JBL Technical Note - Vol.1, No.19 电路原理图.pdf
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1、Technical Notes Volume I, Number 19 Sub-Bass Systems Using Triple Chamber Bandpass (TCB) Technology: 1. Introduction: Most users of JBL products have a basic knowledge of how a simple ported low-frequency system works. The details are shown in Figures 1A and 1B. When the low- frequency driver is ope
2、rated in the region of box tuning, the amplitude of cone motion is reduced, and air velocity in the port increases. What is happening is simply that the air spring in the box is in resonance with the air mass in the port. The overall output of the system is the sum of port radiation and cone radiati
3、on, and the precise adjustment of driver to box volume and tuning frequency establishes what is known as an alignment. Since the tuning is normally set in the 30 to 50 Hz region, the excursion requirements of the transducer are considerably reduced, and substantial output at the port tuning frequenc
4、y can be realized with very low distortion. However, at higher frequencies, the contribution from the port is minimal and the output is essentially from the cone. The TCB design makes use of two tunings. One of these is at the low frequency limit of the intended bandpass range, and the other is at t
5、he high frequency limit. There are, thus, two frequency ranges over which enclosure tunings help to reduce distortion by minimizing cone motion. All acoustical output from the system is by way of its port openings, which act effectively as acous- tic low-pass filters and further reduce distortion. D
6、ual transducers are used in a push-push arrangement which reduces mechanical stresses and minimizes third harmonic distortion through cancellation of nonlinearities. Because of the complexity of coupled system design, JBL engineers have developed a computer pro- gram which optimizes the performance
7、of each TCB design, producing the required volume and tunings needed for a given transducer type and bandpass requirement. Figure 1. Operation of the basic ported system. Enclosure with driver is shown at A; port and cone output sum to produce extended bass response with reduced distortion in the re
8、gion of port tuning, as shown at B. Figure 1 Normalized frequency Air Spring Air Mass (A) (B) Relative response (dB) Port contribution Resultant Cone contribution 2. Details of the TCB system: Figure 3 (B) Figure 2 shows a section view of the basic TCB enclosure. Chambers 1 and 3 are identical and a
9、re tuned to the lower bandpass frequency, f,. Since the trans- ducers are wired so that their motions are in push-push the net output of the two low frequency ports is in phase. Chamber 2 is tuned to the upper bandpass fre- quency, f2, and the push-push motion of the transducers produces high air ve
10、locity at the single port. Figure 2 Frequency (Hz) Typical measured bandpass output and electrical impedance of the dual 460 mm (18 inch) TCB system is shown in Figure 4. Note that the impedance minimums take place at the upper and lower tuning frequencies of the system. Figure 4 At both extremes of
11、 the bandpass of the system, cone motion is minimized, as shown in Figure 3A. The total output is the sum of all port outputs, and this is shown in Figure 3B. Steep rolloffs are apparent above and below the upper and lower cutoff frequencies, due to polarity relationships at the port outputs. With c
12、areful adjustment of all driver and enclosure parameters, it is possible to tailor very smooth response over the targeted bandpass range. Figure 3 (A) Dual 460 mm (18 inch) TCB 2 volts input measured at 1 meter, 2TT loading Frequency (Hz) Combined Output 1 2 3 dB-SPL summed at vents, 2 volts input L
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