John M. Boyle
22Patents
9h-index
39Co-inventors
75Inventor score
Filing activity: Feb 13, 1978 → Sep 1, 2023
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US5577209A | Apparatus and method for providing multi-level security for communication among computers and terminals on a network | Electricity | 361 | Expired |
| US5940591A | Apparatus and method for providing network security | Electricity | 288 | Expired |
| US6212636A | Method for establishing trust in a computer network via association | Electricity | 173 | Expired |
| US5872847A | Using trusted associations to establish trust in a computer network | Electricity | 160 | Expired |
| US7090810B2 | Selective catalytic reduction of nox enabled by sidestream urea decomposition | Emerging Cross-Sectional Technologies | 25 | Expired |
| US5553708A | Packaging for shipping spent fluorescent lamps | Performing Operations; Transporting | 20 | Expired |
| US7615200B2 | Selective catalytic reduction of NOx enabled by urea decomposition in heat-exchanger bypass | Emerging Cross-Sectional Technologies | 13 | Active |
| US7815881B2 | Selective catalytic reduction of NOx enabled by urea decomposition heat-exchanger bypass | Emerging Cross-Sectional Technologies | 11 | Active |
| US5020457A | Destruction of acid gas emissions | Emerging Cross-Sectional Technologies | 9 | Expired |
| US7829033B2 | Selective catalytic reduction of NOx enabled by sidestream urea decomposition | Performing Operations; Transporting | 8 | Active |
| US8848192B2 | Extractive continuous ammonia monitoring system | Emerging Cross-Sectional Technologies | 4 | Active |
| US4181879A | Mine search coil simulator | Physics | 2 | Expired |
| US7691361B1 | Method and apparatus for generating mercury (II) sulfide from elemental mercury | Emerging Cross-Sectional Technologies | 2 | Active |
| US8951492B2 | Ammonia gas generation from urea for low temperature process requirements | Emerging Cross-Sectional Technologies | 1 | Active |
| US8591848B2 | Selective catalytic NOx reduction process and control system | Mechanical Engineering; Lighting; Heating | 1 | Active |
| US8501107B2 | Apparatus for generating mercury (II) sulfide from elemental mercury | Emerging Cross-Sectional Technologies | 0 | Active |
| US11339056B2 | Controlled, compact, on-demand ammonia gas generation process and apparatus | Emerging Cross-Sectional Technologies | 0 | Active |
| US8529645B2 | Hydrogasification reactor and method of operating same | Chemistry; Metallurgy | 0 | Active |
| US8940543B2 | Diagnostic tool and process for assessing thermal urea gasification performance | Emerging Cross-Sectional Technologies | 0 | Active |
| US12360505B2 | Monitoring laundry machine operation using machine learning analysis of acoustic transducer signal information | Physics | 0 | Active |
| US11747780B2 | Monitoring laundry machine operation using machine learning analysis of acoustic transducer signal information | Physics | 0 | Active |
| US8852542B2 | Selective catalytic NOx reduction process and apparatus providing improved gassification of urea to form ammonia-containing gas | Mechanical Engineering; Lighting; Heating | 0 | Active |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.