Detailed information about the 100 most recent patent applications.
| Application Number | Title | Filing Date | Disposal Date | Disposition | Time (months) | Office Actions | Restrictions | Interview | Appeal |
|---|---|---|---|---|---|---|---|---|---|
| 19229830 | TERRAIN-FOLLOWING SOLAR TRACKER SYSTEM | June 2025 | January 2026 | Allow | 8 | 1 | 0 | No | No |
| 19120514 | OPTICALLY CONCENTRATED THERMALLY STABILIZED PHOTOVOLTAIC SYSTEM AND METHOD | April 2025 | December 2025 | Allow | 8 | 1 | 1 | No | No |
| 18848852 | METHOD FOR PRODUCING SOLAR CELL STRING, AND SOLAR CELL STRING | September 2024 | March 2026 | Allow | 18 | 0 | 1 | No | No |
| 18821949 | PEROVSKITE SOLAR CELL AND MANUFACTURING METHOD | August 2024 | January 2026 | Allow | 17 | 1 | 0 | No | No |
| 18806261 | METHODS FOR MANUFACTURING A SOLAR CELL | August 2024 | March 2026 | Allow | 19 | 1 | 1 | No | No |
| 18793197 | PHOTOVOLTAIC CELL ASSEMBLY WITH ULTRAVIOLET FILTERING | August 2024 | January 2026 | Allow | 17 | 0 | 1 | No | No |
| 18791864 | SOLAR PANEL MODULE CLAMP WITH GUSSETS | August 2024 | June 2025 | Allow | 11 | 0 | 0 | No | No |
| 18782978 | THERMOELECTRIC CONVERSION MODULE AND THERMOELECTRIC CONVERSION SYSTEM | July 2024 | February 2026 | Abandon | 19 | 1 | 0 | No | No |
| 18757722 | SOLAR CELL, PREPARATION METHOD THEREOF AND PHOTOVOLTAIC MODULE | June 2024 | January 2026 | Allow | 19 | 1 | 0 | No | No |
| 18757310 | CONDUCTIVE PASTE AND SOLAR CELL | June 2024 | February 2026 | Allow | 20 | 1 | 1 | No | No |
| 18678131 | POWER RECEIVING SYSTEM | May 2024 | January 2026 | Abandon | 20 | 2 | 0 | No | No |
| 18646490 | SOLAR CELL, TANDEM SOLAR CELL, AND PHOTOVOLTAIC MODULE | April 2024 | November 2025 | Allow | 19 | 1 | 0 | No | No |
| 18701090 | Solar Energy Storage And Generation System | April 2024 | November 2025 | Allow | 20 | 1 | 0 | Yes | No |
| 18698244 | COOLING METHOD AND APPARATUS, ESPECIALLY FOR APPLICATION IN THE FIELD OF PHOTOVOLTAICS | April 2024 | March 2026 | Abandon | 23 | 0 | 1 | No | No |
| 18623705 | HOLE TRANSPORT MATERIAL, AND PHOTOELECTRIC CONVERSION ELEMENT AND ORGANIC SOLAR CELL USING HOLE TRANSPORT MATERIAL | April 2024 | February 2026 | Abandon | 22 | 1 | 1 | No | No |
| 18696772 | Optomechanical Systems And Methods To Regulate Light Transmission And Electricity Production | March 2024 | February 2026 | Abandon | 23 | 0 | 1 | No | No |
| 18690964 | PHOTOELECTRIC CONVERSION ELEMENT AND COMPOUND | March 2024 | March 2026 | Allow | 24 | 2 | 1 | Yes | No |
| 18576949 | HETEROJUNCTION CELL AND METHOD FOR PREPARING SAME | January 2024 | March 2026 | Allow | 26 | 1 | 1 | No | No |
| 18574096 | PHOTOELECTRIC CONVERSION ELEMENT AND METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION ELEMENT | December 2023 | January 2026 | Allow | 25 | 2 | 0 | No | No |
| 18564431 | Heating and/or cooling module for a photovoltaic panel | November 2023 | December 2025 | Abandon | 24 | 0 | 1 | No | No |
| 18520343 | RECEIVER FOR FREE-SPACE OPTICAL POWER BEAMING | November 2023 | July 2025 | Allow | 20 | 1 | 1 | No | No |
| 18287967 | GREENFIELD LOW-PROFILE DENSE-SPACED SOLAR PANEL ARRAY ENERGY SYSTEM | October 2023 | December 2025 | Allow | 26 | 1 | 1 | No | No |
| 18287563 | Storm Resistant Mounting Methods for Renewable Energy Devices | October 2023 | December 2025 | Allow | 26 | 2 | 1 | Yes | No |
| 18485424 | METHOD FOR MANUFACTURING A THERMOELECTRIC STRUCTURE | October 2023 | October 2025 | Abandon | 24 | 0 | 1 | No | No |
| 18554991 | SOLAR CELL AND MANUFACTURING METHOD THEREFOR | October 2023 | November 2025 | Allow | 26 | 1 | 1 | No | No |
| 18379146 | ORGANIC-INORGANIC ADHESION LAYER AND ITS USE IN PEROVSKITE SOLAR CELLS AND MODULES | October 2023 | January 2026 | Allow | 27 | 2 | 1 | No | No |
| 18483909 | SOLAR CELL AND MANUFACTURING METHOD OF THE SAME | October 2023 | August 2025 | Allow | 23 | 1 | 1 | No | No |
| 18372602 | VISIBLY TRANSPARENT, NEAR-INFRARED-ABSORBING AND ULTRAVIOLET-ABSORBING PHOTOVOLTAIC DEVICES | September 2023 | March 2026 | Abandon | 30 | 1 | 1 | No | No |
| 18244887 | Solar Module Attachment Devices | September 2023 | September 2025 | Allow | 24 | 1 | 1 | No | No |
| 18458868 | Module Layup for Perovskite-Silicon Tandem Solar Cells | August 2023 | November 2025 | Allow | 27 | 1 | 1 | No | No |
| 18452675 | SOLAR MODULE WASHER CLIP | August 2023 | August 2025 | Allow | 24 | 1 | 1 | No | No |
| 18453206 | Composite Materials for Transport Layers in Perovskite Solar Cells | August 2023 | March 2026 | Allow | 31 | 3 | 0 | Yes | No |
| 18448603 | METHOD FOR ENCAPSULATING AND PROCESSING SOLAR CELL ROOF PANEL | August 2023 | October 2025 | Abandon | 26 | 0 | 1 | No | No |
| 18366295 | DISPERSION LIQUID FOR FORMATION OF SEMICONDUCTOR ELECTRODE LAYER, AND SEMICONDUCTOR ELECTRODE LAYER | August 2023 | March 2026 | Abandon | 31 | 1 | 1 | No | No |
| 18264291 | PASSIVE COOLING SYSTEM FOR NUCLEAR REACTOR AND METHOD FOR OPERATING THE SAME | August 2023 | February 2026 | Allow | 30 | 1 | 0 | No | No |
| 18361781 | IN-VESSEL CORE COMPONENT HANDLING SYSTEMS AND METHODS | July 2023 | January 2026 | Allow | 30 | 1 | 0 | No | No |
| 18221854 | Multi-Layered Nuclear Fuel Cladding and Method for Manufacturing Multi-Layered Nuclear Fuel Cladding | July 2023 | February 2026 | Allow | 31 | 1 | 0 | No | No |
| 18260076 | SOLAR MODULE FRAME MEMBER | June 2023 | October 2025 | Allow | 28 | 3 | 0 | Yes | No |
| 18255477 | CARPORT | June 2023 | January 2026 | Allow | 32 | 3 | 0 | Yes | No |
| 18267413 | ON THE DESIGN OF A COMPOSITE HYDRIDE-METAL TO ACCOMMODATE HYDRIDE DECOMPOSITION | June 2023 | February 2026 | Allow | 32 | 1 | 0 | No | No |
| 18267253 | METHOD OF REPAIRING BITUMEN SURFACES AND DEVICE FOR CARRYING OUT THIS METHOD | June 2023 | December 2025 | Allow | 31 | 0 | 0 | No | No |
| 18332565 | DOCK LEVELER WITH SHIMLESS PIVOT BOSS | June 2023 | December 2025 | Allow | 30 | 0 | 0 | No | No |
| 18205037 | DYNAMICALLY ADJUSTABLE, FLEXIBLE, AND MODULAR PHOTOVOLTAIC SYSTEM AND METHOD | June 2023 | February 2026 | Abandon | 33 | 2 | 1 | No | No |
| 18036345 | IMPROVED SUPPORT PLATE FOR PHOTOVOLTAIC PANELS | May 2023 | May 2025 | Allow | 24 | 1 | 1 | No | No |
| 18314306 | DATA-ANALYSIS-BASED CONTROL OF FLOATING SOLAR ARRAY LOCATION | May 2023 | May 2025 | Allow | 24 | 2 | 1 | Yes | No |
| 18136359 | Injection Molded, Blow Molded, and Rotational Molded Articles that Integrally Incorporate a Photovoltaic Device, and Method and System for Producing Such Articles | April 2023 | January 2026 | Allow | 33 | 1 | 1 | No | No |
| 18129467 | INORGANIC PEROVSKITE QUANTUM DOT-BASED SOLAR CELL INCLUDING NANOSTRUCTURED BACK ELECTRODE AND METHOD OF MANUFACTURING THE SAME | March 2023 | September 2025 | Allow | 30 | 3 | 1 | No | No |
| 18181302 | Scalable Van Der Waals Superlattices For Absorbers And Emitters | March 2023 | January 2026 | Allow | 35 | 3 | 1 | No | No |
| 18024435 | ELECTRICITY GENERATING MODULE | March 2023 | January 2026 | Abandon | 34 | 3 | 1 | No | No |
| 18022222 | LARGE-SPAN CORRIDOR STRUCTURE COMPOSED OF ARC-SHAPED CANTILEVER TRUSSES AND STAY CABLE SUPPORTING STRUCTURES AND CONSTITUTING METHOD THEREOF | February 2023 | November 2025 | Allow | 33 | 0 | 0 | No | No |
| 18017544 | Cu2CdGe(S,Se)4 SOLAR CELL ABSORBERS | January 2023 | December 2025 | Abandon | 35 | 3 | 1 | No | No |
| 18069969 | PHOTOELECTRIC CONVERSION ELEMENT, IMAGING ELEMENT, OPTICAL SENSOR, AND COMPOUND | December 2022 | January 2026 | Allow | 37 | 1 | 1 | No | No |
| 17981698 | SOFT SPACERS FOR SHINGLED SOLAR CELL PANELS | November 2022 | September 2025 | Allow | 35 | 3 | 0 | No | Yes |
| 17995280 | PRINTABLE HOLE CONDUCTOR FREE MESOPOROUS INDIUM TIN OXIDE BASED PEROVSKITE SOLAR CELLS | September 2022 | March 2026 | Abandon | 41 | 4 | 1 | No | No |
| 17935611 | SOLAR CELL | September 2022 | February 2026 | Allow | 40 | 2 | 1 | No | Yes |
| 17798283 | METHOD FOR MANUFACTURING SOLAR CELL MODULE | August 2022 | October 2025 | Abandon | 38 | 0 | 1 | No | No |
| 17745677 | SOLAR REDIRECT SYSTEM FOR A VEHICLE | May 2022 | September 2025 | Allow | 40 | 5 | 1 | No | No |
| 17761375 | SOLAR MODULE | March 2022 | March 2026 | Allow | 47 | 4 | 0 | No | Yes |
| 17666271 | SOLAR CELL MODULE | February 2022 | March 2026 | Abandon | 49 | 8 | 0 | Yes | No |
| 17141205 | ENERGY HARVESTING SYSTEMS FOR PROVIDING AUTONOMOUS ELECTRICAL POWER TO BUILDING STRUCTURES AND ELECTRICALLY-POWERED DEVICES IN THE BUILDING STRUCTURES | January 2021 | October 2025 | Abandon | 57 | 5 | 1 | Yes | No |
| 17141195 | ENERGY HARVESTING SYSTEMS FOR PROVIDING AUTONOMOUS ELECTRICAL POWER TO BUILDING STRUCTURES AND ELECTRICALLY-POWERED DEVICES IN THE BUILDING STRUCTURES | January 2021 | October 2025 | Abandon | 57 | 5 | 1 | Yes | No |
| 17009071 | MULTI-JUNCTION SOLAR CELL | September 2020 | September 2025 | Allow | 60 | 4 | 1 | Yes | Yes |
| 16819188 | THERMOELECTRIC CONVERSION DEVICE | March 2020 | February 2021 | Allow | 11 | 2 | 0 | No | No |
| 16589657 | System For Controlling Localized Heating And Cooling | October 2019 | January 2021 | Allow | 15 | 0 | 1 | No | No |
| 16312050 | INFINITELY EXTENDING SOLAR BATTERY MODULE BASED ON MAGNETICALLY EXTENDED CIRCUIT | December 2018 | March 2020 | Allow | 14 | 1 | 0 | No | No |
| 16222112 | Electronic Devices Comprising Two Encapsulant Films | December 2018 | October 2020 | Allow | 22 | 2 | 0 | Yes | No |
| 16304707 | THERMOELECTRIC CONVERSION DEVICE AND METHOD OF MANUFACTURING THE SAME | November 2018 | December 2019 | Allow | 12 | 0 | 1 | No | No |
| 16184245 | SOLAR CELL MODULE | November 2018 | June 2020 | Allow | 19 | 2 | 0 | No | No |
| 16042211 | ALUMINUM PASTE USED FOR LOCAL BACK SURFACE FIELD SOLAR CELL AND LOCAL BACK SURFACE FIELD SOLAR CELL USING THE ALUMINUM PASTE | July 2018 | February 2020 | Allow | 19 | 2 | 0 | No | No |
| 15754672 | THERMOELECTRIC MODULE FOR A THERMOELECTRIC GENERATOR | July 2018 | October 2019 | Allow | 20 | 0 | 0 | No | No |
| 16010342 | Visibly Transparent, Ultraviolet-Absorbing Photovoltaic Devices | June 2018 | September 2020 | Allow | 27 | 2 | 1 | Yes | No |
| 16000389 | SOLAR BATTERY MODULE AND MANUFACTURING METHOD THEREFOR | June 2018 | November 2019 | Allow | 17 | 2 | 0 | Yes | No |
| 15780235 | POWER GENERATION BRICK | May 2018 | February 2020 | Allow | 20 | 1 | 0 | No | No |
| 15779821 | LIGHT-CONCENTRATING SOLAR SYSTEM | May 2018 | October 2019 | Allow | 16 | 3 | 0 | No | No |
| 15762030 | PHOTOELECTRIC CONVERSION DEVICE | March 2018 | March 2019 | Allow | 11 | 1 | 0 | No | No |
| 15707046 | ELECTRICAL CONVERTER AND HEATER MODULE WITH HEAT INSULATORS HAVING DIFFERENT CROSS-SECTIONAL AREAS | September 2017 | March 2019 | Allow | 17 | 2 | 0 | No | Yes |
| 15705910 | MODULE CONNECTOR FOR FLEXIBLE PHOTOVOLTAIC MODULE | September 2017 | May 2019 | Allow | 20 | 0 | 0 | No | No |
| 15489687 | THERMOELECTRIC MODULE | April 2017 | July 2019 | Allow | 26 | 1 | 1 | No | No |
| 15489430 | THERMOELECTRIC MODULE | April 2017 | July 2019 | Allow | 27 | 1 | 1 | Yes | No |
| 15472444 | SOLAR PHOTOVOLTAIC PANEL AND SOLAR PHOTOVOLTAIC SYSTEM | March 2017 | June 2019 | Allow | 26 | 2 | 0 | No | No |
| 15294054 | PHOTOELECTRIC CONVERSION ELEMENT, SOLAR CELL USING THE SAME, AND METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION ELEMENT | October 2016 | April 2019 | Allow | 30 | 2 | 1 | Yes | No |
| 15269522 | NON-CONCENTRATED PHOTOVOLTAIC AND CONCENTRATED SOLAR THERMAL HYBRID DEVICES AND METHODS FOR SOLAR ENERGY COLLECTION | September 2016 | August 2018 | Allow | 23 | 0 | 1 | No | No |
| 15263031 | PHOTOVOLTAIC DEVICES INCLUDING CURVED SUB-LAYERS | September 2016 | December 2018 | Allow | 27 | 2 | 1 | No | No |
| 15246209 | THERMOELECTRIC DEVICE | August 2016 | August 2018 | Allow | 23 | 0 | 1 | No | No |
| 15243830 | SILVER-BISMUTH NON-CONTACT METALLIZATION PASTES FOR SILICON SOLAR CELLS | August 2016 | April 2019 | Allow | 32 | 2 | 1 | No | No |
| 15220394 | SOLAR CELL | July 2016 | May 2018 | Allow | 21 | 3 | 0 | No | No |
| 15032171 | SOLAR CELL, MANUFACTURING METHOD THEREOF, AND SOLAR CELL MODULE | April 2016 | February 2018 | Allow | 22 | 2 | 2 | Yes | No |
| 15098242 | FLEXIBLE SOLAR PANEL | April 2016 | September 2020 | Allow | 53 | 5 | 1 | Yes | Yes |
| 14904953 | PLASTIC SOLAR DYE CELLS | January 2016 | December 2018 | Allow | 35 | 3 | 1 | Yes | No |
| 14955278 | FLOATING SOLAR PANEL SYSTEMS | December 2015 | September 2018 | Allow | 34 | 1 | 0 | No | No |
| 14880560 | RIGIDLY MOUNTED TRACKING SOLAR PANEL AND METHOD | October 2015 | February 2018 | Allow | 29 | 4 | 1 | Yes | No |
| 14777693 | Electronic Devices Comprising Two Encapsulant Films | September 2015 | August 2018 | Allow | 35 | 4 | 1 | Yes | No |
| 14769192 | ROOF INTEGRATED PHOTOVOLTAIC MODULE WITH A DEVICE CAPABLE OF IMPROVING AND OPTIMIZING PHOTOVOLTAIC EFFICIENCY | August 2015 | March 2018 | Allow | 31 | 1 | 1 | No | No |
| 14484443 | SOLAR CELL MODULE AND SOLAR CELL MODULE MANUFACTURING METHOD | September 2014 | May 2018 | Allow | 44 | 3 | 1 | Yes | No |
| 14071194 | ELECTRIC FIELD TUNING OF PBS QUANTUM DOTS FOR HIGH EFFICIENCY SOLAR CELL APPLICATION | November 2013 | June 2018 | Allow | 55 | 4 | 1 | Yes | No |
| 13984593 | THERMOELECTRIC CONVERTER ELEMENT, METHOD OF MANUFACTURING THERMOELECTRIC CONVERTER ELEMENT, AND THERMOELECTRIC CONVERSION METHOD | August 2013 | February 2018 | Allow | 54 | 3 | 1 | Yes | No |
| 13875505 | MULTI-LAYERED SOLAR CELL DEVICE | May 2013 | February 2019 | Allow | 60 | 4 | 0 | No | Yes |
This analysis examines appeal outcomes and the strategic value of filing appeals for examiner TRIVISONNO, ANGELO.
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, 75.0% 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.
✓ 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 TRIVISONNO, ANGELO works in Art Unit 1722 and has examined 38 patent applications in our dataset. With an allowance rate of 94.7%, this examiner allows applications at a higher rate than most examiners at the USPTO. Applications typically reach final disposition in approximately 26 months.
Examiner TRIVISONNO, ANGELO's allowance rate of 94.7% places them in the 83% percentile among all USPTO examiners. This examiner is more likely to allow applications than most examiners at the USPTO.
On average, applications examined by TRIVISONNO, ANGELO receive 2.13 office actions before reaching final disposition. This places the examiner in the 57% percentile for office actions issued. This examiner issues a slightly above-average number of office actions.
The median time to disposition (half-life) for applications examined by TRIVISONNO, ANGELO is 26 months. This places the examiner in the 75% percentile for prosecution speed. Prosecution timelines are slightly faster than average with this examiner.
Conducting an examiner interview provides a -12.5% benefit to allowance rate for applications examined by TRIVISONNO, ANGELO. This interview benefit is in the 2% percentile among all examiners. Note: Interviews show limited statistical benefit with this examiner compared to others, though they may still be valuable for clarifying issues.
When applicants file an RCE with this examiner, 27.8% of applications are subsequently allowed. This success rate is in the 49% percentile among all examiners. Strategic Insight: RCEs show below-average effectiveness with this examiner. Carefully evaluate whether an RCE or continuation is the better strategy.
This examiner enters after-final amendments leading to allowance in 56.2% of cases where such amendments are filed. This entry rate is in the 82% 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.
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 2% 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 57.1% of appeals filed. This is in the 29% percentile among all examiners. 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, 0.0% are granted (fully or in part). This grant rate is in the 0% 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 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 4% 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.