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The PGX24/SM58 Handheld System is ideal for vocal use in stage performances, presentations, television, broadcasting, video, film, and sound reinforcement. This system includes the PGX4 receiver, PGX2 handheld transmitter with SM58 microphone capsule, clip and case.
The PGX4 receiver operates over an 18MHz UHF bandwidth with the flexibility of selecting up to 90 UHF frequencies. It is possible to run 9 of these systems simultaneously with their own channel selections. The diversity design enables dual internal receiver circuits to compete for the strongest possible reception, minimising noise and RF interference. The rear panel has both XLR and 1/4 inch phone outputs.
The PGX2 handheld transmitter includes the SM58 cardioid microphone head. The cardioid polar pattern reduces pick up at the off-axis sections of the capsule, reducing noise and providing higher gain-before-feedback response. A 2-position input level switch adjusts input level and reduces noise if the signal overloads. The transmitter operates up to 8 hours on 2 AA-size batteries.
PGX24/SM58 Features:
SM58 Specifications:
- Type: Dynamic (moving coil)
- Frequency Response: 50 to 15,000 Hz
- Polar Pattern: Unidirectional (cardioid), rotationally symmetrical about microphone axis, uniform with frequency
- Sensitivity (at 1,000 Hz Open Circuit Voltage): –54.5 dBV/Pa (1.85 mV) 1 Pa = 94 dB SPL
PGX System Specifications:
- Working Range: 100m (300 ft.) Note: actual range depends on RF signal absorption, reflection, and interference
- Audio Frequency Response +/– 2 dB: Minimum: 45 Hz, Maximum: 15 kHz (Overall system frequency depends on microphone element.)
- Total Harmonic Distortion (Ref. +/– 33 kHz deviation, 1 kHz tone): 0.5%, typical
- Dynamic Range: 100 dB A-weighted
- Operating Temperature Range: –18 degrees C (0 degrees F) to +50 degrees C (+122 degrees F) Note: battery characteristics may limit this range
- 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-inch output