The SONY MDR-CD900ST is a fully professional studio monitor headphone series, jointly developed by Sony, the world's leading technology company, and Sony Music Entertainment, the company's sophisticated sound-creation expertise. Specifications: Closed-back, 63 ohms, 106 dB, 5-30,000 Hz
These monitor headphones were developed with feedback from sound engineers and musicians. They offer excellent sound quality and a comfortable fit thanks to their large ear pads. The headphones can be rotated 180 degrees, making them ideal for live performances. The plug is a screw-type design that includes a standard phone plug adapter, preventing accidental disconnection.
The MDR7506 is a best-selling studio monitor headphone beloved by musicians and engineers worldwide! Its foldable design makes it easy to carry and store. Its coiled cord prevents the plug from falling out. It features a softer sound than the MDR-CD900ST and a slightly fuller bass.
3-year warranty model! The K52 are closed-back headphones that use large 40mm drivers. They allow you to accurately monitor vocals and bass lines. Their lightweight design and comfortable fit make them comfortable to wear for long periods of time.
<<Sep2025 New Product!>> The CPH1000DJ is a monitor headphone designed for professional DJs and musicians. Featuring a large 57mm driver unit with a maximum output of 3500mW, it faithfully reproduces the original sound across a wide dynamic range, from deep bass to clear treble. It delivers reliable monitoring in any scenario, whether in the DJ booth, studio, on stage, or during live performances.
The SONY MDR-M1ST is a professional studio monitor headphone that is compatible with high-resolution sound sources and was jointly developed by Sony and Sony Music Studios.
The AIAIAI / TMA-2 DJ is a popular DJ monitor headphone that reproduces tight, deep low frequencies and clear, extended mid- and high-frequency ranges. Its durable construction means it can withstand the rigors of live performances and DJ performances. Its excellent sound insulation allows for accurate monitoring even at high volumes.