Funk 1200 Platter - clarifying misconceptions
With the platter still in prototype form, I had wanted to leave commenting till much closer to release but sufficient has been written encouraging an early response.
“Direct drive “turntables””.
“Paramagnetism(?)” (as opposed to diamegnetism, as opposed to ferromagnetism).
Lexan (polycarbonate) vs acrylic.
Flux leakage.
These and more have been introduced as potentially problematic.
The following thoughts are intended to help.
Let’s start with the DD turntable: This is but a motor with its attached load - we might call it a platter, (plastic, aluminium etc.) but it is just a load.
Now, at below £500 lest we forget, SL1200 was built to a price. People buy it because it is a value-for-money entry product.
it succeeds only because the size of its highly refined motor permits a high torque. This is SL1200’s true claim to fame.
Why entry product? For high end use its other features are mediocre - else why the need for a new arm, platter, isolation and so on?
Once upgraded, however, there is no doubting SL1200’s renewed capabilities but then all that’s left of the original is the motor!
But even the execution of the motor is left wanting…
Motor Design:
For a motor to work, there must be an associated magnetic field [sic].
SL1200’s drive coils are all but totally enclosed in the magnet’s rotor, with virtually no leakage. So, no adverse effects result from them.
Eddy currents: These occur only in metals subjected to a varying magnetic field.
SL1200’s platter and rotor magnet are one - they turn together - thus, no eddy currents are generated in the platter.
If a motor is shielded, then it is shielded. End of discussion.
If, however, a motor is unshielded, its magnetic field spreads out. SL1200’s rotor is not fully shielded; flux leakage is defacto.
Aluminium (“paramagnetic” or otherwise), can’t shield magnetic fields, which are actually detected through the platter at the record. This holds equally for copper.
We plot and measure field strength using Hall sensors but few of us have those in our kitchen drawers. Still, this field is high enough for a simple child’s compass to detect! Now, this is something you can all try with your aluminium platters.
It gets worse. The alternating poles of the rotor’s magnet produces an alternating field. This is close to the end of side but its interaction with cartridges is not easy to predict given different cartridge sensitivities and designs. What is certain is that this not what we want from a high end product. It must be dealt with accordingly.
This is one reason (of two) why using just a mat is not a full solution. Needless to say, eliminating this was part of the design brief.
(Given the nature of the problem, (we didn’t design the motor) it is churlish to regard this as a case of shutting the stable door after the horse has bolted. Still, given the era SL1200 was developed it was a masterful piece of engineering. Respek.)
To recap: As the platter moves with the magnet, there is no mechanism for eddy currents to be generated; so it matters little if the platter is aluminium, acrylic or Swiss cheese (Everyone knows Swiss cheese makes poor magnets).
Flux does, however, escape from rotor’s magnet. Unshielded it induces voltages in the sensitive generator of cartridges, requiring of a solution.
Platter material choice:
Both Lexan and acrylic have indeed been considered with Lexan pushing up the price considerably.
“But we are not price sensitive, here. Surely it is performance that matters?” I hear you ask. (Not price sensitive? Hmmm)
“Subtle but important”, (as quoted), Lexan may better acrylic but
under test, where our tests went further and ignoring Lexan’s elevated price, we concluded that adding (the modestly priced) Achromat improved on Lexan. (As we believed it ought to).
Why go all out to screw punters with a more expensive platter that could then itself be further improved?
Made no sense to us. We stuck with acrylic.
(Save the difference towards our arm and get yet more improvement!)
In conclusion, the raison d’etre of our platter:
- To produce a more stable platform mechanically than SL1200’s original offering, which rings.
Well, our one does not ring. ✔
- To eliminate any flux leakage that might otherwise interfere with the cartridge’s function.
Well our compass no longer moves. ✔
- 1200’s have excellent overshoot characteristics. We retained this by optimising various of the platter’s dimensions to match the inertial load, motor power and servo. (Increase mass / inertia willy nilly and stability is adversely affected. It’ll work but not as designed.)
If this is a bit techy, you’ll just have to trust us. ✔
- To produce an overall improvement in performance for a reasonable price given all the various and conflicting demands.
Any high end deck+ arm will set you back £5-15k. Fully laden mods are less than £3k. And the results…
The proof is in the listening. ✔
Simples. Bzchuz
Well, back to work.
Arthur