The Duelund Coherent Audio JDM-CU-SN-600-0,22 is a 0.22 µF JDM tinned copper foil bypass capacitor rated at 600 Vdc, designed for high-quality audio use in speaker crossovers, signal electronics and bypass applications.
Highlights of the Duelund Coherent Audio JDM-CU-SN-600-0,22
- Tinned copper foil construction for high-performance audio applications
- Wax paper in oil dielectric, previously reserved for Duelund’s CAST series
- Deep vacuum impregnation followed by wax impregnation for a robust, sealed winding
- Suitable for speaker crossovers, signal electronics and bypass capacitor use
Product details Duelund Coherent Audio JDM-CU-SN-600-0,22
Duelund Coherent Audio JDM-CU-SN-600-0,22 0.22 µF JDM Tinned Copper Foil Bypass Capacitor 600 Vdc
The JDM-CU-SN-600-0,22 belongs to Duelund’s JDM Tinned Copper Foil capacitor range. JDM stands for Jensen Domestic Market, a reference to the Jensen capacitor manufacturing heritage and to the close cooperation between Jensen and Duelund. This capacitor is built for demanding audio circuits where component quality matters.
Its construction uses a wax paper in oil dielectric combined with tinned copper foil. The paper separating the copper foils is vacuum impregnated in a deep vacuum, followed by wax impregnation of the windings to help seal the capacitor completely. This makes it a robust choice for premium crossover components and other audio electronics.
The JDM tinned copper capacitor is suitable for speaker crossovers, signal electronics and bypass capacitor applications. It is also positioned as the superior replacement for the discontinued Duelund Copper Foil Precision Bypass Capacitors, making it a relevant upgrade option when maintaining or refining high-quality capacitors in an audio system.
The outer material is paper, with the capacitor winding potted inside using the same material approach as Duelund’s CAST models. The outer lead-out, closest to the edge of the capacitor, is connected to the outer foil and should be connected to the lowest impedance path to ground, generally the signal output.
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