Sennheiser EW-DP Digital UHF Wireless Microphone System Melbourne, Australia

Sennheiser EW-DP Digital UHF Wireless Microphone System

The Sennheiser EW-DP Digital UHF Wireless Microphone System is a portable, professional-grade wireless microphone system offering 134 dB dynamic range, reliable UHF connectivity and easy channel selection. Ideal for interviews and outside broadcasts, it includes bodypack and plug-on transmitters, ME 2 omnidirectional lavalier and mounting components, making it perfect for filmmakers and broadcasters.

Description

The Sennheiser EW-DP Digital UHF Wireless Microphone System is a professional-grade, portable wireless solution designed for filmmakers, journalists and broadcasters seeking high-quality audio capture for interviews and outside broadcasts. This system includes the EW-DP EK digital single-channel receiver, EW-D SK digital bodypack transmitter, ME 2 omnidirectional lavalier microphone, SKP plug-on transmitter, mounting components (cheese plate and cold shoe), rechargeable batteries and accessories, providing all the essentials for a reliable, easy-to-use wireless microphone setup.

Utilising stable and reliable UHF technology, the EW-DP offers superior range and reliability compared to 2.4 GHz systems, delivering professional-quality audio with ease. The system features an impressive 134 dB dynamic range, ensuring clear, distortion-free sound for even the most demanding environments. The 56 MHz bandwidth makes it quick to find a clean, interference-free channel, while the long-lasting rechargeable batteries allow for extended filming sessions without worry. The receiver’s intuitive interface displays remaining operating time for peace of mind during shoots.

The system’s cheese plate mounting solution ensures effortless attachment to your camera, with the receiver magnetically secured in place for easy setup. The EW-DP ENG Set offers flexibility with both the bodypack transmitter with lavalier microphone and the plug-on transmitter, making it adaptable to a variety of recording scenarios.