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QUALITY MADE IN GERMANY
DIRECT FROM THE MANUFACTURER
WORLD'S NR.1 TUNING ADAPTER
15 YEARS OF EXPERT KNOWLEDGE
FREEDOM: INSTALL WHAT YOU WANT
Simple registration for the technical inspection
QUALITY MADE IN GERMANY
DIRECT FROM THE MANUFACTURER
WORLD'S NR.1 TUNING ADAPTER
15 YEARS OF EXPERT KNOWLEDGE
FREEDOM: INSTALL WHAT YOU WANT
Simple registration for the technical inspection
QUALITY MADE IN GERMANY
DIRECT FROM THE MANUFACTURER
WORLD'S NR.1 TUNING ADAPTER
15 YEARS OF EXPERT KNOWLEDGE
FREEDOM: INSTALL WHAT YOU WANT
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Made in germany

Flywheel Kit Golf VW Polo 6N VW Caddy 2 VW Caddy 2 Seat Arosa Seat Cordoba Seat Ibiza 16V Flywheel Clutch Pressure Plate Organic

  • ✓ 1.4l,1.6l, 16V engine
  • ✓ 200mm clutch
  • ✓ 225NM torque

Clutch kit for 1.4l, 1.6l 16V installed in the VW Polo 6N, VW Caddy 2, VW Caddy 2, Seat Arosa, Seat Cordoba, Seat Ibiza with 5-speed gearbox, consists of:

  • lightened high strength chrome molybdenum flywheel EPYTEC
  • spring-loaded organic clutch disc SACHS 
  • clutch pressure plate, reinforced design SACHS 

Suitable for the following vehicles:

  • 1.4l, 1.6l 16V engines
  • 5-speed gearbox

Advantages of our clutch kit with lightened flywheel

  • our flywheel weighs only 3.8 kg, the standard wheel over 6.3 kg
  • exactly identical in construction to the series components, therefore easy replacement possible
  • it is not necessary to send us the original engine flywheel
  • higher contact pressure and less abrasion of the pressure plate
  • all our flywheels are made of chrome moly steel with quality G 1.75, extremely suitable for high-speed motors
  • significantly better acceleration due to less inertia
  • higher speeds possible
  • the engine runs faster
  • More direct response behaviour
  • suitable for motorsports, racing or serial vehicles
  • lower fuel consumption
  • significant reduction of the turbo lag
  • precision balancing, bearings are less affected
  • including ring gear
  • suitable for either a standard clutch or a high-performance clutch
  • made in Germany

Advantages of the torsion spring clutch disc with organic Performance clutch coating and the reinforced pressure plate

  • starting behavior similar to series
  • significantly higher transmittable torque
  • the torsional damping achieves a higher impact moment
  • better thermal resilience compared to organic friction coating
  • longer lifetime
  • less lift
  • higher pressing force
  • higher speeds possible

Areas of application:

  • series and road vehicles
  • chip tuning, turbo and compressor conversions
  • vehicles with maximum loads
  • vehicles with trailer 
  • 1/4 mile race
  • circuit racing (e.g. endurance racing, motor sport, cross)
  • rallies (e.g. category N)
  • hill climb, slalom, drift

Technical data:

  • transmittable torque[Nm]: 225
  • weight of the lightened single-mass flywheel: 3,8 Kg

Delivery:

  • 1x lightened high strength chrome molybdenum flywheel EPYTEC
  • 1x spring organic clutch disc SACHS 
  • 1x clutch pressure plate, reinforced design SACHS 
Manufacturer: Sachs Performance
Manufacturer: Sachs Performance

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  • Does the clutch become harder to press when a Sachs pressure plate is installed?
  • yes, the pedal is often harder to press when a SACHS Performance reinforced clutch pressure plate is installed.

    How much harder is difficult to say and varies. However, with the reinforced standard clutches, the hardness of the pedal remains quite the same.

  • Does a new clutch need to be broken in and if so, how long?
  • Yes – a new clutch should be broken in. We recommend a break-in period of several hundred kilometers after installation, typically around 500 km (for some setups, even up to 1,000 km). During this time, the clutch lining optimally adapts to the flywheel and pressure plate, manufacturing and handling residues are "removed," and a clean contact pattern is formed. This ensures optimal functionality and durability later on.

    Important: If the clutch is overloaded or "abused" during the first kilometers, the lining can overheat and get damaged (e.g., glazing/warping). Such damages are generally not covered by warranty because they result from improper use.

    How to properly break in your new clutch

    • Start gently and moderate loads: During the first kilometers, avoid full-throttle starts or hard launches.

    • Shift up early / shift down late: Keep RPMs and loads low, especially in lower gear ranges.

    • Do not let it slip: Especially on hills, do not "hold" with the clutch, but start with the handbrake instead.

    • No additional load: During the first 500 km, avoid towing trailers/caravans and strong continuous loads as much as possible.

    Is "clutch judder" normal at the beginning?

    Yes, after a clutch replacement, occasional judder or a slightly different pedal/start feel may occur in the first kilometers. This usually settles during the break-in period.

    However, if the judder remains noticeable even after about 1,000 km, you should have it checked in a workshop – it could be due to an installation or adjustment issue (release system, flywheel, alignment, etc.).



  • Does the Epytec flywheel have a TDC marking or additional ignition markings?
  • Our Epytec flywheels do not have a stamped TDC marking and generally no additional ignition markings either. This is intentionally designed because, depending on the engine/gearbox combination, housing/pointer, sensors, and peripherals used, different markings or references are required. Instead of a universal marking, we use – as with the original – the mechanical reference via the pin on the back (corresponding to the principle of the series flywheel).

    How do I correctly transfer the TDC marking?

    If you need a visible TDC marking for your settings (e.g., for timing), proceed as follows:

    1. Turn the original flywheel to TDC before disassembly (set the engine exactly to TDC).

    2. In this position, check the TDC position on the original at the pointer/marking window.

    3. Transfer TDC marking to the new flywheel:
      Mount/align the new flywheel in the same position (via the pin as in the original) and mark the TDC position accordingly on the new flywheel.

    This way, you have a TDC marking that fits exactly to your engine/setup.

  • What is the coefficient of friction of the flywheel?
  • Basically, you can assume that our Epytec flywheels have a friction coefficient at least at the level of an original cast flywheel. In practice, it is often even slightly better due to the higher alloyed steel used, as the material offers a very stable friction surface.

    However, it's important to note that the "actually usable" friction coefficient in the vehicle is not determined solely by the flywheel but always by the overall system – primarily, this includes:

    • the material of the clutch disc/friction linings (organic, sintered, performance blends)

    • the condition and surface of the friction surfaces (clean, grease-free, correctly installed)

    • the proper break-in of the clutch to ensure an even contact pattern

    The lining material, in particular, has the greatest influence here. If you use a sport or sinter clutch, the friction behavior can differ significantly from a standard clutch. Therefore, you should inquire about the exact friction coefficient or the specifications of the friction disc from the manufacturer of the clutch/friction disc.

  • Is the flywheel pre-balanced or is it balanced to zero?
  • Our flywheels are delivered with the specified unbalance (i.e., not "neutral" to zero).

    This is how we set the unbalance precisely: We first balance the flywheel to 0. Then, we attach a test mass at the designated location, which exactly corresponds to the desired unbalance, and balance the flywheel with this test mass again to 0. Once the test mass is removed, the exact specified unbalance remains in the flywheel.

Questions? Click here for the contact form
Motor Motorcode
1.4 16V 6N2|75PS(55KW)
75 1.6 6N1|75PS(55KW)
100 1.4 16V 6N1|100PS(74KW)
1.4 16V 6N2|101PS(74KW)
Motor Motorcode
1.4 16V 60|75PS(55KW)
1.4 16V 6E1|75PS(55KW)
1.4 16V 60|100PS(74KW)
1.4 16V 6X1|75PS(55KW)
1.4 16V 6X1|100PS(74KW)
1.4 16V 6E1|100PS(74KW)
Motor Motorcode
1.6 1H2|101PS(74KW)
1.6 1H2|75PS(55KW)
Motor Motorcode
1.4 16V 9K9B|75PS(55KW)
1.6 9K9B|75PS(55KW)
Motor Motorcode
1.4 9K9A|75PS(55KW)
60 1.4 9K9A|60PS(44KW)
Motor Motorcode
1.6 1H5|101PS(74KW)
Motor Motorcode
1.6 1H1|101PS(74KW)
1.6 1H1|75PS(55KW)
Motor Motorcode
1.4 16V 6K2|75PS(55KW)
1.4 16V 6K1|75PS(55KW)
1.4 16V 6K2|100PS(74KW)
1.4i 16V 6K1|101PS(74KW)
1.4i 16V 6K2|101PS(74KW)
1.6i 6K2|101PS(74KW)
1.6 6K2|101PS(74KW)
1.6i 6K1|75PS(55KW)
1.6i 6K1|101PS(74KW)
1.6i 6K2|75PS(55KW)
Motor Motorcode
1.4i 16V 6K1|101PS(74KW)
1.6i 6K1|101PS(74KW)
1.6i 6K1|75PS(55KW)
1.4 16V 6K1|75PS(55KW)
Motor Motorcode
1.6i 6K5|101PS(74KW)
1.6 6K5|101PS(74KW)
1.4 16V 6K5|75PS(55KW)
Motor Motorcode
1.4 16V 6H1|100PS(74KW)
1.4 16V 6H|100PS(74KW)

Motor Motorcode
1.4 16V 6N2|75PS(55KW)
75 1.6 6N1|75PS(55KW)
100 1.4 16V 6N1|100PS(74KW)
1.4 16V 6N2|101PS(74KW)

Motor Motorcode
1.4 16V 60|75PS(55KW)
1.4 16V 6E1|75PS(55KW)
1.4 16V 60|100PS(74KW)
1.4 16V 6X1|75PS(55KW)
1.4 16V 6X1|100PS(74KW)
1.4 16V 6E1|100PS(74KW)

Motor Motorcode
1.6 1H2|101PS(74KW)
1.6 1H2|75PS(55KW)

Motor Motorcode
1.4 16V 9K9B|75PS(55KW)
1.6 9K9B|75PS(55KW)

Motor Motorcode
1.4 9K9A|75PS(55KW)
60 1.4 9K9A|60PS(44KW)

Motor Motorcode
1.6 1H5|101PS(74KW)

Motor Motorcode
1.6 1H1|101PS(74KW)
1.6 1H1|75PS(55KW)

Motor Motorcode
1.4 16V 6K2|75PS(55KW)
1.4 16V 6K1|75PS(55KW)
1.4 16V 6K2|100PS(74KW)
1.4i 16V 6K1|101PS(74KW)
1.4i 16V 6K2|101PS(74KW)
1.6i 6K2|101PS(74KW)
1.6 6K2|101PS(74KW)
1.6i 6K1|75PS(55KW)
1.6i 6K1|101PS(74KW)
1.6i 6K2|75PS(55KW)

Motor Motorcode
1.4i 16V 6K1|101PS(74KW)
1.6i 6K1|101PS(74KW)
1.6i 6K1|75PS(55KW)
1.4 16V 6K1|75PS(55KW)

Motor Motorcode
1.6i 6K5|101PS(74KW)
1.6 6K5|101PS(74KW)
1.4 16V 6K5|75PS(55KW)

Motor Motorcode
1.4 16V 6H1|100PS(74KW)
1.4 16V 6H|100PS(74KW)

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