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The dynamic driver unit's diaphragm in the SR7000 is aune's self-developed W-shaped ceramic polymer rigid diaphragm, featuring a larger equivalent vibration area. Optimized using the Distributed Compensation Mechanism (MLD) technology, it ensures unified piston-like vibration of the diaphragm across the entire frequency range, effectively enhancing the upper limit of high-frequency extension. With a frequency response range of 5-44,500Hz, it delivers linear and smooth frequency response, warm and delicate sound texture, and ensures excellent dynamic performance even in music genres with large dynamics

Premium Closed-Back Headphones with MLD Technology

The dynamic driver unit’s diaphragm in the SR7000 is aune’s self-developed W-shaped ceramic polymer rigid diaphragm, featuring a larger equivalent vibration area. Optimized using the Distributed Compensation Mechanism (MLD) technology, it ensures unified piston-like vibration of the diaphragm across the entire frequency range, effectively enhancing the upper limit of high-frequency extension. With a frequency response range of 5-44,500Hz, it delivers linear and smooth frequency response, warm and delicate sound texture, and ensures excellent dynamic performance even in music genres with large dynamics

The dynamic driver unit's diaphragm in the SR7000 is aune's self-developed W-shaped ceramic polymer rigid diaphragm, featuring a larger equivalent vibration area. Optimized using the Distributed Compensation Mechanism (MLD) technology, it ensures unified piston-like vibration of the diaphragm across the entire frequency range, effectively enhancing the upper limit of high-frequency extension. With a frequency response range of 5-44,500Hz, it delivers linear and smooth frequency response, warm and delicate sound texture, and ensures excellent dynamic performance even in music genres with large dynamics

High-Resolution Closed-Back Headphones with W-shaped

The dynamic driver unit’s diaphragm in the SR7000 is aune’s self-developed W-shaped ceramic polymer rigid diaphragm, featuring a larger equivalent vibration area. Optimized using the Distributed Compensation Mechanism (MLD) technology, it ensures unified piston-like vibration of the diaphragm across the entire frequency range, effectively enhancing the upper limit of high-frequency extension. With a frequency response range of 5-44,500Hz, it delivers linear and smooth frequency response, warm and delicate sound texture, and ensures excellent dynamic performance even in music genres with large dynamics

Premium Open-Back HiFi Headphones with MLD Driver

[Soundstage: Wide, Deep and Immersive] The large-tilt-angle driver panel and the earcup designed with also a tilt – the special acoustic structure enhances spatial perception. Compared to regular headphones with horizontal or slightly angled drivers, the AR5000 offer significantly improved vertical soundstage and imaging. The open grid design on the earcup shell with side vents precisely balances the diffusion of airflow at the rear, further expanding the naturalness and openness of the sound

[Soundstage: Wide, Deep and Immersive] The large-tilt-angle driver panel and the earcup designed with also a tilt - the special acoustic structure enhances spatial perception. Compared to regular headphones with horizontal or slightly angled drivers, the AR5000 offer significantly improved vertical soundstage and imaging. The open grid design on the earcup shell with side vents precisely balances the diffusion of airflow at the rear, further expanding the naturalness and openness of the sound

Immersive Open-Back HiFi Headphones

[Soundstage: Wide, Deep and Immersive] The large-tilt-angle driver panel and the earcup designed with also a tilt – the special acoustic structure enhances spatial perception. Compared to regular headphones with horizontal or slightly angled drivers, the AR5000 offer significantly improved vertical soundstage and imaging. The open grid design on the earcup shell with side vents precisely balances the diffusion of airflow at the rear, further expanding the naturalness and openness of the sound