TP-24617-P21 Allicdata Electronics
Allicdata Part #:

TP-24617-P21-ND

Manufacturer Part#:

TP-24617-P21

Price: $ 26.65
Product Category:

Audio Products

Manufacturer: Knowles
Short Description: MIC OMNI/UNI DUAL PORT
More Detail: 100Hz ~ 8.5kHz Analog Microphone 0.9V ~ 1.6V So...
DataSheet: TP-24617-P21 datasheetTP-24617-P21 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
25 +: $ 24.22320
Stock 1000Can Ship Immediately
$ 26.65
Specifications
Series: TP
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Type: --
Output Type: Analog
Direction: --
Frequency Range: 100Hz ~ 8.5kHz
Sensitivity: --
S/N Ratio: --
Impedance: 4.4 kOhms
Voltage - Rated: 1.3V
Voltage Range: 0.9V ~ 1.6V
Current - Supply: 100µA
Port Location: Side
Termination: Solder Pads
Size / Dimension: 0.141" L x 0.141" W (3.57mm x 3.57mm)
Height (Max): 0.106" (2.70mm)
Shape: Square
Description

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Microphones

A microphone, is an acoustic-to-electric transducer or sensor that converts sound into an electrical signal. In other words, microphones convert sound waves to electrical signals to be used in many applications such as audio recording, audio amplification, sound recording, telephone communication, telecommunications, monitoring, surveillance, and many more.

TP-24617-P21 Application field and Working Principle

The TP-24617-P21 is a type of professional microphone from the specialized TP series of microphones which are designed and manufactured for highly demanding applications. This particular series is ideal for both indoor and outdoor recording purposes, and is used as both a lavalier and a headset microphone. TP-24617-P21 is a condenser microphone that is equipped with acoustic baffle technology to ensure maximum sound clarity. The microphone boasts a wide frequency response, low distortion, and wide dynamic range, all of which is necessary to capture the full range of frequencies from any sound.

In terms of its applications field, the TP-24617-P21 microphone can be used in various scenarios such as recording studios, live music performances, film production, videography, broadcast radio, noise control, public speaking, and any other scenario in which accurate sound capture is required. Moreover, this microphone is designed for applications such as speech recognition, microphones for teleconferencing, and is also suited for studio audio production.

The working principle of the TP-24617-P21 microphone is relatively simple. It is designed to convert acoustic sound waves into an electrical signal. When the microphone is activated, the diaphragm vibrates in response to sound waves entering the microphone\'s capsule. This causes an electrical signal to be produced that is then sent to the audio output device. The higher the volume of sound incoming, the higher the resulting electrical signal sent to the audio output.

In order to get the best audio quality out of the TP-24617-P21, one must ensure that the microphone is properly positioned. Poor placement could lead to muddy or distorted audio. The microphone should be placed directly in front of the sound source at a distance that is neither too close nor too far. The ideal distance is roughly that of a handspan.

For optimal sound quality, the TP-24617-P21 should also be shielded from ambient background noise. A windscreen or windshield cover should be used when recording audio outdoors to prevent breezes and gusts of wind from affecting the microphones signal. Additionally, the unit should be placed in a center location in the room to eliminate the reflections created by walls, furniture, or other sound sources.

In conclusion, the TP-24617-P21 is a professional microphone that is equipped with advanced technological features to ensure maximum sound clarity and accuracy. It is designed for use in a variety of audio applications and requires careful placement in order to ensure optimal sound.

The specific data is subject to PDF, and the above content is for reference

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