RODE Lavalier GO clip-on mikrofon Wireless GO cable without system TRS kis jack plug black
Product description
The RODE Lavalier GO is a professional quality clip-on microphone designed for a wide range of applications. The 3.5mm TRS connector fits perfectly with the RØDE Wireless GO series and most recording devices with a 3.5mm TRS microphone input. Featuring a discreet 4.5mm omnidirectional condenser capsule, the Lavalier GO delivers crystal clear sound in any environment. The microphone comes with a WS-LAV wind protection sponge and a LAV-CLIP clip as standard.
Lavalier GO is ideal for presentations, camera presentations and podcasts alike, providing professional results that make your content even better. It has a pop filter to minimize the risk of explosion, as well as durable mounting clips and built-in cable management for quick and easy mounting, so you can record crystal clear sound every time.
The Lavalier GO has a 3.5mm TRS connector so it can be connected to any device with a 3.5mm microphone input, including recorders, cameras, mobile devices and computers, but is optimized for use with the RØDE Wireless GO series. Simply connect it to the Wireless GO transmitter to enjoy broadcast-quality sound in any situation.
Specifications:
- Acoustic principle: Permanently polarized capacitor
- Polar pattern: Omnidirectional
- Frequency range: 20 Hz - 20 kHz
- Output impedance: 3k Ω Typical
- Signal-to-noise ratio: 67 dB
- Equivalent noise: 27 dB typical
- Maximum sound pressure level: 110 dB
- Sensitivity: -35dB (17.8mV @94dB SPL)
- Dynamic range: 83dB typical
- Power requirement: Power supply from TRS plug-in socket (2.7 V)
- Output connection: Gold-plated TRS plug
In conclusion, the RODE Lavalier GO clip-on microphone is the ideal solution for those who need exceptional sound quality. This microphone makes it easy to record professional-quality audio, and thanks to its lightness and compact size, you can take it anywhere. The RODE Lavalier GO clip-on microphone is more than just a microphone. This product offers new possibilities in the field of sound recording.