Growing community of inventors

Redwood City, CA, United States of America

Peter Sturdza

Average Co-Inventor Count = 2.40

ph-index = 3

The patent ph-index is calculated by counting the number of publications for which an author has been cited by other authors at least that same number of times.

Forward Citations = 31

Peter SturdzaSpencer Fugal (6 patents)Peter SturdzaAlex Haas (6 patents)Peter SturdzaDavid L Rodriguez (5 patents)Peter SturdzaDev G Rajnarayan (4 patents)Peter SturdzaJames D Chase (2 patents)Peter SturdzaMichael Lorenzo Henderson (1 patent)Peter SturdzaHerve Martins-Rivas (1 patent)Peter SturdzaRichard R Tracy (1 patent)Peter SturdzaYoshifumi Suzuki (1 patent)Peter SturdzaPeter Sturdza (18 patents)Spencer FugalSpencer Fugal (12 patents)Alex HaasAlex Haas (6 patents)David L RodriguezDavid L Rodriguez (5 patents)Dev G RajnarayanDev G Rajnarayan (9 patents)James D ChaseJames D Chase (14 patents)Michael Lorenzo HendersonMichael Lorenzo Henderson (20 patents)Herve Martins-RivasHerve Martins-Rivas (11 patents)Richard R TracyRichard R Tracy (10 patents)Yoshifumi SuzukiYoshifumi Suzuki (1 patent)
..
Inventor’s number of patents
..
Strength of working relationships

Company Filing History:

1. Aerion Corporation (9 from 20 patents)

2. Other (1 from 832,891 patents)

3. Aerion Intellectual Property Management Corporation (1 from 5 patents)

4. Aerion Technologies Corporation (1 from 1 patent)


18 patents:

1. D950468 - Airplane

2. D950470 - Airplane

3. D950466 - Airplane

4. D950465 - Airplane

5. D950469 - Airplane

6. D950467 - Airplane

7. 10634581 - Predicting transition from laminar to turbulent flow over a surface using mode-shape parameters

8. 10296672 - Generating inviscid and viscous fluid-flow simulations over an aircraft surface using a fluid-flow mesh

9. 9494482 - Predicting transition from laminar to turbulent flow over a surface using mode-shape parameters

10. 9418202 - Predicting transition from laminar to turbulent flow over a surface

11. 9348956 - Generating a simulated fluid flow over a surface using anisotropic diffusion

12. 8935140 - Generating inviscid and viscous fluid-flow simulations over a surface using a fluid-flow mesh

13. 8892408 - Generating inviscid and viscous fluid flow simulations over a surface using a quasi-simultaneous technique

14. 8538738 - Predicting transition from laminar to turbulent flow over a surface

15. 8457939 - Generating inviscid and viscous fluid-flow simulations over an aircraft surface using a fluid-flow mesh

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as of
12/30/2025
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