Wide dispersion reflector

4907671
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Inventors

Wiley, Robert J.

Application #

179491

Filed

Apr-8-1988

Published

Mar-13-1990

Current US Class

181/155
181/175
181/199
381/160

International Classes

H05K 005/00

Field of Search

181/141 181/144 181/150 181/153 181/148 181/155 181/199 181/175 381/156 381/160

Assignee

Unique Musical Products, Inc. (Effingham, IL)

Examiners

Fuller; B. R.

Attorney, Agent or Firm

Wood, Herron & Evans

US Patent References

4085289   Loudspeaker system
4227050   Virtual sound sourc...

Referenced by:

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Citation

Cite This Patent

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Abstract
A reflector disperses the audio waves from a loudspeaker acoustic source in a substantially 180 degree pattern. The reflector, coupled with a speaker, forms a loudspeaker system producing a wide dispersion of audio waves in a listening area. The reflector can be adjusted to alter the direction of the dispersal pattern in the listening area.
 
Claims
I claim:

1. A reflector for distributing audio waves in a substantially 180 degree dispersal pattern from a diaphragm speaker propagating the audio waves along a substantially single axis into a listening area comprising:

a flat back wall substantially parallel to and laterally spaced from said axis;

a reflecting surface from which said audio waves reflect directly into said listening area connected to said back wall, said reflecting surface having a leading edge connected to said back wall near said speaker, said leading edge approximately intersecting said axis; and

a trailing edge connected to said back wall and said reflecting surface, said trailing edge encompassing an area greater than an area of said speaker.



Description
FIELD OF THE INVENTION

This invention relates to loudspeaker reflectors having wide angle dispersion characteristics.

BACKGROUND OF THE INVENTION

From the beginning of man's enjoyment of recorded music, efforts have been continually made to improve the quality of reproduction of the recorded sounds. Improvements have been made in the means for producing recorded sounds, for amplifying the recorded signal, and for playing back the recorded signals into a listening area. The loudspeakers used for music playback serve as but one example of the continuing effort to produce improved, high fidelity sound.

Loudspeaker designs have been developed over the years to address a variety of shortcomings in the reproduction process. One problem in obtaining faithful reproduction of an audio input signal is attributable to the varying energies of the output audio waves from the loudspeaker. Low frequency waves propagated from an acoustic source such as a loudspeaker are quickly dispersed in the listening area as the wave moves from the acoustic source. Such waves are described as non-directional. Higher frequency waves of from about 250 Hz to the upper range of human audibility do not disperse as readily as they leave the acoustic source. The waves, which are propagated in a specific direction, tend to maintain that direction for a longer period of time than the low frequency waves. Thus, the higher frequency waves are described as directional, the effect being known generally as the beaming effect.
 
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