CROSSOVERS

Tweeter

Each HEX component system comes with a pair of model specific adjustable crossovers. Under the cover there are a pair of jumpers that control tweeter and RAF levels. These jumpers are designated “TWEETER” and “REAR”. The tweeter adjustment has settings for -2dB of attenuation, +2dB of gain or 0dB which is flat.

RAF

Each HEX component crossover has a third set of outputs marked “RAF”. This stands for Rear Acoustic Fill. This output can be used to power and additional speaker off the same channel without effecting the impedance load on the source unit. The level of this output is determined by the jumpers in the crossover marked “REAR”. The jumper has settings for -10dB of attenuation, -5dB of attenuation or off. When off, the RAF outputs are flat, or have no attenuation.

COMPONENT SYSTEM CONNECTION

The following illustration shows how to connect one channel of the Hex component system.

Crossover

Tweeter

Optional RAF

Mid-bass Driver

Amplifier

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Diamond 643-104, 643-105 owner manual Crossovers, Component System Connection, Tweeter

643-104, 643-105 specifications

Diamond 643-104 and Diamond 643-105 are highly regarded models in the realm of synthetic diamond technology. These models are recognized for their exceptional quality and advanced features, making them ideal for various industrial applications.

One of the key characteristics of Diamond 643-104 and 643-105 is their superior clarity and durability. Both models are engineered to offer high levels of purity, which significantly enhances their performance and longevity. This quality makes them suitable for applications in electronics, optics, and cutting tools, where precision and durability are paramount.

In terms of technology, these diamonds are produced using advanced chemical vapor deposition (CVD) methods. This process allows for the controlled growth of diamond crystals, enabling the production of diamonds with fewer defects and superior structural integrity. The CVD technique also facilitates the integration of specific properties into the diamonds, such as conductivity or thermal resistance, which can be tailored to meet the specific needs of various applications.

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In summary, Diamond 643-104 and 643-105 stand out as premier synthetic diamonds that offer remarkable clarity, exceptional thermal conductivity, and sophisticated production methods. Their advanced characteristics enable their use across a variety of high-performance applications, showcasing the significant advancements in diamond technology. As industries continue to seek materials that provide superior performance and sustainability, models like Diamond 643-104 and 643-105 will undoubtedly play a pivotal role in shaping the future of material sciences and engineering.