Growing community of inventors

San Jose, CA, United States of America

Ming Ting Wu

Average Co-Inventor Count = 2.69

ph-index = 6

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 = 105

Ming Ting WuDennis R Smalley (8 patents)Ming Ting WuAdam L Cohen (7 patents)Ming Ting WuMichael S Lockard (7 patents)Ming Ting WuAnanda H Kumar (5 patents)Ming Ting WuKieun Kim (5 patents)Ming Ting WuRulon Joseph Larsen, Iii (5 patents)Ming Ting WuYoung Kim (5 patents)Ming Ting WuGregory Paul Schmitz (4 patents)Ming Ting WuArun S Veeramani (4 patents)Ming Ting WuRichard T Chen (3 patents)Ming Ting WuUri Frodis (3 patents)Ming Ting WuEric C Miller (3 patents)Ming Ting WuVacit Arat (22 patents)Ming Ting WuGarret R Smalley (2 patents)Ming Ting WuJuan Diego Perea (1 patent)Ming Ting WuEli Baldwin (1 patent)Ming Ting WuGabriel Jacobsohn (1 patent)Ming Ting WuMing Ting Wu (17 patents)Dennis R SmalleyDennis R Smalley (123 patents)Adam L CohenAdam L Cohen (119 patents)Michael S LockardMichael S Lockard (74 patents)Ananda H KumarAnanda H Kumar (70 patents)Kieun KimKieun Kim (19 patents)Rulon Joseph Larsen, IiiRulon Joseph Larsen, Iii (8 patents)Young KimYoung Kim (5 patents)Gregory Paul SchmitzGregory Paul Schmitz (43 patents)Arun S VeeramaniArun S Veeramani (15 patents)Richard T ChenRichard T Chen (62 patents)Uri FrodisUri Frodis (30 patents)Eric C MillerEric C Miller (28 patents)Vacit AratVacit Arat (22 patents)Garret R SmalleyGarret R Smalley (4 patents)Juan Diego PereaJuan Diego Perea (2 patents)Eli BaldwinEli Baldwin (1 patent)Gabriel JacobsohnGabriel Jacobsohn (1 patent)
..
Inventor’s number of patents
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Strength of working relationships

Company Filing History:

1. Microfabrica Inc. (13 from 131 patents)

2. University of Southern California (4 from 1,627 patents)


17 patents:

1. 12196782 - Probes with planar unbiased spring elements for electronic component contact, methods for making such probes, and methods for using such probes

2. 12196781 - Probes with planar unbiased spring elements for electronic component contact, methods for making such probes, and methods for using such probes

3. 12181493 - Compliant probes including dual independently operable probe contact elements including at least one flat extension spring, methods for making, and methods for using

4. 12078657 - Compliant pin probes with extension springs, methods for making, and methods for using

5. 11906549 - Compliant pin probes with flat extension springs, methods for making, and methods for using

6. 11867721 - Probes with multiple springs, methods for making, and methods for using

7. 11802891 - Compliant pin probes with multiple spring segments and compression spring deflection stabilization structures, methods for making, and methods for using

8. 11768227 - Multi-layer probes having longitudinal axes and preferential probe bending axes that lie in planes that are nominally parallel to planes of probe layers

9. 11630127 - Multi-layer, multi-material micro-scale and millimeter-scale devices with enhanced electrical and/or mechanical properties

10. 10961967 - Fuel injector systems, fuel injectors, fuel injector nozzles, and methods for making fuel injector nozzles

11. 10939934 - Miniature shredding tools for use in medical applications, methods for making, and procedures for using

12. 10641792 - Multi-layer, multi-material micro-scale and millimeter-scale devices with enhanced electrical and/or mechanical properties

13. 10215775 - Multi-layer, multi-material micro-scale and millimeter-scale devices with enhanced electrical and/or mechanical properties

14. 9671429 - Multi-layer, multi-material micro-scale and millimeter-scale devices with enhanced electrical and/or mechanical properties

15. 8795278 - Selective tissue removal tool for use in medical applications and methods for making and using

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as of
12/4/2025
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