JBL Technical Note - Vol.1, No.18 电路原理图.pdf
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1、Technical Notes Volume 1 Number 18 Vented Gap Cooling in Low Frequency Transducers Introduction: JBLs ongoing research into low frequency transducer design has led to a new, more efficient method for removing heat from the voice coil. It is called Vented Gap Cooling (VGC)M and its benefits extend ov
2、er several performance areas: 1. Lower power compression. Since heat IS removed more efficiently than in earlier designs, thermal equilibrium, for a given power input, is reached at lower temperatures and power compression is reduced. 2. Lower distortion. Modifications in the magnetic circuit topolo
3、gy as well as mechanical redesign of suspensions, have resulted in lower values of distortion, as compared to previous JBL models and competitive models. 3. High power handling capability. More efficient heat transfer enables these new transducers to handle substantially more power, and the new 300
4、mm (12 in), 380 mm (15 in) and 460 mm (18 in) models are now rated at 600 watts. 4. Lower weight. As part of the general redesign of these products, new methods of analysis led to substantial weight reduction in the iron portion of the magnetic structure. 5. Smoother response. New cone and suspensio
5、n materials, along with improved SFG (Symmetrical Field Geometry), have contributed to significantly flatter response over the normal passbands of the new loudspeakers. While not every user will require the increase in power handling per se, the improvements in the other areas mentioned above will b
6、e beneficial to all users. In this Technical Note, we will cover the new technology in detail. 2. How the goals were accomplished: Low frequency transducers normally carry two power ratings. One of these is its thermal rating, which is dependent on the capability of the device to dissipate heat gene
7、rated in the voice coil resistance. A loud- speaker voice coil assembly is capable of safely dissipating a fixed amount of power, regardless of the frequency of the input signal. The displacement rating is frequency dependent and relates to voice coil excursion. A loudspeaker voice coil is capable o
8、f producing a certain excursion within a specified linearity range; in general, with each halving of frequency, stated linearity performance requires halving of the applied power for safe operation within those mechanical limits. Proper vented enclosure design minimizes voice coil excursion for a gi
9、ven level of low frequency performance, and the transducers thermal limit is generally the dominant one. Thus, a transducer which has greater thermal dissipation will benefit the user in terms of greater acoustical output per driver. The best way to understand the new 600-watt design is to compare i
10、t directly with the traditional JBL design. Figure 1 shows a section view of the traditional JBL voice coil-motor structure. In this design, the voice coil is closely placed to both the top plate and the pole piece. Heat is drawn away from the voice coil primarily by radiation to the neighboring met
11、al structures, and the air passage to the back center vent of the motor structure is designed only to relieve internal pressures in the motor structure. Figure 2 shows details of the new vented gap magnet structure. A section view of the structure is shown at A: while a frontal view is shown at B. I
12、n this design, three relatively large openings or vents pass through the back plate, magnet and top plate/pole piece assemblies providing a low resistance path for air flow through the entire magnet structure at three voice coil locations. The cavity under the dust dome, with the resultant air mass,
13、 and the dome itself act as a powerful pump which, through cone motion, forces air back and forth through the vent holes and over the voice coil, pro-viding immediate cooling of the coil. There is also normal radiation heat transfer from the voice coil through the magnetic structure. 3. Improvements
14、 in manufacturing and assembly: JBL has taken the occasion of the newly engineered design to reconfigure all aspects of its manufacture. In fact, each step in the engineering of the Vented Gap Cooling series of transducers was carried out in concert with JBLs manufacturing engineering group to ensur
15、e that all manufacturing requirements could be met efficiently. Beginning with redesign of the magnetic structure, finite element analysis of that structure indicated that significantly less iron could be used in the backplate, while maintaining the desired magnetic flux density in the gap. This red
16、uction in material is evident in an examination of the back plate thickness as shown in Figures 1 and 2. Note the thickness of the double crosshatched area. In the case of the 2226H, the weight reduction of the transducer is 1.5 kg (3.25 lb) relative to the 2225H. A new voice coil winding method was
17、 perfected which allows direct winding of each individual voice coil on its former, rather than the older bulk winding of voice coils with their subsequent breakdown and assembly into finished voice coils. The newer method saves time and results in greater manufacturing yield. The new production lin
18、e and innovative assembly techniques were developed to reduce sub- assembly steps and to ensure the high accuracy and precision necessary to maintain more stringent performance specifications. The new line has become a model for subsequent improvements in all JBL low- frequency transducer assembly.
19、Figure 1. Section view of traditional JBL ferrite SFG structure: 380 mm (15 in) transducer. Figure 2. Views of the new vented gap structure: 300 mm (12 in) transducer Figure 2 (A) Section view showing air flow Figure 2 (B) Normal view of top plate, gap, and pole piece Further performance improvement
20、s in the new structure include greater excursion capability (increased Xmax), and improved SFG. The improvement in voice coil excursion capability results from new inner and outer suspensions for the cone. The improvement in SFG performance is due to the recontouring of the pole piece cross-section,
21、 as shown in Figure 3. Forming the metal into a cusp shape forces it to saturate magnetically, and the increased saturation in the voice coil region reduces the amount of flux modulation in the gap by the counter-flux produced by the voice coil signal. Figure 3. Section view showing reshaping of pol
22、epiece. 4. The proof is in the performance: Merely increasing the power input capability of a transducer does little for the user, if the device cannot handle that power adequately to produce more useful output. The most immediate improvement in the performance of the JBLs 600-watt transducers is in
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