This SLX Instrument Wireless System includes an SLX4 Diversity Receiver, a Shure WB98H/C Clip-On Cardioid Condenser Instrument Microphone, and a Shure SLX1 Bodypack Transmitter. Shure SLX4 Wireless Re... Click To Read More About This Product
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This SLX Instrument Wireless System includes an SLX4 Diversity Receiver, a Shure WB98H/C Clip-On Cardioid Condenser Instrument Microphone, and a Shure SLX1 Bodypack Transmitter.
Shure SLX4 Wireless Receiver The SLX4 wireless receiver is a breeze to use with Automatic Frequency Selection and Automatic Transmitter Setup. With included rack hardware and detachable antennas, it is ready for immediate installation right out of the box.
Shure WB98H/C Clip-On Cardioid Condenser Instrument Microphone The Shure WB98H/C (the wireless version of the Beta 98H/C) is a premium cardioid condenser instrumental microphone that clamps onto the bell of wind instruments or onto the rim of percussion instruments. The integrated gooseneck and ratcheting swivel joint allows the microphone to be easily positioned and secured in place, and an isolation shock-mount reduces the transmission of instrument 'key noise' and other mechanical noise. A gooseneck angle brace is included to provide better retention of the microphone placement during more active performances.
Shure SLX1 Bodypack Transmitter
The SLX1 bodypack transmitter is designed to hold up to the most adverse conditions. Whether used with headworn, Lavalier, instrument microphones, or with guitars or basses, the Shure SLX1 is the definition of reliability. SLX Wireless Systems feature Shure's patented Audio Reference Companding for crystal-clear sound beyond the limits of conventional wireless technology.
Most users do not need a license to operate this wireless microphone system. Nevertheless, operating this microphone system without a license is subject to certain restrictions: the system may not cause harmful interference; it must operate at a low power level (not in excess of 50 milliwatts); and it has no protection from interference received from any other device. Purchasers should also be aware that the FCC is currently evaluating use of wireless microphone systems, and these rules are subject to change. For more information, call the FCC at 1-888-CALL-FCC (TTY: 1-888-TELL-FCC) or visit the FCCs wireless microphone website at: www.fcc.gov/cgb/wirelessmicrophones.
Operating Temperature Range: ”18 degree C (0 degree F) to +50 degree C (+122 degree F)
Note: battery characteristics may limit this range
Dimensions (H x W x D): 1.65 x 7.76 x 5.28", (42 x 197 x 134mm)
Weight: 1lb. 13oz. (816g )
Housing: Galvanized steel
Transmitter Audio Polarity: Positive pressure on microphone diaphragm (or positive voltage applied to tip of WA302 phone plug) produces positive voltage on pin 2 (with respect to pin 3 of low impedance output) and the tip of the high impedance 1/4" output
Logic Connections: Pin 1: Logic output, Transmitter Mute Status. Mute=low (0 V). Sinks up to 100 mA. Absolute maximum -0.7 to 5.5V DC; Pin 2: Logic ground; Pin 3: Logic output, Battery Status. Good=low (0 V). Sinks up to 100 mA; Absolute maximum -0.7 to 5.5V DC
Type: Condenser (electret bias)
Frequency Response: 20 to 20,000 Hz
Polar Pattern: Supercardioid (as supplied), uniform with frequency, symmetrical about axis (Cartridge for cardioid polar pattern also available”sold separately)
Output Level (at 1,000 Hz): Open Circuit Voltage: -59 dBV/Pa* (1 mV) typical, *1 Pa = 94 dB SPL
Maximum SPL: (20 Hz to 20 kHz, less than 1% THD): 2.5 kilohm load: 160 dB, 1 kilohm load: 156 dB
Preamplifier Output Clipping Level: (20 Hz to 20 kHz, less than 1% THD): 2.5 kilohm load: + 6 dBV (2.0 V), 1 kilohm load: + 2 dBV (1.26 V)
Dynamic Range: (at 20 Hz to 20 kHz, less than 1% THD, 2.5 kilohm load): 125dB (max SPL minus A-weighted noise)
Output Noise: 35dB SPL, A-weighted
Signal-to-Noise Ratio: 59dB re 94dB SPL
Output Impedance: Rated at 150 ohms (actual)
Recommended minimum load impedance: 1 kilohm
Hum Pickup: -7.5dB equivalent SPL in 1 mOe field (60Hz)
Polarity: Positive pressure on diaphragm produces positive voltage on pin 2 with respect to pin 3