![]() In this case, a mainspring offering the same torque in all conditions means a movement that always operates at the desired speed. The source of the problem can be defined as the spring trying to rotate the wheels with varying torque values at different times. In practice, not everything goes this smoothly. To eliminate this imbalance issue, a balance fork, working with the logic of a pendulum, ensures that the energy stored in the spring is transferred to the wheels in a controlled manner. Naturally, imbalances can happen in power transmission. ![]() As the power in the mainspring decreases over time, the torque value gets transferred by this wire to other parts decreases as well. Naturally, it applies a very high torque to the moving parts of the movement. The mainspring in the above paragraph has the maximum potential energy in its fully-wound state. Seiko claims that they offer the most accurate mechanical movement ever with the Caliber T-Zero. The accuracy wars, which has been a phenomenon since the invention of the mechanical watch, continues its popularity as one of the most sought-after subjects of the watch world even after centuries. There are dozens of details in a movement that can affect the accuracy of a watch, directly or indirectly. ![]() Here, this wire, which is wound by hand or through a rotor, provides the energy required for all mechanical watches to operate. At the same time, you quickly discharged the energy from the power source of your mechanical watch. Congratulations, you just converted potential energy into kinetic energy. ![]() Then suddenly pull your hand off the wire. Take a long and thin flat wire, twist it in a spiral, curl it well, continue until it is no longer curled. Grand Seiko, the powerful Far Eastern manufacturer in luxury watchmaking, introduced the world's most accurate movement.
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