rolex hair | Rolex canada website rolex hair The tolerances involved in making the Parachrom Bleuhairspring are incredibly precise. It is a process which takes several days and goes through a number of phases, all while keeping variations in the spring to within 0.1 microns. If you were . See more Fields marked with * are required. Enter your booking details. Booking Reference (*)
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The hairspring in a mechanical watch is an incredibly thin coil of wire which, mounted in the center of the balance wheel, forms the balance assembly, otherwise known as the oscillator. It is the hairspring that keeps the balance wheel undulating back and forth at a precise rate as it locks and unlocks the escapement’s . See more
The very first steel hairsprings used decades ago left much room for improvement because they were significantly affected . See more
Until very recently, the Swatch Group-owned company, Nivarox held the virtual monopoly on hairspring manufacturing for the Swiss watch . See moreRolex first began to dabble in the world of silicon hairsprings in 2014 with the women’s caliber 2236. Also known as the “Syloxi Hairspring,” the new silicon hairspring promises similar accuracy, anti-magnetism, and temperature resistance as the Parachrom Bleu . See moreThe tolerances involved in making the Parachrom Bleuhairspring are incredibly precise. It is a process which takes several days and goes through a number of phases, all while keeping variations in the spring to within 0.1 microns. If you were . See more
The minute giant. This is our Syloxi hairspring. Crafted from silicon and introduced in 2014 on calibre 2236, it is entirely produced inside our Manufacture. The unique geometry of this oscillator’s component guarantees the chronometric precision of the watch.Rolex’s Parachrom Bleu hairspring performs this action an astonishing 28,800 times per hour, or beats per hour (bph). It is the pinnacle of precision engineering, with the integrity of the spring checked every step of the way.The minute giant. This is our Syloxi hairspring. Crafted from silicon and introduced in 2014 on calibre 2236, it is entirely produced inside our Manufacture. The unique geometry of this oscillator’s component guarantees the chronometric precision of the watch.Created in 1675 and credited to the work of Christian Huygens, the hairspring was, and remains, revolutionary in watchmaking. You can even say it’s responsible for taking the watch mainstream – as it made early pocket watches more portable, reliable and affordable objects to own.
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The Syloxi hairspring is the optimal silicon hairspring according to Rolex. The fruit of many years of research and carrying several patents, this particularly innovative hairspring makes full use of the potential of silicon technology and brings an exceptional level of precision and reliability. It completes Rolex’s range ofThe blue Parachrom hairspring, invented and developed by Rolex is a small yet important feature of Rolex’s movements, that most people will never see, but which plays an important role in the reliability and functionality of its movements. Let’s look closer at this Rolex invention and how it came about. Rolex Blue Parachrom HairspringRolex’s Parachrom Bleu Hairspring is an in-house hairspring comprised of a paramagnetic alloy – made from metal, not silicon. The technology behind this hairspring was first introduced by Rolex in 2000.
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Entirely manufactured in-house by Rolex, the Parachrom hairspring is insensitive to magnetic fields, provides great stability in the face of temperature variations, and remains up to 10 times more accurate than a traditional hairspring in case of shocks. One of the biggest leaps forward of the modern era arrived in 2000, when the Daytona received its first ever in-house built caliber, the Cal. 4130, complete with a new type of hairspring, known as the Parachrom.
Entirely manufactured in-house by Rolex, the Parachrom hairspring, barely one centimetre in diameter, is a strategic component that presents major advantages for the precision timekeeping of the movement: it is insensitive to magnetic fields, offers great stability in the face of temperatureThe Rolex hairspring is a spiral-shaped component that is part of the balance wheel assembly in a watch. The hairspring is designed to oscillate back and forth at a precise frequency, which is what determines the accuracy of the watch's timekeeping.
Rolex’s Parachrom Bleu hairspring performs this action an astonishing 28,800 times per hour, or beats per hour (bph). It is the pinnacle of precision engineering, with the integrity of the spring checked every step of the way.The minute giant. This is our Syloxi hairspring. Crafted from silicon and introduced in 2014 on calibre 2236, it is entirely produced inside our Manufacture. The unique geometry of this oscillator’s component guarantees the chronometric precision of the watch.Created in 1675 and credited to the work of Christian Huygens, the hairspring was, and remains, revolutionary in watchmaking. You can even say it’s responsible for taking the watch mainstream – as it made early pocket watches more portable, reliable and affordable objects to own.
The Syloxi hairspring is the optimal silicon hairspring according to Rolex. The fruit of many years of research and carrying several patents, this particularly innovative hairspring makes full use of the potential of silicon technology and brings an exceptional level of precision and reliability. It completes Rolex’s range ofThe blue Parachrom hairspring, invented and developed by Rolex is a small yet important feature of Rolex’s movements, that most people will never see, but which plays an important role in the reliability and functionality of its movements. Let’s look closer at this Rolex invention and how it came about. Rolex Blue Parachrom HairspringRolex’s Parachrom Bleu Hairspring is an in-house hairspring comprised of a paramagnetic alloy – made from metal, not silicon. The technology behind this hairspring was first introduced by Rolex in 2000.
Entirely manufactured in-house by Rolex, the Parachrom hairspring is insensitive to magnetic fields, provides great stability in the face of temperature variations, and remains up to 10 times more accurate than a traditional hairspring in case of shocks. One of the biggest leaps forward of the modern era arrived in 2000, when the Daytona received its first ever in-house built caliber, the Cal. 4130, complete with a new type of hairspring, known as the Parachrom.Entirely manufactured in-house by Rolex, the Parachrom hairspring, barely one centimetre in diameter, is a strategic component that presents major advantages for the precision timekeeping of the movement: it is insensitive to magnetic fields, offers great stability in the face of temperature
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