JBL Technical Note - Vol.1, No.3A 电路原理图.pdf
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1、A. Introduction: JBLs low frequency (LF) transducers tall into three major categories, based on their relative efficiencies. Those models in the lowest efficiency category exhibit high linearity and are primarily used as subwoofers and low frequency applications in studio monitors. The mid- efftcien
2、cy models find their greatest application in general sound contracting work, and the highest effi ciency models excel for LF horn applications as well as use with musical instruments The mid-efficiency models are further available in JBLs standard magnetic configuration as well as in the Vented Gap
3、Cooling (VGC) configuration introduced m 1990 The VGC products provide advantages in heavy duty applications, where their superior power dissipation results in low dynamic compression. It is the purpose of this Technical Note to explain to the professional user how LF transducers are chosen for spec
4、ific jobs. We will also explain in detail the elements of construction and design of the transducers which optimize them for their particular jobs. B. The Basic Matrix: The primary JBL transducers are grouped into a three-way matrix, shown as follows: Table I. SENSITIVITY MEDIUM HIGH MAXIMUM EFFICIE
5、NCY: 0.5% 3% 2% 6% 2%-6% 4% - 10% LINEARITY: mr.n MEDIUM (STANDARD) MEDIUM LIMITED 460 mm (16 in) 2245H 2240H 2241H (E155-8) 380mm(15tn) 2235H fffDf 2226HJ (Haiti 300 mm (12 In) (128H-1) 2202H 2206H (El 20-8) Those models enclosed in parentheses are not in the normal 2200-senes line-up. but they tit
6、 structurally into the matrix in the slots indicated. The model 128H-1 is used as the LF driver in the Model 4412 studio monitor system C. Sensitivity vs. Efficiency: it is important to understand the difference be tween sensitivity and efficiency. The reference efficiency of a transducer is a funct
7、ion of its electro-mechanical parameters and is normally expressed as a percentage of the input power which is converted to acoustical power in the so-called piston band range of the trans ducer, over which its response is essentially omnidirec tional. Sensitivity is a measure of sound pressure outp
8、ut at some reference distance on-axis with a reference input signal. In normal industry practice, the reference dis tance is taken as one meter (3.3 ft.). The input signal may be one watt, or perhaps a stated rms voltage (2.83 V is common, in that it is the applied voltage which will produce a power
9、 of one watt in an 8 ohm load). It is important to note the frequency band over which the sensitivity measurement is made. Normally, it is stated over a fairly wide range, perhaps as high as 2.5 kHz; In such cases, on-axis directional effects will result in high sensitivity ratings. D. Detailed Desc
10、ription of the Matrix: In this section we will descnbe in detail the internal parts of a loudspeaker. For those who are not familiar with JBL LF transducer construction, we present in Figure 1A a labeled section view Figure IB shows the added detail of the VGC magnetic structure. The cone, voice coi
11、l, and frame details cf the VGC products are the same as shown in Figure 1A. 1. MEDIUM-SENSITIVITY TRANSDUCERS: a Uses: Pnmary use is as LF transducers in monitor sys tems as well as subwoofer designed for recording Technical Notes, Volume 1 Number 3A Choosing JBL Low Frequency Transducers studios a
12、nd and motion picture theaters. For these purposes, long travel at low frequencies is essential, as is low distortion Smooth HF response is also a require ment for proper transition to mid- and high-frequency transducers in the 400 Hz to 1 kHz range b. Sensitivity and Power Handling: Table II. b. Se
13、nsitivity and Power Handling Table III. MODEL RATED SENSITIVITY (1 W 1 mi CONTINUOUS PROGRAM POWER REFERENCE EFFICIENCY 2245H 95 dB 600 Warts 2.1% 2235H 93 dB 300 Wans 1.3% 128H-1 91 dB 200 Waits 0.86% c. Internal Design and Construction: VOICE COIL: Flat copper wire (see Table VI). extended over-ha
14、nging winding for maximum linearity (see Figure 2A); 100 mm (4 in) voice coil diameter used in larger models; 75 mm (3 in) voice coil diameter used In 128H-1. VOICE COIL FORMERS: Made of aluminum. Kapton polyimide plastic, or a composite for effective heat sinking and mechanical integrity (see Table
15、 VII). SPIDER (Inner Suspension): All models use a special design which reduces dynamic offset and instability at high drive levels, resulting in unusually low distortion and tight transient character. CONE Straight-sided and nbbed for stability. Fairly large mass for optimum balance of efficiency,
16、bass output, and low distortion. Aquaplas coating used on 2245 and 128H-1 to optimize stiffness and mass; mass ring on 2235 for desirable efficiency and bass balance. SURROUND (Outer Suspension); Half-roll of polyurethane foam for high compliance and long travel (see Figure 3A). DUST DOME Made ot si
17、milar felted material as cone for smoothest HF response. 2. HIGH-SENSITIVITY TRANSDUCERS: a. Uses: Pnmary use is in sound and music reinforcement, mounted in horn and direct radiator reflex-type enclo sures For these purposes. LF cone excursion has been limited and sensitivity increased, relative to
18、 the transduc ers of the medium sensitivity class, in order to get greater output in the 50 or 60 Hz range up to 800 Hz. MODEL SENSITIVITY CONTINUOUS REFERENCE W w 1 m; PROGRAM POWER EFFICIENCY 2240H 06 dB 600 W 5% 2225H.J 97 dB 400 W 3.5% El40 8 100 dB 400 W 4.9% 2202H 99 dB 300 W 6% VGC PRODUCTS 2
19、241G.H 96 08 97 dB 95 dB 29% 3-3% 2-5% 2226G.H J 96 08 97 dB 95 dB 29% 3-3% 2-5% 2206H.J 96 08 97 dB 95 dB 29% 3-3% 2-5% c. Internal Design and Construction: VOICE COILS: Flat copper or aluminum wire. 100 mm (4 in) in diameter. Slightly over-hung in the mag netic gap (see Figure 2A) for proper balan
20、ce of sensitiv ity and linearity. VOICE COIL FORMERS Made of aluminum. Kapton polyimide plastic, or a combination, for effective heat resistance and sinking, and rigidity. SPIDER (Inner Suspension) All models use a special design which reduces dynamic offset and instability at high drive levels, res
21、ulting in unusually low distortion and a tight transient character CONE: Straight-sided and ribbed tor stability; however, total moving mass is less than in the case of medium efficiency transducers, without added damping compounds or mass rings. SURROUND (Outer Suspension): Multiple halt-roll (see
22、Figure 3B) provides controlled travel Stiffness is optimized by depth of rolls, weave of cloth, and damping treatment. DUST DOME: Made of similar felted material as cone for smoothest HF response The E140 is similar to the 2225. but with an alumi num dome and less voice coil overhang for slightly mo
23、re midrange efficiency, peaked high-frequency output, and a punchy sound character The E145 and 2234 are specialized transducers that combine high efficiency with high linearity. The E145 has a short copper coil moving in a very deep magnetic gap (Figure 2B) for maximum voice coil control and excurs
24、ion linearity. This design also provides maximum low frequency output from a given enclosure size The E145 can move as much air as a high effi ciency 460 mm (18 in) transducer. The 2234 is identical to the 2235 with the deletion of the mass ring This raises the efficiency (mid-band sensitivity) for
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