Forge Motorsport E-DV Recirculating Valve for MQB EVO EA888.4 (FMEDV106R)
A direct-fit electronic diverter valve for 2021-on VW Group 2.0 TSI MQB EVO engines. This Forge E-DV replaces the factory valve to give faster, more consistent boost control. The FMEDV106R version is fully recirculating, so it keeps the sound subtle and OEM-like.
Why choose the Forge E-DV
- Plug-and-play with the factory connector – no vacuum lines or extra solenoids.
- Quicker response for crisper throttle and smoother gear changes.
- Improved sealing for steady boost and fewer false EML (engine management light) triggers.
- Billet aluminium body with an integrated electronic pilot valve proven in motorsport.
- 360-degree clockable body to aid installation in tight spaces.
- Fully serviceable design for long-term reliability.
- Helps prevent compressor surge for smoother turbo operation.
What it does
A diverter valve releases pressurised air when you lift off the throttle. This protects the turbo and keeps it spinning, so the car gets back on boost more quickly when you press the throttle again.
The Forge E-DV reacts faster than many factory valves and holds boost more securely, especially on tuned cars. Expect better consistency and drivability rather than a big power increase on its own.
Fitment
Designed for popular VW and Audi Group MQB EVO EA888.4 2.0 TSI engines from 2021 onwards. This includes many Audi, Cupra, Seat, Skoda, and VW models such as Golf Mk8 GTI and R, Audi S3 8Y, Cupra Leon and Formentor, and Skoda Octavia vRS.
Use our vehicle lookup to confirm fitment for your car, or check the Vehicle Fitment tab for full details.
Important: Only for MQB EVO EA888.4 engines. Earlier EA888 generations use different valves.
Good to know
This FMEDV106R is the recirculating version, so it keeps the sound close to stock. No ECU remap is required. It is a direct replacement for the OEM valve on the turbo housing.
Built from billet aluminium, with the valve body clockable for a neat install. The unit is serviceable, so you can maintain performance over time.














