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Enter to Search. A bigger brother of this app.If you need frequency diagram look at Watch Tuner Timegrapher - the most sophisticated app of Watch Tuner series. And install iOS apps. Watch Tuner Timegrapher app? Hmmm, for me the app was very reliable, but not via the crown. I would actually take the back off the case and lay the microphone across the open back while regulating and adjusting. I have been using the Hairspring App for Iphone/Ipad. It works okay for timing. You get a pretty good idea of how fast/slow your watch is running without having to wait for 12-24 hours if you were timing manually. It works well with large, burly watches with a standard apple headset/microphone. I cannot get it to work so well on smaller cases.
I've recently been playing with an iOS app called 'Timegrapher- watch Tuner'. There are a handful of watch regulation apps out there but this caught my eye because of the time variance graph display in the same vein as a hardware timegrapher. look-So what does it do?
Essentially you use an external microphone mechanically coupled to the watch. The app 'listens' to the watch heartbeat and provides diagnostic information. You enter the lift angle for your movement (50-53 degrees usually) and can manually set the sensitivity/gain of the microphone input to optimise the cleanliness of the audio recording. Setting the sensitivity and adjusting the position of the microphone is helped by the displays of counted 'ticks' and that same display turns red when it receives data samples (noises) which it thinks are erroneous and discards those so as not to throw the results.
The app determines the movement's bph (28800 for most of my watches) and gives an estimate of amplitude (the slew angle the balance swings over) and of the phase error (the variance between successive ticks and tocks in milliseconds).
![Timegrapher for pc Timegrapher for pc](/uploads/1/3/4/0/134067410/708657356.png)
It displays the graph of fork noises over a timebase of 30 seconds (the timebase is different to whether you are using an iPhone or iPad due to the different screen real estate)— from which you can visualise from the cleanliness of the two lines an understanding of the health of the escapement.
The slope of the lines illustrates a gain or loss of time— and a separate reading shows the actual estimate error in seconds per day.
There's a youtube clip of the software in use with an iPad at https://www.youtube.com/watch?v=U4ilJo3Bi4Y
Any good?
Well, it's interesting. Getting a good audio feed into the iPhone/iPad is critical. Any noise shows as a disturbance to the line graph which could be misinterpreted as an issue with the movement. Best results are taking the measurements in a completely quiet environment and covering the watch and microphone with a folded towel or such to dampen external noise. Some of the best results are obtained by using the Apple earphones with integrated microphone and resting the watch crown on the microphone- there seems to be good mechanical/accoustic coupling between the movement and the crown- possily because the winding stem seals mechanically isolate the tiny vibrations to the world outside the case. I've also had good results using an external microphone and using an elastic band to fasten the microphone to the caseback which also enables easily changing the orientation of the watch- crown up, down, 12 up, down etc.
Once a good signal is obtained. the readings are quite believable. I could quite clearly determine the difference in regulation between orientations— and confirmed my suspicions that my ETA2824-2 movement would speed up during the day by 2-4seconds per day but that could be negated by leaving it crown—up during the night.
As far as the graph goes— apart from the dependency on a quiet environment, it looked about right for a newish clean, well regulated swiss movement. I don't have a hardware timegrapher to compare it against (would be very grateful for a loan to make a comparative check if anyone has one please! ) so I can't draw many conclusions on accuracy, but I do suspect the transducer in the bespoke device would help enormously.
Would I recommend it?
For a fellow geek, absolutely to have a play and get a better understanding of their devices. It seems quite capable of getting a good feel for the variance with orientation, spotting significant issues and potentially couid be used to get a good enough simple regulation of a heaithy movement.
Good enough for serious work?
No, probably not but that's probably due to the microphone pickup. Proper regulation involves not only setting the overall seconds—per—day but also the balance mid—point in those movements which have that facility. That's done by observing the distance between then two parallel lines in the timebase display and the 'beat error' reading. If you don't have a clean view of the two parallel lines due to externai noise, that makes it quite tricky.
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Hope that's of interest.Rich.
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How To Regulate Your Own Watch
We’re all watch enthusiasts here. It would be nice if you wouldn’t have to go to your watchmaker for every little thing.
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This article explains how to regulate a watch and specifically on how to correct the rate.
What’s the rate?
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Your mechanical movement has a set of gears, called the train wheel and the mainspring powers this. The last gear in this train is the escape wheel.
The pallet fork locks and unlocks the escape wheel, so the train wheel advances the required amount.
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![Timegrapher Timegrapher](/uploads/1/3/4/0/134067410/155754479.jpg)
When the gears in the train wheel turn too fast, the watch will gain time, and when they turn too slow, it’ll lose time.
The rate, therefore, is the frequency of the pallets locking and unlocking the train wheel. You can adjust this with the balance. Waves mercury mac dmg crack.
The balance has several parts, but the most important ones for the rate are the balance wheel, the hairspring, and the impulse pin.
The balance wheel swings left and right with the help of the hairspring, and with every pass, the impulse pin engages with the pallet fork to advance its position. Mac app radio online. https://ergotree914.weebly.com/blog/download-adobe-creative-cloud-2015-mac.
You can imagine that with a longer swing, the pallet fork will be engaged less so the rate will drop. Of course, the opposite is also true.
How to measure the rate?
There are several ways to measure the rate.
- One is to synchronize your watch with an accurate clock (perhaps a radio-controlled clock or the clock on your computer). Come back after 24 hours and look for any time gained or lost. This method isn’t very reliable, but if you have no other options, it could work.
- Another way is to time your watch with a digital stopwatch. It could even be an app on your smartphone. Check after 10 minutes and multiply the result with 6. Now you know the discrepancy per hour. You’ll agree that this method is even more unreliable than the previous one.
- The most accurate way is to use a timing machine. Either a Swiss one (Witschi or similar) or an Asian one (Timegrapher or similar).
The Swiss timing machines are of better quality and are more precise. They also have more options to select and display and are, therefore, the obvious choice for professionals. For an amateur or hobbyist, however, a Timegrapher from eBay is an excellent choice to measure and display the rate.
A Timing machine “listens” to the vibrations in the movement and translates them into lines of dots. Lines that have an upward angle show that the watch is gaining time, and a downward angle indicates the watch is losing time.
How to correct the rate?
As I mentioned, the rate is the speed in which the pallet fork locks and unlocks the train wheel.
With every passing of the balance wheel, the impulse pin engages and releases the pallet fork to push it into the next position.
That means that a shorter swing will cause the watch to run faster and a longer swing will do the opposite.
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A shorter swing can be accomplished by shortening the effective length of the hairspring. You can do this with the regulator.
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Watch Timegrapher
The regulator has two regulator pins which guide the first winding of the hairspring.
Moving these pins towards the stud (the beginning of the hairspring and secured to the balance cock) will effectively lengthen the spring.
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That’ll make the watch run slower, and moving the regulator away from the stud will make the watch run faster.
Some final advice
- Don’t fret about a couple of seconds. Everything between 0 and +10 sec per 24 hours is excellent. Remember that not all movements can be regulated perfectly, especially vintage timepieces. Often you have to compromise.
- Move the regulator very gently and slowly. If the hairspring gets caught between the pins while you keep pushing, you’ll bend and kink it. That’ll ruin the hairspring and, therefore, your watch.
- Remember to manipulate the regulator and not the mobile stud holder (if it has one). If you manipulate the mobile stud holder, you’ll modify the beat error, and that can’t be corrected without a timing machine.
Do you have any tips on how to regulate your watch? Leave them in the comments below.
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