Dover, Perhaps SP10-mkIII has a foot in both camps for good reason...
^ Brady, Chris (2008-10-06). "Teres MicroPrecise Speed Technology PDF". Retrieved 2009-01-15. "Dealing with stylus drag is another important aspect of a quality turntable drive system. It would seem that the tiny forces exerted by the stylus would fade into insignificance. However, given our extraordinary sensitivity to micro speed variations, the uneven force from stylus drag is audible and degrades sound reproduction. With a microscopic view, loud passages slightly slow the platters rotation. Contrary to popular beliefs platter mass changes how stylus drag affects speed but does not counteract the effects of stylus drag. A massive platter will reduce the magnitude of the variation but extends it over a longer period of time. A light platter will conversely allow a larger speed variation but it enables more rapid recovery. Heavy vs. light platters exhibit quite different sounding degradations but they are still degradations. We find the longer shallower variations that result from a heavy platter to be more benign. However, there are others that prefer the degradations from a light platter. The point is that stylus drag causes degradations that are changed but not eliminated by platter mass. The only effective mechanism for truly reducing stylus drag effects is application of torque from the motor. Increasing the available motor torque makes stylus drag proportionately smaller and therefore will result in a net reduction in the effects of stylus drag. However, increasing torque usually will at the same time increase cogging. Once again we are back to the need of finding a balance between two competing objectives. To further complicate the situation a compliant coupling between the motor and platter reduces the motors ability to control platter speed. Any compliance between the motor and platter causes a delay in the delivery of torque. When a rubber belt is used additional torque from the motor will cause the belt to stretch. This energy will eventually be delivered to the platter but only after a time delay making it impossible for the motor to compensate for short term effects of stylus drag."
From this, as an analogy, a bit like a steam engine...applying the brakes did not slow it down sharply, only a little, but the lower speed stayed for longer...
^ Brady, Chris (2008-10-06). "Teres MicroPrecise Speed Technology PDF". Retrieved 2009-01-15. "Dealing with stylus drag is another important aspect of a quality turntable drive system. It would seem that the tiny forces exerted by the stylus would fade into insignificance. However, given our extraordinary sensitivity to micro speed variations, the uneven force from stylus drag is audible and degrades sound reproduction. With a microscopic view, loud passages slightly slow the platters rotation. Contrary to popular beliefs platter mass changes how stylus drag affects speed but does not counteract the effects of stylus drag. A massive platter will reduce the magnitude of the variation but extends it over a longer period of time. A light platter will conversely allow a larger speed variation but it enables more rapid recovery. Heavy vs. light platters exhibit quite different sounding degradations but they are still degradations. We find the longer shallower variations that result from a heavy platter to be more benign. However, there are others that prefer the degradations from a light platter. The point is that stylus drag causes degradations that are changed but not eliminated by platter mass. The only effective mechanism for truly reducing stylus drag effects is application of torque from the motor. Increasing the available motor torque makes stylus drag proportionately smaller and therefore will result in a net reduction in the effects of stylus drag. However, increasing torque usually will at the same time increase cogging. Once again we are back to the need of finding a balance between two competing objectives. To further complicate the situation a compliant coupling between the motor and platter reduces the motors ability to control platter speed. Any compliance between the motor and platter causes a delay in the delivery of torque. When a rubber belt is used additional torque from the motor will cause the belt to stretch. This energy will eventually be delivered to the platter but only after a time delay making it impossible for the motor to compensate for short term effects of stylus drag."
From this, as an analogy, a bit like a steam engine...applying the brakes did not slow it down sharply, only a little, but the lower speed stayed for longer...