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Computer-Optimized Magnet/Motor Assemblies |
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| Magnets and motor components are computer-optimized for ultimate performance. |
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Unique Exterior Heatsink Fins (not visible) |
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| Heat dissipation fins on exterior of chamber promote superior power handling. |
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P-Be™ Pure-Beryllium Tweeter Domes |
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| Pure beryllium was chosen for its exceptional thermal, physical and mechanical properties: lighter than diamond or aluminum with unmatched rigidity. Response is instantaneous and extraordinarily uniform. Elevating the dome promoted optimal off-axis dispersion. |
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ARB™ Aperiodic Resonance Breakup Fins |
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| Die-cast aluminum fins in rear damping chamber capture and quickly disperse residual internal resonances, rendering them inert. |
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Proprietary High-Loss Foam Acoustic Dampers |
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| Provide a markedly higher level of critical damping than the original felt dampers. |
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Die-Cast Aluminum WaveGuide™ Coupling |
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| Fosters controlled, uniform dispersion as well as accurate phase response throughout a large listening window. |
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High-Pressure Die-Cast Aluminum Heatsink Chassis |
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| Exceptionally rigid, eliminating mechanical flexing and ringing while also providing a heatsink for superior power handling. |
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High-Temperature Copper-Clad Aluminum-Wire Voice Coils |
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| A rigid, low-mass design wound on an Apical™ formers promotes much higher power handling, ultra-low distortion and long-term reliability. |
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Dual Super-Neodymium Ring Magnet Structures |
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| Dwarf all other neodymium structures found in high-end tweeters, supplying superior sensitivity, ultra-low distortion and far greater power handling. The intense energy created in the magnetic gap (20,000 gauss) allows for overfilling of ferro-fluid effecting superior heat transfer. The tweeter virtually idles under normal operating conditions. |
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Integrated Heavy-Walled Shielding Cup |
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| Critically contoured to eliminate stray magnetic fields from the neodymium superstructure. The cup also acts as a thermal conduit for the rear heatsink. |
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