Timo Jackle
About
Timo Jackle is from Rochester, New York, United States. Timo is currently Vice President, MedTech Quality at Bausch + Lomb, located in Rochester, New York, United States. In Timo's previous role as a Vice President, Global Surgical Quality at Bausch + Lomb, Timo worked in Rochester, New York, United States until Nov 2023. Prior to joining Bausch + Lomb, Timo was a Vice President, Global Medical Device Quality at Bausch Health Companies Inc. and held the position of Vice President, Global Medical Device Quality at Rochester, New York Area. Prior to that, Timo was a Vice President, Global Clinical Trial Operations at ACM Global Laboratories, based in Rochester, New York from Mar 2013 to Apr 2017. Timo started working as Executive Director, Global Clinical Operations at Bausch & Lomb, Inc. in Rochester, New York Area in Jun 2008. From Sep 2005 to Jun 2008, Timo was Director, Surgical R&D and Munich Site Leader at Bausch + Lomb, based in Munich Germany. Prior to that, Timo was a Director, Global Quality at Bausch + Lomb, based in Rochester, New York Area from Mar 2001 to Sep 2005. Timo started working as Manager, Quality Systems Design, Vision Care at Bausch + Lomb in Rochester, New York Area in Oct 1998.
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Timo Jackle's current jobs
Worldwide Quality Operations for Bausch + Lomb Surgical, Contact Lens, and Specialty Vision
Timo Jackle's past jobs
Accelerating BHC's patient-centric and healthcare-focused business growth through the deployment of sustainable, global quality strategy, systems, processes and talent. Quality leadership of BHC's worldwide medical device R&D, clinical development, manufacturing, supply chain, and customer feedback through enterprise excellence that assures patient safety, reliable outcomes, and compliance to global regulatory requirements and standards.
Global oversight of clinical trials operations at ACM Global Laboratories with sites in Mumbai; Rochester, New York; Shanghai; Singapore; and York, United Kingdom. Leading global team to establish systems, processes, and talent development for project management, portfolio management, data management, specimen collection kit design & logistics, and specimen management / storage for sponsor and/or CRO client protocols. Oversight of central lab services for over 500 active studies in more than 60 countries to double sales since 2013.
Led Bausch + Lomb's global clinical operations team in planning and executing a portfolio of human clinical trials to bring new ophthalmic devices and drugs to the market and to facilitate global expansion. This executive role builds on a strong, diverse leadership background in research and development, as well as quality assurance in product development and manufacturing in medical devices, pharmaceuticals and the automotive industry.
Responsible for research and development of Refractive Ophthalmic Lasers, Diagnostic Instruments, and associated software. Site leadership included research, engineering, program management, regulatory affairs, and quality assurance at Bausch + Lomb's Munich facility.
Reponsible for all aspects of Quality Assurance for Bausch + Lomb including R&D (Design Control and laboratories), manufacturing, distribution and customer service. Scope included all global Vision Care, Surgical, and Pharmaceutical sites.
Lead R&D Quality Team in suppport of design control and new product development for Vision Care products. Implemented global standards for process capability, statistical process control, validation and verification.
Quality systems engineer assigned to numerous new product/process development programs. Introduced statistical pre-control and other advanced quality methods to improve efficiency and quality. Developed PFMEA standards. Contucted integration of quality systems and process controls and validation following aquisition of contact lens company in UK.
Reliability & Systems Engineer responsible for reliability and service of engine management components. Developed and implemented across all engine divisions, statistical-based design and validation program utilizing DOE to improve design reliability of engine management components interacting in engine systems.