Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon
Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon
Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon
Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon
Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon

Moondrop Venus, Open Back Headphones: Flagship Full-Size Over Ear Planar Headphon

Regular price RM2,639.00 MYR RM2,639.00 MYR Unit price per
Tax included.

100mm Sub-Nanometer Diaphragm Dynamic Driver

The larger vibration delivers stronger dynamics, the thin diaphragm responds to finer details. That’s why Venus adopts a diaphragm with a diameter of 100mm and a thickness of only 2 microns, and its printed circuit on the diaphragm is made of 1um pure silver. And the pure silver etched circuit results in lower heat loss.

N52 Magnet Array & Secondary Diaphragm Stress Balance Technology

Venus features an array of 18 N52 magnets with high remanence on one side. Through FEA finite element analysis optimization design, the magnetic field parallel to the diaphragm is evenly distributed. This headphone can further reduce the split vibration and vibration nonlinearity of the diaphragm. After the diaphragm has been molded, the stress on it is released and then equalized a second time. As a result of this additional process, the nonlinear distortion of the diaphragm under loud pressure is reduced by at least 95%.

Integrated Driver-Cavity Structure

To withstand very large tension loads because of the large number of N52 magnets used to form arrays, the Moondrop Venus utilizes an aluminum alloy CNC cavity that accommodates a larger diaphragm in a limited volume. And its overall weight is lowered as much as possible while ensuring the rigidity of the structure that supports the magnetic circuit grid of 36 large neodymium magnets.

High Frequency Waveguide Phase Equalization Technology

Venus features a unique combined high-frequency waveguide structure, which minimizes the phase interference of the grid magnets in the transmission of high-frequency sound waves, while avoiding the negative impact of the volume and efficiency of the magnetic circuit.