
14mm Noise-Cancelling Capsule For Streaming Microphones
This 14mm noise-cancelling capsule for streaming microphones features a high sensitivity of -36±2dB and a low signal-to-noise ratio of 79dB, ensuring accurate and clear sound reproduction. The device functions within a frequency range of 100-16,000Hz and is capable of reaching a maximum sound pressure level (SPL) of 120dB, rendering it suitable for a variety of audio recording scenarios. The compact dimensions of 14mm x 5.5mm enable effortless integration into a range of devices, guaranteeing reliable and consistent performance.
Features
- High sensitivity: -36±2dB for accurate audio acquisition.
- Unidirectional Pickup Pattern: Captures audio from a designated source while minimizing ambient noise interference.
- Extensive Frequency Spectrum: 100-16,000Hz for thorough audio representation.
- Maximum SPL reaches 120dB, enabling the capture of high-volume sound sources with minimal distortion.
- Low Noise: The signal-to-noise ratio of 79dB guarantees a clear audio output with reduced background interference.
- Dimensions: 14mm x 5.5mm, designed for seamless integration into a range of audio equipment.
Applications


specifications
Name | Parameter |
Sensitivity |
-36±2dB |
Output impedance | 15KΩ |
Directivity |
Uni-Directional |
Frequency range |
100-16000HZ |
Maximum SPL |
120 dB |
S/N Ratio | 79dB |
Dimensions | 14*5.5(mm) |
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Why Choose Us
- Advanced Manufacturing: Our 14mm Noise-Cancelling Capsule for Streaming Microphones is engineered through automated, precision-driven processes to ensure consistency and reliability.
- Improved Quality Assurance: Comprehensive quality evaluations, including sensitivity and signal-to-noise ratio assessments, guarantee peak performance.
- Customized Solutions: We offer OEM/ODM services specifically engineered to meet distinct customer requirements.
- Sturdy and Reliable: Designed to withstand demanding environments, ensuring long-lasting performance and reliability.
- Technical Assistance: Our expert team is prepared to provide support and guidance on optimal microphone integration techniques.
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