rolex 3235 geht nachgang | The 3235 Movement and The Fix (3 years out)

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The Rolex Caliber 3235, a marvel of modern horological engineering, powers many of the brand's most popular models. Its introduction marked a significant step forward in Rolex's in-house movement development, boasting improved accuracy, power reserve, and overall robustness. However, like any mechanical timepiece, the 3235 is not immune to potential issues, and reports of timekeeping inconsistencies, specifically "Geht Nachgang" (losing time in German), have surfaced among owners. This article delves into the reported issues surrounding the Rolex 3235's accuracy, specifically addressing instances of time loss, exploring potential causes, and examining solutions. We will also analyze the specific case mentioned, a Deepsea 126660 experiencing a significant time loss after a period of inactivity.

The 3235 Movement and its Design Philosophy

The Rolex Caliber 3235 represents a significant advancement in Rolex's movement technology. It's a self-winding, mechanical movement with a 70-hour power reserve, a substantial improvement over its predecessor. Key features contributing to its improved performance include:

* Chronergy escapement: This patented escapement, made of nickel-phosphorus, offers superior efficiency and resistance to shocks and magnetism compared to traditional escapements. This contributes to the movement's overall accuracy and longevity.

* Paramagnetic blue Parachrom hairspring: This hairspring, made from a paramagnetic alloy, is less susceptible to magnetic fields, a common source of timing errors in mechanical watches. Its unique design also improves its resistance to shocks and temperature variations.

* Optimized geometry and lubrication: Rolex has meticulously engineered the 3235's components and lubrication system to minimize friction and maximize efficiency, contributing to its accuracy and extended power reserve.

These innovations contribute to Rolex's stated accuracy for the 3235, which is typically within -2/+2 seconds per day. This is a remarkable level of precision for a mechanical watch, demonstrating the brand's commitment to horological excellence. However, achieving this level of accuracy consistently relies on various factors, including proper maintenance, environmental conditions, and the inherent variability within individual movements.

KALIBER 3235 Gangnachlauf 4sek./min. (DEEPSEA 126660): A Case Study

The statement "KALIBER 3235 Gangnachlauf 4sek./min. (DEEPSEA 126660)" highlights a specific instance of significant time loss. A Deepsea 126660, a robust dive watch powered by the 3235, experienced a rate of -4 seconds per minute after being stored for 1.5-2 days. This is an exceptionally high rate of time loss, far exceeding the manufacturer's specified accuracy range. This case prompts several crucial questions:

* Was the watch properly wound before storage? Insufficient power reserve could lead to the watch stopping or exhibiting significant time loss upon restarting.

* Was the watch subjected to any unusual shocks or impacts during or before storage? Even minor shocks can affect the delicate balance of a mechanical movement.

* Were there any significant environmental factors during storage? Extreme temperatures or magnetic fields can negatively impact the movement's performance.

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