KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982) Photo-0
KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982) Photo-1
KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982) Photo-2

KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982)

Sale price€6.185,62

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KLINE INNOVATION P/N: KL-POR-718GT4RS-VALVE-RS-INC
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This item is considered special order and is not available for immediate pickup or dispatch. Price and ETA may vary. Please note that no returns, cancellations, or refunds allowed on special orders.

Pickup available at Kelberg Warehouse Usually ready in 24 hours

KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982)

Kelberg Warehouse

Pickup available, usually ready in 24 hours

Auf der Struth 4
53539 Kelberg
Germany

+4926916879995

Description KLINE INNOVATION KL-POR-718GT4RS-VALVE-RS-INC Rear Muffler Valvetronic (Inconel 625) for PORSCHE 718 GT4RS (982)

The KLINE INNOVATION rear muffler valvetronic system for the Porsche 718 GT4RS (982) is engineered to deliver a dramatic acoustic and performance upgrade. Constructed from F1-grade Inconel 625, the lightweight X-pipe and bypassable silencers replace the factory rear silencer to reduce mass and elevate the exhaust tone into a more exotic frequency range. This transformation results in a sharper, high-pitched exhaust character. Optional HJS 100-cell motorsport catalysts or decat pipes further liberate sound levels, eliminating restrictions while retaining a refined tone with the valves closed. Opening the valves unleashes a raw, motorsport-inspired sound profile.

  • Constructed from ultra-lightweight F1-grade Inconel 625
  • Fully valvetronic system enables dual acoustic modes
  • Exotic, high-pitched exhaust note under full load
  • Weight reduction and increased thermal efficiency