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574-533-9151
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sales@mightymics.com
Store info

Mon - Fri 11:30am - 5pm

Sat 10am - 2pm

Closed Sundays

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117 S 5th St,

Goshen, IN 46528

117 S 5th St,

Goshen, IN 46528

Mon - Fri 11:30am - 5pm

Sat 10am - 2pm

Closed Sundays

Audio-Technica ATM410 Cardioid Dynamic Vocal Microphone

$139.00 $79.00

This cardioid dynamic workhorse is designed for smooth, natural vocal reproduction and low noise. Equipped with a neodymium magnet for high output, and a multi-stage grille design for excellent protection against plosives, this super-durable microphone is built to stand up to life on the road. Its cardioid polar pattern reduces pickup of sounds from the sides and rear, maximizing isolation from other sound sources and minimizing feedback.

Includes

  • Audio Technica ATM410 Microphone
  • Mic Clip
  • Protectvie Pouch

Applications

  • Vocals
  • Recording

Features

  • Tailored for smooth, natural vocal reproduction
  • Cardioid polar pattern reduces pickup of sounds from the sides and rear, improving isolation of desired sound source
  • Durable performance for professional applications
  • Hi-ENERGY® neodymium magnet for improved output and transient response
  • Excellent off-axis rejection for minimum feedback
  • Superior anti-shock engineering for low handling noise
  • Multi-stage grille design offers excellent protection against plosives and sibilance without compromising high-frequency clarity
  • Quiet-Flex™ stand clamp provides silent, flexible microphone positioning
  • Corrosion-resistant contacts from gold-plated XLRM-type connector
  • Rugged, all-metal design and construction for years of trouble-free use

Specifications

  • Operating Principle:.........Dynamic
  • Polar Pattern:...............Cardioid
  • Output Connection:...........Standard 3-pin XLR
  • Frequency Response:..........90-16,000 Hz
  • Phantom Power Requirements:..NA
  • Impedance:...................300 ohms
  • Dimensions:..................6.69" x 2.11"
  • Weight:......................8.2oz
  • Sensitivity:.................–55 dB (1.7 mV) re 1V at 1 Pa