Amplifier and frequency response correction method
The invention relates to amplifiers of audio power which operate with loudspeaker systems. The main technical result is significant extension of the reproducible frequency range without reduction of the loudspeaker system fundamental resonance frequency. This result can be obtained by means of adding only one low power resistor and one low capacitance capacitor to a typical power amplifier. In the described embodiment this is achieved by means of a rise of the amplifier FR at low frequencies using positive feedback and the quasi-resonance effect.
1. An amplifier loaded onto an electro-acoustic transducer comprising:
an amplifying element,
a positive feedback loop which comprises a low-pass filter,
the amplifier comprises one or more elements with frequency dependent characteristics which allows forming a bandpass filter,
the medium frequency of said bandpass filter is significantly lower than the cutoff frequency at low frequencies as per sound pressure,
said bandpass filter provides a rise of the amplifier frequency response in order to provide substantial increasing the level of reproduction of said electro-acoustic transducer at frequencies lower than the cutoff frequency at low frequencies and
feedback parameters have been selected based on sufficient stability at low frequencies,
wherein the signal proportional to current through a load is used as the signal of said positive feedback,
wherein the voltage on a resistor which is connected in series with said load and has a value significantly lower than the load impedance is used as the signal of said positive feedback,
wherein said load is a part of a bridge connection whose one arm consists of said load and said resistor of current positive feedback and the other arm consists of the voltage resistive divider,
low direct current is supplied through said bridge connection which allows extracting the signal proportional to the load active impedance,
the extracted signal of bridge direct current is used for adjustment of the feedback depth.
2. The amplifier of claim 1 wherein the positive feedback depth is decreased with increase in the load active impedance due to its heating.
3. The amplifier of claim 1 wherein direct current self-balancing of the bridge is used for adaptation of said correction of the amplifier frequency response according to the load active impedance.
4. The amplifier of claim 1 wherein said extracted signal of the bridge direct current is used in digitized form and digital signal processing is used to produce said frequency response.