Operates in the 2.4 GHz user license-free ISM band. Up to 12 preset compatible channels. True diversity technology and stable digital FSK modulation circuit eliminate signal dropouts and ensure best reception quality. Combining FHSS frequency-hopping technique with adaptive tracking algorithm to prevent interferences from other 2.4 GHz wireless devices. Featuring an easy-to-read channel LED display, audio and transmitter battery status indicators. The modular design allows for fast and easy installation or replacement. Ideal sound amplification for musical instruments.
Frequency Range: 2.4000 – 2.4835 GHz. Preset Frequency: 12 preset frequencies in total. Channel Set-up: SCAN and ACT sync. Display Status: Channel, audio meters and the battery status of the transmitter. Receiving Mode: Dual-tuner Digital Diversity. Sensitivity: +12 dBμV. Frequency-hopping: Each channel has 4 preset hopping frequencies. Audio Sampling: 24-bit / 44.1 kHz Rate. Latency: 115 dB(A), analog input. T.H.D.: < 0.1% @ 1 kHz. Audio Output: 2 Vrms. Antenna: 2 × 50 D fixed antenna. Power Supply: 10 – 15 V DC. Power Consumption: < 1.5 W. Dimensions (W × H × D): 74.5 × 34.5 × 149 mm / 2.9 × 1.4 × 5.9 “. Weight: 78 g / 2.75 oz. Operating Temperature: -10℃ – +60℃.

MRM-24 2.4 GHz Digital Receiver Module

The MIPRO MRM24 is a digital true diversity receiver module with true diversity technology and stable digital FSK modulation circuit which eliminates signal dropouts and ensures best reception quality. It operates in the 2.4 GHz user license-free ISM band. Up to 12 preset compatible channels. The MRM24 combines FHSS frequency-hopping technique with adaptive tracking algorithm to prevent interferences from other 2.4 GHz wireless devices. The MRM24 features an easy-to-read channel LED display, audio and transmitter battery status indicators. Its modular design allows for fast and easy installation or replacement. No analog companding noise. The MRM24 is the ideal sound amplification for musical instruments.

Works with

No data was found

Accessories

No data was found