Hypernova ULTRA Plasma 63mm Conical Burrs for VS6 Grinder

US$ 169.00

The Hypernova ULTRA Plasma 63mm Conical Burrs offer a unique flavor profile, delivering exceptional clarity and sweetness while maintaining a balanced body. These burrs are ideal for a variety of roasting profiles. They provide clean, juicy, and sweet espresso shots with decent body and filter coffee that balances enjoyable acidity, high clarity, and sweetness.

Key Features:

• Material: 440 Stainless Steel with Plasma Coating with an edge hardness of HRC67.

• Durability & Heat Sinking: Increased durability and heat resistance, keeping cutting edges cooler during grinding, enhancing the overall lifespan and performance of the burrs.

• Particle Distribution: Improved top-end range for finer particle sizes, ensuring a balanced and consistent grind.

• Grind Speed & Consistency: Slightly slower grind speed with higher consistency, providing a precise and uniform grind for both espresso and filter coffee.

The Hypernova ULTRA Plasma 63mm Conical Burrs are an excellent choice for those seeking to elevate their coffee brewing experience with superior burr technology. Experience the perfect balance of clarity, body, and sweetness in every cup.

HYPERNOVA ULTRA BURR SET

• Improved top end range for espresso particle distribution at finer sizes.

• They provide clean, juicy, and sweet espresso shots with decent body and filter coffee that balances enjoyable acidity, high clarity, and sweetness.

DURABILITY & HEAT SINKING

The titanium coated burrs will have an increase in durability and also heat resistance. The burrs will stay cooler on the cutting edge during grinding and as a result this will impact the overall durability and sharpness of the cutting edge.

GRIND SPEED AND CONSISTENCY

Increased durability and heat resistance, keeping cutting edges cooler during grinding, enhancing the overall lifespan and performance of the burrs.

PARTICLE DISTRIBUTION

The grinding range of the titanium coated burr vs the regular stainless steel will be improved at the top end of finer particle sizes.