StakeWise Boost
Extra yield, without doing the work.
Boost uses the Aave lending market to dramatically increase your staking position with one click, taking advantage of the difference between the Vault staking APY and the ETH borrow rate.
Example
Boost economics
Assuming 1,000 osETH deposited into Boost
Timeline
Strategy dynamics over time
The amount of osETH that can be deposited into Boost depends on the headroom remaining before the osETH supply cap on Aave is filled.
Staked ETH deposits take time to activate on the Beacon Chain, which can reduce the Vault's APY (and, therefore, Boost APY) for the duration of the entry queue if the deposit is too large relative to existing Vault TVL.
After the entry queue clears, Boost APY follows Vault APY, less osETH fees and Aave ETH borrow APY.
Unboosting triggers validator exits, which take time to be processed by Ethereum's exit queue and can dilute Vault APY during the sweep delay.
External drivers
What drives Boost APY
If more ETH is waiting to join the validator set, newly boosted ETH takes longer to become productive. That can lower the first stretch of returns.
The exit queue affects how quickly a Boost position can be unwound, and Boost APY may be reduced during the sweep delay.
If ETH becomes expensive to borrow, Boost can earn less or even turn negative until the rate normalizes.
Consensus rewards are shared across active validators, so a larger active balance generally reduces the base reward rate.
If added ETH is large relative to current Vault TVL, rewards will be spread over more assets before all added ETH is earning, diluting Boost APY while in the entry queue.
When Aave has little remaining osETH capacity, new Boost openings can be constrained even if existing Boost positions continue.
Guardrails
Built-in protections for depositors
Aave uses a StakeWise native osETH price feed, so volatile market price moves in ETH or osETH do not affect the strategy.
StakeWise automatically unboosts positions at 94.5% LTV to avoid liquidations driven by a large, sustained negative spread in rates.
Explainers
Additional reading on Boost
A practical product overview of Boost mechanics, risks, and built-in guardrails.
Open docs
Explains where the extra yield comes from and why the strategy can be attractive to depositors and Vault operators.
Open case study
Covers the LTV buffer, automatic unboosting, and the conditions that can pressure Boost returns.
Open safety studyInputs
Sorted by TVL, highest first.
Enter the amount of osETH to estimate Boost impact for the chosen Vault.
Boost performance
Genesis Vault, rolling 7 days, last 180 days.
Model portfolio performance
Index starts at 100 and compounds daily Boost and fully staked performance.
Aave ETH utilization
Choose manual utilization assumptions or a supplier-withdrawal event month.
Queue simulation
Drag monthly entry and exit queue points to shape the next 12 months.
Projections
Estimated Boost outcome over next year
+0.00 ETH
Show waterfall
Expected Boost APY
Projected from Vault APY, Aave borrow APY, queue duration, selected LTV, and Vault TVL inputs.
Projected model portfolio performance
Index starts at 100 and compounds projected Boost APY against simple Vault staking.
Network active effective balance
Monthly endpoints from daily queue-driven activation and exit flow.
Expected Vault APY
Derived from expected ETH.STORE APYs, net of the Vault fee and including any selected rebate.
Estimated Aave ETH borrow APY
Projected from the utilization path selected in Inputs using the current Aave WETH interest-rate curve.