Description
n order to dampen resonance peaks at higher frequencies, conventional dome tweeters are injected with fluid to raise their mass, sacrificing transient response time. By contrast, the AMT tweeter in the R65 uses a thin, folded Kapton membrane (< 0.01 mm) with an inlayed aluminum circuit functioning as the voice coil, allowing the tweeter to move at the same instant as the electric current. The resulting reactive response time provides marked clarity and better transient reproduction.
Unlike a traditional 1″ dome tweeter, an unfolded AMT tweeter diaphragm provides up to thirteen times the projection area.
The R65 provides a wide lateral dispersion and very limited vertical dispersion. The narrow vertical dispersion helps to reduce reflections from the ceiling and desktop that can cause phase coherence issues. The broad, even horizontal dispersion creates a wide sweet spot. Because it is less subject to room-anomaly interference, the R65 reacts more predictably and sounds more consistent from room to room.
The R65 utilizes a 6.5″ custom-coated, woven Kevlar, low-frequency driver. This rigid cone maintains a more consistent dispersion pattern across its frequency response range. Biamped and driven by a 150W Class D amplifier, this monitor delivers an open, clear, and less fatiguing listening experience.
This monitor offers user-adjustable contour features for optimizing the monitor for your mixing space. This enables full integration into any studio environment. A four-position Acoustic Space switch helps to compensate for the boundary bass boost that occurs when the monitor is placed near a wall. A high-frequency driver level control helps to further mitigate room anomalies. An onboard highpass filter makes it easy to integrate a Temblor subwoofer into your monitor setup.
With three different types of audio inputs, it’s easy to feed audio to your R-Series monitor from a mixer, an interface, a media player, or other line-level sources. The R65 provides balanced XLR, balanced 1/4″ TRS, and unbalanced RCA line-level inputs.
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