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    ROHM SDR01 high anti-surge thick-film chip resistor in 1005 metric 0402 package with 0.33 W rated power

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    Samsung MLCC Revenue Seen Above KRW 8T by 2027, Murata EOL Actions Reshape Supply

    ROHM SDR01 high anti-surge thick-film chip resistor in 1005 metric 0402 package with 0.33 W rated power

    ROHM Introduces Anti-Surge 0402 Resistors Rated at 0.33 W

    ECIA Industry Pulse Q3 2026 chart showing passive components, semiconductors and electro-mechanical component market sentiment and lead-time pressure

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    LG Innotek Demonstrates FC-BGA Substrates With Embedded Silicon Capacitors for AI Power Delivery

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    Murata DLW32SH_MF 1210 surface-mount common mode choke coil with metal terminals for automotive CAN FD signal-line noise suppression

    Murata Introduces Common Mode Chokes for Automotive CAN FD up to 150°C

    onsemi solid-state transformer concept for 800 V HVDC AI data center power conversion with SiC modules, DC-link capacitors and high-frequency magnetics

    Solid-State Transformers for 800 V AI Data Centers: Passive Component Design Considerations

    Littelfuse TX00AT314AMA omnipolar TMR magnetic switch sensor in a leaded TO-92-3 through-hole package

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    Trending Tags

    • Ripple Current
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    • Leakage Current
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Technical Clarification on Polymer Capacitors: No Danger for Graphic Cards.

21.10.2020
Reading Time: 2 mins read
A A

Frozen GPUs, superheated boards – there have been some rumors lately that using Polymer capacitors might cause stability issues for certain applications. Now, Panasonic Industry, a renowned manufacturer of a widespread portfolio of capacitors, gives the all-clear statement that this assumption is entirely incorrect and refers to the need of taking the behavior of polymer capacitors into consideration prior to designing.

Two different types of capacitors – respectively a mix of both – can be used to design a GPU or a CPU board: Polymer technology functions significantly better at higher temperatures and has a high reliability. MLCCs (Multilayer Ceramic Capacitors), on the other hand, tend to function better at high frequencies, but are prone to cracking.

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Hence, combining both technologies would be the option of choice – the appropriate number of Polymers and MLCCs, however, varies according to the specific design.

Speaking about the presumed hardware damages, a comprehensive evaluation of the overall circuit is essential to state whether a graphics card is stable or not. There are different factors that might cause a GPU to freeze, such as hard drive, overheating GPU, bad memory or failing power supply due to many reasons.

As a consequence, the assumption of only Polymer capacitors causing the failure of graphics cards is unrestrained – and wrong.

Panasonic Industry provides contemporary solutions for GPU and CPU manufacturers by offering a wide range of Polymer capacitors which can complement MLCCs for the best performance possible.

Learn more on SP-Cap and POSCAP series of Panasonic Industry standing out with lowest ESR and high capacitance – and being proven in their compatibility with MLCCs for those specific applications.

Graphic Card Manufacturers Refuse to Blame POSCAP Capacitors as Cause for Hardware Crash

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Source: Panasonic

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