Used to suppress reflections from the applicator! Introducing simulation examples of the EH tuner.
We will introduce our achievements in verifying the reduction of reflected waves using our "PHOTO-WAVEjω." Assuming reflection, we create an impedance mismatch at the exit of the main waveguide, resulting in reflected waves. We adjust the length of the branched waveguide. By making these adjustments, we confirmed that the reflection coefficient can be appropriately suppressed. [Case Overview] ■ Analysis Purpose: Electromagnetic wave analysis of EH tuner ■ Frequency: 5GHz ■ Analysis Module: PHOTO-WAVEjω ■ Evaluation Item: Evaluation using the port's S11 (absolute value) *For more details, please download the PDF or feel free to contact us.
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【Other Case Summary】 ■ By specifying the port, quantities such as impedance can be easily obtained. ■ Since impedance boundaries are provided, setting up non-reflective boundaries is simple. ■ The types of analysis results output can be controlled. *For more details, please download the PDF or feel free to contact us.
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【Applicable Fields】 ■ Microwave Ovens ■ Cavity Resonators ■ Mode Conversion Devices ■ EMI Related ■ RFID Related, etc. *For more details, please download the PDF or feel free to contact us.
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At Photon, we are developing "electromagnetic field analysis software" that models and simulates products and components utilizing electromagnetic phenomena on a computer. In traditional design and development environments, the process has primarily revolved around trial and error through prototyping based on the experience of engineers and experiments with prototypes. However, conducting experiments using actual prototypes and analyzing the results requires significant time and cost. Moving forward, transitioning from an experimental and prototyping-based approach to an analysis-based design approach will be a crucial challenge for improving productivity, and establishing simulation technology as the core of analysis-based design techniques will be essential. In this context, Photon is developing and providing "analysis software" focusing on electromagnetic fields, as well as heat, vibration, and sound fields. By utilizing Photon's software, efficient development and design of various industrial products can be achieved. In this way, Photon aims to support users in reducing the number of prototypes, lowering development costs, and shortening development periods in their manufacturing environments, ultimately enhancing their competitiveness.


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