الموارد
قوائم البراءات.
تولّى مكتب Amin, Turocy & Watson متابعة إجراءات الحصول على كل واحدة من البراءات المدرجة أدناه، وعددها 11,224. وقد صدرت بين عامي 2013 و2026، ويمكن البحث عن كل منها هنا برقمها أو بعنوانها أو بتخصصها التقني.
مصدران لا يتداخلان. فالبراءات حتى عام 2014 مستمدة من القائمة المنشورة الخاصة بالمكتب نفسه، ومن عام 2015 فصاعداً تُستمد من فهرس الوكلاء المسجلين لدى USPTO. وتُحدَّد التخصصات التقنية استناداً إلى رمز CPC الابتكاري الذي منحه الفاحص لكل براءة.
تمثّل هذه القائمة الحد الأدنى، لا سجلاً كاملاً. فحين يعيّن العميل وكيله الخاص ليحلّ محل المكتب بصفته الوكيل المسجل قبل صدور البراءة، يُطبع على تلك البراءة اسم وكيل العميل ولا تظهر هنا، مهما بلغ حجم العمل الذي أنجزه المكتب فيها.
المجموعة بحسب التخصص التقني
| التقنية | براءات الاختراع | النسبة من المجموعة المصنَّفة |
|---|---|---|
| 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 من أصل 11,224 براءة اختراع
| رقم البراءة | العنوان | المجال |
|---|---|---|
| 12,242,924 | Mapping conditional execution logic to quantum computing resources | Quantum Computing |
| 12,236,317 | Energy relaxation spectroscopy using autler-townes effect | Quantum Computing |
| 12,232,427 | Superconducting qubit capacitance and frequency of operation tuning | Quantum Computing |
| 12,229,634 | Stark shift cancellation | Quantum Computing |
| 12,197,945 | Quantum computer performance enhancement | Quantum Computing |
| 12,193,142 | Ground discontinuities for thermal isolation | Quantum Computing |
| 12,191,051 | Coherent interconnects between superconducting qubits and microwave-optical transducers | Quantum Computing |
| 12,190,204 | Physical representation of quantum entanglement | Quantum Computing |
| 12,185,644 | Quantum circuit with trench capacitor | Quantum Computing |
| 12,175,342 | Quantum reinforcement learning agent | Quantum Computing |
| 12,166,260 | Embedded microstrip transmission line | Quantum Computing |
| 12,159,195 | Short-depth active learning quantum amplitude estimation without eigenstate collapse | Quantum Computing |
| 12,154,001 | Parameter extrapolation in quantum variational circuits | Quantum Computing |
| 12,137,619 | Reducing qubit frequency collisions through lattice design | Quantum Computing |
| 12,136,021 | Quantum state preparation of a probability Distribution facilitating quantum amplitude estimation | Quantum Computing |
| 12,136,019 | System and method for latency-aware mapping of quantum circuits to quantum chips | Quantum Computing |
| 12,120,965 | Mode-selective couplers for frequency collision reduction | Quantum Computing |
| 12,118,435 | Pauli-Lindbladian based noise modeling and mitigation | Quantum Computing |
| 12,107,065 | Uniform chip gaps via injection-molded solder pillars | Quantum Computing |
| 12,106,184 | Multireference procedure to parallelize variational quantum computing and achieve high accuracy with short circuit depths | Quantum Computing |
| 12,106,179 | Measurement aggregation in quantum programs | Quantum Computing |
| 12,099,903 | Dynamic adaptive thresholding for qubit reset | Quantum Computing |
| 12,099,899 | Increasing grain size of polycrystalline superconducting materials for superconducting circuits | Quantum Computing |
| 12,093,789 | Quantum code for reduced frequency collisions in qubit lattices | Quantum Computing |
| 12,047,063 | Current biased tunable qubit | Quantum Computing |
| 12,047,048 | Current mode transconductance capacitance filter within a radio frequency digital to analog converter | Quantum Computing |
| 12,040,789 | Mitigating stray-coupling via multi-junction qubits | Quantum Computing |
| 12,039,402 | Color-map method to eliminate qubit frequency crowding in a quantum computing chip | Quantum Computing |
| 12,026,584 | Optically multiplexed quantum control interface | Quantum Computing |
| 12,022,750 | Quantum device facilitating suppression of ZZ interactions between two-junction superconducting qubits | Quantum Computing |
| 12,016,254 | Superconducting qubit and resonator system based on the Josephson ring modulator | Quantum Computing |
| 12,015,397 | High connectivity parametric gate | Quantum Computing |
| 11,989,621 | Tiling of cross-resonance gates for quantum circuits | Quantum Computing |
| 11,983,605 | Partitioned template matching and symbolic peephole optimization | Quantum Computing |
| 11,983,600 | Compilation of a quantum program | Quantum Computing |
| 11,972,319 | Multimode resonators for resonator induced phase gates | Quantum Computing |
| 11,960,970 | Strategic pausing for quantum state leakage mitigation | Quantum Computing |
| 11,949,439 | Mitigating baseband pulse dispersion via radiofrequency-to-baseband conversion | Quantum Computing |
| 11,948,985 | Ion implant defined nanorod in a suspended Majorana fermion device | Quantum Computing |
| 11,946,964 | Dual-sideband microwave interferometer | Quantum Computing |
| 11,937,516 | Fabrication of a flux bias line local heating device | Quantum Computing |
| 11,934,479 | Quantum sparse Fourier transform | Quantum Computing |
| 11,923,870 | Method for constructing a fault tolerant encode using a quantum computational model | Quantum Computing |
| 11,895,932 | Selective chemical frequency modification of Josephson junction resonators | Quantum Computing |
| 11,895,931 | Frequency tuning of multi-qubit systems | Quantum Computing |
| 11,889,770 | Low loss conductive line using bridged conductor | Quantum Computing |
| 11,880,742 | Josephson double balanced coupler | Quantum Computing |
| 11,875,225 | Superconducting interposer for the transmission of quantum information for quantum error correction | Quantum Computing |
| 11,829,842 | Enhanced quantum circuit execution in a quantum service | Quantum Computing |
| 11,812,673 | Quantum device with modular quantum building blocks | Quantum Computing |