NUCLERA LTD
16Patents
16Active
16Granted
63Portfolio score
Filing activity: May 29, 2018 → Dec 19, 2022
Most-cited patents
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| USD1052105S1 | Instrument for manipulating reagent droplets | General | 4 | Active |
| US12027130B2 | Latched transistor driving for high frequency AC driving of EWoD arrays | Physics | 0 | Active |
| US12128411B2 | Dielectric layers for digital microfluidic devices | Physics | 0 | Active |
| US12116600B2 | Modified terminal deoxynucleotidyl transferase (TdT) enzymes | Chemistry; Metallurgy | 0 | Active |
| US11807887B2 | Compositions and methods related to nucleic acid synthesis | Chemistry; Metallurgy | 0 | Active |
| US11946901B2 | Method for degassing liquid droplets by electrical actuation at higher temperatures | Performing Operations; Transporting | 0 | Active |
| US11821018B2 | Methods for cell-free protein expression | Performing Operations; Transporting | 0 | Active |
| US12179203B2 | Method for reagent-specific driving EWoD arrays in microfluidic systems | Performing Operations; Transporting | 0 | Active |
| US11921394B2 | Layered structure with high dielectric constant for use with active matrix backplanes | Physics | 0 | Active |
| US11806715B2 | Method of electrowetting | Performing Operations; Transporting | 0 | Active |
| US11927740B2 | Spatially variable hydrophobic layers for digital microfluidics | Performing Operations; Transporting | 0 | Active |
| US11801510B2 | Dielectric layers for digital microfluidic devices | Physics | 0 | Active |
| US12129501B2 | Polymer synthesis using electrowetting devices | Chemistry; Metallurgy | 0 | Active |
| US12370550B2 | Microfluidic devices containing reversibly pinned droplet samples and methods | Performing Operations; Transporting | 0 | Active |
| US11993800B2 | Use of terminal transferase enzyme in nucleic acid synthesis | Chemistry; Metallurgy | 0 | Active |
| US12312611B2 | Modified terminal deoxynucleotidyl transferase (TdT) enzymes | Chemistry; Metallurgy | 0 | Active |
Source: USPTO / EPO open patent data. Counts and citation impact are objective bibliographic measures.