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Crankshafts
Adapt Motorsport Sync 2 ignition ref/sync sensor and V-rib conversion kit for Porsche 911 Carrera 3.2 models from 1984–89. It combines engine-position sensing with a multi-rib pulley drive for compatible 3.2 engine cases and consoles.
Fits
- Porsche 911 Carrera 3.2 1984–86
- Porsche 911 Carrera 3.2 G50 1987–89
Check fitment for your specific vehicle (model, year, engine) before ordering.
What This Product Does
The kit supplies a compatible engine control unit with crank speed, crank angle and engine-cycle reference signals. A Hall-effect sensor reads the crank pulley trigger, including its missing-tooth reference, while the distributor-location sensor identifies the engine cycle. Together, these signals allow the ECU to determine whether the engine is on its compression or exhaust stroke for sequential fuel and ignition control.
Functions
- Measures crankshaft speed and angular position
- Provides a missing-tooth reference from the 36-1 trigger disc
- Produces an engine-cycle signal across each 720-degree cycle
- Enables the ECU to identify the compression stroke
- Supports sequential injection and electronically managed ignition
- Converts the fan drive to a V-rib belt arrangement
Technical Details
- Sync 2 module with two ZF digital Hall-effect sensors
- V-rib crank pulley and trigger disc for parallel-end crankshafts
- V-rib fan pulley, eccentric idler assembly and matching belt
- Recommended sensor voltage: 8V; supported operating range: 5–12V
- Anodised machined-aluminium housing with bronze bush and sealed roller bearing
- Supplied with wiring, terminals and connectors for loom integration
Installation Requirements
The sensor module mounts in the original distributor position and uses the factory distributor gear transferred from the existing unit. Installation involves connecting the sensors to a compatible ECU, setting the crank-sensor air gap and configuring the reference position in the ECU software.
As the module takes the place of the ignition distributor, the engine must use coil-on-plug ignition or an individual coil-and-lead arrangement controlled by the ECU. Professional installation and engine-management configuration are recommended.
Why Replacement Matters
A sequential EFI conversion requires dependable crankshaft and cycle-position data so the ECU can schedule individual ignition and injection events. This combined Adapt Motorsport package provides both signals while adding the crank pulley, fan pulley, idler and V-rib belt components required for the compatible 3.2 installation.
FAQs
- Does the kit include both crank and cycle-reference sensors?
Yes. The Sync 2 body contains two ZF Hall-effect sensors for crank and engine-cycle information. - Can the original distributor continue to control the ignition?
No. The module occupies the distributor mounting position, so ignition must be managed through a suitable ECU and individual coils. - Is this V-rib version suitable for a 2.7 or 3.0 engine console?
No. The manufacturer specifies that the V-rib arrangement requires a 3.2 engine casing and console. - Are electrical connectors supplied?
Yes. The package contains the wiring, connector housings and terminals needed for integration with the engine loom.
Related reference numbers
Related, superseded, cross reference or alternative numbers for comparison.
AMS9050053KIT.3
The product you are viewing cross references to these numbers
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
Adapt Motorsport Sync 2 ignition reference and synchronisation sensor kit for Porsche 911 Carrera 3.2 models from 1984–89. This version includes a 127/133mm air-conditioning crankshaft pulley and 36-1 trigger disc for engines using the larger 3.2 AC pulley diameter.
Fits
- Porsche 911 Carrera 3.2 1984–86
- Porsche 911 Carrera 3.2 G50 1987–89
Visually confirm the crankshaft pulley and air-conditioning drive arrangement fitted to the engine. Check fitment for your specific vehicle (model, year, engine) before ordering.
What This Product Does
The kit provides a compatible engine control unit with crankshaft speed, crank position and engine-cycle synchronisation signals. One Hall-effect sensor monitors the teeth and missing-tooth reference of the 36-1 crank trigger, while the second reads a single tooth within the distributor-location module.
Because the module is driven at half engine speed, its reference sensor generates one pulse for every two crankshaft revolutions. The ECU can therefore distinguish between the compression and exhaust strokes, providing the position information required for sequential fuel injection and electronically controlled ignition.
Functions
- Measures crankshaft speed and angular position
- Supplies a missing-tooth crank reference from the 36-1 trigger disc
- Generates one engine-cycle synchronisation pulse every 720 degrees
- Allows a compatible ECU to identify the compression stroke
- Supports sequential fuel-injection and ignition strategies
- Fits in the original distributor mounting location
Technical Details
- Sync 2 body assembly with two ZF digital Hall-effect sensors
- 127/133mm AC crankshaft pulley and 36-1 trigger disc
- Pulley designed for parallel-end crankshafts
- Recommended sensor supply: 8V; supported range: 5–12V
- Machined aluminium housing with anodised finish, maintenance-free bronze bush and sealed roller bearing
- Wiring, terminals and connectors for integration with the engine wiring loom
Installation Requirements
The sensor body replaces the original distributor and reuses the factory distributor gear removed from the existing unit. Installation requires connection to a compatible ECU, adjustment of the sensor air gap at the crank trigger and configuration of the reference position within the ECU software.
As the distributor no longer routes the ignition spark, the engine must use coil-on-plug ignition or another individual coil-and-lead arrangement controlled by the ECU. The manufacturer states that this kit is not compatible with Porsche 964 or 993 3.6 engine cases, which require a separate sensor solution.
Why Replacement Matters
A sequential engine-management conversion requires reliable crankshaft and cycle-position information before the ECU can correctly schedule individual injection and ignition events. This kit combines both signals in one distributor-location assembly and includes the larger AC pulley required by 1984-onwards Carrera 3.2 installations.
FAQs
- Does the kit provide crank and synchronisation signals?
Yes. One sensor reads the 36-1 crank trigger, while the second generates an engine-cycle reference once every two crankshaft revolutions. - Can the original distributor ignition remain fitted?
No. The module occupies the distributor location, so ignition events must be controlled by a compatible ECU using coil-on-plug or another per-cylinder coil arrangement. - Is this the correct AC pulley for an early 2.7 or 3.0 engine?
No. This 127/133mm version is intended for 1984-onwards 3.2 engines with the larger air-conditioning pulley diameter. - Does the kit include wiring connectors?
Yes. Wiring, terminals and connectors for connection to the engine wiring loom are included.
Related reference numbers
Related, superseded, cross reference or alternative numbers for comparison.
AMS9050053KIT.2
The product you are viewing cross references to these numbers
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
Ignition ref/sync sensor kit by Adapt Motorsport for classic Porsche engines. This Sync 2 version combines two Hall effect sensors with a 127mm crank pulley and 36-1 trigger disc for sequential fuel injection and ignition control.
Fits:
- Porsche 911 1974-1977 2.7L / 1976-77 3.0 Carrera
- Porsche 911 1978-1983 3.0L / SC
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
Check fitment for your specific vehicle, engine casing, distributor gear and engine-management system before ordering.
What This Product Does
The crank-mounted sensor reads the teeth and missing-tooth reference on the 36-1 trigger disc, allowing the ECU to calculate crankshaft position and engine speed. A second sensor within the distributor-location module generates one reference pulse every 720 degrees, identifying the engine cycle so the ECU can distinguish between the compression and exhaust strokes.
Together, these signals provide the engine-position information required by a suitable aftermarket ECU to operate sequential fuel injection and ECU-controlled ignition.
Functions
- Measures crankshaft position and rotational speed.
- Provides a once-per-engine-cycle synchronisation signal.
- Supports sequential injection and ignition strategies.
- Replaces the original distributor body at its mounting location.
- Supplies digital Hall effect signals to a compatible ECU.
Technical Details
- Sync 2 dual-sensor body assembly.
- Two ZF digital Hall effect sensors.
- 127mm crank pulley for parallel-end crankshafts.
- 36-1 crank trigger disc.
- Recommended sensor supply: 8V; operating range stated by the manufacturer as 5–12V.
- Machined aluminium housing with anodised finish, maintenance-free bronze bush and sealed roller bearing.
Kit Contents
- Main two-sensor body assembly.
- Two ZF Hall effect sensors.
- 127mm crank pulley and 36-1 trigger disc.
- Wiring, terminals and connectors for integration with the vehicle wiring loom.
Installation Requirements
The module mounts in the original distributor location and reuses the factory distributor gear. Installation requires wiring to a compatible ECU, adjustment of the sensor air gap and configuration of the reference position within the ECU software.
Because this kit replaces the distributor, the engine must use coil-on-plug ignition or another arrangement with an individually controlled ignition lead for each cylinder. The ECU must control the ignition events.
Why Replacement Matters
A modern sequential engine-management system requires accurate crankshaft speed, crank position and engine-cycle information. This combined trigger and synchronisation arrangement supplies both signals without relying on the original distributor to distribute the ignition spark.
Important Notes
- This kit is not compatible with Porsche 964 or 993 3.6L engine cases; Adapt Motorsport offers a separate sensor solution for those engines.
- On 2.7L magnesium engine cases, a small boss near the crank pulley must be trimmed or die-ground to provide trigger-disc clearance.
- Confirm ECU compatibility, sensor supply voltage, distributor gear suitability and pulley clearance before installation.
FAQs
- Does the kit provide both crank and engine-cycle signals?
Yes. One sensor reads the 36-1 crank trigger while the internal reference sensor produces one pulse every two crankshaft revolutions. - Can the original distributor ignition arrangement be retained?
No. The module occupies the distributor location, so ECU-controlled coil-on-plug or an individual ignition lead and coil arrangement is required. - Does it fit Porsche 964 or 993 3.6L cases?
No. Those engine cases require the separate 964/993 sensor product. - Is modification required on a 2.7L engine?
The manufacturer states that magnesium 2.7L cases require a small crankcase boss to be trimmed for trigger-disc clearance.
Related reference numbers
Related, superseded, cross reference or alternative numbers for comparison.
AMS9050053KIT
The product you are viewing cross references to these numbers
- Porsche 911 1974-1977 2.7L / 1976-77 3.0 Carrera
- Porsche 911 1978-1983 3.0L / SC
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
Dual crankshaft and camshaft position sensor for electronic fuel injection upgrade. Porsche 911 1974 to 1989
Dual sensor kit with pulley is the complete engine position monitoring kit
Fits:
- Porsche 911 1974-1977 2.7L / 1976-77 3.0 Carrera
- Porsche 911 1978-1983 3.0L / SC
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
The dual sensor unit, no pulley is for people who might be upgrading from another crank sensor kit, and have a trigger installed. So long as the trigger wheel diameter is between 127mm and 132mm in diameter, then our kit can most likely be used with the existing trigger wheel.
Dual sensor
Trigger every 720 degrees (compression stroke)
36 tooth trigger wheel
Dual sensor – This unit has the same sensor as the in the body as the single sensor, but a second sensor that points at the trigger disc mounted to the Adapt Motorsport crank pulley. As standard, this is a 36-1 pulley, meaning that it has 36 teeth, minus 1 missing tooth. This allows the ECU to know what the crankshaft position is at all times and in combination with the internal sensor, whether it is on the compression or exhaust stroke in its 720 degree cycle. This system provides a complete engine position sensing kit. If you have an existing 36t trigger disc, it is possible to use our sensor kit on this, provided that the teeth are designed for a hall sensor, and not a magnetic sensor, and the outside diameter of the teeth is between 127 and
130mm. Please contact us for clarification
Why do you need this system and what are crankshaft/camshaft position sensors?
When converting classic Porsches to modern electronic fuel injection, the engine control unit (ECU) needs to know exactly where the crankshaft and camshafts are in there 4 stroke cycle and how fast they are spinning. This allows the ECU to correctly time each spark and fuel injector opening time and duration. The first sensor is pointed at the crankshaft pulley and measures a pulse for every tooth. There is one missing tooth and from this the ECU can work out what the crankshaft position is relative to this missing tooth. The time between pulses gives the engine speed and rate of change.
But there is a problem, the engine spins two complete revolutions to complete its 4 stroke cycle. So whilst with this one sensor, the ECU knows where it is relative to top dead centre (TDC), it does not know if it is on the compression or exhaust stroke. This is where the second reference sensor comes in. This sensor is installed in the body our module, and measures a single tooth. As this is installed in the distributor hole, this is geared to run at half engine speed, so will produce a pulse once every 720 degrees. With these two sensors, the ECU knows the exact position the engine is in its 4 stroke cycle. And now, we can run accurate sequential injection and ignition.
Our kit uses high speed digital hall effect sensors for a digital output to the engine control unit, these are best run at 8V, most modern ECU's have an 8V output dedicated for crankshaft sensors.
Machined aluminium housing and anodised finish, complete with maintenance free bronze bush and sealed for life roller bearing. These sensors are quite adjustable so are often able to be used with existing crank pully and trigger wheel setups from other quality vendors.
Sync 2 Kit Includes:
Main body assembly
ZF Hall effect sensors x 2
Wiring and connectors, with pins and connectors for connecting to your wiring loom.
For use with other crank trigger systems.
(We can not guarantee that that this system will fit every crank/trigger system, however it can be easily modified to suit most systems)
This replacement kit fits to the OEM distributor location using your own factory distributor gear. Simply remove the factory distributor gear from your install the gear, wire to your ECU, fine tune the sensor air gap to the crank trigger disc, setup the reference position in the ECU and you have all the sensing you need for the latest sequential fuel and ignition systems. This kit works on the 2.7lre, 3.0ltr and with the turbo distributor gears.
Please Note
2.7 engines may need to trim some of the crank case near the crank pulley to prevent interference.
Related reference numbers
Related, superseded, cross reference or alternative numbers for comparison.
93060250052
The product you are viewing cross references to these numbers
- Porsche 911 1974-1977 2.7L / 1976-77 3.0 Carrera
- Porsche 911 1978-1983 3.0L / SC
- Porsche 911 1984-1986 3.2L
- Porsche 911 1987-1989 3.2L G50
Porsche Performance Crankshafts - High-Strength Engine Bottom-End Upgrades
Crankshafts are the core rotating components of the engine, converting the linear motion of the pistons into usable rotational power. In high-performance or tuned Porsche engines, upgraded crankshafts are essential for handling increased cylinder pressures, higher RPM, and sustained load without compromising reliability.
Available from Design911, Porsche performance crankshafts are engineered using high-strength materials and precision machining to deliver exceptional durability, balance, and dimensional accuracy for performance builds, engine rebuilds, and motorsport applications.
What Do Crankshafts Do?
Crankshafts transform piston movement into rotational energy that drives the drivetrain.
Core Functions:
- Convert combustion force into rotational motion.
- Maintain smooth, balanced engine operation.
- Support high RPM and power output.
- Transfer torque to the flywheel and gearbox.
- Form the foundation of the engine’s rotating assembly.
A strong, precisely balanced crankshaft is critical for engine performance and longevity.
Why Do Crankshafts Fail?
Standard crankshafts are designed for factory power levels
and operating conditions. Failures can occur when engines are pushed beyond
these limits due to:
- Increased cylinder pressures from tuning or forced induction.
- Metal fatigue from sustained high-RPM operation.
- Insufficient lubrication or oil starvation.
- Bearing failure causing crankshaft damage.
- Poor balance leading to vibration and stress fractures.
Crankshaft failure often results in catastrophic engine damage.
Why Upgrade to a Performance Crankshaft?
Performance crankshafts are designed to handle extreme loads and engine speeds safely.
Upgrade Benefits:
- High-strength forged or billet construction.
- Improved resistance to fatigue and torsional stress.
- Precision balancing for smooth high-RPM operation.
- Suitable for turbocharged, supercharged, and race engines.
- Essential upgrade for high-output engine builds.
Upgrading the crankshaft provides a robust foundation for reliable high-performance engines.
Highlights
- Porsche performance crankshaft upgrades
- High-strength construction for extreme power levels
- Designed for tuned and motorsport engines
- Precision balanced for smooth operation
- Essential component for high-performance engine builds