For purists, the thought of deviating from short, unprocessed signal paths is taboo. For the last 20 years tone control-free preamps have been made for them. The reason is obvious: tone controls introduce "grain," colorations, deterioration, or coarse boosts/gains at the wrong frequency, with the wrong slope for the specific adjustment needed (this always seemed to me the key problem with the tone controls on Accuphase amps). This has not stopped a few high-end manufacturers from including high-quality tone controls on their preamps and integrateds (e.g. the Cello Audio Suite) which gives you precise tonal shaping of playback with "very little" loss to the signal. Even so, I've yet to hear an analog tone control bank with "negligeable" loss to the signal. The solution seems to be--as "Keis" put it--to push tonal shaping into the digital domain (negligeable losses, no added coloration) and give the user more precise control over the shaping. This has already been done on the z-systems digital preamp with their Transparent Tone Control (TTC) system. TTC is so precise and uncolored that it will probably change the prejudices purists have about tone controls. Of course, you can use TTC as a tone correction system on a recording-by-recording basis and dial in specific EQs for each recording (then store the setting on one of the 100 presets), but what makes this system exciting is the possibility of achieving a tonally balanced system and listening space. If you use a state-of-the-art calibrated mike and spectrum analyzer, you can refine the sound of your system to virtually flat response. Even the most expensive speakers in the world (the Wilsons, the Avalons, the LumenWhites, etc.) require boosts/gains at certain frequencies in order to yield a flat frequency response. The end results are well worth the hassle of using this system: you will have a tonally balanced system, with greater low-level detail, more immediacy, more extended bass or highs, more openness, an impression of greater speed, an improved spatial presentation, and experience less fatigue. On the forum "Applying EQ to STAX" (Tech. Talk) I describe the use of the z-systems TTC to flatten out the frequency response of the STAX earspeaker system. I have done the same with all of my loudspeakers as well (to achieve neutrality over all hearable frequencies even expensive floor standers need as much as 5 dBs boost at 31Hz, monitors as much as 10dBs boost at 56Hz). Even if this involves the rental or borrowing of a calibrated mike and spectrum analyzer, or complex mathematical calculations to arrive at the proper slope or Q of each boost. This solution seems to me better than coarse analog tone controls or trying to use cables and room treatments as tone correction systems. To conclude, TTC is just another type of purism: not the no-tone-controls purism of the 1990s, but the DSP-tweeked-neutrality purism of the 21st century.