BF074E0224J

BF074E0224J

  • Description:CAP FILM 0.22UF 5% 100VDC RADIAL
  • Series:BF
  • Mfr:KYOCERA AVX
  • Package:Bulk

SKU:7ecf1d825b22 Category: Brand:

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Product Detailed Parameters

  • Description:CAP FILM 0.22UF 5% 100VDC RADIAL
  • Series:BF
  • Mfr:KYOCERA AVX
  • Package:Bulk
  • Capacitance:0.22 µF
  • Tolerance:±5%
  • Voltage Rating - AC:63V
  • Voltage Rating - DC:100V
  • Dielectric Material:Polyester, Metallized
  • Operating Temperature:-55°C ~ 100°C
  • Mounting Type:Through Hole
  • Package / Case:Radial
  • Size / Dimension:0.295" L x 0.197" W (7.50mm x 5.00mm)
  • Height - Seated (Max):0.315" (8.00mm)
  • Termination:PC Pins
  • Lead Spacing:0.200" (5.08mm)
  • Applications:General Purpose
  • Ratings:-
  • Features:-

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BF074E0224J

Buying Guide
Summary

KYOCERA AVX BF074E0224J is selected in Film Capacitors category when ripple, lifetime, and operating corners must remain inside budget. Key specs include Description (CAP FILM 0.22UF 5% 100VDC RADIAL), Capacitance (0.22 µF), Tolerance (±5%), Temperature (-55°C ~ 100°C), and Package/case (Radial).

Selection Notes
  • For BF074E0224J, confirm the capacitance (0.22 µF) meets your target impedance and ripple requirements.
  • Verify the operating temperature range (-55°C ~ 100°C) and derate as needed in your application.
  • Verify Voltage Rating - AC (63V) and compare it against your reference design limits.
Alternates & Substitutions
  • For Film Capacitors, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • If the alternate is “close but not identical”, document the differences and define a measurable acceptance test for production.
  • Lock the mechanical constraints first (package/case Radial, mounting Through Hole, packaging Bulk) before comparing performance specs.
  • For capacitors, keep capacitance 0.22 µF, tolerance ±5% aligned and validate ripple/ESR and lifetime under your real operating conditions.
FAQ

How do I avoid common capacitor selection mistakes with BF074E0224J?
Check DC bias/temperature effects, ripple heating, and mechanical constraints, then validate under worst-case load and temperature.

Which Size / Dimension is specified for BF074E0224J?
0.295" L x 0.197" W (7.50mm x 5.00mm)

Can you confirm the Height - Seated (Max) for BF074E0224J?
0.315" (8.00mm)

What is the operating temperature range of BF074E0224J?
-55°C ~ 100°C

Application Scenarios

In practice, kYOCERA AVX BF074E0224J is a common choice in Film Capacitors applications where the goal is to keep validation repeatable and avoid edge-case surprises during bring-up. They provide energy storage and decoupling, shaping impedance versus frequency to stabilize rails and signal paths. Selection depends on ESR/ESL, ripple current, temperature behavior, dielectric stability, and lifetime under stress. In real deployments, with integration constraints understood, the next step is validating behavior in the environments where the product actually runs. In telecom and data center power, impedance and ripple margins influence stability in dense, high-current boards. In instrumentation, stable dielectric behavior prevents drift that would otherwise limit measurement repeatability. In compact devices, layout-driven ESL and placement can dominate performance, so practical design rules matter. A good selection is one that behaves well in the system and remains straightforward to validate over time.

Compatibility Advice
  • Before committing to volume builds, check insertion loss, group delay, and impedance behavior across temperature so link budgets stay stable. This keeps qualification evidence reproducible later.
  • Before release to production, verify impedance or ESR behavior across frequency so the real dynamics match your stability and noise expectations. This reduces the chance that substitutions push hidden limits.
Project Fit
  • Good fit when you can verify KYOCERA AVX BF074E0224J for Film Capacitors integration in the final enclosure, and you can validate derating, self-heating, and frequency behavior on the assembled system.
  • Poor fit when surge and derating behavior is untested, increasing silent degradation risk, because the integration depends on constraints that cannot be controlled across builds.
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