Top quality imitation Audemars Piguet Royal Oak Chronograph Watch 26320ST.OO.1220ST.03 review
Reviewing replica IWC watches is always a delight to me because of unique they manage to make their premium will always find something or a couple of things that seem to only exist in one particular will be doing a replica IWC Pilot’s cronografo IW370603 by the name alone,you know it is a watch to be reckoned with.
Now,let’s introduce another watch,replica Audemars Piguet Royal Oak Chronograph Watch 26320ST.OO.1220ST.03 is similar to it,about Audemars Piguet Royal Oak RD#2 Perpetual Calendar Ultra-Thin,Audemars Piguetâ€™s press release wasnâ€™t exactly clear about this, as they called this new Royal Oak RD#2 Perpetual Calendar Ultra-Thin â€œthe thinnest self-winding perpetual calendar on the market today.â€ They also called the movement record thin at 2.89mm thick. These two pieces of information told me that while the movement was record thin, there might have been another self-winding perpetual calendar watch made before that, all cased up, that was thinner than this 6.30mm thick Royal Oak case.
When checking up on this during the one on one presentation, I was told that nope, this indeed is the thinnest automatic perpetual ever â€“ and that holds true for both the uncased movement as well as the cased-up watch itself. I personally donâ€™t care too much for such records until things start getting ridiculous (like they did with the 2mm thick cased-up Piaget that Iâ€™ll cover soon). A record is always impressive, but a variety of other features and elements should in my mind be just as, if not more important than achieving a smaller number.
More interesting than â€œrecord-shatteringâ€ thinness is the way Audemars Piguet achieved it. As it turns out, the RD#2â€™s design process started from the outside: it was Giulio Papi of Audemars Piguet skunkworks APR&P who first sketched the layout of the dial and it was only after this, that they started engineering the movement layout. That is not how this is usually done, and especially not when it comes to the levels of complexity of a perpetual calendarâ€¦ But I presume when you have extensive experience and a list of achievements under your belt like Giulio Papi does, you start looking for new challenges.
It goes without saying that the mechanism trusted with moving all six indications of the perpetual calendar is nothing short of amazing â€“ but itâ€™s entirely hidden under the dial. I was equally humbled and surprised when APâ€™s two watchmakers appeared to be genuinely fascinated by my suggestion of a partially sapphire (or open-worked) dial for this watch. They are either really good at acting â€“ in which case thank you for making my day â€“ or just really havenâ€™t yet thought about showing off this particular mechanism in such a way.
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