I'm very conservative with that statement just in case the interconnect is poor quality high capacitance. I call it like it is and don't try give best possible scenarios only. Here is a simple semi technical explanation.
In your case with 20ft, lets say that the cable is good quality and low capacitance, a nice low capacitance figure would be 10pf per ft, with your 20ft that is total 200pf.
200pf connected to the output of the Lightspeed Attenuator makes a high frequency filter of
-3db at 114khz. No problem as you can see way higher than our best human limit of 20khz
Double that 20ft of cable capacitance to 20pf per ft and the -3db is then at half the above at 57khz still no problem even 20ft of interconnects.
Halve the length to 10ft and then your back to -3db at 114khz way out of the audio band. Halve the capacitance to 10pf and your at -3db at 228khz!!! bat territory
Cheers George
In your case with 20ft, lets say that the cable is good quality and low capacitance, a nice low capacitance figure would be 10pf per ft, with your 20ft that is total 200pf.
200pf connected to the output of the Lightspeed Attenuator makes a high frequency filter of
-3db at 114khz. No problem as you can see way higher than our best human limit of 20khz
Double that 20ft of cable capacitance to 20pf per ft and the -3db is then at half the above at 57khz still no problem even 20ft of interconnects.
Halve the length to 10ft and then your back to -3db at 114khz way out of the audio band. Halve the capacitance to 10pf and your at -3db at 228khz!!! bat territory
Cheers George