840 | Broad-spectrum solar energy system having optical rectenna and photovoltaic cell | February 2023 | June 2023 | Allow | 4 | 0 | 0 | No | No |
| 18163694 | THERMOELECTRIC COMPOSITE, PREPARATION METHOD THEREFOR, AND THERMOELECTRIC DEVICE AND SEMICONDUCTOR DEVICE EACH COMPRISING THERMOELECTRIC COMPOSITE | February 2023 | August 2024 | Allow | 18 | 1 | 1 | No | No |
| 18099271 | LOW-COST PASSIVATED CONTACT FULL-BACK ELECTRODE SOLAR CELL AND PREPARATION METHOD THEREOF | January 2023 | April 2024 | Allow | 14 | 0 | 1 | No | No |
| 18156621 | THERMOELECTRIC DEVICE, THERMOELECTRIC UNIT FOR THERMOELECTRIC DEVICE, AND ITS METHOD OF MAKING | January 2023 | November 2024 | Abandon | 22 | 1 | 1 | No | No |
| 18096293 | EXPANDABLE SPLICE FOR A SOLAR POWER SYSTEM | January 2023 | July 2024 | Allow | 18 | 1 | 0 | Yes | No |
| 18005070 | THERMOELECTRIC POWER GENERATION MODULE AND METHOD OF MANUFACTURING THERMOELECTRIC POWER GENERATION MODULE | January 2023 | July 2024 | Allow | 18 | 1 | 1 | Yes | No |
| 18005040 | PHOTODETECTOR | January 2023 | November 2024 | Allow | 22 | 1 | 1 | Yes | No |
| 18094639 | PHOTO-CHARGING STORAGE DEVICE | January 2023 | September 2023 | Allow | 8 | 1 | 0 | No | No |
| 18092097 | ARTICULATING JOINT SOLAR PANEL ARRAY | December 2022 | July 2024 | Allow | 19 | 3 | 1 | Yes | No |
| 18092092 | ARTICULATING JOINT SOLAR PANEL ARRAY | December 2022 | November 2023 | Allow | 10 | 2 | 1 | Yes | No |
| 18091260 | SOLAR CELL, PHOTOVOLTAIC MODULE, AND METHOD FOR MANUFACTURING PHOTOVOLTAIC MODULE | December 2022 | September 2024 | Allow | 21 | 3 | 1 | Yes | No |
| 18145819 | Integrated Bypass Diode Schemes for Solar Modules | December 2022 | July 2024 | Allow | 19 | 1 | 1 | Yes | No |
| 18087310 | SOLAR MODULE CLAMP | December 2022 | September 2023 | Allow | 9 | 1 | 0 | No | No |
| 18080923 | TWO-STAGE COMBUSTOR FOR THERMOPHOTOVOLTAIC GENERATOR | December 2022 | April 2023 | Allow | 4 | 0 | 0 | No | No |
| 18078676 | PHOTOVOLTAIC MODULE AND MANUFACTURING METHOD THEREOF | December 2022 | October 2023 | Allow | 11 | 1 | 1 | No | No |
| 18073275 | THERMOELECTRIC CONVERSION ELEMENT AND MANUFACTURING METHOD FOR THERMOELECTRIC CONVERSION ELEMENT | December 2022 | March 2023 | Allow | 4 | 0 | 0 | No | No |
| 18059409 | PHOTOVOLTAIC MODULE AND METHOD FOR PREPARING THE PHOTOVOLTAIC MODULE | November 2022 | October 2023 | Allow | 10 | 0 | 0 | No | No |
| 17927636 | PHOTOVOLTAIC STRING AND ASSOCIATED METHODS | November 2022 | June 2025 | Abandon | 31 | 1 | 1 | No | No |
| 17993195 | SYSTEM AND METHOD FOR WORK FUNCTION REDUCTION AND THERMIONIC ENERGY CONVERSION | November 2022 | June 2024 | Allow | 19 | 4 | 0 | Yes | No |
| 18057759 | THERMOELECTRIC CONVERSION UNIT | November 2022 | January 2024 | Allow | 14 | 0 | 0 | No | No |
| 18056161 | ANTIREFLECTIVE STRUCTURES FOR COVER GLASSES IN SINGLE OR MULTIJUNCTION SOLAR CELLS | November 2022 | September 2024 | Abandon | 22 | 1 | 1 | Yes | No |
| 17988319 | SOLAR MODULE | November 2022 | January 2024 | Allow | 14 | 2 | 0 | Yes | No |
| 17925645 | PHOTOVOLTAIC MODULE WITH ENHANCED HEAT EXTRACTION | November 2022 | September 2024 | Allow | 22 | 1 | 1 | Yes | No |
| 18055637 | ENHANCED THERMOELECTRIC PERFORMANCE OF DOPED PEROVSKITE MATERIALS | November 2022 | September 2024 | Abandon | 23 | 3 | 0 | No | No |
| 17984915 | ADAPTIVE PHOTOVOLTAIC SYSTEM | November 2022 | August 2024 | Allow | 21 | 2 | 1 | Yes | No |
| 17984172 | SOLAR POWER SYSTEM AND SUPPORT HOUSING THEREOF | November 2022 | December 2023 | Allow | 13 | 1 | 1 | Yes | No |
| 17978709 | LIGHT MANAGEMENT SYSTEMS FOR OPTIMIZING PERFORMANCE OF BIFACIAL SOLAR MODULE | November 2022 | June 2024 | Allow | 20 | 3 | 1 | Yes | No |
| 17971813 | Preparation method of a stretchable inorganic thermoelectric thin film and the stretchable inorganic thermoelectric thin film prepared by the same | October 2022 | August 2023 | Allow | 10 | 1 | 1 | Yes | No |
| 17963899 | COMPOSITION | October 2022 | September 2025 | Abandon | 36 | 0 | 1 | No | No |
| 17961465 | HOT CARRIER SOLAR CELL AND TANDEM SOLAR CELL | October 2022 | September 2024 | Abandon | 23 | 3 | 1 | No | No |
| 17960644 | THERMOELECTRIC TRANSDUCER, THERMOELECTRIC MODULE, BINDER AND METHOD FOR MANUFACTURING THERMOELECTRIC TRANSDUCER | October 2022 | November 2023 | Allow | 14 | 1 | 1 | No | No |
| 17935394 | PHOTOVOLTAIC MODULE AND CONNECTION ARRANGEMENT FOR A PHOTOVOLTAIC MODULE | September 2022 | August 2023 | Allow | 11 | 1 | 0 | Yes | No |
| 17951076 | BACK CONTACT SOLAR CELL STRING AND PREPARATION METHOD THEREFOR, MODULE, AND SYSTEM | September 2022 | August 2023 | Allow | 10 | 1 | 0 | No | No |
| 17913522 | THERMOELECTRIC CONVERSION MODULE | September 2022 | October 2023 | Allow | 12 | 1 | 0 | Yes | No |
| 17906937 | METHOD FOR PREPARING THERMOELECTRIC THICK FILM | September 2022 | February 2024 | Allow | 17 | 1 | 0 | Yes | No |
| 17911924 | METHOD FOR PRODUCING THERMOELECTRIC CONVERSION ELEMENT | September 2022 | November 2023 | Allow | 14 | 0 | 0 | No | No |
| 17938990 | SOLAR CELL, MULTI-JUNCTION SOLAR CELL, SOLAR CELL MODULE, AND PHOTOVOLTAIC POWER GENERATION SYSTEM | September 2022 | December 2023 | Allow | 15 | 0 | 0 | No | No |
| 17903942 | HYBRID PEROVSKITE SOLAR CELL WITH ORGANOSELENIUM-BASED POLYMER HOLE TRANSPORT LAYER | September 2022 | September 2023 | Allow | 12 | 2 | 0 | No | No |
| 17759432 | SOLAR CELL MODULE AND METHOD FOR OPERATING A SOLAR CELL MODULE | August 2022 | November 2024 | Allow | 28 | 3 | 0 | Yes | No |
| 17874934 | CROSSLINKED NANOPARTICLE THIN FILM, PREPARATION METHOD THEREOF, AND THIN FILM OPTOELECTRONIC DEVICE HAVING THE SAME | July 2022 | July 2023 | Allow | 12 | 1 | 1 | Yes | No |
| 17642684 | CADMIUM TELLURIDE SOLAR CELL AND PREPARATION METHOD THEREOF | June 2022 | August 2024 | Abandon | 29 | 1 | 1 | No | No |
| 17780937 | TRANSPARENT CONDUCTIVE OXIDE FILM AND HETEROJUNCTION SOLAR CELL | May 2022 | July 2025 | Abandon | 38 | 2 | 1 | No | No |
| 17779623 | FLEXIBLE THERMOELECTRIC DEVICE | May 2022 | February 2024 | Allow | 21 | 1 | 0 | Yes | No |
| 17769742 | INTEGRATED THERMOELECTRIC DEVICES ON INSULATING MEDIA | April 2022 | November 2023 | Allow | 19 | 1 | 0 | Yes | No |
| 17769352 | THERMOELECTRIC CONVERSION ELEMENT, METHOD FOR MANUFACTURING THE SAME, AND THERMOELECTRIC CONVERSION DEVICE | April 2022 | October 2024 | Allow | 30 | 1 | 1 | Yes | No |
| 17718433 | OPTICAL SOLAR ENHANCER | April 2022 | October 2023 | Allow | 18 | 1 | 0 | Yes | No |
| 17658725 | STABLE PEROVSKITE MODULE INTERCONNECTS | April 2022 | March 2023 | Allow | 12 | 1 | 0 | No | No |
| 17767963 | Efficient Back Passivation Crystalline Silicon Solar Cell and Manufacturing Method Therefor | April 2022 | May 2025 | Abandon | 38 | 2 | 2 | No | No |
| 17767435 | PHOTOVOLTAIC MODULE | April 2022 | May 2024 | Allow | 25 | 1 | 0 | Yes | No |
| 17766777 | THERMOELECTRIC MODULE AND METHOD FOR MANUFACTURING THERMOELECTRIC MODULE POST | April 2022 | January 2025 | Allow | 33 | 2 | 1 | Yes | No |
| 17703376 | CROSS-TIED PHOTOVOLTAIC ARRAY | March 2022 | August 2023 | Allow | 17 | 1 | 0 | Yes | No |
| 17691876 | System and Method for Converting and Transmitting Energy | March 2022 | October 2023 | Allow | 20 | 1 | 1 | No | No |
| 17684168 | Peel-off Patterning Method for Fabrication of Organic Optoelectronic Devices | March 2022 | September 2024 | Allow | 30 | 3 | 1 | Yes | No |
| 17682897 | TRANSPARENT ELECTRODE, METHOD OF PRODUCING TRANSPARENT ELECTRODE, AND ELECTRONIC DEVICE | February 2022 | November 2023 | Allow | 20 | 1 | 1 | Yes | No |
| 17803123 | Thermoelectric generator array | February 2022 | January 2024 | Allow | 23 | 1 | 0 | Yes | No |
This analysis examines appeal outcomes and the strategic value of filing appeals for examiner KANG, TAE-SIK.
With a 25.0% reversal rate, the PTAB affirms the examiner's rejections in the vast majority of cases. This reversal rate is below the USPTO average, indicating that appeals face more challenges 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, 26.7% 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 face challenges. Ensure your case has strong merit before committing to full Board review.
⚠ Filing a Notice of Appeal shows limited benefit. Consider other strategies like interviews or amendments before appealing.
Examiner KANG, TAE-SIK works in Art Unit 1726 and has examined 260 patent applications in our dataset. With an allowance rate of 63.1%, this examiner allows applications at a lower rate than most examiners at the USPTO. Applications typically reach final disposition in approximately 36 months.
Examiner KANG, TAE-SIK's allowance rate of 63.1% places them in the 23% percentile among all USPTO examiners. This examiner is less likely to allow applications than most examiners at the USPTO.
On average, applications examined by KANG, TAE-SIK receive 2.74 office actions before reaching final disposition. This places the examiner in the 80% percentile for office actions issued. This examiner issues more office actions than most examiners, which may indicate thorough examination or difficulty in reaching agreement with applicants.
The median time to disposition (half-life) for applications examined by KANG, TAE-SIK is 36 months. This places the examiner in the 35% percentile for prosecution speed. Prosecution timelines are slightly slower than average with this examiner.
Conducting an examiner interview provides a +24.8% benefit to allowance rate for applications examined by KANG, TAE-SIK. This interview benefit is in the 71% percentile among all examiners. Recommendation: Interviews provide an above-average benefit with this examiner and are worth considering.
When applicants file an RCE with this examiner, 16.5% of applications are subsequently allowed. This success rate is in the 13% percentile among all examiners. Strategic Insight: RCEs show lower effectiveness with this examiner compared to others. Consider whether a continuation application might be more strategic, especially if you need to add new matter or significantly broaden claims.
This examiner enters after-final amendments leading to allowance in 13.0% of cases where such amendments are filed. This entry rate is in the 13% percentile among all examiners. Strategic Recommendation: This examiner rarely enters after-final amendments compared to other examiners. You should generally plan to file an RCE or appeal rather than relying on after-final amendment entry. Per MPEP § 714.12, primary examiners have discretion in entering after-final amendments, and this examiner exercises that discretion conservatively.
When applicants request a pre-appeal conference (PAC) with this examiner, 133.3% result in withdrawal of the rejection or reopening of prosecution. This success rate is in the 85% percentile among all examiners. Strategic Recommendation: Pre-appeal conferences are highly effective with this examiner compared to others. Before filing a full appeal brief, strongly consider requesting a PAC. The PAC provides an opportunity for the examiner and supervisory personnel to reconsider the rejection before the case proceeds to the PTAB.
This examiner withdraws rejections or reopens prosecution in 66.7% of appeals filed. This is in the 47% percentile among all examiners. Of these withdrawals, 37.5% 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.
When applicants file petitions regarding this examiner's actions, 96.3% are granted (fully or in part). This grant rate is in the 89% percentile among all examiners. Strategic Note: Petitions are frequently granted regarding this examiner's actions compared to other examiners. Per MPEP § 1002.02(c), various examiner actions are petitionable to the Technology Center Director, including prematureness of final rejection, refusal to enter amendments, and requirement for information. If you believe an examiner action is improper, consider filing a petition.
Examiner's Amendments: This examiner makes examiner's amendments in 0.0% of allowed cases (in the 4% 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 0.0% of allowed cases (in the 5% percentile). This examiner rarely issues Quayle actions compared to other examiners. Allowances typically come directly without a separate action for formal matters.
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.