2026 Park Systems Global Webinar Series

전 세계 연구자와 산업 전문가를 위해 다양한 AFM 기술, 응용 사례, 그리고 실제 활용 인사이트를 소개하는 글로벌 웨비나 프로그램

2026 Global Webinar Schedule

2026년 진행되는 글로벌 및 지역 웨비나에서 AFM 기술의 최신 혁신과 다양한 연구 응용 사례를 살펴보세요.

  • MAR
    3.25
    FX200 Webinar Series 1 Advanced Methods for Research into Ferroelectrics
    Platform: Zoom · 10AM CEST (6PM KST) · Region: Asia
  • APR
    4.23
    FX200 Webinar Series 2 AFM Augmented Sample Fabrication for Next-Generation Applications
    Platform: Zoom · 5PM CEST · Region: EU/US
  • APR
    4.30
    ISE Webinar Topic TBD
    Platform: Zoom · (Time: TBD)
  • MAY
    5.12
    DHM Webinar Series 1 Diving into DHM Technology (Fundamentals & Use Cases)
    Platform: Zoom · 10AM CEST (6PM KST)
  • MAY
    5.19
    FX200 Webinar Series 3 Automated Electrical AFM for Efficient Research Workflows
    Platform: Zoom · 10AM CEST
  • MAY
    5.26
    AFM Global Webinar Series 1 Fundamentals of IR-AFM (Live)
    Platform: Zoom · 12AM (Asia)
  • JUN
    6.02
    DHM Webinar Series 2 3DD Measurement Technologies & Competitive Landscape
    Platform: Zoom · 10AM CEST (6PM KST)
  • JUN
    6.08
    AFM Global Webinar Series 1 US On-demand Follow-up
    Platform: Zoom / On-demand · 10AM (US)
  • JUN
    6.24
    Nanoscale Measurements with SECCM - Electrochemistry Tutorial
    Platform: Zoom · 11AM EDT
  • JUL
    7.7
    Large-Area Surface Metrology of 300 mm Bare Glass Wafers Digital Holographic Microscopy
    Platform: Zoom ·3PM KST l 11:30AM IST l 4PM AEST
  • AUG
    8.25
    DHM Webinar Series 3 Quantitative Phase Imaging in Life Sciences
    Platform: Zoom · 10AM CEST (6PM KST)
  • SEP
    9.2
    Nanoscale Surface Analysis on Battery Materials via Atomic Force Microscopy
    Platform: Zoom · 3PM KST l 11:30AM IST l 4PM AEST
  • SEP
    9.29
    DHM Webinar Series 4 MEMS Characterization Beyond 4D (Technology & Applications)
    Platform: Zoom · 10AM CEST (6PM KST)
  • OCT
    10.13
    Piezoresponse Force Microscopy: Techniques, Advances, and Recent Applications
    Platform: Zoom · 3PM KST l 11:30AM IST l 4PM AEST
  • OCT
    10.27
    ISE Webinar Topic TBD
    Platform: Zoom · (Time: TBD)
  • NOV
    11.10
    DHM Webinar Topic: TBD
    Platform: Zoom / (Time: TBD)
  • DEC
    12.2
    Investigating mixed ionic-electronic conductors with electrochemical strain wave microscopy
    Platform: Zoom · 10AM CET | 2:30PM IST | 6PM KST/JST
FX40 with monitor

Wednesday, Sep 2nd

Speaker: Asher Cho, RE Application Technology Team, Park Systems Corporation

This webinar introduces the application of Atomic Force Microscopy (AFM) for the nanoscale characterization of battery materials. The session focuses on advanced AFM techniques, including SSRM and KPFM, and demonstrates how they can be used to analyze electrical conductivity, surface potential, charge distribution, and degradation mechanisms in battery components through practical examples. Join this webinar to learn how advanced AFM techniques provide valuable insights into the nanoscale properties and electrochemical behavior of battery materials.

FX40 with monitor

Tuesday, Oct 13th

Speaker: Edward Park, RE Application Technology Team, Park Systems Corporation

This webinar introduces the principles of Piezoresponse Force Microscopy (PFM) and its application to nanoscale electromechanical characterization. Participants will learn the fundamentals of PFM, advanced measurement techniques, and practical applications for analyzing piezoelectric and ferroelectric materials. Register now to explore the capabilities of PFM for advanced materials research.

FX40 with monitor

Wednesday, Dec 2nd

Speaker: Ass. Prof. Tobias Cramer, Department of Physics and Astronomy, University of Bologna

This webinar explores how electrochemical strain wave microscopy is used to investigate transport processes in mixed ionic-electronic conductors under operando conditions. It will show how AFM-based strain measurements, combined with electrochemical impedance spectroscopy, reveal local ionic and electronic dynamics in materials such as conducting polymers, battery electrodes, thin films, and wires. Join to learn advanced AFM approaches for studying materials central to energy storage, bioelectronics, and neuromorphic computing.