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Home›Technology›Engines & Power Units›How Does a Modern F1 Power Unit Divide Its Energy Systems?

Engines & Power Units · 5 min read

How Does a Modern F1 Power Unit Divide Its Energy Systems?

A component diagram and rules-era comparison explain what the MGU-K, MGU-H, battery and engine do—and what a 350 kW ceiling does not mean.

DeanPublished 2026-10-05Data checked 2026-10-02
Lewis Hamilton driving the Mercedes-AMG F1 W13 at Imola during the 2022 Emilia Romagna Grand Prix
Illustrative photograph: Lewis Hamilton’s Mercedes W13 at the 2022 Emilia Romagna Grand Prix. The car is shown from outside; its hybrid power-unit components are not visible. Photograph: Roberto Monti. Original source Wikimedia Commons file CC BY-SA 4.0 Resized and compressed; no crop.

In this story

Category

TechnologyEngines & Power Units

At a glance
A modern F1 power unit combines a 1.6-litre turbocharged V6 internal-combustion engine with an energy-recovery system, energy store, control electronics and turbocharger. The 2026 rules retain the MGU-K but remove the MGU-H; the FIA lists a 350 kW maximum for the MGU-K. This is a component limit, not a guaranteed continuous electrical output on every part of a lap.

  • Engine1.6 L V6turbocharged ICE retained in 2026
  • MGU-K maximum350 kW2026 technical limit
  • MGU-HRemovedfrom 2026 regulations
  • Energy storeBatterystores recovered electrical energy

Follow the energy through the system

The internal-combustion engine (ICE) burns fuel to produce mechanical power. A turbocharger uses exhaust energy to compress intake air. The MGU-K, or Motor Generator Unit–Kinetic, can recover energy from the drivetrain during braking and later return electrical power to the drivetrain. That energy is stored in the battery, known in the regulations as the Energy Store (ES), and managed by control electronics.

Through 2014–2025, the system also included the MGU-H, which recovered energy from the turbocharger’s exhaust-driven turbine. The 2026 regulations remove it. The FIA and Formula 1 describe the new direction as a larger electrical contribution alongside a simplified system. In broad explanations this is often summarized as a roughly 50:50 split between combustion and electrical power, but that is an overall design objective, not a fixed output ratio at every speed or point on track.

What changed in the published limits

Selected power-unit architecture and MGU-K figures
Item 2014–2025 rules 2026 rules How to interpret it
ICE 1.6-litre turbo V6 1.6-litre turbo V6 retained Combustion engine remains a central source of power
MGU-K maximum power 120 kW 350 kW Regulation ceiling; usable deployment is also governed by energy and operating rules
MGU-H Present; recovers exhaust heat energy through the turbo system Removed One energy-recovery subsystem is no longer part of the 2026 package
Energy store Electrical energy store Electrical energy store Stores recovered energy for controlled deployment

The FIA’s current technical rules set a maximum MGU-K power of 350 kW. The regulations and their 2026 refinements also constrain when and how electrical power can be deployed. In April 2026 the FIA announced an update: MGU-K deployment remains at 350 kW in key acceleration zones, while it is limited to 250 kW elsewhere. Maximum permitted recharge was reduced from 8 MJ to 7 MJ per lap under that refinement. Those operating limits matter: a 350 kW headline is not the same as 350 kW available continuously through a lap.

Why a lap is an energy-management problem

Energy recovery and deployment connect braking zones to acceleration zones. A driver may harvest energy while slowing, store it, and use electrical output later. The power rating describes a rate of energy transfer; the megajoule limit describes an amount. They use different units and answer different questions. For example, 350 kW is 350 kilojoules per second of power, while 7 MJ is a per-lap energy quantity under the 2026 refinement.

That arithmetic does not predict a particular lap time. Actual deployment depends on FIA operating restrictions, energy recovered, battery state, speed, circuit profile and the team’s control strategy. Public regulations define limits; they do not reveal the confidential energy maps of Mercedes, Ferrari or another manufacturer. Race telemetry may show selected signals, but it is not a full internal power-unit data stream.

For a related look at published evidence limits, read our telemetry guide. See how wings trade downforce and drag and browse the Technology hub for other car systems. These components work together, so a power-unit specification alone cannot explain a car’s race performance.

Sources and method

Primary technical source: FIA 2026 Technical Regulations, Section C, Issue 20 (5 August 2026), including the power-unit definitions and C5 energy-flow requirements. Official context: Formula 1’s 2026 power-unit explainer. The revised limits are from the FIA’s 21 April 2026 regulations-refinement announcement. The chart compares FIA maximum MGU-K power limits for two rules eras (120 vs 350 kW); it is not a measurement of delivered race power. The 2026 recharge limit (7 MJ/lap) is shown in prose because it is a different quantity and must not share the chart scale.

Championship snapshot

Standings

Season 2026 · Round 15

Drivers

Points
  1. 1Kimi AntonelliMercedes302
  2. 2George RussellMercedes236
  3. 3Lewis HamiltonFerrari199
  4. 4Lando NorrisMcLaren186
  5. 5Charles LeclercFerrari179
  6. 6Max VerstappenRed Bull Racing163
  7. 7Oscar PiastriMcLaren120
  8. 8Isack HadjarRed Bull Racing86
  9. 9Liam LawsonRacing Bulls59
  10. 10Pierre GaslyAlpine41

Constructors

Points
  1. 1Mercedes538
  2. 2Ferrari378
  3. 3McLaren306
  4. 4Red Bull Racing263
  5. 5Racing Bulls83
  6. 6Alpine68
  7. 7Haas F1 Team27
  8. 8Audi17
  9. 9Williams12
  10. 10Aston Martin3

Snapshot: 2026-09-30 01:26 UTC

Driver standings sourceConstructor standings source

Dated snapshot; not a live timing feed.

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