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Studio microphone Samsung X1 S Vocal Pack — wired XLR-3, 20–20,000 Hz, -30.5 dB sensitivity, 48 V phantom, black
The Studio microphone Samsung X1 S Vocal Pack is a wired cardioid condenser microphone designed for vocal and instrument recording. It connects via an XLR-3 interface and covers a frequency range of 20–20,000 Hz with a sensitivity of −30.5 dB. The microphone requires 48 V phantom power and consumes approximately 6 mA. Housed in a compact metal body with a black finish (169 mm height, 58 mm diameter), it is IEC 61938 certified and intended for use in home and project studios, podcasting, and live tracking.
The Samsung X1 S Vocal Pack offers a consistent cardioid pickup pattern for focused sound capture and reduced off-axis noise. Its condenser design provides extended frequency response suitable for detailed vocal and instrumental reproduction. The metal housing enhances durability and shields against electrical interference, while the included XLR connectivity ensures a balanced, low-noise signal path. The pack includes essential accessories to start recording immediately.
Connect the microphone to an audio interface, mixer, or preamp using the XLR-3 cable provided. Ensure the connected device supplies 48 V phantom power before use. Position the microphone with its front (cardioid axis) directed toward the sound source at an appropriate distance for the desired tonal balance—closer for more presence, farther for a more natural room sound. Monitor levels to avoid clipping and adjust preamp gain as needed. Use the included isolation pack and pop shield to reduce plosives and room reflections when recording vocals.
For optimal results in vocal and close-in instrument recording, enable 48 V phantom power and employ the included pop shield and isolation pack. Place the microphone so the cardioid pattern faces the source, and experiment with distance and angle to control proximity effect and tonal balance. Use a quality preamp or interface to benefit from the microphone's condenser characteristics and to maintain a low-noise signal chain.
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