Ressources
Répertoire des brevets.
Amin, Turocy & Watson a conduit la procédure d'obtention de chacun des 11 224 brevets ci-dessous. Ils ont été délivrés entre 2013 et 2026, et chacun peut être recherché ici par numéro, par titre et par discipline technique.
Deux sources, qui ne se recoupent pas. Jusqu'en 2014, les brevets proviennent du répertoire publié par le cabinet lui-même. À partir de 2015, ils sont tirés de l'index des mandataires inscrits au dossier tenu par l'USPTO. Les disciplines techniques sont attribuées d'après le code CPC d'invention que l'examinateur a attribué à chaque brevet.
Il s'agit d'une valeur plancher, non d'un relevé complet. Lorsqu'un client a substitué son propre mandataire inscrit au dossier avant la délivrance d'un brevet, c'est ce mandataire qui figure sur le brevet imprimé, et le brevet n'apparaît pas ici, quelle que soit la part du travail accomplie par le cabinet.
Le corpus par discipline technique
| Technologie | Brevets | Part du corpus classé |
|---|---|---|
| Software & Computing | 4 795 | 42.7% |
| Mechanical & Materials | 2 602 | 23.2% |
| Semiconductors & Electronics | 1 203 | 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% |
196 brevets sur 11 224
| Numéro de brevet | Titre | Domaine |
|---|---|---|
| 11,210,603 | Debugging quantum circuits by circuit rewriting | Quantum Computing |
| 11,195,799 | Hybrid readout package for quantum multichip bonding | Quantum Computing |
| 11,189,435 | Switch device facilitating frequency shift of a resonator in a quantum device | Quantum Computing |
| 11,183,989 | Electrical circuits for leakage reduction units | Quantum Computing |
| 11,165,009 | Reducing qubit frequency collisions through lattice design | Quantum Computing |
| 11,158,782 | Metal fluoride encapsulation of superconducting devices | Quantum Computing |
| 11,102,879 | Printed circuit board to dielectric layer transition with controlled impedance and reduced and/or mitigated crosstalk for quantum applications | Quantum Computing |
| 11,088,311 | Three-dimensional integration for qubits on multiple height crystalline dielectric | Quantum Computing |
| 11,050,009 | Methods for annealing qubits with an antenna chip | Quantum Computing |
| 11,005,022 | Vertical transmon qubit device with microstrip waveguides | Quantum Computing |
| 10,977,546 | Short depth circuits as quantum classifiers | Quantum Computing |
| 10,971,672 | Quantum device with modular quantum building blocks | Quantum Computing |
| 10,957,737 | Symmetrical qubits with reduced far-field radiation | Quantum Computing |
| 10,916,690 | Electrical leads for trenched qubits | Quantum Computing |
| 10,915,831 | Reduction and/or mitigation of crosstalk in quantum bit gates | Quantum Computing |
| 10,886,454 | Antenna-based qubit annealing method | Quantum Computing |
| 10,885,678 | Facilitating quantum tomography | Quantum Computing |
| 10,840,296 | Three-dimensional integration for qubits on crystalline dielectric | Quantum Computing |
| 10,833,121 | Vertical silicon-on-metal superconducting quantum interference device | Quantum Computing |
| 10,811,588 | Vertical dispersive readout of qubits of a lattice surface code architecture | Quantum Computing |
| 10,810,665 | Quantum circuit risk analysis | Quantum Computing |
| 10,810,507 | Multi-mode qubit readout and qubit state assignment | Quantum Computing |
| 10,784,432 | Vertical josephson junction superconducting device | Quantum Computing |
| 10,726,352 | Approximate gate and supercontrolled unitary gate decompositions for two-qubit operations | Quantum Computing |
| 10,720,887 | Applications of a superconducting device that mixes surface acoustic waves and microwave signals | Quantum Computing |
| 10,707,402 | Antenna-based quibit annealing method | Quantum Computing |
| 10,672,971 | Vertical transmon qubit device with microstrip waveguides | Quantum Computing |
| 10,657,212 | Application- or algorithm-specific quantum circuit design | Quantum Computing |
| 10,650,322 | Multi-mode qubit readout and qubit state assignment | Quantum Computing |
| 10,622,536 | Reducing qubit frequency collisions through lattice design | Quantum Computing |
| 10,615,223 | Vertical silicon-on-metal superconducting quantum interference device | Quantum Computing |
| 10,614,371 | Debugging quantum circuits by circuit rewriting | Quantum Computing |
| 10,601,096 | Reduced thermal resistance attenuator on high-thermal conductivity substrates for quantum applications | Quantum Computing |
| 10,573,685 | Symmetrical qubits with reduced far-field radiation | Quantum Computing |
| 10,546,244 | Reduction and/or mitigation of crosstalk in quantum bit gates | Quantum Computing |
| 10,505,245 | Microwave attenuators on high-thermal conductivity substrates for quantum applications | Quantum Computing |
| 10,505,096 | Three-dimensional integration for qubits on multiple height crystalline dielectric | Quantum Computing |
| 10,497,746 | Three-dimensional integration for qubits on crystalline dielectric | Quantum Computing |
| 10,483,104 | Method for producing stacked electrode and method for producing photoelectric conversion device | Quantum Computing |
| 10,475,983 | Antenna-based qubit annealing method | Quantum Computing |
| 10,474,960 | Approximate gate and supercontrolled unitary gate decompositions for two-qubit operations | Quantum Computing |
| 10,320,331 | Applications of a superconducting device that mixes surface acoustic waves and microwave signals | Quantum Computing |
| 10,243,132 | Vertical josephson junction superconducting device | Quantum Computing |
| 10,223,643 | Reduction and/or mitigation of crosstalk in quantum bit gates | Quantum Computing |
| 9,296,848 | Polymer material, solar cell using the same, and solar photovoltaic generation system | Quantum Computing |
| 9,200,172 | Phthalocyanine/ polymer nanocomposite ink for optoelectonics | Quantum Computing |