JBL Technical Note - Vol.1, No.7 电路原理图.pdf
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1、Technical Notes Volume 1, Number 7 In-line Stacked Arrays of Flat-front Bi-Radial Horns Introduction: Where excellent vertical pattern control in the 500 Hz range is desired, system designers will usually opt for one of the larger JBL Bi-Radial horns. However, where space is a consideration, stacked
2、 Flat-Front Bi-Radials offer nearly equivalent performance, along with increased output. Horizontal and Vertical Beamwidth Plots: Figure 3 shows the horizontal and vertical beamwidth plots for a single JBL 2370 horn. The horizontal 90 degree pattern control is maintained over the 1 kHz to 16 kHz ran
3、ge. At the lower part of this range, the pattern is supported by the relatively large horizontal mouth dimension. At the upper part of this range, the wide pattern is maintained by careful development of horn expansion in the throat region. Vertical pattern control is limited at low frequencies by t
4、he relatively small mouth dimension in that direction. What we observe is an ever widening coverage angle as we progress downward in frequency. We can relate the loss in pattern control in the vertical plane directly to the height of the mouth. An examination Of the 2360, 2365, 2370, 2380, and 2385
5、Bi-Radials shows that they all double their vertical coverage angles at the frequency whose wavelength is approximately 4/3 the mouth height. Those Bi-Radials whose nominal vertical coverage angle is 20 degrees double their vertical coverage angle at the frequency whose wavelength is approximately 2
6、/3 the mouth height. These relationships are shown in Table 1. Over the years, system designers have stacked horns in an effort to tighten vertical pattern control. Such stacking does not affect the horizontal pattern at all, but it does, in many respects, improve vertical pattern control at lower f
7、requencies. Figure 1 shows the polar response of a stacked pair of 2370s on octave centers from 500 Hz to 16 kHz, and Figure 2 shows the polar plots for a triple stack. Note that the stacked combinations produce robing in the vertical pattern at high frequencies. If we weight the lobes equally and c
8、onsider their envelope (shown by dotted lines in the polar plots), we can plot the effective beamwidths of these combinations as shown in Figures 4 and 5. Observe that in the case of the double stack, the frequency at which the combination has widened to 80 degrees has decreased from approximately 1
9、600 Hz to 800 Hz. The doubling of the effective vertical mouth dimension has halved the vertical pattern control cut-off frequency. In the case of the triple stack, the vertical pattern control has widened to 80 degrees at a frequency of approximately 630 Hz, or one-third that of the single horn. Ap
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