Panasonic's EEE-FKS (HF) (Halogen Free, High Temp. Reflow) Series Surface Mount Aluminum Electrolytic Capacitors joins the Panasonic EEE-FKS Series family of Surface Mount Aluminum Electrolytic Capacitors as Halogen Free, High Temp. Reflow, environmentally friendly alternatives.
The EEE-FKS (HF) Series is a revolution in size and performance allowing ultra-small case sizes with the same performance as the larger conventional type. Using advanced foil technology, this Series contributes to the downsizing of the PCB design by delivering the same performance of legacy Capacitors in one case size smaller of a package.
Panasonic’s EEE-FKS (HF) Series Surface Mount, Halogen Free Capacitors can be designed in with confidence because they are AEC-Q200 Compliant for automotive applications as well as other strenuous environments which ensures optimal quality and reliability.
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Panasonic components specified as AEC-Q200 Compliant are consistently designed into automotive systems. However, today’s Design Engineers are specifying AEC-Q200 components to meet the high-quality standards of devices beyond automotive applications.
Parts that pass the AEC tests are qualified, high-quality components that can be used in critical environments. Therefore, there should be no need to conduct other component level tests saving both time and expense.
Current AEC-Q200 Standard documents developed by the AEC Component Technical Committee are available on the AEC website. The AEC is an organization based in the U.S. that sets qualification standards for the supply of components in the automotive electronics industry.
If your next device requires components that meet the Automotive Electronics Council (AEC) requirements for components suitable for harsh automotive environments, think Panasonic!
Panasonic expands twelve proven, Surface Mount Aluminum Electrolytic Capacitor series to include AEC-Q200 Compliant Anti-Vibration part numbers able to withstand 30G! Suitable for harsh automotive and strenuous environments, select Anti-Vibration variant parts where high capacitance current capability is demanded by the application.
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