Digital Asset Database Digital asset research & education
BTC$77,103-0.11% ETH$2,383-1.11% USDT$0.9997+0.01% BNB$686.39+0.97% XRP$1.35+0.16% USDC$0.9998+0.01% SOL$99.68+0.05% TRX$0.3245+0.62% FIGR_HELOC$1.01+0.03% HYPE$81.59-0.85% ZEC$810.98-2.09% DOGE$0.0812-0.35% RAIN$0.0167+0.80% USDS$0.9999+0.01% XMR$504.59+2.10% LEO$9.24-1.37% WBT$70.62-0.56% LINK$11.07-0.95% ADA$0.1986+1.86% XLM$0.1744-0.29% BCH$242.83-0.73% DAI$0.9998+0.01% CC$0.1091-3.88% USDE$0.9995+0.01% USD1$0.9993+0.00% LTC$49.61+0.04% GRAM$1.33+1.17% UNI$5.85+1.01% HBAR$0.0741+0.34% USDG$1.00+0.04% AVAX$7.16-0.34% SHIB$0.00000515+0.44%
Menu
Home
Assets All assetsSectorsRankingsHeat mapScreenerCompare assets★ Saved
Fundamentals Fees & revenueValue lockedExchange volumeNetwork activityStablecoinsStaking & yield
Valuation Valuation ratiosSupply & issuanceMetric definitions
Institutional Exchange-traded productsCorporate treasuries
Research Research notesEvents calendarRisk frameworkSecurity incidents
Learn Learn libraryGlossaryCalculatorsMethodologyData sourcesData freshnessAI agentsPublic API
News Ask the data Global market About us
Reading options
Photography CryptoStudio
Guided view

New to markets — prices, yields, market cap? We explain every term as you browse, in plain English. Same data, with the help built in.

Expert view

You already know the market. Just the data — clean, fast and compact, with no extra explanations. This is the default view.

Light or dark
Language
Public API

Every figure on this site is available as JSON, with its period and source attached.

Read the API docs
Supply and issuance Working knowledge 6 min

Halvings and other supply events fixed years in advance

Some supply changes are written into protocol rules and knowable years ahead, which changes how they can be studied and what conclusions survive.

A scheduled supply event is a change in the rate of issuance that is determined by protocol rules rather than by a decision taken at the time. Bitcoin's halving is the best known: the block subsidy is cut in half every 210,000 blocks, a step that has been in the software since the chain began in 2009. Because the rule is public and the block count is public, the date is estimable long in advance, and nobody involved has to be consulted.

How the halving actually works

Bitcoin pays the producer of each block a subsidy that started at 50 units and halves at fixed block intervals, alongside whatever fees the block's transactions carry. The interval is counted in blocks, not in time, so the calendar date drifts with how fast blocks arrive. Block production is held near a target average by difficulty adjustment: the network periodically re-tunes how hard the proof of work puzzle is, based on how quickly recent blocks were found. More hash rate makes blocks arrive faster until difficulty rises to compensate.

The halving therefore has an approximate date and an exact block height. Estimated dates published months ahead are projections built on recent block times, and they move.

Two consequences follow directly. Because the subsidy halves repeatedly and each interval is fixed in blocks, the cumulative issuance approaches a limit rather than growing without bound, which is where Bitcoin's maximum supply of slightly under 21 million comes from. And because the subsidy shrinks toward nothing while fees do not, the composition of miner income shifts over decades from issuance toward transaction fees. That shift is a well-understood open question about long-run network security, discussed on its merits rather than settled.

Other events written into the rules

Halvings are one shape of emission schedule. Others include smooth decay curves that reduce issuance a little every block, fixed-rate issuance with no reduction at all, and rules that make issuance depend on network state. Proof-of-stake chains commonly use the last of these: issuance is a function of how much of the supply is bonded, so the rate adjusts as participation changes rather than following a calendar. On such a chain there is no halving to anticipate, and the issuance rate is an output of behavior.

Some scheduled changes come from upgrades rather than from the original design. Ethereum's EIP-1559 in 2021 began destroying the base fee of every transaction, which made net supply change depend on usage. The Merge in 2022 replaced proof-of-work block rewards with validator rewards, and validator rewards are much smaller per block, so the chain's issuance fell sharply at a known moment. Both were announced well ahead, implemented at a defined point, and verifiable afterward on the chain.

Why "known in advance" is the interesting part

Scheduled supply events are rare among financial events in being fully specified before they occur. No one has private information about the rule. Everyone can compute the new issuance rate. This matters for how such events can be studied at all.

The temptation is to line up past halvings against subsequent price paths and extrapolate. That analysis faces problems severe enough to name explicitly. The sample is tiny: a handful of events across a period in which the asset also went from obscurity to regulated exchange-traded products in January 2024, so nothing is held constant. The events are not independent, since each occurs in the market structure the last one helped create. And any pattern visible to everyone is available to everyone in advance, which is a different situation from a surprise. This site does not publish halving-based price projections, and none of the supply metrics here are constructed to support them.

What can be said cleanly is narrower and more useful. A halving changes miner revenue per block immediately and mechanically. It changes the rate at which new units reach an actor with external costs. It changes the ratio of fee income to subsidy income, which is measurable. Those are statements about supply and about mining economics, not about price.

The mining side of the event is the part with the clearest chain of cause and effect. Miner income per unit of computing power falls by the subsidy share on the day the height is reached, while electricity contracts and hardware financing do not change. Operations whose costs sit above the new income level face a decision about whether to keep machines running, and hardware that is switched off reduces hash rate, which lowers difficulty at the next adjustment and raises the income per unit of the remaining computing power. That feedback loop is a described property of the system rather than a projection, and its speed is set by the adjustment interval.

Reading the numbers around a scheduled event

Blocks per day and the next difficulty adjustment together indicate whether the chain is running ahead of or behind its target pace, which is what shifts the estimated date. Hash rate describes the computing power committed to the chain. Daily issuance converts new units into a currency amount, and it is worth remembering that this figure moves with price as well as with the schedule, so a change in it after an event mixes two causes.

For chains without halvings, the same questions are answered by the annualized inflation rate and by the burn that offsets it. A scheduled step is easier to see than a gradual drift, but the gradual drift can be larger over the same period, and an asset with no halving and steady low issuance can add less supply over a decade than one with a headline halving and a high starting rate.

One caution applies to every series measured around a scheduled event. The event has an exact block height and an approximate date, so any comparison anchored to a calendar day mixes the event with whatever else happened that week. Anchoring to the block height instead removes that particular ambiguity, and it does not remove the others: activity, fees and market structure all move for reasons unrelated to the schedule, and a single event provides no way to separate them.

The calendar lists estimated heights and dates for scheduled supply events, and the Bitcoin asset page shows the issuance and difficulty series behind them. The next lesson deals with supply events that are not written into any protocol: vesting cliffs and unlocks.

01

What to take away

Bitcoin's subsidy halves every 210,000 blocks, so the event has an exact block height and only an estimated calendar date.
Difficulty adjustment keeps block production near a target pace, which is why estimated halving dates drift as hash rate changes.
Repeated halving at fixed block intervals is what produces a finite cumulative supply rather than a growing one.
Proof-of-stake chains often set issuance as a function of how much supply is bonded, so there is no scheduled step to anticipate.
Scheduled events are fully public in advance, and the small, non-independent sample of past halvings does not support extrapolation to price.

Assets

All assetsSectorsRankingsHeat mapScreenerCompareSaved

Fundamentals

Fees & revenueValue lockedExchange volumeNetwork activityStablecoinsStaking & yield

Valuation & risk

Valuation ratiosSupply & issuanceMetric definitionsRisk frameworkSecurity incidents

Institutional

Exchange-traded productsCorporate treasuriesEventsResearch notesNews

Learn

Learn libraryGlossaryCalculatorsAsk the dataAI agentsPublic API

About

About usContactMethodologyData sourcesEditorial policyData freshness

Legal

DisclaimersTerms of usePrivacy policy