Thermoregulated sprung balance resonator
The balance-spring is structured by photolithography and etching in a strip pre-cut from a quartz monocrystal such that the height h of the coils form, with the crystallographic axis z, an angle θ for adapting the thermal behaviour of the balance-spring to that of the balance, thereby reducing the variation of rate due to temperature variations.
1. A sprung balance resonator for a mechanical watch movement including a balance-spring with an elasticity constant C and a balance with a moment of inertia I, wherein the balance-spring is formed of coils of height h made from a strip of a single quartz monocrystal, and
wherein the quartz is in crystallised form along crystallographic axes x y z, axis x being the electrical axis and y the mechanical axis.
2. The sprung balance resonator according to claim 1 , wherein the strip of quartz is cut along a plane x y′ formed by rotating plane x y by an angle θ about axis x.
3. The sprung balance resonator according to claim 2 , wherein the angle θ has a value comprised between +25° and −25°, preferably between +10° and −15°.
4. The sprung balance resonator according to claim 3 , wherein the limit values of angle θ allow the elasticity constant of said balance-spring to be adjusted to the thermal expansion coefficient of the balance.
5. The sprung balance resonator according to claim 2 , wherein the elasticity constant C of the balance-spring and the moment of inertia I of the balance are matched, as regards their thermal features, by selecting an appropriate value for angle θ.