Alert Icon ALERT
Ok Icon
FullSpecs.net Logo

Sennheiser HD 620S Specifications

   View Other Sennheiser Wired Headphones 
Appx Price Rs.41,990.00 Buy Now @ 29% Off
   
Type Wired Headphone
Available Colors
 Black
Wearing Style Over Ear
Magnet Type Dynamic
 

Sennheiser HD 620S Specifications

Driver Diameter 42 mm
Impedance 150 Ohms What is Impedance ?
Sensitivity 110 dB / 1V RMS
Frequency Response 6Hz - 30KHz
Maximum Power Input NA
Noise Cancelling Noise Cancelling
 
Connector Plating 3.5 mm
Cable Type Balanced Cable
Weight 670 GM
Accessories
Sennheiser HD 620S Headphones
3.5 To 6.3 mm Adapter
1.8 m Cable With 3.5 mm Plug

Other Features

Ultra-light 150-ohm aluminum voice coil for enhanced clarity and accuracy in audio reproduction.
Closed-back headphones with steel-reinforced ear cup covers for distraction-free listening sessions.
Reference-grade 42 mm angled transducers with 38 mm diaphragm deliver speaker-like imaging with natural detail retrieval and expansive soundstage.
Lightweight chassis with steel-reinforced headband sliders and artificial leather arpads with internal venting for long-term durability and all-day comfort.
Style meets durability: A steel-reinforced headband slider and earcup covers blend sleek design with robust construction for aesthetic appeal and lasting quality.
Distraction OFF, sound ON: Open, expansive listening with noise isolation that immerses you in closed-back acoustics without sacrificing natural, airy and intricate audio quality.
Enduring comfort, all day: A lightweight, sturdy chassis paired with soft, artificial leather earpads with internal venting and roomy ear cups for long, intimate listening sessions.
A panoramic soundstage: Angled, 42mm dynamic transducers with 38mm diaphragms mimic a speaker setup and deliver balanced bass for focused listening - unparalleled in closed-back headphone design.
Superior sonic precision: Ultra-low distortion at all frequencies, lifelike vocals and clear frequency bands, powered by an ultra-lightweight 150-ohm aluminum voice coil for optimal impulse response.