JBL Technical Note - Danger, Low Power 电路原理图.pdf
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1、Too Little Amplifier Power Can Produce Too Much We occasionally hear of JBL owners who damage the high frequency components of their loudspeaker systems using amplifiers that are rated at less-rather than more-power output than recommended. Understandably, they often find it difficult to comprehend
2、how such an amplifier can actually burn out JBL components when they have been told, by our dealers and in our literature, that JBL loudspeakers can handle large amounts of power and will also deliver big sound with relatively little input power These statements are true, provided the amplifier is n
3、ot overdriven. To understand this more clearly, it is necessary to understand the nature of music as it relates to amplifier power and distortion. First, The Nature Of Music Not all musical notes are created equal. There is much more power in the lower registers of music than in the midrange and tre
4、ble regions. If we examine the accompanying graph, we can see that the energy content of treble frequencies is typically 10 to 20 dB less than bass and midrange frequencies. Therefore, even if we allow for 10-dB peaks in high frequency program material, which is common, the high frequency driver of
5、a system will be called upon to handle only about one-tenth the power that the low and mid frequency com- ponents must sustain. This natural distribution of musical energy works to our advantage. It means, for example, that a loudspeaker system capable of handling 100 watts should have a high freque
6、ncy unit capable of handling 10 watts. Thus, if the high frequency unit is designed to handle 20 watts of power (characteristic of many JBL systems), we are building a 100% safety factor into the high frequency unit. The result is that the capabilities of the components of a loudspeaker system paral
7、lel the natural energy distribution of music. Now, Lets Look At The Nature Of Amplifier Power The power output specification of an amplifier is not absolute. Under certain operating conditions, such as when the volume control is set too high or when the input signal is too great, the amplifier can e
8、xceed its published output. The power out- put of an amplifier is rated with reference to a given level of total harmonic distortion (THD). If required to produce more power, the amplifier will do so, but at considerably greater distortion levels. For example, an amplifier rated at 10 watts (20 to 2
9、0,000 Hz into an 8-ohm load) at no more than 0 5% THD could be overdriven to produce 20 watts of output power to the loudspeakers. Under these same adverse conditions, an amplifier rated at 20 watts could deliver 40 watts to the loudspeakers; a 35-watt amplifier could deliver 70 watts and a 50-watt
10、amplifier could be overdriven to deliver 100 watts. This distorted output could very well be in the treble region, as we shall soon see. Heres The Killer: Distortion Generally Affects High Frequency Drivers The additional power generated by overdriving the amplifier is rich in harmonics (distortion)
11、. These harmonics can be particularly dangerous to high frequency drivers. Harmonics are higher frequency multiples of the original signal; therefore, the high frequency component of a loudspeaker system must bear the brunt of the distortion - even though the original signal may have been generated
12、by a bass guitar. Heres What It Looks Like On A Scope When a sine wave test signal (a signal consisting of a fun- damental frequency without overtones or harmonics) is dis- played on the screen of an oscilloscope, its top and bottom extremes will exhibit normally rounded contours. Average output pow
13、er is one-half the peak output power. When an amplifier is overdriven, the contours are clipped off, pro- ducing a near square wave, having flat areas at the top and bottom limits, in which the average power approaches the Energy distribution of typical recorded orchestral music. Rock and electronic
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