Shure Incorporated Microflex Series Lavalier Microphone (Supercardioid) MX184

Description
Microflex® Lavalier microphones bring a new level of sophistication to personal voice reproduction. Like all Microflex family microphones, the Lavaliers use Shure's interchangeable condenser cartridges, available in cardioid, supercardioid or omnidirectional polar patterns. Compatible with all Shure wireless bodypack transmitters, their high sensitivity and wide frequency response guarantee great sound. Type Condenser (electret bias) Frequency Response 50 to 17,000 Hz Polar Pattern Supercardioid Output Impedance EIA rated at 150 ohms (180 ohms actual) Open Circuit Sensitivity (at 1 kHz, ref. 1V/Pascal*) -33.5 dB (21.1 mV) All settings -12 dB at 0 gain *1 Pascal = 94 dB SPL Max SPL (1kHz at 1%THD, 1 k ohm load) MX184: 122.7 dB All settings +6 dB at 0 gain Equivalent Output Noise (A-weighted) 26.5 dB Signal to Noise Ratio (referenced at 94 dB SPL) 67.5 dB Dynamic Range at 1 k ohm load 96.2 dB 100 dB at 0 gain Power Requirements 11 to 52 Vdc phantom, 2.0 mA Common Mode Rejection 45.0 dB minimum Polarity Positive sound pressure on diaphragm produces positive voltage on pin 2 relative to pin 3 of output XLR connector. Environmental Conditions Operating Temperature Range: -18 to 57 degrees C (0 to 135 degrees F) Storage Temperature Range: -29 to 74 degrees C (-20 to 165 degrees F) Cable Shielded 1.2 meter (4 ft.) cable terminated with a 4-Pin Female Mini Connector (TA4F)
Datasheet
Description
Microflex® Lavalier microphones bring a new level of sophistication to personal voice reproduction. Like all Microflex family microphones, the Lavaliers use Shure's interchangeable condenser cartridges, available in cardioid, supercardioid or omnidirectional polar patterns. Compatible with all Shure wireless bodypack transmitters, their high sensitivity and wide frequency response guarantee great sound. Type Condenser (electret bias) Frequency Response 50 to 17,000 Hz Polar Pattern Supercardioid Output Impedance EIA rated at 150 ohms (180 ohms actual) Open Circuit Sensitivity (at 1 kHz, ref. 1V/Pascal*) -33.5 dB (21.1 mV) All settings -12 dB at 0 gain *1 Pascal = 94 dB SPL Max SPL (1kHz at 1%THD, 1 k ohm load) MX184: 122.7 dB All settings +6 dB at 0 gain Equivalent Output Noise (A-weighted) 26.5 dB Signal to Noise Ratio (referenced at 94 dB SPL) 67.5 dB Dynamic Range at 1 k ohm load 96.2 dB 100 dB at 0 gain Power Requirements 11 to 52 Vdc phantom, 2.0 mA Common Mode Rejection 45.0 dB minimum Polarity Positive sound pressure on diaphragm produces positive voltage on pin 2 relative to pin 3 of output XLR connector. Environmental Conditions Operating Temperature Range: -18 to 57 degrees C (0 to 135 degrees F) Storage Temperature Range: -29 to 74 degrees C (-20 to 165 degrees F) Cable Shielded 1.2 meter (4 ft.) cable terminated with a 4-Pin Female Mini Connector (TA4F)
Datasheet

Suppliers

Company
Product
Description
Supplier Links
Microflex Series Lavalier Microphone (Supercardioid) - 9310 - TMP Pro Distribution
Berlin, CT, USA
Microflex Series Lavalier Microphone (Supercardioid)
9310
Microflex Series Lavalier Microphone (Supercardioid) 9310
Microflex® Lavalier microphones bring a new level of sophistication to personal voice reproduction. Like all Microflex family microphones, the Lavaliers use Shure's interchangeable condenser cartridges, available in cardioid, supercardioid or omnidirectional polar patterns. Compatible with all Shure wireless bodypack transmitters, their high sensitivity and wide frequency response guarantee great sound. Type Condenser (electret bias) Frequency Response 50 to 17,000 Hz Polar Pattern Supercardioid Output Impedance EIA rated at 150 ohms (180 ohms actual) Open Circuit Sensitivity (at 1 kHz, ref. 1V/Pascal*) -33.5 dB (21.1 mV) All settings -12 dB at 0 gain *1 Pascal = 94 dB SPL Max SPL (1kHz at 1%THD, 1 k ohm load) MX184: 122.7 dB All settings +6 dB at 0 gain Equivalent Output Noise (A-weighted) 26.5 dB Signal to Noise Ratio (referenced at 94 dB SPL) 67.5 dB Dynamic Range at 1 k ohm load 96.2 dB 100 dB at 0 gain Power Requirements 11 to 52 Vdc phantom, 2.0 mA Common Mode Rejection 45.0 dB minimum Polarity Positive sound pressure on diaphragm produces positive voltage on pin 2 relative to pin 3 of output XLR connector. Environmental Conditions Operating Temperature Range: -18 to 57 degrees C (0 to 135 degrees F) Storage Temperature Range: -29 to 74 degrees C (-20 to 165 degrees F) Cable Shielded 1.2 meter (4 ft.) cable terminated with a 4-Pin Female Mini Connector (TA4F)

Microflex® Lavalier microphones bring a new level of sophistication to personal voice reproduction. Like all Microflex family microphones, the Lavaliers use Shure's interchangeable condenser cartridges, available in cardioid, supercardioid or omnidirectional polar patterns. Compatible with all Shure wireless bodypack transmitters, their high sensitivity and wide frequency response guarantee great sound.
Type
Condenser (electret bias)
Frequency Response
50 to 17,000 Hz
Polar Pattern
Supercardioid
Output Impedance
EIA rated at 150 ohms (180 ohms actual)
Open Circuit Sensitivity (at 1 kHz, ref. 1V/Pascal*)
-33.5 dB (21.1 mV)
All settings -12 dB at 0 gain *1 Pascal = 94 dB SPL
Max SPL (1kHz at 1%THD, 1 k ohm load)
MX184: 122.7 dB
All settings +6 dB at 0 gain
Equivalent Output Noise (A-weighted)
26.5 dB
Signal to Noise Ratio (referenced at 94 dB SPL)
67.5 dB
Dynamic Range at 1 k ohm load
96.2 dB
100 dB at 0 gain
Power Requirements
11 to 52 Vdc phantom, 2.0 mA
Common Mode Rejection
45.0 dB minimum
Polarity
Positive sound pressure on diaphragm produces positive voltage on pin 2 relative to pin 3 of output XLR connector.
Environmental Conditions
Operating Temperature Range: -18 to 57 degrees C (0 to 135 degrees F)
Storage Temperature Range: -29 to 74 degrees C (-20 to 165 degrees F)
Cable
Shielded 1.2 meter (4 ft.) cable terminated with a 4-Pin Female Mini Connector (TA4F)

Supplier's Site Datasheet

Technical Specifications

  TMP Pro Distribution
Product Category Audio Microphones
Product Number 9310
Product Name Microflex Series Lavalier Microphone (Supercardioid)
Directivity Cardioid
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