Recursos
Listagens de patentes.
Cada uma das 11.224 patentes abaixo foi tramitada pela Amin, Turocy & Watson. Foram concedidas entre 2013 e 2026, e cada uma pode ser pesquisada aqui por número, por título e por disciplina técnica.
Duas fontes, que não se sobrepõem. As patentes até 2014 correspondem à própria listagem publicada da sociedade. A partir de 2015, são extraídas do índice de mandatários constituídos do USPTO. As disciplinas técnicas são determinadas a partir do código CPC inventivo atribuído pelo examinador a cada patente.
Trata-se de um valor mínimo, não de um registo completo. Quando, antes da concessão de uma patente, um cliente designou o seu próprio mandatário constituído, essa patente indica o mandatário do cliente e não aparece aqui, por maior que tenha sido a parte do trabalho realizada pela sociedade.
O corpus por disciplina técnica
| Tecnologia | Patentes | Proporção do corpus classificado |
|---|---|---|
| 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 de 11.224 patentes
| Número da patente | Título | Área |
|---|---|---|
| 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 |