Product

UHF Wireless Microphone(Two Lavalier)

* Using UHF ultra-high frequency double true diversity reception, and USES the DPLL multichannel digital phase-locked loop frequency synthesis technology. * Provides each of 200 a total of 600 channels to choose, true diversity receiving, effectively avoiding the phenomenon of f

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Description


* Using UHF ultra-high frequency double true diversity reception, and USES the DPLL multichannel digital phase-locked loop frequency synthesis technology.


* Provides each of 200 a total of 600 channels to choose, true diversity receiving, effectively avoiding the phenomenon of fault frequency and to extend the receiving distance.


* With a magnitude 8, according to 8 audio level display, according to the audio level, according to the channel menu mute.


* Balanced and unbalanced output port, two choices to meet the needs of different device to connect.


* LCD liquid crystal display can also show channel number and working frequency. Light touch button control is simple, which let users to use it more conveniently.


* Strong anti-interference ability, can effectively restrain noise caused by th external interference and same frequency interference.


* Infrared frequency function can be convenient, shortcut of the transmitter and receiver synchronization.


* Enough intermediate frequency, Relaxed singing, sounds with magnetic and mixed thick feeling, the essence of the vocal microphone sound.


Specifications

Frequency indication

Word frequency

640-857MHz (the applicable frequency depends on the

local regulation)Broadband FM

Number of channel

200

Channel spacing

250KHz

Frequency stability

Within ±0.005%

Dynamic range

100dB

Maximum deviation

±45KHz

Audio frequency response

80-18KHz (±3DB) (frequency response of the whole

system depends on the microphone unit)

Comprehensive signal to

105dB

noise ratio

 

Comprehensive distortion

0.5%

Working distance

About 100m (working distance depends on many

variation which includes absorbing, reflection and

interference of Rf signal)