

Hana Umami Black Moving Coil Cartridge with Diamond Cantilever! NEW RELEASE
Free Shipping on Most Electronics - Excludes Speakers and Items Requiring Freight - Contiguous U.S. Only
Pickup available at SkyFi 479
Usually ready in 24 hours

Hana Umami Black Moving Coil Cartridge with Diamond Cantilever! NEW RELEASE
SkyFi 479
479 South Broad Street
Glen Rock NJ 07452
United States
From Hana:
The HANA-Umami Black continues the brand’s legacy of “Brilliant and Gorgeous” sound.
Master cartridge designer Masao Okada-san of Excel Sound celebrates over 5 decades of innovation and excellence with his new masterpiece, featuring a diamond cantilever and new “OKD” High-Efficiency Moving Coil Generator.
The Umami Black is much more than just an Umami Red with a diamond cantilever.
Diamond Cantilever
In a category first for HANA, the Umami Black incorporates a diamond cantilever, the hardest possible material, ideal for signal transfer.
High-Efficiency “OKD” Moving Coil Generator
Another category first, the Umami Black uses the newly developed “OKD” with the world’s first “Integrated Pole Piece and Rear Yoke” and Inverted U-shaped Front Yoke, optimizing energy transfer from the diamond cantilever.
Inverted U Front Yoke
The U-shaped (bifurcated) inverted front yoke is engineered for both mechanical resonance control and magnetic field alignment, while also providing precise support for the diamond cantilever.
High-Power Rare Earth Magnet
Unique to the Umami Black, the rare earth neodymium-iron-boron (NdFeB) magnet is used for the high-efficiency generator, delivering superior energy conversion.
Hybrid Carbon Armature
A 2mm square hybrid Carbon permalloy armature, comprising 78% carbon-infused nickel-iron, is precisely hand-wound with 30-micron, 4N high-purity copper wire on Excel’s proprietary machinery. This ultra-light moving coil has an output of 0.3mV and a 5 ohm impedance.
Special Urushi Enameled Finish
The HANA-Umami Black features an exquisite Urushi lacquer finish, applied through a specialized thermosetting process, bonding to the aluminum body via vapor deposition.
Choose options


