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Pyle PDMICKT34 Professional Dynamic Microphone Kit User Guide

Pyle PDMICKT34 Professional Dynamic Microphone Kit Featured


Pyle PDMICKT34 Professional Dynamic Microphone Kit

Pyle PDMICKT34 Professional Dynamic Microphone Kit Product

About Pyle

Pyle is a well-known consumer electronics company that specializes in manufacturing a wide range of audio equipment and accessories. The company was founded in 1960 and is based in Brooklyn, New York. Pyle Audio has built a reputation for producing affordable and quality audio products, catering to various consumer needs.


Connecting and disconnecting the microphone cable:

  1. Insert the XLR connector into the microphone. If necessary, rotate the connector to align the key on the connector and the groove in the microphone, and push the connector into the microphone until it clicks.
  2. To disconnect the cable and microphone, grasp the connector while depressing the tab. Pull the connector away from the microphone.


Pyle PDMICKT34 Professional Dynamic Microphone Kit (1)

  1. For the best Gain-before-feedback and isolation from undesired background noise, aim the microphone. toward the sound resource and away from undesired sound resources.Pyle PDMICKT34 Professional Dynamic Microphone Kit (2)
  2. Do not cover any part of the grille with your hand, covering the grille alters the sound and distorts the polar pattern increasing the chance for feedback.


  1. If the head of the microphone is covered by a hand or brought close to the speaker, a howling sound may be generated. To prevent this, first decrease the volume, then place the microphone so that it is not pointed to the speaker and that there is a sufficient distance between the microphone and speaker.
  2. It is important to keep foreign particles out of the grill and the windscreen because they may alter the frequency response of the microphone. The grill shall be periodically cleaned using warm, soapy water, rinsed with plain water, and let dry before replacing.
  3. Due to the high sensitivity of the cartridge, do not drop it from high or apply strong shock to it.
  4. To maintain the sensitivity and quality of sound reproducing, avoid exposing it to moisture and extreme temperatures.


  • Includes (3) Handheld Microphones & (3) XLR Audio Cables Built-in Acoustic Pop Filters
  • Ultra-Wide Frequency Response
  • High Signal Output for Vocals & Singing
  • Rugged Construction & Steel Mesh Grill
  • Reinforced Sound Cartridge
  • ON/OFF Switch for Stage Control
  • Perfect for Stage Performances or In-Studio Use

Technical Specs

  • Mic Element: Hyper-Cardioid
  • Pickup Pattern: Unidirectional Moving Coil
  • Mic Construction Material: Zinc Alloy
  • Audio Cable Connectors: XLR to 1/4″
  • XLR Cable Length: 26’+ Ft.
  • Open Circuit Sensitivity: -54 dB
  • Frequency Response: 60Hz-15kHz
  • Output Impedance: 600 Ohm, +/-3dB (0dB=1V/Pa@ 1kHz)

Pyle PDMICKT34 Professional Dynamic Microphone Kit (3)

FAQs Pyle PDMICKT34 Professional Dynamic Microphone Kit

A professional dynamic microphone: how do you use it?

An audio interface must be plugged into your computer before an XLR cable from your dynamic microphone can be used to link the two devices. Then, change the input to the audio interface in your computer’s settings.

Why is a dynamic microphone good?

Dynamic microphones are well suited to a wide range of applications because they have the following advantages: they are best at managing high sound pressure levels (SPL), they have nearly no self-noise, they don’t need a power source like 48V phantom power, and they are excellent at rejecting unwanted adjacent noise.

What processes take place inside a dynamic microphone?

When used in reverse, a dynamic microphone functions as a speaker. By altering sound pressure, the diaphragm is shifted. As a result, the coil is moved, cutting the flux lines coming from the magnet and causing current to flow. Therefore, you extract energy out of the coil rather than putting electrical energy into it (as in a speaker).

Do dynamic microphones need to be powered?

Power supplies are not necessary for dynamic microphones (partially true) Although there are a few exceptions, the vast majority of dynamic microphones can function without electricity. In general, condenser mics require some sort of power source.

Do dynamic microphones require an external power source?

Phantom power is not necessary for dynamic microphones. However, some dynamic microphones with extremely low output levels, like the Shure SM7B (whose output level is -69dBV), need a preamp to amplify the signal. The phantom power must then be turned on if the preamp to which you are connecting the microphone is already turned on.

How far away should I place a dynamic microphone?

The best distance for a dynamic microphone, such as the XDM-100, from your mouth is 5–15 cm (2–6 inches). The typical distance for condenser microphones, such as the XCM-50, is between 10 and 20 cm (4 and 8 inches).

How long do dynamic microphones last?

advantages of a dynamic microphone Dynamic microphones are very robust, according to Dave. “Things like humidity, heat, and electric shock don’t really affect them much. It can be advantageous for a dynamic microphone to record less detail than a condenser mic since this makes them more forgiving in noisy environments.

What kind of audio output can a dynamic microphone produce?

A dynamic microphone produces sound that might be characterized as well-rounded and mellow. A cardioid polar response characteristic is present in almost all dynamic microphones.

What does “dynamic microphone” mean exactly?

In this context, it refers to the type of electromagnetic that, for instance, takes place inside the dynamo on your bicycle: Electric current is induced when a conductor moves in a magnetic field. Thus, dynamic microphones are microphones that use electromagnetic to transform sound into an electrical signal.

What components comprise a dynamic microphone?

Inside the capsule of a dynamic microphone are three basic components: a magnet, a thin metal diaphragm, and a metal coil. The diaphragm moves when there are sound waves. The coil is subsequently moved by this vibration. As a result, sound waves are converted into electrical impulses by the movement of the coil with respect to the magnet.

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