Shure WL185 Cardioid TQG Lavalier Microphone

Highlights
  • Polar pattern: Cardioid, 130° pickup angle
  • Connector: TA4F, 4 ft (1.2m) cable
  • RF protection: CommShield Technology
  • Mounting: Rotatable tie clip, snap-fit windscreen included

Shure WL185 Cardioid TQG Lavalier Microphone

Details

At A Glance

The Shure WL185 is a cardioid electret condenser lavalier microphone designed for use with a wireless body-pack transmitter. Its cardioid pickup pattern offers a 130-degree acceptance angle, giving it tighter off-axis rejection than an omnidirectional lav — useful in general purpose sound reinforcement applications requiring good rejection of ambient noise. The mic terminates in a 4-foot (1.2m) cable with a miniature 4-pin TA4F connector for direct connection to compatible Shure bodypack transmitters. It incorporates CommShield Technology, shielding the mic from interference caused by cellular RF devices and digital bodypack transmitters — a relevant spec on crowded RF stages or in venues dense with cell traffic. It's a solid choice for houses of worship, corporate presenters, and broadcast talent where discreet pickup and consistent gain-before-feedback matter more than a wide capture pattern

The Shure WL185 is a cardioid electret condenser lavalier microphone designed for use with a wireless body-pack transmitter. Its cardioid pickup pattern offers a 130-degree acceptance angle, giving it tighter off-axis rejection than an omnidirectional lav — useful in general purpose sound reinforcement applications requiring good rejection of ambient noise. The mic terminates in a 4-foot (1.2m) cable with a miniature 4-pin TA4F connector for direct connection to compatible Shure bodypack transmitters. It incorporates CommShield Technology, shielding the mic from interference caused by cellular RF devices and digital bodypack transmitters — a relevant spec on crowded RF stages or in venues dense with cell traffic. It's a solid choice for houses of worship, corporate presenters, and broadcast talent where discreet pickup and consistent gain-before-feedback matter more than a wide capture pattern