Shure -Pro FM Broadcast

Shure SM7dB Dynamic Broadcast Microphone

 589,00

Shure SM7dB Dynamic Broadcast Microphone

Explore the Shure SM7dB Professional Radio Broadcast Microphone, trusted by professionals for its exceptional audio quality and versatility. Perfect for broadcast, podcasting, and studio recording.

Category: SKU: 270 Tag:

Description

Shure SM7dB Dynamic Broadcast Microphone

An audio icon is born again: The Shure SM7dB has the sound you’ve loved for years, but with the convenience of a built-in preamp that delivers all the extra gain you’ll ever need. The latest version of this legendary dynamic XLR microphone makes it easier for podcasters, streamers and musicians to get the perfect voice reproduction from any recording situation.

The SM7dB is a dynamic vocal microphone with a built-in preamplifier that delivers up to +28dB of flat, transparent gain with low noise: ideal for virtually any interface and for simplified audio chains.

Features:

  • Switchable pre-amplification of +18dB or +28dB extra gain
  • Flat, long-range frequency response for exceptionally clear and natural reproduction of both music and speech
  • The bypass switch on the preamp deactivates it and uses the original signal from the SM7B
  • EQ control for high-pass filter and midrange boost (presence boost)
  • Superior protection against electromagnetic hum, optimal for shielding broadband interference caused by computer monitors
  • Internal shock absorption through ‘air suspension’ virtually eliminates the transmission of contact noise
  • Highly effective pop filter eliminates the need for additional protection against explosive breath sounds, even for close-range voices or voiceovers
  • Bracket suspension with cage nut for easy mounting and dismounting provides precise adjustment of the microphone position
  • Classic, cardioid polar pattern, uniform with frequency and symmetrical around the axis, for maximum protection against and minimum coloration from lateral noise
  • Robust construction and excellent head protection for optimal reliability

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