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SRTModel EMI M2F Series - Flexible Quadripole Capacitor for Filtering and Decoupling

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The EMI M2F series includes flexible quadripole capacitors designed for filtering and decoupling applications. These capacitors operate within a temperature range from -55°C to +125°C. They utilize two dielectric materials: NP0, with a temperature coefficient of ± 30ppm, and X7R, with a temperature coefficient of ± 15% with 0Vdc. NP0 capacitors feature a dissipation factor of ≤ 1.10-3 at 1Vrms and 1MHz for values ≤ 1000pF and the same at 1Vrms and 1kHz for values > 1000pF. The aging rate for X7R capacitors is 2% per decade, with a dissipation factor of ≤ 0.025 at 1kHz. Insulation resistance (IR) for NP0 capacitors is 105 MOhm or 1000 Ohm-Farad at 25°C and 104 MOhm or 100 Ohm-Farad at 125°C. Dielectric strength tests are performed at 2.5Un for voltages ≤ 200V and U+250V for 200V for 5 seconds with a maximum charging current of 50mA. The capacitors are available in various sizes including 0603, 0805, 1206, 1812, and 2220, and support multiple voltage ratings such as 50V, 100V, 200V, and 500V. Termination options include Nickel Tin, Palladium-Silver, Polymer Tin (Flex), and Copper Tin (Non-Magnetic). Packaging options are available in reel or bulk. The capacitors also adhere to reliability specs (Dxx) and sorting specs (Exx). Designed for precision in high-performance applications, these capacitors are crucial for ensuring stable and efficient electronic circuit operations.

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ELECTRICAL CHARACTERISTICS :
at + 25°C unless otherwise specified
OPERATING TEMPERATURE :
- 55°C, + 125°C
TEMPERATURE COEFFICIENT :
NP0 : ± 30ppm
X7R : ± 15% with 0Vdc applied
AGING RATE :
X7R : 2% per decade
DISSIPATION FACTOR :
NP0 : ≤ 1.10-3 at 1Vrms and 1MHz for values ≤ 1000pF
≤ 1.10-3 at 1Vrms and 1KHz for values > 1000pF
X7R : ≤ 0.025 at 1kHz 
INSULATION RESISTANCE (IR) :
25°C/Un 105 MOhm or 1000 Ohm-Farad whichever is less
125°C/Un 104 MOhm or 100 Ohm-Farad whichever is less
DIELECTRIC STRENGTH TEST :
2.5Un U≤200V | U+250V 200  for 5s with 50mA max charging current