Mishimoto Baffled Oil Catch Can Universal Purple Fit

Mishimoto SKU: MISMMBCC-UNI-PR
Price
Regular price $349.95
Regular price $385.00 Sale price $349.95
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Description

Baffled oil catch can Mishimoto Baffled Oil Catch Can Universal Purple Fit separates oil particles from PCV air to reduce intake contamination and maintain reliable engine breathing.

Mishimoto developed this Baffled Oil Catch Can after more than a year of research and development to target oil carryover in PCV systems. The design focuses on trapping condensate and oil aerosols before they re-enter the intake tract, supporting cleaner intake plumbing and valve-train environments.

  • Baffled separation architecture — Captures oil droplets and condensate within the can rather than allowing them to circulate back into the intake, helping preserve airflow pathways and reduce carbon buildup on intake valves.
  • Purpose-driven development — Over a year of R&D went into the unit to refine separation efficiency and internal flow characteristics, reflecting a focus on functional reliability in real-world use.
  • Universal purple fit — Designed as a universal solution with a distinctive purple finish that identifies Mishimoto engineering; intended for integration into PCV and catch-can installations where a universal unit is appropriate.
  • Mishimoto brand engineering — Built and supported by Mishimoto, a supplier with motorsports-oriented development processes aimed at durable, serviceable components.

Installation and service considerations: the catch can is intended to be plumbed into the vehicle's PCV or crankcase ventilation lines where it will collect oil-laden vapors. Routine inspection and draining of collected fluid will maintain performance and prevent saturation of the internal baffling.

Why this matters: By isolating oil and condensate before they re-enter the intake, the catch can helps maintain consistent air-fuel conditions, reduces the rate of intake system contamination, and supports long-term reliability of intake components and valve surfaces.

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