Koenigsegg Direct Drive (2024)

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FAQs
Koenigsegg Direct Drive (1) Back to Powertrains
Paving the way

The Koenigsegg Direct Drive Transmission (KDD) was invented by Christian von Koenigsegg and developed for the Regera by the Koenigsegg Advanced Engineering team.The patent-pending KDD replaces the combustion engine’s traditional transmission – the gearbox as you know it is removed from the car. As the gearbox is responsible for both added weight and efficiency losses, any chance to remove this double-negative is welcome.

In its place, the KDD provides direct drive to the rear axle from the combustion engine. This is done without the need for a multitude of gears or a variable transmission, all of which have inherently high energy losses.

Koenigsegg Direct Drive

FOUR KEY

ELEMENTS

TOGETHER

‘HydraCoup’ is a bespoke hydraulic coupling developed in-house at Koenigsegg, specifically for the Regera. HydraCoup is basically a very advanced torque converter with a lock-up functionality; the all-important linchpin that allows smooth and progressive power transfer from the combustion engine to the single-speed driveline.

Koenigsegg’s three axial flux electric motors are optimized in-house and are extremely power dense, making them a key ingredient for the KDD. Aside from providing extreme responsiveness from zero rpm, these electric motors also allow for torque vectoring, regenerative braking and energy conversion.

KDD features our Formula 1 grade, super-dense and super-compact battery pack.

The battery pack is key to the Regera’s ability to deliver rapid acceleration. It weighs just 64 kg, which is incredibly light, given that it can discharge up to 500 kW of power.

In the Regera, its motorsport-grade cell technology can discharge power approximately 10 times faster than a typical pure electric car, and can accept re-gen around 10 times quicker as well.

A twin-turbo V8 producing 1,100hp and 1,000Nm was used in the Koenigsegg Regera.

Koenigsegg Direct Drive (12)

Koenigsegg's

luxury GT

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Massive torque from stand-still

The Regera has a final drive ratio of 2.73:1, the equivalent to seventh gear in the Koenigsegg Agera. Ever tried to take off in 7th gear? There is simply not enough torque available in a regular car to start at such a high gear. To combat this, the Regera's Koenigsegg Direct Drive has two types of propulsion working together to move the car:electric propulsionand the internal combustion engine (ICE).

The Regera’s ICE has 1,100hp and 1,250Nm of torque, but peak torque is not available at 0 rpm. Starting from stand-still is therefore compromised when using the ICE alone. Enter the Regera’s electric drive, providing 670hp of drive and more importantly 3500 Nm of torque direct to the rear wheels (the equivalent of 1000 nm on the crank), which is available from standstill up to 3500 crank rpm. Electric torque eventually tapers off but it will still assist all the way up to 8000 crank rpm.

The instant torque from the electric motors from 0 rpm and upwards acts like the lower gears of traditional transmissions, pulling the car smoothly and powerfully from standstill.

Massive torque from stand-still

A Regera case study
Koenigsegg Direct Drive (13)

ICE and HydraCoup at play

While the ICE is not the primary driving force for the wheels from standstill, the HydraCoup will gradually feed power from the ICE into the drivetrain until the HydraCoup locks up. This means the ICE is driving the wheels mechanically without a traditional transmission while at the lowest possible losses of any transmission in this mode.

If one is cruising on ICE power alone at 150 km/h and floors the accelerator, the KDD system will engage electric drive to help push from 150 to 250 km/h in just 3.2 sec. As you coast back down to 150, the ICE system and recharge via de-acceleration begins to fill the battery so that you’re ready to do it all again – and again, and again.

It’s this massive power and torque delivery in combination with the ICE that enables the Regera to minimise mechanical losses by removing the traditional transmission. The KDD system allows the Regera to be super responsive and smooth at the same time. It will provide the fastest 0-400 km/h acceleration time in the world thanks to its unique power delivery, vastly reduced mechanical losses, and much lower component weight.

ICE and HydraCoup at play

Cruising with confidence in the Regera
Koenigsegg Direct Drive (14)
Koenigsegg Direct Drive (15)

KDD Explained

Watch Engineering Explained's Jason Fensk dive into the Koenigsegg Direct Drive.

Koenigsegg Direct Drive (2024)

FAQs

How does the Regera have no transmission? ›

Christian von Koenigsegg invented the Koenigsegg Direct-Drive System (KDD), and it was developed for the Regera by the Koenigsegg Advanced Engineering Team. The KDD system effectively eliminates the need for a transmission and allows for pure EV (electric vehicle) mode.

Why is Koenigsegg RWD? ›

Von Koenigsegg responded that the extra space required in the center of the car to house a propshaft that drives the front wheels would throw off the weight distribution and aerodynamics of the vehicle.

Why Koenigsegg never went racing? ›

Why did the CCGT never go racing? Two months after Koenigsegg started shake-down runs of the CCGT, the ACO and FIA changed the regulations for the GT1 class. Carbon monocoques were no longer allowed, and minimum production numbers went from a total of 20 cars over several years to 350 cars per year.

Are Koenigsegg road legal? ›

The Agera RS is the ultimate in road and track versatility. It offers extreme performance and is fully road-legal, complying with safety standards, emissions and hom*ologation requirements worldwide.

Is A Koenigsegg Regera Unbreakable? ›

To ensure a lightweight yet exceptionally strong structure, the Regera employs a carbon fiber monocoque chassis. This not only enhances performance but also contributes to the car's safety and durability.

Why is the Regera so fast? ›

The battery pack is key to the Regera's ability to deliver rapid acceleration. It weighs just 64 kg, which is incredibly light, given that it can discharge up to 500 kW of power.

Why is Koenigsegg not so popular? ›

koenigsegg, being a rather new brand (It was founded in 1994), hasn't made very many models, or built up a legacy like lamborghini, porsche or ferrari. Now we're moving onto a different league from Ferrari at al - from supercars to so-called hypercars: the absolute automotive stratosphere.

Why is the wiper middle on a Koenigsegg? ›

Because of the unique curvature of their windshields, Koenigsegg cars use a single wiper blade to clear the view. On top of that, the blade comes to rest dead center of the windshield, acting as an aerodynamic component.

Why is Koenigsegg Ghost? ›

After moving into the abandoned airfield, which once housed a Swedish Air Force squadron, Koenigsegg adopted the "ghost symbol" that the squadron had on its planes as a tribute. The badge is seen on models built in the factory that was converted from its hangar.

What are the downsides of direct drive? ›

Disadvantages of Direct Drive Extruder

One of the main cons of direct drive extrusion is that mounting the extruder onto the printhead adds substantial weight to the mobile printhead. This added weight can lead to greater vibrations, which can negatively impact the quality of your final print.

Is direct drive more realistic? ›

Enhanced realism: Direct Drive technology delivers a realistic driving experience thanks to its instant response and precision. Players can get a more authentic feel of the vibrations of the road, rumble strips, changes in terrain and vehicle movements, further reinforcing the immersive effect in various games.

Does direct drive make you faster? ›

The main benefit of a Direct Drive wheel is the level of immersion it offers compared with a gear or belt-driven wheel, as they provide a much more accurate simulation of steering feel. While a Direct Drive wheel will not necessarily make the user a faster driver, it may make them more consistent.

How does a Koenigsegg one drive work? ›

To understand how this system works, let's first go over the components involved.
  1. Battery. ...
  2. Electric Motor/Starter. ...
  3. Engine. ...
  4. Hydraulic Coupling. ...
  5. Final Drive.
  6. Driveshaft-Mounted Motors. ...
  7. The process of reaching the top speed:
  8. The two electric motors on the rear axle start acceleration, pulling their energy from the car's battery.
Mar 11, 2015

How does a Koenigsegg transmission work? ›

With six forward gears on two separate shafts, each with an individual clutch and a seventh clutch for reverse, it operates like a derailleur system on your bicycle – close a clutch on each shaft and any of the three gears on one can combine with any of the three on the other to produce a unique ratio, giving you nine ...

How does Koenigsegg free valve work? ›

By doing away with the camshaft and replacing it with a compact actuator above each tappet, the Freevalve system allows each valve to be individually controlled. They can be lifted as much or as little as the engine management dictates, for as long or as little as required, as early or as late in the cycle as required.

How does the Koenigsegg Jesko gearbox work? ›

This transmission is used in the Koenigsegg Jesko which has 1600 HP. Unlike a dual-clutch, the LST has no selector forks, collars, or synchronizers to engage each individual gear. Instead, the selection is executed purely by opening and closing clutches.

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