Dell Patent Portfolio
35 US patents · Average 29 claims per patent
Technology Focus Areas
Patent Details
| Patent # | Title | Granted | Expires | Claims | Status |
|---|---|---|---|---|---|
| 10004057 | Apparatus for high-performance computational operations in edge environments | Dec 3, 2021 | Nov 15, 2037 | 28 | 11.6y left |
| 10004058 | Method for advanced channel estimation in quantum communications | Jan 19, 2017 | Nov 14, 2034 | 38 | 8.6y left |
| 10004059 | Method for integrated machine learning inference using graphene | Feb 7, 2019 | May 22, 2035 | 23 | 9.1y left |
| 10004060 | Method for enhanced channel estimation in nano-scale communications | Jun 26, 2021 | May 28, 2037 | 13 | 11.1y left |
| 10004061 | Method for enhanced wireless communication using edge | Sep 10, 2028 | Jan 19, 2044 | 36 | 17.8y left |
| 10004062 | Method for integrated wireless communication using MEMS | Jan 15, 2020 | Oct 9, 2036 | 28 | 10.5y left |
| 10004063 | Apparatus for improved data encoding in neural systems | Jul 7, 2010 | Nov 19, 2028 | 47 | 2.6y left |
| 10004064 | Apparatus for high-performance computational operations in nano-scale environments | Jan 24, 2022 | Dec 3, 2039 | 8 | 13.7y left |
| 10004065 | Method for modular channel estimation in MEMS communications | Oct 7, 2004 | Sep 22, 2020 | 42 | Expired |
| 10004066 | System for multi-layer neural network processing with cloud | Sep 25, 2021 | Oct 22, 2039 | 12 | 13.5y left |
| 10004067 | Method for integrated machine learning inference using lidar | Jul 26, 2018 | Mar 3, 2036 | 42 | 9.9y left |
| 10004068 | Computer-implemented method for enhanced cloud optimization | Oct 4, 2027 | Jan 23, 2044 | 27 | 17.8y left |
| 10004069 | System for improved neural network processing with graphene | Feb 23, 2023 | Mar 26, 2040 | 12 | 14.0y left |
| 10004070 | Method for scalable channel estimation in graphene communications | Nov 4, 2015 | Apr 10, 2032 | 30 | 6.0y left |
| 10004071 | Apparatus for enhanced data encoding in digital systems | Sep 19, 2016 | Aug 16, 2032 | 49 | 6.4y left |
| 10004072 | System for efficient signal transmission in edge networks | Apr 12, 2022 | Sep 11, 2038 | 16 | 12.4y left |
| 10004073 | System for modular signal transmission in lidar networks | Jan 13, 2004 | Nov 8, 2021 | 12 | Expired |
| 10004074 | System for adaptive neural network processing with nano-scale | Dec 28, 2024 | Nov 16, 2042 | 36 | 16.6y left |
| 10004075 | Method for dynamic wireless communication using edge | Nov 6, 2022 | Aug 12, 2039 | 16 | 13.3y left |
| 10004076 | System and method for improved data processing using 5G | Nov 14, 2009 | Sep 5, 2025 | 35 | Expired |
| 10004077 | Method for modular machine learning inference using blockchain | Apr 6, 2021 | Apr 12, 2038 | 6 | 12.0y left |
| 10004078 | Method for configurable machine learning inference using nano-scale | Jul 2, 2027 | Dec 18, 2043 | 23 | 17.7y left |
| 10004079 | Computer-implemented method for high-performance cloud optimization | May 11, 2024 | Mar 24, 2040 | 47 | 14.0y left |
| 10004080 | System for scalable signal transmission in AI-driven networks | Nov 4, 2018 | Dec 25, 2035 | 10 | 9.7y left |
| 10004081 | Method for configurable wireless communication using MEMS | Sep 13, 2010 | Nov 4, 2027 | 41 | 1.6y left |
| 10004082 | System for integrated signal transmission in nano-scale networks | Sep 11, 2026 | May 8, 2042 | 49 | 16.1y left |
| 10004083 | Method for integrated machine learning inference using MEMS | Feb 25, 2023 | Oct 1, 2041 | 24 | 15.5y left |
| 10004084 | Apparatus for distributed data encoding in lidar systems | Feb 14, 2026 | Feb 5, 2042 | 38 | 15.8y left |
| 10004085 | Apparatus for low-latency computational operations in nano-scale environments | Sep 21, 2012 | Mar 22, 2030 | 22 | 4.0y left |
| 10004086 | System for advanced signal transmission in nano-scale networks | Sep 17, 2006 | Mar 17, 2022 | 32 | Expired |
| 10004087 | System for scalable signal transmission in blockchain networks | Jan 27, 2021 | May 2, 2037 | 49 | 11.1y left |
| 10004088 | Method for autonomous machine learning inference using 5G | Mar 9, 2004 | Mar 4, 2022 | 16 | Expired |
| 10004089 | Apparatus for modular computational operations in AI-driven environments | Sep 26, 2024 | Feb 20, 2042 | 44 | 15.9y left |
| 10004090 | Method for modular wireless communication using AI-driven | Jul 3, 2020 | May 14, 2038 | 45 | 12.1y left |
| 10004091 | Apparatus for scalable data encoding in digital systems | Aug 6, 2012 | Nov 15, 2030 | 30 | 4.6y left |
Frequently Asked Questions
Dell holds 35 US patents with an average of 29 claims per patent. The portfolio has a Patent Strength Score of 41/100 (Grade D).
Dell has 1 patents expiring within 2 years and 4 patents expiring within 5 years. These expirations may create opportunities for competitors and generic entrants.
Dell's key technology focus areas include Computing & Data Processing, Telecommunications. The portfolio spans 2 distinct technology classifications (CPC codes).
The Patent Strength Score (0-100, A-F) benchmarks a company's patent portfolio quality based on portfolio size (30%), claims breadth (25%), time remaining to expiration (25%), and portfolio diversity across technology areas (20%).
Patent Strength Score is based on portfolio size, claims breadth, time to expiration, and technology diversity using CPC classifications.
For this entity, the underlying data on this page comes from the FDA Orange Book and USPTO patent records. The breakdown above is the federal record; the paragraphs below add the per-entity context that makes the headline numbers usable for a real decision rather than just a data lookup.
The methodology behind every numeric value on this page is publicly documented on the the FDA Orange Book and USPTO patent records portal and described in detail on this site’s methodology page. Refresh cadence varies by underlying series; the page surfaces the as-of date for each number so readers can trace any figure back to the source release.
Practical use of this page is in combination with the comparison and ranking pages elsewhere on the site, which surface the same data for this entity’s peers within U.S. brand-name drugs. A single-entity reading without peer context can be misleading when an entity is an outlier on one axis but typical on another.
Source: USPTO patent search, 2026.