Power Conditioning / Surge Protection


I am looking for some advice on power conditioning and surge protection.  I have a dedicated circuit for my two channel system with eight outlets. Years ago I was talked into buying a couple of Richard Gray Power Stations which I still have in the system. Because of the logistics of my system they have served as additional outlets when power cords weren’t long enough but honestly I don’t know a damn thing about power conditioning or surge protection and whether I’m doing harm or good to my system.  I have a turntable, phono stage, music server, streamer, CD player, integrated amp and dual powered subs so I have a lot of need for power. I’m interested in protecting my equipment but I don’t want to muddy things up either. I’m willing to scrap the Richard Grays and either replace them with something else if there are better options.

I would greatly appreciate any advice from those who know about these things. I’m very happy with my equipment but feel the power issue is lacking or, at best, not well thought out. 
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+1   mike_in_nc .... my friend bought Power Plant P600 Power Regenerator and  was very disappointed how it affects the SQ of his system. First I thought maybe it warming up issue or he just too used to previous setup, but when I visited him after couple of weeks and tried different setups it’s was obvious for me too that this power unit has negative effect.  
Garth Powell writes some words but offers no proof or even solid technical discussion. This is word smithing for consumer marketing. The higher current the peaks the larger the instantaneous voltage change which is much harder to filter out for subsequent electronics. That so called compression only happens if you are driving the amp into clipping.  If you are not driving into clipping no solid technical explanation has been presented for loss of dynamics. More likely seems a decrease in the THD unless clipping.
audio2design101 posts11-08-2020 11:30am"Garth Powell writes some words but offers no proof or even solid technical discussion. This is word smithing for consumer marketing. The higher current the peaks the larger the instantaneous voltage change which is much harder to filter out for subsequent electronics. That so called compression only happens if you are driving the amp into clipping. If you are not driving into clipping no solid technical explanation has been presented for loss of dynamics. More likely seems a decrease in the THD unless clipping."

The current "compression" that Garth Powell refers to is what I would call current "starving" which can occur in power amps at levels lower than clipping due to transient voltage drops associated with high source impedance. The effect on sound has been experienced by many audiophiles, which is why many plug their power amp (or integrated amp) DIRECTLY into the wall outlet.  
The AC line only supplies voltage for a small part of the waveform every 1/100 or 1/120th of a second. If you are current starving the AC input the you are clipping. The relatively small loss of voltage on the secondary of the power supply due to some level of inductance on the AC would be fractions of a dB in top end.

Far more likely is inadequate components in the AC filter likely selected for continuous current rating but not the peak currents resulting in saturation of the inductor and increasing the THD not decreasing it like it should.

A universal statement about loss of dynamics without a critical look at the real mechanisms results in universal and likely often wrong statements applied to all equipment performing the same function.