Timo Koskela

Oulu, Finland

Timo Koskela

This inventor holds 252 USPTO granted patents and 176 published patent applications, plus 2 CIPO patents and 75 EPO patents, primarily in Wireless Communication (CPC class H04B7-0695). Top assignees: Nokia Technologies Oy, Broadcom Corporation, Nokia Corporation. Active years: 2012-2026.

USPTO Granted Patents = 252 

% Patents Active = 88.9

 

 

Average Co-Inventor Count = 3.8

ph-index = 12

Forward Citations = 675(Granted Patents)

Forward Citations (Not Self Cited) = 630(Dec 10, 2025)


Inventors with similar research interests:

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Company Filing History:


Years Active: 2012-2026

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Areas of Expertise:
Wireless Communication
Beam Management
Positioning Reference Signals
DCI Monitoring
Handover Selection
Channel State Information
Timing Advance Acquisition
Failure Recovery
Latency Mode Determination
Multi-Source PRS
Inter-Cell Mobility
Transmission Reception
252 patents (USPTO):Explore Patents

Title: Timo Koskela: Driving Innovation and Advancements in the Technology Sector

Introduction:

Throughout his career, Timo Koskela has established himself as a prominent figure in the innovation landscape. With a wealth of expertise and an innovative mindset, Koskela has made significant contributions to his field. Based in Oulu, Finland, he has worked with leading technology companies, such as Nokia Technologies Oy and Broadcom Corporation, where he has actively collaborated on cutting-edge projects and driven advancements in their respective industries.

Latest Patents:

Koskela's passion for innovation is reflected in his substantial patent portfolio. With an impressive 144 patents to his name, he has demonstrated a keen ability to identify novel solutions and develop groundbreaking technologies. Two of his latest patents showcase his expertise in transmission reception point-specific beam failure indications in multi-transmission reception point scenarios and CORESET and QCL association in beam recovery procedure.

The first patent involves a method that enables user equipment to receive network entity failure indication configurations and detect beam failure conditions. User equipment can then select appropriate resources and parameters based on these configurations, transmitting failure indications to the second network entity. This patent highlights Koskela's proficiency in ensuring optimal performance and efficient communication between network entities.

In the second patent, Koskela introduces a CORESET beam recovery procedure and a QCL association beam recovery procedure. This innovation facilitates a UE-initiated change of active TCI state, improving the reliability and performance of communication systems. By optimizing transmission configuration indication states and enabling active TCI state switching, Koskela's patent ensures robust beam recovery in beamforming systems.

Career Highlights:

Throughout his career, Koskela has achieved numerous milestones and received recognition for his contributions to the innovation landscape. His ability to develop and implement cutting-edge technologies has propelled him to the forefront of his field. Koskela's passion for pushing the boundaries of what is possible has consistently driven advancements in the technology sector.

Collaborations:

Koskela's impact extends beyond his individual contributions. He has actively collaborated with experts and innovators, harnessing collective knowledge and expertise to drive technological advancements. Work with esteemed colleagues, such as Sami-Jukka Hakola and Samuli Turtinen, underscores Koskela's commitment to fostering collaborative environments where ideas thrive and innovation flourishes.

Conclusion:

Timo Koskela is an exemplary figure in the realm of technology and innovation. His impressive patent portfolio, career milestones, and collaborations with leading companies and experts reflect his commitment to driving advancements in the industry. Koskela's pioneering mindset and ability to turn ideas into tangible innovations continue to shape the technology landscape, leaving a lasting impact on the field for years to come.

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