Forge Motorsport Intercooler for VW Golf MK8/Audi S3 – FMINT24

SKU: FMINT24
In Stock

د.إ4,190.00

Upon placing the order, we will get in touch with you to confirm the availability information.

For Instant Enquiry and More Details, Please Click Here

In Stock
Add to Wishlist
Add to Wishlist

Did you like this product? Add to favorites now and follow the product.

Add to Wishlist
Add to Wishlist
Low Prices

Price match guarantee

Guaranteed Fitment.

Always the correct part

In-House Experts.

We know our products

Wide Product Selection

Endless Possibilities

Category:

Description

FMINT24 is a performance intercooler for the MQB platforms with the EA888 GEN4 Engine. Produced, designed, and tested, at our headquarters in Gloucester UK. Throughout the development process we have strived to improve the efficiency and performance of the EA888 GEN4 engine. Our project brief was to develop an intercooler that utilised all of the available space in the original position of the OEM intercooler, and to ensure the inlet air temperature is reduced, without any negative effects on the boost pressure or engine and transmission cooling.

In the MQB chassis the intercooler housing is particularly restricted and confined to a small amount of space, due to it not only housing the intercooler, but also the radiator and air conditioning condenser. The front panel in theory is a sandwich pack that houses the auxiliary cooling components. This means in order to increase the size of the intercooler without paying detriment to the performance of the surrounding items, and with also having very little extra space available, that it can be very difficult to execute the perfect blend of a high flow intercooler within such a close proximity.

Our research and development engineers started with a brief to fit our existing intercooler (FMMK7FMIC) that was for the MK7 platform, to our development VW MK8 Golf R. Upon installation, we then tried to establish if we could re-engineer the intercooler with an increased inlet and outlet size along with increasing the volumetric capacity to increase flow along with future proofing the design to work well with highly tuned stage 3 plus EA888 Gen 4 engines.

Using a combination of scanning software and traditional measuring methods, the design was created. This was then fine-tuned by our flow dynamics simulations programs (CFD), and the end tanks were initially created by 3D printers. This enabled us to ensure the fit was perfect on the vehicle before any prototype castings or machined billet end tanks were produced ready for dyno testing.

Several baffle configurations were designed, and flow simulated to ensure the maximum performance was obtained to keep the core working at its optimum, along with ensuring all its cooling capabilities had been upheld, and that the total volume of the core internal is utilised for optimum performance.

With an increase in inlet and outlet sizes, we then turned our attention to the design of our silicone hoses. With flow in mind, we have created a step within the hose so where the hose meets the hot and cold side of the inlet and outlet junctions the transition is seamless, this helps to lesson any disturbance to the airflow and prevent unwanted turbulence. To further aid with flow, the inlet and outlets have been increased to 76mm from the OEM size of 63mm which equates to a 45% increase in surface area.

The consideration of space and our clever design has led us to produce several intercooler cores with different fin configurations and internal capacities. Depending on the core design, testing results led us to choose a bar and plate design with over 83% more volume than the OEM intercooler, and with a frontal area increase of 10%.

Why do we test different cores?

Here at Forge Motorsport, when developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, a tube and fin style core along with different fin pitches and heights, as well as changing the internal fin pitches/shapes and density within the tube; thus enabling us to fine tune the amount of pressure drop the intercooler produces. Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core, that is open to the atmosphere.

Too much pressure drop can of course have a problem on the higher performance engines as the intercooler reaches its maximum efficiency the turbo has to work a lot harder to force the air through the core. This in turn creates higher inlet air temps (IAT’s) due to the turbo creating more heat as it is over stressed and worked harder. No pressure drop can also prove to be inefficient as the cooler will not lower the charge temperature again resulting in higher inlet air temperatures.

Dyno Results

Testing was completed using Performance Remap in Gloucester with their VTEC 4-wheel drive dynamometer. This was to ensure all our data has been achieved with results as accurately as possible by an independent tuner. As you can see from the dyno results below, peak power was increased from stock by 11bhp and 20nm of torque at 5500RPM with the Forge Motorsport performance intercooler installed.

The best news is that there are significant torque gains throughout the rev range, meaning that the car power will pick up quicker and pull the whole way through to redline, including an impressive gain in BHP from 5000 RPM TO 6500 RPM. Gains on vehicles with re calibrated software and further hardware performance parts can be expected to be a lot higher due to the substantial drop in IATS when FMINT24 is installed.

During our extensive testing, we let the car heat soak on the dyno until the radiator fans tripped on and off (which gives an inlet temperature of around 40°C). We then did a dyno pull from this point which gives a more consistent result and reflects real-world driving conditions more accurately. You can easily see the Forge intercooler cools much quicker and delivers a much greater drop in temperature compared to OEM.

 

 

After more than six pulls on the dyno we still had super safe IAT’s, and the Forge Motorsport intercooler gave results of 34°C at 6548 RPM giving a reduction of 58% over the factory’s intercooler intake temps from 58°C at 6508 RPM. These tests took place in relatively hot conditions with an ambient dyno cell temperature of 23°C proving how inefficient the stock intercooler is.

In the summer months, the stock intercooler along with higher inlet air temperatures will have a hugely negative impact on the engine’s performance. In these conditions, the engine management will retard the ignition, resulting in a lower powered engine as temperatures rise and the ECU then pulls out the timing to stop detonation. On a mapped vehicle, the results will be even more detrimental and can lead to possible premature engine wear. If you use your car for fast road or have a high-performance tune in a hot climate, this product is essential. 

Why do we try to decrease IAT’s? (Inlet Air Temperature)

Temperature and volume of air supplied to your vehicles engine that is compressed by the turbo charger has a better effect on performance when cool as this is to provide the engine with more oxygen (denser air), thus improving the combustion in each cylinder. In addition, by regulating and reducing the air temperature, it also increases the reliability of an engine by keeping the AFRs (Air Fuel Ratios) in each cylinder at a safe level, which in turn, can increase an engines power due to the air being cooler. A bigger bang is then created within the cylinder, providing the correct amount of fuel is added. This can equate to an increase in BHP and torque.

 

 

​​​​

The Forge Motorsport intercooler is a perfect performance enhancing product that fits directly to the OEM mounting points, making for an easy install, in a relatively short period of time. No cutting of any components is needed, making the installation reversible if the vehicle needs to be returned to stock at any time in the future. The core and end tanks are finished in our black textured anti corrosion coating that also aids with its thermal properties and keeps the product looking that bit stealthier or OEM+.

The Forge Motorsport lifetime warranty on all hardware products shows the trust we have in the quality of our products while they are being enjoyed on your pride and joy.

Compatible Vehicles :

 

Audi
  • S3
    • 2.0TSI (8Y Chassis)
    • Sportback 2.0TSI (8Y Chassis)
Volkswagen
  • Golf
    • MK8
      • Clubsport 45
      • GTI
      • R

 

Additional information

Brand

Forge Motorsport

Make

Audi, Golf GTI, Golf R, S3, Volkswagen

Model Year

2020, 2021, 2022, 2023

Reviews

There are no reviews yet.

Be the first to review “Forge Motorsport Intercooler for VW Golf MK8/Audi S3 – FMINT24”

Your email address will not be published. Required fields are marked *

Quick Comparison

SettingsForge Motorsport Intercooler for VW Golf MK8/Audi S3 - FMINT24 removeCSF’s New W205 AMG Auxiliary Radiators (CSF #8187) -CSF8187 removeCTS MK6 GOLF R 2.0T DIRECT FIT FMIC KIT -CTS-20T-GR-DF removeCTS TURBO MK8 GOLF R/ AUDI 8Y S3 TURBO OUTLET PIPE -CTS-IT-956 removeRACINGLINE OIL COOLER SYSTEM 2.0 TSI EA888 Gen.3 ENGINES – VWR18G700 removeBLACK BOOST MERCEDES AMG M157/M278 RACING COOLANT THERMOSTAT -BBTMT002 remove
NameForge Motorsport Intercooler for VW Golf MK8/Audi S3 - FMINT24 removeCSF’s New W205 AMG Auxiliary Radiators (CSF #8187) -CSF8187 removeCTS MK6 GOLF R 2.0T DIRECT FIT FMIC KIT -CTS-20T-GR-DF removeCTS TURBO MK8 GOLF R/ AUDI 8Y S3 TURBO OUTLET PIPE -CTS-IT-956 removeRACINGLINE OIL COOLER SYSTEM 2.0 TSI EA888 Gen.3 ENGINES – VWR18G700 removeBLACK BOOST MERCEDES AMG M157/M278 RACING COOLANT THERMOSTAT -BBTMT002 remove
Image
SKUFMINT24CSF8187CTS-20T-GR-DFCTS-IT-956VWR18G700BBTMT002
Rating
Priceد.إ4,190.00د.إ3,400.00د.إ4,210.00د.إ980.00د.إ2,780.00د.إ500.00
Stock
In Stock
In Stock
In Stock
In Stock
In Stock
In Stock
AvailabilityIn StockIn StockIn StockIn StockIn StockIn Stock
Add to cart

Add to basket

Add to basket

Add to basket

Add to basket

Add to basket

Add to basket

DescriptionUpon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click HereUpon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click HereUpon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click HereUpon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click HereThis product will be in stock and available for purchase.  This product will be in stock and available for purchase.
ContentFMINT24 is a performance intercooler for the MQB platforms with the EA888 GEN4 Engine. Produced, designed, and tested, at our headquarters in Gloucester UK. Throughout the development process we have strived to improve the efficiency and performance of the EA888 GEN4 engine. Our project brief was to develop an intercooler that utilised all of the available space in the original position of the OEM intercooler, and to ensure the inlet air temperature is reduced, without any negative effects on the boost pressure or engine and transmission cooling. In the MQB chassis the intercooler housing is particularly restricted and confined to a small amount of space, due to it not only housing the intercooler, but also the radiator and air conditioning condenser. The front panel in theory is a sandwich pack that houses the auxiliary cooling components. This means in order to increase the size of the intercooler without paying detriment to the performance of the surrounding items, and with also having very little extra space available, that it can be very difficult to execute the perfect blend of a high flow intercooler within such a close proximity.
Our research and development engineers started with a brief to fit our existing intercooler (FMMK7FMIC) that was for the MK7 platform, to our development VW MK8 Golf R. Upon installation, we then tried to establish if we could re-engineer the intercooler with an increased inlet and outlet size along with increasing the volumetric capacity to increase flow along with future proofing the design to work well with highly tuned stage 3 plus EA888 Gen 4 engines. Using a combination of scanning software and traditional measuring methods, the design was created. This was then fine-tuned by our flow dynamics simulations programs (CFD), and the end tanks were initially created by 3D printers. This enabled us to ensure the fit was perfect on the vehicle before any prototype castings or machined billet end tanks were produced ready for dyno testing.
Several baffle configurations were designed, and flow simulated to ensure the maximum performance was obtained to keep the core working at its optimum, along with ensuring all its cooling capabilities had been upheld, and that the total volume of the core internal is utilised for optimum performance. With an increase in inlet and outlet sizes, we then turned our attention to the design of our silicone hoses. With flow in mind, we have created a step within the hose so where the hose meets the hot and cold side of the inlet and outlet junctions the transition is seamless, this helps to lesson any disturbance to the airflow and prevent unwanted turbulence. To further aid with flow, the inlet and outlets have been increased to 76mm from the OEM size of 63mm which equates to a 45% increase in surface area.
The consideration of space and our clever design has led us to produce several intercooler cores with different fin configurations and internal capacities. Depending on the core design, testing results led us to choose a bar and plate design with over 83% more volume than the OEM intercooler, and with a frontal area increase of 10%.

Why do we test different cores?

Here at Forge Motorsport, when developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, a tube and fin style core along with different fin pitches and heights, as well as changing the internal fin pitches/shapes and density within the tube; thus enabling us to fine tune the amount of pressure drop the intercooler produces. Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core, that is open to the atmosphere.
Too much pressure drop can of course have a problem on the higher performance engines as the intercooler reaches its maximum efficiency the turbo has to work a lot harder to force the air through the core. This in turn creates higher inlet air temps (IAT’s) due to the turbo creating more heat as it is over stressed and worked harder. No pressure drop can also prove to be inefficient as the cooler will not lower the charge temperature again resulting in higher inlet air temperatures. Dyno Results Testing was completed using Performance Remap in Gloucester with their VTEC 4-wheel drive dynamometer. This was to ensure all our data has been achieved with results as accurately as possible by an independent tuner. As you can see from the dyno results below, peak power was increased from stock by 11bhp and 20nm of torque at 5500RPM with the Forge Motorsport performance intercooler installed. The best news is that there are significant torque gains throughout the rev range, meaning that the car power will pick up quicker and pull the whole way through to redline, including an impressive gain in BHP from 5000 RPM TO 6500 RPM. Gains on vehicles with re calibrated software and further hardware performance parts can be expected to be a lot higher due to the substantial drop in IATS when FMINT24 is installed. During our extensive testing, we let the car heat soak on the dyno until the radiator fans tripped on and off (which gives an inlet temperature of around 40°C). We then did a dyno pull from this point which gives a more consistent result and reflects real-world driving conditions more accurately. You can easily see the Forge intercooler cools much quicker and delivers a much greater drop in temperature compared to OEM.
 
 
After more than six pulls on the dyno we still had super safe IAT’s, and the Forge Motorsport intercooler gave results of 34°C at 6548 RPM giving a reduction of 58% over the factory’s intercooler intake temps from 58°C at 6508 RPM. These tests took place in relatively hot conditions with an ambient dyno cell temperature of 23°C proving how inefficient the stock intercooler is. In the summer months, the stock intercooler along with higher inlet air temperatures will have a hugely negative impact on the engine’s performance. In these conditions, the engine management will retard the ignition, resulting in a lower powered engine as temperatures rise and the ECU then pulls out the timing to stop detonation. On a mapped vehicle, the results will be even more detrimental and can lead to possible premature engine wear. If you use your car for fast road or have a high-performance tune in a hot climate, this product is essential. 

Why do we try to decrease IAT's? (Inlet Air Temperature)

Temperature and volume of air supplied to your vehicles engine that is compressed by the turbo charger has a better effect on performance when cool as this is to provide the engine with more oxygen (denser air), thus improving the combustion in each cylinder. In addition, by regulating and reducing the air temperature, it also increases the reliability of an engine by keeping the AFRs (Air Fuel Ratios) in each cylinder at a safe level, which in turn, can increase an engines power due to the air being cooler. A bigger bang is then created within the cylinder, providing the correct amount of fuel is added. This can equate to an increase in BHP and torque.
 
 
​​​​ The Forge Motorsport intercooler is a perfect performance enhancing product that fits directly to the OEM mounting points, making for an easy install, in a relatively short period of time. No cutting of any components is needed, making the installation reversible if the vehicle needs to be returned to stock at any time in the future. The core and end tanks are finished in our black textured anti corrosion coating that also aids with its thermal properties and keeps the product looking that bit stealthier or OEM+. The Forge Motorsport lifetime warranty on all hardware products shows the trust we have in the quality of our products while they are being enjoyed on your pride and joy.
Compatible Vehicles :
 
Audi
  • S3
    • 2.0TSI (8Y Chassis)
    • Sportback 2.0TSI (8Y Chassis)
Volkswagen
  • Golf
    • MK8
      • Clubsport 45
      • GTI
      • R
 
The High-Performance All-Aluminum Auxiliary Radiators work in conjunction with the rest of the cooling system to reduce temperatures throughout. This is critical as the Auxiliary Radiators not only help keep engine water temperatures lower, but also are utilized as the heat exchange medium in the air-to-water charge-air coolers for the turbocharger system to reduce intake air temperatures (IATs). Overall, the Auxiliary Radiators larger capacity prolongs the heat soak threshold and assists in keeping temperatures in optimal ranges.

CSF W205 AMG Auxiliary Radiators Features (CSF #8187):

  • Sold Individually – Vehicles With 2 Aux. Radiators Must Purchase Qty. 2
  • 2-Row High-Performance Core Featuring CSF’s B-Tube Technology
  • Core Features Ultra Efficient 6.5mm Tall Fins with a Multi-Louvered Design for Maximum Surface Area Contact
  • Approx. Double the Capacity of OEM (~100% More Capacity – OEM 26mm Core vs. CSF 42mm Core)
  • 100% All-Aluminum TIG-Welded Construction
  • CNC Machined Mounting Brackets and OEM Style “Quick Connect” Inlet/Outlet
  • Includes Detachable Rock Guard
  • Multi-Fit – Fits Both Left & Right Side (For Vehicles With One or Two Auxiliary Radiators)
  • True “Drop-in Fit” Requires No Modifications to Install
  • Individually Leak and Pressure Tested
  • High-Performance Upgrade Suitable for Professional Racing, Street Performance, or OEM Replacement
  • 1 Hour “Mirror Finish” Hand Polish
  • 2 Year Limited Warranty
  • Applications:
    • 17 Mercedes AMG GT – R190 (Fits Left & Right – 2 Per Vehicle)
    • 16-17 Mercedes Benz AMG GT S – R190 (Fits Left & Right – 2 Per Vehicle)
    • 16-21 Mercedes Benz C 63 AMG – W205 (1 Per Vehicle)
    • 15-21 Mercedes Benz C 63 AMG S – W205 (Fits Left & Right – 2 Per Vehicle)
    • 16-19 Mercedes Benz GLE 63 AMG – X292 (Fits Left & Right – 2 Per Vehicle)
    • 16-19 Mercedes Benz GLE 63 AMG S – X292 (Fits Left & Right – 2 Per Vehicle)
    • 17-19 Mercedes Benz GLS 63 AMG – X292 (Fits Left & Right – 2 Per Vehicle)
  • OEM Part Number:
    • Mercedes: 099-500–59-03
The CTS MK6 2.0T Direct Fit FMIC Kit is designed as a drop in replacement for the OEM front mounted intercooler (FMIC).  That means you can install this kit without any trimming or modification of the bumper.  The OEM FMIC is adequate for stock boost levels, however once boost levels are increased by way of ECU upgrades/chipping the OEM FMIC struggles to keep the charged air temperatures in check.  Higher charged air temperatures can result in boost cut and timing pull, both reducing the amount of power your vehicle produces. The CTS direct fit FMIC uses a high efficiency bar and plate intercooler core, which aids in reducing pressure drop.  Reducing pressure drop means that your turbo will not have to work as hard to make a given level of boost.  If your turbo makes 30psi of boost pressure in the turbocharger, and your intercooler has a 10psi pressure drop then the boost measured by your ECU would be (30psi – 10psi) = 20psi.  With an efficient FMIC like the CTS direct fit FMIC your turbo does not have to work as hard to reach desired boost levels.  This is beneficial in two ways, the turbo life expectancy is increased due to more efficient operation, and boost leaving the turbocharger is cooler and more dense resulting in more power to the ground. Product Details: – Efficient bar and plate construction – Direct bolt-in installation – 4-ply silicon hoses and billet adapter to turbo outlet pipe – High quality stainless steel clamps – Low pressure drop – Maintains factory mounting points – No trimming of bumper or crash supports – Rated for power levels in excess of 600HP – Core dimensions: 23.00 Length x 2.00″ Tall x 16.5″ Height – Cast aluminium end tanks with mounting points that are CAST into the end tank, NOT welded like inferior intercoolers Fitment: 2012-2013 VW Golf R 2.0T
Make Model Year Generation
VW GOLF R 2012 - 2013 MK6
Introducing our high-performance Turbo Outlet Pipe specifically designed for the MK8 Golf R and Audi 8Y S3 models. Engineered to deliver exceptional results, our kit replaces the stock turbo outlet pipe with a more efficient and durable design, resulting in impressive airflow improvements, reduced turbulence, and enhanced overall performance gains. Crafted from mandrel-bent 60mm aluminum tubing, our Turbo Outlet Pipe guarantees optimal airflow without restrictions. This design ensures a smooth and efficient path, allowing the turbocharger to spool up faster and generate increased power. With our custom 5-ply silicone coupler, installation becomes a breeze, providing a hassle-free upgrade experience. We understand the importance of reliability and durability. That’s why our Turbo Outlet Pipe is meticulously engineered using high-quality materials, ensuring long-lasting performance under extreme temperatures and pressures. You can trust our product to withstand the demands of high-performance driving, allowing you to enjoy its benefits for years to come. Upgrade your MK8 Golf R or Audi 8Y S3 with our Turbo Outlet Pipe and unleash the true potential of your vehicle. Experience smoother power delivery and improved performance. Product Details:
  • 60mm aluminum piping with CTS logo
  • 5-ply silicon coupler
  • Factory mounting points are used for perfect fitment
  • Durable black powder coat finish
  • Compatible with factory and upgraded intakes
  • Compatible with factory and upgraded intercooler
Fitment:
  • 2021+ Audi 8Y S3
  • 2021+ MK8 Golf R
Make Model Year Generation
AUDI S3 2021 - 2023 8Y
VW GOLF R 2021 - 2023 MK8

Racingline MQB VW Golf ‘R’/GTI 2.0 TSI OIL COOLER
FOR EA888 gen.3 & gen.4 ENGINES

The higher your power, the harder you drive, the more important it is to protect your oil with this Oil Cooler by RacingLine.
Racingline’s Oil Cooler kit is a complete ready to install package.  An essential for any hard-driven Golf Mk7 GTI or ‘R’ running high power levels, hot climates or on the track. Of course, adding power generates more heat to disperse. Significantly increased oil temperatures mean only one thing: a decrease in the ability for your engine to stay properly lubricated. The new Racingline kit solves this problem: by adding in an additional air to oil cooler positioned right in the airflow in front of the car, oil temperatures are reduced by around 15-20ºc (of course this varies dependent on factors such as how the car is being driven, ambient temperatures and state of tune). Unlike many oil cooler kits, this keeps the factory Oil to Water cooler in position – effectively doubling up on your cooling. As oil passes through the new cooler first, that means less heat transfer back into your car’s water coolant circuit too.

WHY FIT AN OIL COOLER KIT?

Our Oil Cooler Kit is an essential fit for any hard-driven MQB or MQB 'Evo' 2.0 TSI car running high power levels or in hot climates. It's a complete ready to install package, using a clever sandwich plate design for straightforward and reliable installation.

Adding power to these 2.0 TSI engines generates more heat to disperse.  Significantly increased oil temperatures means only one thing: a decrease in the ability for your engine to stay properly lubricated. At the same time, it's really important not to over-cool the oil; our 10-row kit is perfect.

  • Under hard driving, the stock oil cooler is easily overwhelmed. Failures start to occur when oil cannot dissipate its collected heat fast enough and the oil begins to thin and degrade - losing its lubrication properties.
  • The RacingLine kit solves this problem: by adding in an additional air to oil cooler positioned right in the airflow in the front of the car, oil temperatures are reduced by around 15  - 20   degrees centigrade (of course dependant on how the car is being used, ambient temps and state of tune).
  • Our kit retains the factory oil to water cooler and adds to it with the front-mounted cooler - doubling up your cooling capability with less heat transfer into the water system.
  • As the oil moves away from the heat inside the engine, its temperature drops significantly as it is pumped through the densely packed fins of the 10-row cooler’s large surface area mounted right in the cool airflow.
  • Supplied as a complete kit with every part ready for install.
What’s in the kit?  – Oil Cooler mounting brackets – AN10 ‘210 Series’ Nylon braided feed and return lines – Billet CNC oil cooler sandwich plate – AN10 ’10-Row’ Oil Cooler Core – Billet oil filter housing with removable drop in filter – Fitting kit consisting of all necessary nuts, bolts, washers and rubber mountings
CONFIRMED APPLICATIONS
>
VW Golf 8 GTI
2020+
>
VW Golf 8 GTI Clubsport
2020+
>
VW Golf 8 R
2020+
>
VW Golf 7 & 7.5 GTI & Clubsport
2013-2020
>
VW Golf 7 & 7.5 R
2013-2020
>
VW Golf 7 & 7.5 1.8 TSI
2013-2020
>
VW Passat 2.0 TSI B8
2015+
>
VW Arteon 2.0 TSI
2017+
>
VW T-Roc R 2.0 TSI
2019+
>
VW Tiguan II 2.0 TSI
2016+
>
VW Jetta / GLI 7
2018+
>
Audi S3 8Y
2020+
>
Audi A3 2.0 TSI 8Y
2020+
>
Audi S3 8V
2013-2020
>
Audi A3 2.0 TSI / 1.8 TSI 8V
2013-2020
>
Audi TT 2.0 TSI 8S
2014+
>
Audi TTS 2.0 TSI 8S
2015+
>
Audi SQ2
2018+
BlackBoost Performance Engineering - Racing Coolant Thermostat. With our BlackBoost Racing Coolant Thermostat the coolant circulation with the radiator is always at 100% open. The factory coolant thermostat opens at 100°C / 212°F. Only for racing application, not recommended be used under very cold weather conditions. Applicable for: all M157 / M278 engines
WeightN/AN/AN/AN/AN/AN/A
DimensionsN/AN/AN/AN/AN/AN/A
Additional information
Brand

Forge Motorsport

Make

Audi, Golf GTI, Golf R, S3, Volkswagen

Model Year

2020, 2021, 2022, 2023

Brand

CSF Radiators

Make

AMG C63, AMG GLE63, AMG GT/GTS/GTR/GTC, Mercedes-Benz

Model Year

2015, 2016, 2017, 2018, 2019, 2020, 2021

Brand

CTS Turbo

Make

Golf R, Volkswagen

Model Year

2012, 2013

Brand

CTS Turbo

Make

Audi, Golf R, S3, Volkswagen

Model Year

2021, 2022, 2023

Brand

Racingline

Make

A3, Audi, Golf GTI, Golf R, S3, SQ2, TT, TTS, Volkswagen

Model Year

2013, 2014, 2015, 2016, 2017, 2018, 2019, 2020, 2021, 2022, 2023

Brand

Black Boost

Make

AMG CLS63, AMG E63, AMG S63, Mercedes-Benz

Model Year

2011, 2012, 2013, 2014, 2015, 2016