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Last Updated: Apr 25, 2025 | Study Period: 2024-2030
By inducing current through the formation using excitor electrodes, this electrothermal process converts electromagnetic energy into thermal energy.
The electrothermal flow (ETF) is a well-known phenomenon in electrohydrodynamics caused by electrothermal forces acting on the bulk fluid in the presence of electrical conductivity and permittivity gradients in the electrolyte solution caused by temperature gradient.
Thermal power generation is primarily responsible for adjusting the amount of electricity provided to meet fluctuating demand. Thermal processes are non catalytic processes that use heat to break down, rearrange, or combine hydrocarbon molecules.
The Global Electrothermal Motor market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
Nexperia introduces enhanced electrothermal models for its MOSFET devices. a leader in essential semiconductors, has released new, improved electrothermal models for its MOSFET devices. Semiconductor manufacturers frequently provide simulation models for their MOSFETs.
However, these typically only include a small number of device parameters that have been modelled at typical operating temperatures. Nexperia's new advanced models capture the thermal interdependence of the entire set of device parameters across the entire operating temperature range of -55° to 175° C.
The inclusion of reverse diode recovery time and device electromagnetic compatibility (EMC) performance in these advanced models improves overall accuracy even further. Engineers can use these to generate accurate circuit and system-level simulations, as well as evaluate electrical, thermal, and EMC performance before committing to building a prototype.
Engineers, who were previously required to ensure that their designs could operate under (unlikely) worst-case conditions, can now simulate their designs across specific temperature ranges, saving time and resources. Nexperia created these models in close collaboration with a Tier 1 OEM whose needs could not be met by any other currently available models.
These new advanced electrothermal models are designed to provide designers with the highest level of confidence in the outcomes of their circuit simulations. The accuracy with which the models predict real device behaviour during double pulse testing demonstrates their unprecedented level of precision. According to their collaborative partner, these models are the most accurate they have ever seen.
Sl no | Topic |
1 | Market Segmentation |
2 | Scope of the report |
3 | Abbreviations |
4 | Research Methodology |
5 | Executive Summary |
6 | Introduction |
7 | Insights from Industry stakeholders |
8 | Cost breakdown of Product by sub-components and average profit margin |
9 | Disruptive innovation in theIndustry |
10 | Technology trends in the Industry |
11 | Consumer trends in the industry |
12 | Recent Production Milestones |
13 | Component Manufacturing in US, EU and China |
14 | COVID-19 impact on overall market |
15 | COVID-19 impact on Production of components |
16 | COVID-19 impact on Point of sale |
17 | Market Segmentation, Dynamics and Forecast by Geography, 2024-2030 |
18 | Market Segmentation, Dynamics and Forecast by Product Type, 2024-2030 |
19 | Market Segmentation, Dynamics and Forecast by Application, 2024-2030 |
20 | Market Segmentation, Dynamics and Forecast by End use, 2024-2030 |
21 | Product installation rate by OEM, 2023 |
22 | Incline/Decline in Average B-2-B selling price in past 5 years |
23 | Competition from substitute products |
24 | Gross margin and average profitability of suppliers |
25 | New product development in past 12 months |
26 | M&A in past 12 months |
27 | Growth strategy of leading players |
28 | Market share of vendors, 2023 |
29 | Company Profiles |
30 | Unmet needs and opportunity for new suppliers |
31 | Conclusion |
32 | Appendix |