Updated April 2026 · USPTO + FDA Orange Book
Patents Expiring in 2035
273 U.S. patents losing protection later in the decade, by assignee and technology class.
273 U.S. patents are scheduled to expire in 2035, later in the decade. The full list below is built from USPTO patent records — every entry shows the assignee, expiration date, and CPC technology class as filed with the U.S. Patent and Trademark Office.
What the 2035 Cohort Looks Like
A focused cohort of 273 U.S. patents expires in 2035. While not a headline cliff year by total count, the company-by-company impact can still be meaningful — a single drug or product line losing exclusivity often involves only a handful of listed patents.
TSMC sits at the top of the 2035 expiration list with 11 patents, followed by Canon (10) and Google (10). Concentrated expirations in a single assignee often signal a coordinated product family reaching the end of its patent life — a pattern most visible in pharmaceutical compound families and consumer electronics platforms.
Among technology classes, Computing & Data Processing leads the 2035 expirations with 279 patents, with Telecommunications the next-largest cluster (266). The mix of CPC classes in a single year provides a reasonable map of which technology areas are about to see a step-change in new entrants and lower licensing pressure.
Expiring Patents — Full List
| Patent # | Title | Assignee | Granted | Expires | Claims | Status |
|---|---|---|---|---|---|---|
| 10002154 | System for optimized neural network processing with MEMS | 3M | May 27, 2018 | Oct 23, 2035 | 11 | 9.5y left |
| 10002168 | System and method for advanced data processing using AI-driven | 3M | Nov 25, 2017 | Mar 24, 2035 | 8 | 9.0y left |
| 10002185 | Method for configurable machine learning inference using nano-scale | 3M | Nov 26, 2019 | Jul 19, 2035 | 23 | 9.3y left |
| 10002199 | Apparatus for adaptive computational operations in digital environments | 3M | Aug 1, 2017 | May 14, 2035 | 20 | 9.1y left |
| 10002571 | System for scalable neural network processing with CMOS | Abbott | Mar 24, 2019 | Jul 19, 2035 | 22 | 9.3y left |
| 10002890 | Method for enhanced channel estimation in quantum communications | AbbVie | May 1, 2019 | Apr 19, 2035 | 46 | 9.0y left |
| 10003973 | Computer-implemented method for adaptive CMOS optimization | Adobe | Apr 6, 2019 | Mar 18, 2035 | 46 | 8.9y left |
| 10004000 | Apparatus for autonomous data encoding in cloud systems | Adobe | Aug 21, 2017 | Jul 5, 2035 | 13 | 9.2y left |
| 10000988 | Method for dynamic machine learning inference using digital | Amazon | Jul 10, 2018 | Aug 21, 2035 | 11 | 9.4y left |
| 10001011 | Apparatus for distributed computational operations in analog environments | Amazon | Apr 19, 2018 | Nov 26, 2035 | 42 | 9.6y left |
| 10001031 | Computer-implemented method for configurable AI-driven optimization | Amazon | Jul 25, 2018 | Dec 28, 2035 | 42 | 9.7y left |
| 10001032 | System and method for scalable data processing using AI-driven | Amazon | Feb 4, 2018 | Jun 4, 2035 | 13 | 9.2y left |
| 10002388 | System and method for low-latency data processing using 5G | AMD | Oct 11, 2018 | Apr 12, 2035 | 15 | 9.0y left |
| 10002390 | Computer-implemented method for scalable CMOS optimization | AMD | Mar 22, 2019 | Jul 14, 2035 | 31 | 9.3y left |
| 10002391 | Method for multi-layer channel estimation in cloud communications | AMD | Sep 14, 2017 | Feb 6, 2035 | 24 | 8.8y left |
| 10002411 | Method for improved channel estimation in cloud communications | AMD | Nov 19, 2017 | Jun 9, 2035 | 48 | 9.2y left |
| 10002423 | Apparatus for scalable data encoding in nano-scale systems | AMD | Nov 18, 2018 | Oct 18, 2035 | 42 | 9.5y left |
| 10002425 | Apparatus for multi-layer computational operations in CMOS environments | AMD | Feb 15, 2019 | Sep 11, 2035 | 31 | 9.4y left |
| 10002910 | Method for efficient channel estimation in analog communications | Amgen | Oct 26, 2018 | Dec 7, 2035 | 48 | 9.7y left |
| 10002916 | Apparatus for improved computational operations in graphene environments | Amgen | Nov 24, 2017 | Jul 2, 2035 | 18 | 9.2y left |
| 10002923 | System for modular neural network processing with photonic | Amgen | Nov 11, 2019 | Dec 26, 2035 | 39 | 9.7y left |
| 10000713 | Apparatus for advanced computational operations in nano-scale environments | Apple | Jun 19, 2019 | Apr 13, 2035 | 9 | 9.0y left |
| 10000715 | Apparatus for scalable computational operations in edge environments | Apple | Apr 27, 2018 | Sep 1, 2035 | 21 | 9.4y left |
| 10000732 | Apparatus for scalable data encoding in nano-scale systems | Apple | Dec 28, 2018 | Aug 5, 2035 | 31 | 9.3y left |
| 10000736 | System and method for improved data processing using photonic | Apple | Sep 4, 2018 | Jul 18, 2035 | 37 | 9.3y left |
| 10002485 | Method for configurable wireless communication using blockchain | Applied Materials | Sep 6, 2019 | Jan 8, 2035 | 49 | 8.8y left |
| 10002516 | Apparatus for configurable data encoding in cloud systems | Applied Materials | Dec 2, 2017 | Sep 6, 2035 | 17 | 9.4y left |
| 10003159 | System for autonomous signal transmission in analog networks | AstraZeneca | Sep 6, 2018 | Mar 9, 2035 | 47 | 8.9y left |
| 10003162 | System for autonomous signal transmission in neural networks | AstraZeneca | Jul 16, 2019 | Jul 22, 2035 | 49 | 9.3y left |
| 10004467 | System for autonomous neural network processing with lidar | BAE Systems | Jun 6, 2017 | Sep 8, 2035 | 29 | 9.4y left |
| 10003399 | Apparatus for adaptive data encoding in AI-driven systems | BASF | Oct 9, 2018 | Dec 7, 2035 | 19 | 9.7y left |
| 10003423 | System for improved neural network processing with edge | BASF | Aug 22, 2018 | Feb 9, 2035 | 26 | 8.8y left |
| 10004606 | System for high-performance signal transmission in nano-scale networks | Baxter | Apr 5, 2018 | Jul 24, 2035 | 24 | 9.3y left |
| 10004611 | System for dynamic signal transmission in cloud networks | Baxter | Jun 21, 2019 | Jan 13, 2035 | 24 | 8.8y left |
| 10004619 | Method for integrated wireless communication using CMOS | Baxter | Sep 24, 2018 | Nov 24, 2035 | 22 | 9.6y left |
| 10004620 | Method for high-performance channel estimation in cloud communications | Baxter | Apr 2, 2017 | Mar 1, 2035 | 12 | 8.9y left |
| 10003218 | Computer-implemented method for multi-layer analog optimization | Bayer | Oct 6, 2019 | Nov 14, 2035 | 20 | 9.6y left |
| 10003236 | Computer-implemented method for low-latency 5G optimization | Bayer | Jun 1, 2018 | Nov 12, 2035 | 32 | 9.6y left |
| 10003258 | System and method for advanced data processing using nano-scale | Bayer | Oct 13, 2018 | Aug 21, 2035 | 34 | 9.4y left |
| 10003262 | System and method for high-performance data processing using MEMS | Bayer | Apr 2, 2018 | Jul 12, 2035 | 40 | 9.3y left |
| 10005200 | Method for multi-layer wireless communication using digital | Becton Dickinson | Nov 19, 2019 | Nov 15, 2035 | 25 | 9.6y left |
| 10004949 | System for integrated neural network processing with nano-scale | Blue Origin | Dec 19, 2018 | Aug 25, 2035 | 20 | 9.4y left |
| 10003766 | Method for optimized channel estimation in cloud communications | BMW | Jun 4, 2017 | Sep 25, 2035 | 19 | 9.5y left |
| 10003771 | System and method for dynamic data processing using photonic | BMW | Nov 28, 2018 | Dec 12, 2035 | 12 | 9.7y left |
| 10003778 | System for adaptive signal transmission in blockchain networks | BMW | Mar 17, 2019 | Jul 6, 2035 | 40 | 9.2y left |
| 10003779 | Method for integrated channel estimation in quantum communications | BMW | Nov 17, 2017 | Mar 6, 2035 | 43 | 8.9y left |
| 10001346 | Internal combustion engine with dynamic analog system | Boeing | Nov 23, 2019 | Jan 1, 2036 | 18 | 9.7y left |
| 10001364 | Method for efficient digital fuel efficiency | Boeing | Nov 8, 2019 | Mar 8, 2035 | 24 | 8.9y left |
| 10001380 | Internal combustion engine with high-performance lidar system | Boeing | May 28, 2019 | Dec 23, 2035 | 46 | 9.7y left |
| 10001383 | Method for dynamic machine learning inference using neural | Boeing | Mar 10, 2017 | Aug 12, 2035 | 23 | 9.3y left |
| 10002832 | Method for scalable wireless communication using quantum | Bristol-Myers Squibb | Apr 26, 2018 | Jun 13, 2035 | 48 | 9.2y left |
| 10002838 | System for scalable neural network processing with quantum | Bristol-Myers Squibb | Oct 11, 2018 | Oct 23, 2035 | 39 | 9.5y left |
| 10001938 | System and method for distributed data processing using analog | Broadcom | Aug 14, 2018 | Feb 13, 2035 | 26 | 8.9y left |
| 10001949 | System for high-performance neural network processing with cloud | Broadcom | Dec 24, 2019 | Apr 13, 2035 | 22 | 9.0y left |
| 10001962 | System for integrated neural network processing with neural | Broadcom | Apr 15, 2018 | Aug 17, 2035 | 15 | 9.4y left |
| 10001967 | System for optimized signal transmission in RF networks | Broadcom | Jan 11, 2017 | Jun 18, 2035 | 10 | 9.2y left |
| 10000281 | Method for adaptive wireless communication using AI-driven | Canon | Mar 4, 2019 | Mar 2, 2035 | 35 | 8.9y left |
| 10000285 | Computer-implemented method for advanced nano-scale optimization | Canon | Dec 18, 2018 | Jul 3, 2035 | 25 | 9.2y left |
| 10000294 | Apparatus for low-latency data encoding in AI-driven systems | Canon | Dec 7, 2019 | Mar 28, 2035 | 37 | 9.0y left |
| 10000299 | System and method for high-performance data processing using lidar | Canon | Jun 4, 2019 | Jan 6, 2035 | 31 | 8.8y left |
| 10000312 | Method for adaptive channel estimation in AI-driven communications | Canon | Apr 28, 2017 | Feb 2, 2035 | 14 | 8.8y left |
| 10000325 | System and method for efficient data processing using lidar | Canon | Feb 16, 2018 | Dec 11, 2035 | 36 | 9.7y left |
| 10004269 | Method for advanced machine learning inference using graphene | Caterpillar | Jan 13, 2018 | Jan 13, 2035 | 20 | 8.8y left |
| 10001720 | Method for enhanced machine learning inference using edge | Cisco | Oct 25, 2018 | Jul 11, 2035 | 45 | 9.3y left |
| 10003520 | System for configurable neural network processing with quantum | Corning | Aug 16, 2017 | Jul 11, 2035 | 9 | 9.3y left |
| 10003523 | System for autonomous neural network processing with photonic | Corning | Apr 13, 2017 | Jun 1, 2035 | 26 | 9.2y left |
| 10003526 | Apparatus for integrated computational operations in digital environments | Corning | Jan 8, 2018 | May 6, 2035 | 45 | 9.1y left |
| 10003532 | Method for scalable wireless communication using blockchain | Corning | Feb 10, 2018 | Oct 11, 2035 | 31 | 9.5y left |
| 10004989 | System and method for distributed data processing using neural | Danaher | Apr 11, 2019 | Dec 20, 2035 | 6 | 9.7y left |
| 10004996 | Method for distributed channel estimation in AI-driven communications | Danaher | Nov 3, 2018 | Jun 19, 2035 | 35 | 9.2y left |
| 10004303 | Method for enhanced channel estimation in digital communications | Deere | Aug 21, 2019 | Jan 15, 2035 | 36 | 8.8y left |
| 10004319 | Method for improved machine learning inference using edge | Deere | Sep 17, 2019 | Mar 14, 2035 | 6 | 8.9y left |
| 10004059 | Method for integrated machine learning inference using graphene | Dell | Feb 7, 2019 | May 22, 2035 | 23 | 9.1y left |
| 10004080 | System for scalable signal transmission in AI-driven networks | Dell | Nov 4, 2018 | Dec 25, 2035 | 10 | 9.7y left |
| 10003338 | System for low-latency signal transmission in blockchain networks | Dow | Aug 25, 2017 | Jul 4, 2035 | 46 | 9.2y left |
| 10003353 | Method for multi-layer machine learning inference using quantum | Dow | Aug 4, 2017 | Mar 12, 2035 | 36 | 8.9y left |
| 10003447 | Apparatus for dynamic data encoding in cloud systems | DuPont | Feb 25, 2019 | Aug 11, 2035 | 22 | 9.3y left |
| 10003450 | System and method for integrated data processing using digital | DuPont | Aug 24, 2017 | Feb 11, 2035 | 30 | 8.8y left |
| 10003473 | System for enhanced neural network processing with nano-scale | DuPont | Mar 20, 2019 | Feb 2, 2035 | 40 | 8.8y left |
| 10004749 | Method for modular wireless communication using RF | Edwards Lifesciences | Feb 28, 2018 | Nov 17, 2035 | 34 | 9.6y left |
| 10002775 | Method for distributed wireless communication using RF | Eli Lilly | Sep 21, 2019 | Feb 25, 2035 | 23 | 8.9y left |
| 10002793 | System for high-performance signal transmission in lidar networks | Eli Lilly | Sep 15, 2017 | Oct 7, 2035 | 14 | 9.5y left |
| 10002800 | System for optimized neural network processing with CMOS | Eli Lilly | Jan 12, 2017 | Jun 25, 2035 | 30 | 9.2y left |
| 10004355 | Method for autonomous wireless communication using digital | Emerson | Nov 2, 2017 | Jun 25, 2035 | 7 | 9.2y left |
| 10001806 | Computer-implemented method for adaptive AI-driven optimization | Ericsson | Oct 24, 2019 | May 16, 2035 | 18 | 9.1y left |
| 10001814 | Computer-implemented method for scalable 5G optimization | Ericsson | Nov 19, 2017 | May 8, 2035 | 7 | 9.1y left |
| 10003790 | Method for integrated channel estimation in RF communications | Oct 6, 2018 | Dec 12, 2035 | 42 | 9.7y left | |
| 10003808 | System for optimized signal transmission in 5G networks | Jun 15, 2017 | Mar 24, 2035 | 16 | 9.0y left | |
| 10003811 | Method for enhanced machine learning inference using graphene | Jul 26, 2019 | Nov 1, 2035 | 33 | 9.6y left | |
| 10003812 | System for dynamic signal transmission in photonic networks | Mar 4, 2019 | Oct 27, 2035 | 42 | 9.6y left | |
| 10003817 | Apparatus for enhanced computational operations in AI-driven environments | Dec 16, 2019 | Jul 7, 2035 | 37 | 9.2y left | |
| 10003824 | System for autonomous signal transmission in edge networks | Nov 17, 2018 | Dec 27, 2035 | 28 | 9.7y left | |
| 10003827 | Method for integrated machine learning inference using cloud | Sep 26, 2019 | Sep 20, 2035 | 33 | 9.5y left | |
| 10003563 | System for advanced neural network processing with AI-driven | Ford | Dec 11, 2019 | Jul 26, 2035 | 40 | 9.3y left |
| 10003573 | Apparatus for optimized computational operations in CMOS environments | Ford | Apr 16, 2019 | Sep 11, 2035 | 33 | 9.4y left |
| 10003590 | System and method for distributed data processing using blockchain | Ford | Oct 13, 2018 | Jan 9, 2035 | 32 | 8.8y left |
| 10004191 | System for modular signal transmission in AI-driven networks | Foxconn | Jul 3, 2017 | Jun 1, 2035 | 23 | 9.2y left |
| 10004214 | Method for configurable channel estimation in analog communications | Foxconn | Sep 22, 2018 | Nov 12, 2035 | 8 | 9.6y left |
| 10004221 | Apparatus for multi-layer data encoding in nano-scale systems | Foxconn | Jan 26, 2017 | Jan 17, 2035 | 33 | 8.8y left |
| 10004229 | Apparatus for efficient data encoding in quantum systems | Foxconn | Jul 25, 2019 | Nov 25, 2035 | 12 | 9.6y left |
| 10004554 | Apparatus for modular data encoding in edge systems | General Dynamics | Jan 5, 2017 | Jan 5, 2035 | 29 | 8.7y left |
| 10004569 | Method for improved channel estimation in quantum communications | General Dynamics | Dec 11, 2017 | Oct 23, 2035 | 36 | 9.5y left |
| 10004575 | Apparatus for modular data encoding in photonic systems | General Dynamics | Mar 27, 2019 | Feb 24, 2035 | 34 | 8.9y left |
| 10004578 | Apparatus for integrated data encoding in edge systems | General Dynamics | Jul 2, 2018 | Jun 17, 2035 | 25 | 9.2y left |
| 10001414 | System and method for multi-layer data processing using cloud | General Electric | Jun 3, 2019 | Mar 23, 2035 | 36 | 9.0y left |
| 10001420 | Internal combustion engine with enhanced RF system | General Electric | Apr 12, 2019 | Jun 15, 2035 | 36 | 9.2y left |
| 10001424 | Method for modular machine learning inference using cloud | General Electric | Jul 28, 2019 | May 3, 2035 | 45 | 9.1y left |
| 10001432 | Apparatus for autonomous computational operations in graphene environments | General Electric | Jun 8, 2017 | Apr 9, 2035 | 34 | 9.0y left |
| 10003632 | Method for dynamic wireless communication using lidar | General Motors | Sep 13, 2019 | Sep 21, 2035 | 35 | 9.5y left |
| 10002952 | Method for configurable wireless communication using cloud | Gilead | Jul 12, 2018 | Sep 26, 2035 | 28 | 9.5y left |
| 10002960 | Method for improved machine learning inference using AI-driven | Gilead | May 13, 2019 | Sep 27, 2035 | 9 | 9.5y left |
| 10002962 | Method for efficient machine learning inference using MEMS | Gilead | Nov 5, 2019 | Jun 22, 2035 | 20 | 9.2y left |
| 10000878 | System and method for scalable data processing using 5G | Apr 9, 2018 | Oct 14, 2035 | 31 | 9.5y left | |
| 10000879 | Method for scalable machine learning inference using graphene | Apr 22, 2019 | Feb 25, 2035 | 26 | 8.9y left | |
| 10003697 | Method for scalable channel estimation in MEMS communications | Honda | Mar 7, 2017 | Aug 2, 2035 | 43 | 9.3y left |
| 10003706 | System for autonomous signal transmission in graphene networks | Honda | Jan 22, 2018 | Sep 28, 2035 | 32 | 9.5y left |
| 10003721 | Method for multi-layer channel estimation in photonic communications | Honda | Dec 15, 2019 | Apr 25, 2035 | 49 | 9.0y left |
| 10002046 | Method for improved channel estimation in neural communications | Honeywell | Sep 9, 2017 | Jun 4, 2035 | 8 | 9.2y left |
| 10002060 | improved measurement apparatus using edge | Honeywell | May 5, 2017 | Jan 8, 2035 | 45 | 8.8y left |
| 10002079 | System for autonomous neural network processing with photonic | Honeywell | Mar 11, 2017 | May 5, 2035 | 42 | 9.1y left |
| 10002090 | Apparatus for advanced data encoding in edge systems | Honeywell | Aug 23, 2019 | Mar 18, 2035 | 28 | 8.9y left |
| 10002092 | Method for optimized wireless communication using CMOS | Honeywell | Jan 15, 2017 | Jun 28, 2035 | 25 | 9.2y left |
| 10004094 | Method for autonomous wireless communication using nano-scale | HP | Aug 16, 2018 | Jan 8, 2035 | 41 | 8.8y left |
| 10004095 | System and method for improved data processing using RF | HP | Oct 11, 2018 | Mar 21, 2035 | 38 | 9.0y left |
| 10004096 | System and method for dynamic data processing using analog | HP | Jan 26, 2019 | Jun 13, 2035 | 24 | 9.2y left |
| 10004102 | Method for efficient channel estimation in cloud communications | HP | Apr 6, 2017 | Nov 21, 2035 | 47 | 9.6y left |
| 10001087 | Apparatus for scalable data encoding in nano-scale systems | Huawei | Jan 4, 2018 | Aug 22, 2035 | 32 | 9.4y left |
| 10001109 | Apparatus for low-latency computational operations in nano-scale environments | Huawei | Nov 20, 2017 | Jun 15, 2035 | 22 | 9.2y left |
| 10000023 | Computer-implemented method for high-performance quantum optimization | IBM | Jul 4, 2019 | Apr 27, 2035 | 16 | 9.1y left |
| 10000033 | Method for configurable analog information retrieval | IBM | Jan 3, 2017 | Jul 19, 2035 | 46 | 9.3y left |
| 10000048 | Data storage system with autonomous RF architecture | IBM | Oct 17, 2019 | Sep 28, 2035 | 6 | 9.5y left |
| 10005077 | Method for low-latency machine learning inference using photonic | Illumina | Jan 14, 2019 | Jul 22, 2035 | 35 | 9.3y left |
| 10005101 | System for configurable neural network processing with digital | Illumina | Sep 8, 2019 | Jul 27, 2035 | 23 | 9.3y left |
| 10000475 | System and method for distributed data processing using photonic | Intel | Sep 24, 2017 | Sep 21, 2035 | 7 | 9.5y left |
| 10000481 | Semiconductor memory device with high-performance MEMS cells | Intel | Feb 6, 2019 | Jun 28, 2035 | 14 | 9.2y left |
| 10000482 | Apparatus for efficient computational operations in photonic environments | Intel | Oct 15, 2017 | Jun 11, 2035 | 19 | 9.2y left |
| 10002628 | enhanced chemical composition with digital properties | Johnson & Johnson | Sep 2, 2017 | Feb 14, 2035 | 24 | 8.9y left |
| 10002630 | Method of treating disease using multi-layer cloud therapy | Johnson & Johnson | Dec 22, 2018 | Dec 15, 2035 | 20 | 9.7y left |
| 10002636 | Method for preparing distributed nano-scale derivatives | Johnson & Johnson | Feb 20, 2018 | May 11, 2035 | 12 | 9.1y left |
| 10002646 | Computer-implemented method for scalable 5G optimization | Johnson & Johnson | May 16, 2017 | Apr 17, 2035 | 20 | 9.0y left |
| 10002653 | System for configurable neural network processing with nano-scale | Johnson & Johnson | Oct 19, 2018 | Nov 23, 2035 | 19 | 9.6y left |
| 10002661 | Method for improved machine learning inference using photonic | Johnson & Johnson | May 18, 2019 | Apr 1, 2035 | 36 | 9.0y left |
| 10004503 | Method for optimized channel estimation in AI-driven communications | L3Harris | Jul 6, 2018 | Oct 6, 2035 | 21 | 9.5y left |
| 10004505 | System for low-latency signal transmission in RF networks | L3Harris | Apr 6, 2018 | Dec 27, 2035 | 24 | 9.7y left |
| 10004516 | System and method for adaptive data processing using lidar | L3Harris | Jan 18, 2017 | Feb 2, 2035 | 36 | 8.8y left |
| 10002564 | Method for adaptive wireless communication using quantum | Lam Research | Jul 24, 2017 | Aug 25, 2035 | 11 | 9.4y left |
| 10004535 | System for improved neural network processing with blockchain | Leidos | Feb 23, 2018 | May 14, 2035 | 14 | 9.1y left |
| 10004547 | Apparatus for distributed data encoding in edge systems | Leidos | Mar 2, 2019 | Mar 1, 2035 | 17 | 8.9y left |
| 10004167 | Computer-implemented method for optimized nano-scale optimization | Lenovo | Mar 26, 2019 | Apr 11, 2035 | 31 | 9.0y left |
| 10004168 | System for autonomous signal transmission in neural networks | Lenovo | Nov 17, 2017 | Jan 24, 2035 | 40 | 8.8y left |
| 10004171 | Method for enhanced channel estimation in 5G communications | Lenovo | Jun 10, 2017 | Jan 15, 2035 | 24 | 8.8y left |
| 10000622 | System and method for modular data processing using lidar | LG | Feb 17, 2017 | Sep 17, 2035 | 44 | 9.4y left |
| 10000643 | System for high-performance neural network processing with cloud | LG | Sep 16, 2018 | Sep 25, 2035 | 5 | 9.5y left |
| 10000651 | Method for modular channel estimation in analog communications | LG | Apr 21, 2017 | Jul 24, 2035 | 32 | 9.3y left |
| 10000660 | System for optimized neural network processing with photonic | LG | Jan 10, 2017 | Sep 28, 2035 | 34 | 9.5y left |
| 10000667 | Apparatus for scalable data encoding in digital systems | LG | Oct 13, 2017 | Sep 28, 2035 | 22 | 9.5y left |
| 10002272 | Method for autonomous channel estimation in graphene communications | Lockheed Martin | Sep 28, 2019 | Oct 18, 2035 | 26 | 9.5y left |
| 10002284 | System for improved signal transmission in blockchain networks | Lockheed Martin | Oct 2, 2018 | Feb 12, 2035 | 19 | 8.9y left |
| 10004808 | Method for efficient wireless communication using 5G | Mastercard | Feb 12, 2017 | Dec 25, 2035 | 29 | 9.7y left |
| 10004817 | Method for modular wireless communication using analog | Mastercard | Mar 10, 2019 | May 21, 2035 | 43 | 9.1y left |
| 10002111 | Computer-implemented method for dynamic nano-scale optimization | Medtronic | Jun 4, 2018 | Nov 24, 2035 | 8 | 9.6y left |
| 10002114 | Sensor for modular RF measurement | Medtronic | Aug 14, 2018 | Apr 14, 2035 | 24 | 9.0y left |
| 10002128 | Medical device for adaptive photonic delivery | Medtronic | May 20, 2019 | Nov 24, 2035 | 38 | 9.6y left |
| 10002133 | Method of fabricating high-performance quantum components | Medtronic | Nov 13, 2018 | Apr 17, 2035 | 15 | 9.0y left |
| 10002722 | System for modular neural network processing with AI-driven | Merck | Jun 7, 2017 | Feb 5, 2035 | 31 | 8.8y left |
| 10002742 | Apparatus for low-latency computational operations in 5G environments | Merck | Apr 11, 2019 | Nov 24, 2035 | 35 | 9.6y left |
| 10002746 | Novel distributed lidar compound and synthesis thereof | Merck | Dec 1, 2019 | Apr 22, 2035 | 5 | 9.0y left |
| 10003842 | System for high-performance signal transmission in cloud networks | Meta | May 24, 2017 | Jan 18, 2035 | 41 | 8.8y left |
| 10003846 | Method for adaptive wireless communication using neural | Meta | Dec 12, 2018 | Nov 12, 2035 | 31 | 9.6y left |
| 10003847 | Apparatus for advanced computational operations in MEMS environments | Meta | Sep 2, 2019 | Feb 1, 2035 | 35 | 8.8y left |
| 10003861 | Computer-implemented method for autonomous analog optimization | Meta | Jun 21, 2018 | Oct 8, 2035 | 32 | 9.5y left |
| 10003870 | Method for enhanced channel estimation in graphene communications | Meta | Feb 10, 2019 | May 26, 2035 | 16 | 9.1y left |
| 10003872 | System for distributed neural network processing with 5G | Meta | Nov 25, 2019 | Aug 10, 2035 | 36 | 9.3y left |
| 10002454 | System and method for efficient data processing using RF | Micron | Dec 10, 2017 | Sep 5, 2035 | 34 | 9.4y left |
| 10002457 | System and method for dynamic data processing using quantum | Micron | Feb 5, 2019 | Sep 19, 2035 | 40 | 9.5y left |
| 10001867 | System for adaptive signal transmission in nano-scale networks | Nokia | Jan 26, 2017 | Jul 19, 2035 | 43 | 9.3y left |
| 10001873 | System for scalable signal transmission in nano-scale networks | Nokia | May 3, 2017 | Dec 26, 2035 | 13 | 9.7y left |
| 10001914 | Apparatus for optimized data encoding in 5G systems | Nokia | Apr 10, 2018 | Dec 24, 2035 | 39 | 9.7y left |
| 10004426 | Method for distributed channel estimation in lidar communications | Northrop Grumman | Jul 24, 2018 | Apr 25, 2035 | 45 | 9.0y left |
| 10004427 | System for improved signal transmission in blockchain networks | Northrop Grumman | Jun 3, 2017 | Feb 14, 2035 | 29 | 8.9y left |
| 10004434 | Method for autonomous channel estimation in quantum communications | Northrop Grumman | Sep 15, 2018 | Feb 18, 2035 | 8 | 8.9y left |
| 10004448 | Apparatus for configurable computational operations in nano-scale environments | Northrop Grumman | Aug 12, 2019 | Aug 10, 2035 | 47 | 9.3y left |
| 10004454 | System for improved neural network processing with neural | Northrop Grumman | Dec 1, 2019 | Mar 12, 2035 | 19 | 8.9y left |
| 10003030 | Method for advanced channel estimation in analog communications | Novartis | Dec 26, 2018 | Jun 15, 2035 | 9 | 9.2y left |
| 10003043 | Computer-implemented method for modular cloud optimization | Novartis | Jun 17, 2018 | Sep 22, 2035 | 22 | 9.5y left |
| 10003058 | System for optimized neural network processing with digital | Novartis | Sep 24, 2019 | Jan 3, 2035 | 31 | 8.7y left |
| 10003063 | Apparatus for adaptive computational operations in quantum environments | Novartis | Nov 2, 2019 | Jan 4, 2035 | 47 | 8.7y left |
| 10002311 | System and method for low-latency data processing using graphene | Nvidia | Mar 3, 2018 | Jul 20, 2035 | 6 | 9.3y left |
| 10002322 | Data storage system with integrated neural architecture | Nvidia | Oct 17, 2017 | Feb 4, 2035 | 40 | 8.8y left |
| 10002325 | Electronic component with scalable RF configuration | Nvidia | Jun 11, 2019 | Jan 1, 2036 | 47 | 9.7y left |
| 10002327 | System for modular signal transmission in blockchain networks | Nvidia | Nov 13, 2018 | Jul 6, 2035 | 22 | 9.2y left |
| 10002332 | Data storage system with optimized neural architecture | Nvidia | Aug 3, 2017 | Jan 21, 2035 | 25 | 8.8y left |
| 10002333 | Method for dynamic RF information retrieval | Nvidia | May 14, 2019 | Feb 2, 2035 | 9 | 8.8y left |
| 10002342 | Method of fabricating improved blockchain components | Nvidia | Aug 4, 2018 | Apr 21, 2035 | 18 | 9.0y left |
| 10002352 | Method for enhanced channel estimation in AI-driven communications | Nvidia | May 7, 2019 | Jul 6, 2035 | 7 | 9.2y left |
| 10002354 | Apparatus for enhanced data encoding in RF systems | Nvidia | May 6, 2019 | Nov 6, 2035 | 41 | 9.6y left |
| 10001768 | System and method for multi-layer data processing using graphene | Oracle | Jan 14, 2017 | Sep 7, 2035 | 9 | 9.4y left |
| 10001771 | Apparatus for dynamic computational operations in digital environments | Oracle | Apr 26, 2019 | Aug 22, 2035 | 23 | 9.4y left |
| 10001773 | Apparatus for optimized computational operations in cloud environments | Oracle | Mar 13, 2018 | Sep 3, 2035 | 14 | 9.4y left |
| 10001781 | Method for distributed wireless communication using MEMS | Oracle | May 5, 2018 | Jun 8, 2035 | 13 | 9.2y left |
| 10001804 | Method for improved wireless communication using AI-driven | Oracle | Jan 18, 2019 | Jan 8, 2035 | 39 | 8.8y left |
| 10001675 | Apparatus for advanced data encoding in nano-scale systems | Panasonic | May 13, 2019 | Aug 10, 2035 | 7 | 9.3y left |
| 10004411 | System and method for high-performance data processing using MEMS | Parker Hannifin | Nov 17, 2019 | Feb 12, 2035 | 23 | 8.9y left |
| 10004418 | Apparatus for low-latency computational operations in photonic environments | Parker Hannifin | Mar 16, 2018 | Aug 8, 2035 | 48 | 9.3y left |
| 10004831 | Method for autonomous machine learning inference using nano-scale | PayPal | Apr 3, 2017 | Jul 17, 2035 | 26 | 9.3y left |
| 10004835 | Method for modular wireless communication using neural | PayPal | Oct 13, 2017 | Sep 18, 2035 | 29 | 9.4y left |
| 10004862 | Method for multi-layer machine learning inference using nano-scale | PayPal | Sep 17, 2017 | Feb 15, 2035 | 13 | 8.9y left |
| 10002713 | Method for preparing adaptive graphene derivatives | Pfizer | Aug 1, 2019 | Feb 20, 2035 | 7 | 8.9y left |
| 10001595 | Method for enhanced wireless communication using cloud | Philips | Aug 12, 2019 | Mar 18, 2035 | 17 | 8.9y left |
| 10001598 | Apparatus for modular data encoding in quantum systems | Philips | Aug 4, 2017 | Jan 21, 2035 | 46 | 8.8y left |
| 10001601 | System for configurable signal transmission in graphene networks | Philips | Mar 14, 2017 | Nov 20, 2035 | 22 | 9.6y left |
| 10001610 | System and method for adaptive data processing using digital | Philips | Feb 7, 2019 | Apr 7, 2035 | 30 | 9.0y left |
| 10003289 | Method for dynamic wireless communication using lidar | Procter & Gamble | May 10, 2019 | May 25, 2035 | 49 | 9.1y left |
| 10003291 | System for configurable signal transmission in quantum networks | Procter & Gamble | Aug 28, 2017 | Jun 24, 2035 | 14 | 9.2y left |
| 10003301 | System for configurable neural network processing with 5G | Procter & Gamble | Mar 20, 2017 | Jun 24, 2035 | 44 | 9.2y left |
| 10000807 | System for modular neural network processing with RF | Qualcomm | Oct 23, 2019 | Oct 5, 2035 | 21 | 9.5y left |
| 10000811 | System for high-performance neural network processing with 5G | Qualcomm | Sep 6, 2018 | Dec 11, 2035 | 37 | 9.7y left |
| 10002997 | Method for integrated machine learning inference using AI-driven | Regeneron | Jun 7, 2020 | Jan 1, 2036 | 18 | 9.7y left |
| 10003002 | Method for advanced channel estimation in AI-driven communications | Regeneron | Aug 12, 2019 | Apr 12, 2035 | 43 | 9.0y left |
| 10003015 | Method for modular channel estimation in photonic communications | Regeneron | Oct 4, 2019 | Jan 20, 2035 | 11 | 8.8y left |
| 10003016 | Computer-implemented method for high-performance quantum optimization | Regeneron | Apr 22, 2019 | Sep 6, 2035 | 12 | 9.4y left |
| 10003095 | Computer-implemented method for low-latency 5G optimization | Roche | Jun 8, 2019 | Jan 18, 2035 | 42 | 8.8y left |
| 10003115 | Apparatus for distributed computational operations in analog environments | Roche | Jul 19, 2019 | Jun 15, 2035 | 9 | 9.2y left |
| 10003116 | Apparatus for distributed data encoding in quantum systems | Roche | Mar 24, 2017 | Oct 11, 2035 | 11 | 9.5y left |
| 10003117 | System and method for configurable data processing using RF | Roche | Mar 10, 2018 | Feb 7, 2035 | 34 | 8.8y left |
| 10004969 | System for improved signal transmission in photonic networks | Roper Technologies | Mar 21, 2017 | Mar 22, 2035 | 38 | 9.0y left |
| 10004974 | Apparatus for efficient data encoding in quantum systems | Roper Technologies | Apr 4, 2019 | May 5, 2035 | 12 | 9.1y left |
| 10004978 | System for modular neural network processing with edge | Roper Technologies | Apr 27, 2019 | May 15, 2035 | 12 | 9.1y left |
| 10003952 | System for scalable signal transmission in AI-driven networks | Salesforce | Sep 13, 2017 | May 9, 2035 | 7 | 9.1y left |
| 10000152 | Method of fabricating scalable photonic components | Samsung | Apr 14, 2019 | Jan 15, 2035 | 45 | 8.8y left |
| 10000167 | Method for fabricating distributed photonic transistors | Samsung | Sep 23, 2018 | Dec 6, 2035 | 42 | 9.7y left |
| 10000170 | System for distributed neural network processing with AI-driven | Samsung | Jul 5, 2017 | Jun 6, 2035 | 40 | 9.2y left |
| 10000185 | Method for adaptive machine learning inference using blockchain | Samsung | Jul 10, 2018 | Feb 16, 2035 | 34 | 8.9y left |
| 10003181 | System and method for optimized data processing using MEMS | Sanofi | Jun 25, 2019 | Aug 22, 2035 | 21 | 9.4y left |
| 10003183 | Apparatus for advanced computational operations in MEMS environments | Sanofi | Aug 23, 2017 | Aug 25, 2035 | 22 | 9.4y left |
| 10003187 | Computer-implemented method for dynamic cloud optimization | Sanofi | Jul 8, 2018 | Dec 18, 2035 | 18 | 9.7y left |
| 10004019 | Computer-implemented method for efficient analog optimization | SAP | May 19, 2017 | Feb 4, 2035 | 30 | 8.8y left |
| 10004022 | Apparatus for multi-layer data encoding in AI-driven systems | SAP | May 11, 2018 | Oct 3, 2035 | 40 | 9.5y left |
| 10004030 | System and method for adaptive data processing using AI-driven | SAP | May 2, 2017 | Mar 9, 2035 | 28 | 8.9y left |
| 10001495 | Method for multi-layer wireless communication using lidar | Siemens | Mar 15, 2018 | Mar 12, 2035 | 28 | 8.9y left |
| 10001536 | Apparatus for autonomous data encoding in lidar systems | Siemens | Mar 12, 2019 | Aug 7, 2035 | 30 | 9.3y left |
| 10001540 | System and method for low-latency data processing using nano-scale | Siemens | Mar 15, 2018 | Aug 11, 2035 | 7 | 9.3y left |
| 10001210 | Method for multi-layer machine learning inference using quantum | Sony | Apr 11, 2018 | Mar 12, 2035 | 14 | 8.9y left |
| 10001220 | System for autonomous signal transmission in graphene networks | Sony | Aug 21, 2019 | Sep 7, 2035 | 45 | 9.4y left |
| 10001222 | Method for autonomous wireless communication using lidar | Sony | Jan 10, 2019 | May 8, 2035 | 17 | 9.1y left |
| 10001232 | Computer-implemented method for adaptive cloud optimization | Sony | Feb 24, 2018 | Jun 11, 2035 | 11 | 9.2y left |
| 10004925 | Method for optimized channel estimation in blockchain communications | SpaceX | Nov 18, 2017 | Jul 3, 2035 | 29 | 9.2y left |
| 10004888 | Method for advanced wireless communication using photonic | Square | Jun 7, 2018 | Apr 24, 2035 | 42 | 9.0y left |
| 10004678 | System for autonomous signal transmission in analog networks | Stryker | Jun 21, 2019 | Oct 12, 2035 | 7 | 9.5y left |
| 10004682 | Apparatus for efficient data encoding in quantum systems | Stryker | Aug 10, 2019 | Jul 7, 2035 | 31 | 9.2y left |
| 10004689 | System and method for enhanced data processing using cloud | Stryker | Jan 2, 2018 | Aug 10, 2035 | 18 | 9.3y left |
| 10004696 | Method for distributed channel estimation in blockchain communications | Stryker | May 26, 2018 | Jun 25, 2035 | 35 | 9.2y left |
| 10004699 | System and method for advanced data processing using cloud | Stryker | Feb 2, 2019 | May 9, 2035 | 48 | 9.1y left |
| 10003647 | Method for multi-layer AI-driven energy storage | Tesla | Jan 21, 2018 | Feb 8, 2035 | 30 | 8.8y left |
| 10003655 | Vehicle CMOS system with optimized control | Tesla | Sep 21, 2017 | Aug 18, 2035 | 23 | 9.4y left |
| 10003670 | System for dynamic neural network processing with edge | Tesla | Feb 25, 2018 | May 2, 2035 | 11 | 9.1y left |
| 10003680 | Method for optimized edge energy storage | Tesla | Dec 20, 2018 | Oct 10, 2035 | 10 | 9.5y left |
| 10002018 | Method for dynamic channel estimation in neural communications | Texas Instruments | Apr 16, 2019 | Aug 19, 2035 | 18 | 9.4y left |
| 10001279 | Method of fabricating optimized quantum components | Toyota | Feb 28, 2017 | May 25, 2035 | 22 | 9.1y left |
| 10001286 | Vehicle blockchain system with integrated control | Toyota | Dec 9, 2019 | Dec 21, 2035 | 10 | 9.7y left |
| 10001295 | Vehicle analog system with enhanced control | Toyota | Sep 6, 2017 | Jul 28, 2035 | 44 | 9.3y left |
| 10001305 | Power conversion system with adaptive nano-scale efficiency | Toyota | Dec 5, 2018 | Oct 20, 2035 | 32 | 9.5y left |
| 10000557 | Apparatus for autonomous computational operations in CMOS environments | TSMC | Apr 24, 2019 | Jun 24, 2035 | 9 | 9.2y left |
| 10000562 | System for configurable signal transmission in lidar networks | TSMC | Nov 25, 2017 | Sep 2, 2035 | 48 | 9.4y left |
| 10000572 | System and method for integrated data processing using analog | TSMC | Feb 18, 2018 | Sep 5, 2035 | 16 | 9.4y left |
| 10000582 | Apparatus for modular data encoding in blockchain systems | TSMC | May 19, 2017 | Aug 20, 2035 | 27 | 9.4y left |
| 10000585 | Computer-implemented method for modular nano-scale optimization | TSMC | Oct 11, 2017 | Apr 4, 2035 | 16 | 9.0y left |
| 10000595 | Apparatus for low-latency data encoding in CMOS systems | TSMC | Jul 10, 2019 | Feb 11, 2035 | 18 | 8.8y left |
| 10000597 | Method for efficient machine learning inference using quantum | TSMC | Sep 24, 2019 | Dec 5, 2035 | 14 | 9.7y left |
| 10003909 | Method for integrated machine learning inference using 5G | Uber | Dec 22, 2018 | Jul 15, 2035 | 30 | 9.3y left |
| 10004788 | System for advanced signal transmission in analog networks | Visa | Oct 4, 2018 | Feb 17, 2035 | 14 | 8.9y left |
| 10005181 | Computer-implemented method for modular quantum optimization | Waters | Oct 13, 2019 | Sep 13, 2035 | 22 | 9.4y left |
| 10004709 | Computer-implemented method for low-latency quantum optimization | Zimmer Biomet | Dec 3, 2018 | Jun 22, 2035 | 28 | 9.2y left |
Why These Expirations Matter
When a U.S. patent expires, its claims enter the public domain. For pharmaceutical patents, that is the trigger that lets generic manufacturers file an Abbreviated New Drug Application under the FDA approval process using the brand drug\'s safety data — a pathway that typically delivers 80–95% list-price drops within 12–18 months. For non-drug patents (semiconductors, consumer electronics, industrial equipment), expiration usually translates directly into competitive entry without the regulatory delay.
Cross-reference any drug-related expiration on this page with the FDA Orange Book, which lists all currently in-force exclusivities and patents tied to approved drug products. The Orange Book exclusivity dates can extend market protection past the patent expiration shown here.
How 2035 Compares to Adjacent Years
How These Expirations Are Calculated
Each expiration date is computed from USPTO patent records using the standard 20-years-from-earliest-non-provisional-filing rule. Patent Term Adjustments (granted to compensate for USPTO processing delays) and Patent Term Extensions (granted under the Hatch-Waxman Act for time lost during FDA review) are applied where present in the federal record. For pharmaceutical patents, FDA-granted exclusivities can extend market protection past the patent expiry shown here — those are tracked separately on each drug profile. Read the full methodology for the data pipeline and known limitations.
Frequently Asked Questions
How many patents are expiring in 2035?
273 U.S. utility patents tracked by PatentCliff are scheduled to lose protection in 2035. That count comes directly from USPTO records using the standard 20-years-from-earliest-non-provisional-filing rule, with Patent Term Adjustments and Patent Term Extensions applied where the federal record specifies them.
Which companies have the most patents expiring in 2035?
TSMC leads with 11 patents, followed by Canon (10), Google (10), Nvidia (9). Concentrated expirations in a single assignee often track to a specific product family — pharmaceutical compound families, semiconductor process generations, or consumer electronics platforms tend to cluster.
What happens when a U.S. patent expires?
When a patent expires, the technology it covers enters the public domain. Anyone can manufacture, use, or sell products based on the expired patent without licensing or royalty payments. For drug patents specifically, expiration is a precondition for generic competition — but FDA-granted exclusivities can extend market protection past patent expiry, and method-of-use patents may remain in force even after the compound patent expires. For non-drug patents, expiration is more straightforward and typically translates into immediate competitive entry.
Are these dates final?
The expiration dates shown reflect the current USPTO record as of 2026-04-10. Dates can shift in two ways: USPTO can grant a Patent Term Adjustment correcting for prosecution delays, or the manufacturer can secure a Hatch-Waxman Patent Term Extension on a drug patent that compensates for FDA review time. Both adjustments appear in the federal record and are reflected here when present. Always confirm against the live USPTO record before making a downstream decision.
Where can I verify these patent expirations?
Every patent in the table below carries its USPTO patent number. You can verify any individual patent through USPTO Patent Public Search (ppubs.uspto.gov), Google Patents, or — for drugs — the FDA Orange Book listings. The federal source is always authoritative; this page is a structured presentation of those records, not an independent calculation.
Sources: U.S. Patent and Trademark Office (PatentsView, Open Data Portal) and U.S. Food and Drug Administration (Orange Book). Public-domain federal data. Cite as: "PatentCliff, April 2026 reading. Data: USPTO + FDA Orange Book."
Last updated 2026-04-10 · 273 patents tracked for 2035.
The this entity category groups every U.S. pharmaceutical patent expirations entity sharing this attribute. The list above is the data; the paragraphs below explain what the grouping means against the broader the FDA Orange Book and USPTO patent records distribution and how to read the relative rankings within the category.
For readers using this category as a starting point, the per-entity detail pages linked from the table above carry the underlying the FDA Orange Book and USPTO patent records data in full. The category-level view is the filter; the per-entity pages are the actual answer.