Speakers

Image Part Number Description / PDF Quantity Rfq
FTEC-30114-I04

FTEC-30114-I04

Knowles

SPEAKR 30OHM TOP PORT 107DB RECT

0

RVA-90020-N15

RVA-90020-N15

Knowles

SPEAKER 117.8OHM 94.3DB

0

ED-30798-000

ED-30798-000

Knowles

SPEAKER SMD

0

CI-28268-028

CI-28268-028

Knowles

SPEAKER Z=51 OHMS PORT ON END

0

ED-27156-P102

ED-27156-P102

Knowles

SPEAKER SMD

0

7000-253880

7000-253880

Knowles

SPEAKER

0

CI-28267-A01

CI-28267-A01

Knowles

SPEAKER Z=75 OHMS PORT ON SIDE

0

CI-22960-P29

CI-22960-P29

Knowles

SPEAKER 264OHM 125.5DB RECT

0

EF-21763-000

EF-21763-000

Knowles

SPEAKER 1.275 KOHM SIDE PORT

0

ED-21975-A21

ED-21975-A21

Knowles

SPEAKER 1.45KOHM SIDE PORT 104DB

0

ED-21912-A38

ED-21912-A38

Knowles

SPEAKER Z=196 OHMS PORT ON END

0

TEC-30006-000

TEC-30006-000

Knowles

SPEAKER 62OHM SIDE PORT 107DB

0

FED-27926-I04

FED-27926-I04

Knowles

RECEIVER FERROFLUID DAMPED

0

FH-23377-000

FH-23377-000

Knowles

SPEAKER 1.03KOHM SIDE PORT 100DB

0

CI-28417-A42

CI-28417-A42

Knowles

SPEAKER PORT ON END SS SMD

0

FFH-23469-I04

FFH-23469-I04

Knowles

RECEIVER FERROFLUID DAMPED

0

8101-254090

8101-254090

Knowles

SPEAKER

0

RVA-90091-N02

RVA-90091-N02

Knowles

SPEAKER SMD

0

8113-254002

8113-254002

Knowles

SPEAKER

0

FED-30353-I04

FED-30353-I04

Knowles

SPEAKER SMD

0

Speakers

1. Overview

Speakers are electroacoustic transducers that convert electrical audio signals into sound waves. As critical components in audio systems, they reproduce audible frequencies (typically 20Hz-20kHz) with controlled directivity and fidelity. Modern speaker technology integrates materials science, electromagnetism, and digital signal processing to deliver immersive audio experiences across consumer, professional, and industrial applications.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Dynamic Speakers Electromagnetic driver with cone diaphragm, wide frequency response Home theaters, PA systems
Electrostatic Speakers Thin membrane with electrostatic field, excellent transient response High-end audiophile systems
Planar Magnetic Flat diaphragm with printed circuits, precise sound imaging Studio monitoring, headphones
Coaxial Speakers Multiple drivers on single axis, improved phase coherence Car audio systems
Subwoofers Specialized for low-frequency reproduction (20-200Hz) Cinema sound systems

3. Structure and Components

Typical speaker systems consist of:

  • Transducer Elements: Voice coil, magnet assembly, diaphragm
  • Cabinet: Made from MDF, aluminum, or composite materials
  • Crossover Network: Passive/active filters directing frequencies to drivers
  • Connectors: Binding posts, TRS/XLR inputs, or wireless modules
  • Damping Materials: Acoustic foam for resonance control

4. Key Technical Specifications

Parameter Description Significance
Frequency Response 20Hz-20kHz 3dB Defines audible range accuracy
Sensitivity 85-100 dB/W/m Efficiency in sound production
Impedance 4 , 6 , 8 nominal Matching with amplifiers
Power Handling 20-1000W RMS Maximum safe operating level
THD <0.5% at 1W Audio signal purity

5. Application Areas

  • Consumer Electronics: Smart speakers (Amazon Echo), soundbars
  • Professional Audio: Studio monitors (Yamaha HS8), live sound systems
  • Automotive: Door speakers, active noise cancellation systems
  • Commercial: Distributed audio in retail spaces, emergency PA systems
  • Immersive Systems: Dolby Atmos home cinema setups

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Innovation
Bose 901 Direct/Reflecting Series Omni-directional sound field
KEF LS50 Wireless Uni-Q concentric driver
Bowers & Wilkins 800 Series Diamond Matrix internal bracing
Yamaha HS8 Studio Monitor Neutral sound reproduction
Harman Kardon Invoke Cortana integration

7. Selection Recommendations

Key selection criteria:

  • Match impedance/power handling with amplifier specifications
  • Room size vs. speaker sensitivity (e.g., 88dB+ for large spaces)
  • Crossover frequency alignment in multi-way systems
  • Material durability for environmental conditions (humidity, temperature)
  • Budget allocation: 30-50% of total audio system cost recommended

8. Industry Trends Analysis

Emerging developments include:

  • Integration of AI-powered room calibration (Dirac Live, Audyssey)
  • Multi-directional transducers for 3D audio in VR/AR applications
  • Development of micro-speakers using graphene diaphragms
  • Adoption of wireless mesh networks (WiSA technology) for speaker arrays
  • Growth of automotive audio systems with headrest-integrated transducers
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