Microphones

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1,960
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Results remaining1,960
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ImageProduct DetailPriceAvailabilityECAD ModelTypeSize / DimensionHeight (Max)TerminationShapeSeriesSensitivityOutput TypeRatingsDirectionS/N RatioPort LocationVoltage - RatedImpedanceCurrent - SupplyVoltage RangeFrequency Range
TM-60020-C54
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Quantity
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PCB Symbol, Footprint & 3D Model
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TM
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SPU0414HR5H-SB-7
MICROPHONE MEMS ANALOG OMNI
1+
¥0.5000
5+
¥0.4722
10+
¥0.4444
Quantity
19,931 Available
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Ships from: HK
PCB Symbol, Footprint & 3D Model
MEMS (Silicon)
0.148" L x 0.116" W (3.76mm x 2.95mm)
0.047" (1.20mm)
Solder Pads
Rectangular
SiSonic™ SPU
-22dB ±3dB @ 94dB SPL
Analog
-
Omnidirectional
59dB
Top
-
400 Ohms
220 µA
1.5 V ~ 3.6 V
100 Hz ~ 10 kHz
BETA57A-63052
SHURE BETA 57 INSTR MICROPHONE
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Quantity
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PCB Symbol, Footprint & 3D Model
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150 Ohms
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50 Hz ~ 16000 Hz
BETA58A-63051
SHURE BETA 58 VOCAL MICROPHONE
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Quantity
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PCB Symbol, Footprint & 3D Model
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150 Ohms
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50 Hz ~ 16000 Hz
VBU-60639-000
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Quantity
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PCB Symbol, Footprint & 3D Model
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EM-25346-C37
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.141" L x 0.141" W (3.57mm x 3.57mm)
0.090" (2.28mm)
Solder Pads
Square
EM
-54dB ±3dB @ 74dB SPL
Analog
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Omnidirectional
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Side
1.3 V
4.4 kOhms
50 µA
-
100 Hz ~ 10 kHz
EM-25447-C36
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.141" L x 0.141" W (3.57mm x 3.57mm)
0.090" (2.28mm)
Solder Pads
Square
EM
-
Analog
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Omnidirectional
-
Side
1.3 V
4.4 kOhms
50 µA
0.9 V ~ 1.6 V
500 Hz ~ 6 kHz
EM-27013-000
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.141" L x 0.141" W (3.57mm x 3.57mm)
0.090" (2.28mm)
Solder Pads
Square
EM
-52.5dB ±4dB @ 74dB SPL
Analog
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Omnidirectional
-
Side
1.3 V
4.4 kOhms
50 µA
0.9 V ~ 10 V
1 kHz ~ 5.4 kHz
EM-27692-S01
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.141" L x 0.141" W (3.57mm x 3.57mm)
0.090" (2.28mm)
Solder Pads
Square
EM
-57.5dB ±3dB @ 74dB SPL
Analog
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Omnidirectional
-
Bottom
1.3 V
4.4 kOhms
50 µA
-
100 Hz ~ 10 kHz
FG-23653-D58
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.101" Dia (2.57mm)
0.102" (2.60mm)
Solder Pads
Circular
FG
-53dB ±3dB @ 74dB SPL
Analog
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Omnidirectional
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Bottom
1.3 V
4.4 kOhms
50 µA
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100 Hz ~ 10 kHz
SPV0142LR5H
FORD 2 ANALOG BTM PORT MIC
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Quantity
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PCB Symbol, Footprint & 3D Model
MEMS (Silicon)
0.108" L x 0.073" W (2.75mm x 1.85mm)
0.039" (1.00mm)
Solder Pads
Rectangular
SiSonic™
-38dB ±3dB @ 94dB SPL
Analog
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Omnidirectional
62.5dB
Bottom
1.8 V
400 Ohms
185 µA
1.5 V ~ 3.6 V
50 Hz ~ 10 kHz
MVA-61447-000
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Quantity
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PCB Symbol, Footprint & 3D Model
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MVA
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SPK0415HM4H-B-7
MIC MEMS DIGITAL PDM OMNI -26DB
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Quantity
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PCB Symbol, Footprint & 3D Model
MEMS (Silicon)
0.157" L x 0.118" W (4.00mm x 3.00mm)
0.046" (1.16mm)
Solder Pads
Rectangular
SiSonic™
-26dB ±3dB @ 94dB SPL
Digital, PDM
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Omnidirectional
61dB
Top
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650 µA
1.6 V ~ 3.6 V
100 Hz ~ 10 kHz
SPVF8B8LR5H1
MICROPHONE MEMS DIGITAL PDM OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
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EM-27693-C40
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.141" L x 0.141" W (3.57mm x 3.57mm)
0.090" (2.28mm)
Solder Pads
Square
EM
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Analog
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Omnidirectional
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100 Hz ~ 10 kHz
FG-23653-C56
MICROPHONE COND ANALOG OMNI
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.101" Dia (2.57mm)
0.102" (2.60mm)
Solder Pads
Circular
FG
-53dB ±3dB @ 74dB SPL
Analog
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Omnidirectional
-
Side
1.3 V
4.4 kOhms
50 µA
-
100 Hz ~ 10 kHz
TOM-1145S-C33
MIC COND ANALOG OMNI -45DB 4MM D
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Quantity
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PCB Symbol, Footprint & 3D Model
Electret Condenser
0.157" Dia (4.00mm)
0.051" (1.30mm)
Solderless (Bullseye)
Circular
TOM
-45dB ±3dB
Analog
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Omnidirectional
60dB
Top
2 V
2.2 kOhms
500 µA
2 V ~ 10 V
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HM-31067-000
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Quantity
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PCB Symbol, Footprint & 3D Model
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HM
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GA38-60739-S24
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GA
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FG-23629-B27
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Quantity
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PCB Symbol, Footprint & 3D Model
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FG
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About  Microphones

Microphones are electronic devices that convert sound waves into electrical signals. This conversion allows for various applications, including storing, transmitting, and rebroadcasting audio. Microphones come in a wide range of designs to suit different needs. There are large boom-style microphones, commonly used in professional recording studios and broadcasting settings, known for their high-quality audio capture. On the other hand, there are smaller and more popular MEMS (MicroElectroMechanical System) microphones, often found in consumer electronics like smartphones and wearable devices due to their compact size and efficiency. These microphones are differentiated by several factors. Impedance refers to the electrical resistance of the microphone's output signal and impacts its compatibility with different audio systems. Voltage rating determines the maximum voltage that can be applied to the microphone without causing damage. Sensitivity refers to the microphone's ability to capture sound accurately and is usually measured in decibels per Pascal (dB/Pa). The frequency range indicates the range of frequencies the microphone can effectively capture, ensuring accurate reproduction of different audio sources. Port location refers to the placement of the microphone's input or output ports, which can affect its suitability for specific applications. Overall size and mounting type play a role in determining the microphone's physical form, making it suitable for different setups and installations. Additionally, microphones offer various output interfaces to connect with audio systems. Analog output interfaces provide a continuous electrical signal that corresponds to the captured sound. I2S (Inter-IC Sound), PDM (Pulse-Density Modulation), and TDM (Time-Division Multiplexing) are digital output interfaces that allow for efficient transmission of audio data between microphones and other devices. By considering these factors, individuals and professionals can choose the right microphone to meet their specific requirements, ensuring optimal sound capture and quality in various applications.