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Planned Obsolescence and the Regulatory Response

Most products die from design choices rather than sabotage. What EU law now prohibits, what it merely discourages, and what a passport makes visible.

CirculeID Research6 min read1,329 words

Planned obsolescence covers design and commercial practices that shorten a product’s useful life. Directive (EU) 2024/825 does not prohibit it as a concept, because intent is hard to prove. It instead names specific unfair practices, including withholding known durability-limiting information and presenting optional software updates as necessary.

What this gives you

The four mechanisms that actually shorten product life, which are now prohibited rather than merely criticised, and what to publish so your product is not assumed guilty.

Key takeaways

  • Deliberate sabotage is rare; design decisions that shorten life for other reasons are common.
  • Directive (EU) 2024/825 prohibits specific practices rather than obsolescence in general.
  • Software support expiry now ends more products than mechanical failure does.
  • Parts pairing and spare parts pricing are the two most litigated mechanisms.
  • Publishing expected lifetime and support duration is the practical defence.

Planned obsolescence is discussed as though it were a conspiracy and is mostly not one. Products fail early because of decisions taken for cost, aesthetics or commercial convenience, each defensible in isolation, whose combined effect is a shorter life.

That matters for how it is regulated. You cannot legislate against a motive that is difficult to prove, so the EU has instead prohibited specific practices and required disclosure of specific facts.

What are the actual mechanisms?

How products are shortened in practice, and whether the effect is deliberate
MechanismHow it shortens lifeUsually deliberate?
Software support endsDevice becomes unsafe or incompatibleA commercial decision
Parts unavailableRepair impossible after a short windowInventory economics
Spare parts priced highRepair uneconomic against replacementMargin policy
Parts pairingGenuine part rejected without authorisationDeliberate, justified variously
Adhesive assemblyDisassembly destroys the productCost and thickness
Consumable integrationWhole unit replaced when one part wearsDesign simplification
Fashion cyclesProduct replaced while functionalMarketing, not engineering
How products are shortened in practice, and whether the effect is deliberate

Only the fourth row is unambiguously deliberate, and even there the stated justification is usually security or safety. The rest are ordinary engineering and commercial choices whose consequence is a shorter life that nobody explicitly decided to cause.

What does EU law now prohibit?

Directive (EU) 2024/825 amends consumer protection rules to name specific practices as unfair. It does not prohibit obsolescence as a concept, which would be unenforceable, and instead targets conduct that can be demonstrated.

  • Failing to inform consumers about a feature that limits durability, where the trader knows of it.
  • Presenting a software update as necessary when it only improves functionality.
  • Claiming a product has a certain durability when it does not.
  • Presenting goods as repairable when they are not.
  • Inducing a consumer to replace consumables earlier than technically necessary.

The first is the most consequential and the least discussed. If you know a design feature limits life, saying nothing is now itself the offence, regardless of why the feature exists.

Software is where this now lives

For connected products, support expiry retires more hardware than any mechanical cause. A device that no longer receives security updates cannot be safely connected, and one that receives updates written for newer hardware may become unusably slow.

The regulatory response has been to require declared support periods rather than to police intent, which is the same disclosure strategy applied elsewhere. The mechanics are covered in firmware, software updates and product longevity.

Parts pairing, specifically

Parts pairing is where a genuine replacement component does not function until authorised by the manufacturer’s software. It is the mechanism most clearly identified as obstruction, and Directive (EU) 2024/1799 addresses it directly.

Justifications offered are usually security, calibration or safety, and some are genuine. The test that regulators apply is whether an authorised repairer performs the same operation without difficulty, which distinguishes a real technical constraint from a commercial gate.

The consumable problem

Integrating a wearing component into a larger assembly means the whole assembly is replaced when the small part fails. This is often a genuine design simplification that reduces cost and failure points, and its life-shortening effect is real regardless of the motive.

Where the integrated part is one the manufacturer sells as a replacement, the incentive is uncomfortable enough that disclosure obligations now apply. Stating the expected life of the consumable and whether it is separately replaceable is the straightforward response.

What should a manufacturer publish?

  1. Expected product lifetime, stated as a figure with the basis for it.
  2. Software support expiry as a date, where the product is connected.
  3. Which components are user or professionally replaceable, and which are not.
  4. Spare parts availability period and indicative pricing.
  5. Any known design feature that limits durability, which is now an obligation.

The fifth item is the one legal teams find uncomfortable and it is now the safer position. An undisclosed limiting feature discovered later is an unfair practice; a disclosed one is a product characteristic a buyer accepted.

Why fashion cycles are outside all of this

A large share of replacement happens while the product still works. Phones, clothing and furniture are frequently discarded because they are no longer wanted rather than because they have failed, and no durability requirement addresses that.

This is sometimes called psychological obsolescence, and regulation touches it only at the edges through claims rules. The interventions that work here are commercial rather than legal: resale markets that give a functioning product a second owner, and business models where the manufacturer retains the asset.

That is why item-level identity matters beyond compliance. A product that can be identified and its history retrieved can be resold with confidence, which converts a discarded working item into a transferred one.

How the passport changes the argument

It makes lifetime claims checkable. Where expected life, support duration and parts availability are published as structured data against a product, a claim can be compared with what actually happened to units in the field.

That cuts both ways and is worth saying plainly. A manufacturer whose products outlast their stated life gains evidence for a durability claim; one whose products fail early has published a figure that can be held against it.

Frequently asked questions

Is planned obsolescence illegal in the EU?

Not as a concept, because intent is difficult to prove and unenforceable in practice. Directive (EU) 2024/825 instead names specific practices as unfair, including withholding known durability-limiting information, presenting optional software updates as necessary, overstating durability, presenting goods as repairable when they are not, and inducing early replacement of consumables.

Is most early product failure actually deliberate?

Rarely. Most shortening comes from ordinary decisions about cost, material thickness, assembly method and spare parts inventory, each individually defensible and collectively life-shortening. Parts pairing is the clearest deliberate mechanism, and even there the stated justification is usually security or calibration rather than an admitted commercial preference.

What is the biggest cause of early retirement today?

Software support ending, for anything connected. A device without security updates cannot safely be used on a network, and one receiving updates written for newer hardware may become unusably slow. Neither is a mechanical failure, and neither would be caught by durability testing.

Do we have to disclose design features that limit life?

Yes, where you know of them. Failing to inform consumers about a feature limiting durability is named as an unfair practice, which makes non-disclosure itself the offence regardless of why the feature exists. A disclosed limitation is a characteristic the buyer accepted.

When is parts pairing acceptable?

Where a genuine technical requirement exists, such as calibration or safety, and the justification is more than commercial. The test regulators apply is whether an authorised repairer performs the same operation without difficulty, which separates a real constraint from a gate that only excludes independents.

Does publishing an expected lifetime create risk?

It creates accountability in both directions. A published figure can be compared against what happens to units in the field, so a manufacturer whose products outlast the claim gains evidence for durability, and one whose products fail early has stated something that can be held against it.

Sources

  1. Directive (EU) 2024/825 on empowering consumers for the green transitionEUR-Lex, European Union, 2024-02
  2. Directive (EU) 2024/1799 on common rules promoting the repair of goodsEUR-Lex, European Union, 2024-06
  3. Regulation (EU) 2024/1781 establishing a framework for ecodesign requirementsEUR-Lex, European Union, 2024-06

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