Recursos
Listados de patentes.
Cada una de las 11.224 patentes que figuran a continuación fue tramitada por Amin, Turocy & Watson. Se concedieron entre 2013 y 2026, y cada una puede consultarse aquí por número, por título y por disciplina técnica.
Dos fuentes que no se solapan. Hasta 2014 inclusive, las patentes proceden del listado publicado por el propio despacho. A partir de 2015 se extraen del índice de representantes acreditados de la USPTO. Las disciplinas técnicas se asignan a partir del código CPC inventivo que el examinador atribuyó a cada patente.
Esta es una cifra mínima, no un registro completo. Cuando un cliente sustituyó al representante acreditado por el suyo propio antes de que se concediera la patente, esta recoge el nombre del representante del cliente y no aparece aquí, por mucho trabajo que haya realizado el despacho.
El corpus por disciplina técnica
| Tecnología | Patentes | Proporción del corpus clasificado |
|---|---|---|
| Software & Computing | 4795 | 42.7% |
| Mechanical & Materials | 2602 | 23.2% |
| Semiconductors & Electronics | 1203 | 10.7% |
| AI & Machine Learning | 409 | 3.6% |
| Autonomous Vehicles | 398 | 3.5% |
| Green Technologies | 384 | 3.4% |
| Cybersecurity | 374 | 3.3% |
| Chemical & Biotechnology | 322 | 2.9% |
| Industrial Automation | 309 | 2.8% |
| Medical Devices | 202 | 1.8% |
| Quantum Computing | 196 | 1.7% |
| Robotics | 30 | 0.3% |
322 de 11.224 patentes
| Número de patente | Título | Área |
|---|---|---|
| 8,664,373 | Method for producing sophorose lipid | Chemical & Biotechnology |
| 8,658,159 | Method to induce and expand therapeutic alloantigen-specific human regulatory T cells in large-scale | Chemical & Biotechnology |
| 8,652,818 | Method for extracting protein from a fermentation product | Chemical & Biotechnology |
| 8,609,574 | In situ olefin polymerization catalyst system | Chemical & Biotechnology |
| 8,609,199 | Carbon nanotube growing process, and carbon nanotube bundle formed substrate | Chemical & Biotechnology |
| 8,592,055 | Compound for organic electroluminescent device and organic electroluminescent device having the same | Chemical & Biotechnology |
| 8,586,790 | Anhydride derivatives of 2-(S)-(6-methoxy-2-naphtyl)-propanoic acid, preparation method and use thereof | Chemical & Biotechnology |
| 8,586,638 | Parakeratosis inhibitor and skin preparation for external use | Chemical & Biotechnology |
| 8,568,680 | Gas treatment by catalytic ozone oxidation | Chemical & Biotechnology |
| 8,563,712 | Hydroxy-substituted gold(III) porphyrin complexes as histone deacetylase inhibitors | Chemical & Biotechnology |
| 8,552,166 | High-affinity nucleic acid aptamers against sclerostin protein | Chemical & Biotechnology |
| 8,545,577 | Catalyst component for aviation and jet fuels | Chemical & Biotechnology |
| 8,540,883 | Polymer composite, water-treatment method using the same and manufacturing method of the same | Chemical & Biotechnology |
| 8,530,659 | Pharmaceutical composition containing cyclometalated N-heterocyclic carbene complexes for cancer treatment | Chemical & Biotechnology |
| 8,512,461 | Inkjet ink and inkjet ink manufacturing method | Chemical & Biotechnology |
| 8,506,696 | Erasable liquid ink | Chemical & Biotechnology |
| 8,506,656 | Systems and methods for producing fuel compositions | Chemical & Biotechnology |
| 8,497,305 | Phenylcyclobutylamide derivatives and their stereoisomers, the preparation processes and uses thereof | Chemical & Biotechnology |
| 8,496,066 | Methods for increasing oil production | Chemical & Biotechnology |
| 8,475,579 | Black ink composition | Chemical & Biotechnology |
| 8,470,595 | Mesenchymal stem cell and method for production thereof | Chemical & Biotechnology |
| 8,465,577 | Blue, red, and yellow dye compounds, and black ink composition comprising the same | Chemical & Biotechnology |