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Escapement

Drop, Lock, and Lift

The geometry of the Swiss lever in three numbers watchmakers obsess over: drop (lost motion), lock (safety margin), and lift (the impulse gift).

This is the deep-dive companion to The Swiss Lever Escapement.

Ask a watchmaker how the escapement is adjusted and you will hear three words: drop, lock, and lift. They are angles and clearances measured in hundredths of a millimeter, and they decide whether a watch runs for decades or stops by lunch.

Drop

Drop is the free fall of a tooth from one pallet stone to the next after impulse — plus the corresponding drop across the fork at the balance end. Drop must exist (otherwise the tooth would drag on the stone) but every bit of it is wasted motion: the tooth falls and knocks, dissipating energy as sound and heat.

  • Too much drop: audible knocking, lost impulse, low amplitude.
  • Too little drop: the tooth lands on the corner and drags — friction, then stoppage.

Watchmakers measure drop as the angle the escape wheel moves between “tooth just leaving” and “tooth just landing.” Healthy drop is a sliver.

Lock

Lock is how deeply a tooth rests on a pallet stone when the escapement is at rest. Lock serves the safety action: it guarantees the fork stays pinned against its banking while the balance is detached.

  • Lock depth is set by the pallet stones’ radial position and the fork’s horn.
  • Draw — the locking face’s slight angle, plus the fork’s banking spring bias — pulls the fork against the banking pin instead of letting it float.
  • Insufficient lock + no draw = the classic “trip”: a jar throws the fork to mid-stroke and the watch double-unlocks, momentarily running wild.
  • Excessive lock = heavy unlocking friction, low amplitude, rate sensitivity to position.

Lock is checked with a special gauge or by eye and feel at the bench — the tooth must rest on the face, not at its edge.

Lift

Lift is the impulse gift: the combined angles of the pallet stone’s impulse plane and the fork slot / impulse jewel geometry that translate the train’s torque into the balance’s swing. The lift angle (typically 45–52° total, movement-specific) is what a timegrapher needs as an input to compute amplitude correctly.

Lift trades against safety:

More lift Less lift
bigger impulse, higher amplitude less unlocking friction
more sliding friction per impulse lower amplitude, more positional variance
faster pallet wear less pallet wear

There is no free optimum; there is only the movement’s design point — and oil. Impulse surfaces are oiled with microscopic amounts of light oil (and epilame-treated so it stays), because sliding friction is only tolerable when cushioned. When the oil migrates away — see Friction and Lubrication — the rate sags and the watch joins the service queue.

The three numbers together

A healthy escapement: drop barely audible, lock firm but not deep, lift angle as designed, amplitude 260–310° in dial-up. That signature on a timegrapher — two clean, parallel lines — is the sound of three hundred years of geometry behaving itself.

Tags: escapement physics lubrication service