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SSM2301CPZ-R2 Arkusz danych(PDF) 11 Page - Texas Instruments |
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SSM2301CPZ-R2 Arkusz danych(HTML) 11 Page - Texas Instruments |
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11 / 19 page ![]() Preliminary Technical Data SSM2301 APPLICATION NOTES OVERVIEW The SSM2301 mono Class-D audio amplifier features a filterless modulation scheme that greatly reduces the external components count, conserving board space and thus reducing systems cost. The SSM2301 does not require an output filter, but instead relies on the inherent inductance of the speaker coil and the natural filtering of the speaker and human ear to fully recover the audio component of the square-wave output. While most Class-D ampli- fiers use some variation of pulse-width modulation (PWM), the SSM2301 uses a Σ-Δ modulation to determine the switching pattern of the output devices. This provides a number of important benefits. Σ-Δ modulators do not produces a sharp peak with many harmonics in the AM frequency band, as pulse-width modulators often do. Σ-Δ modulation provides the benefits of reducing the amplitude of spectral components at high frequencies; that is, reducing EMI emission that might otherwise be radiated by speakers and long cable traces. The SSM2301 also offers protection circuits for overcurrent and temperature protection. GAIN SELECTION Pulling the GAIN pin high of the SSM2301 sets the gain of the speaker amplifier to 12 dB; pulling it low sets the gain of the speaker amplifier to 6 dB. It is possible to adjust the SSM2301 gain by using external resistors at the input. To set a gain lower than 12 dB refer to Figure 21 for differential input configuration and Figure 22 for single-ended configuration. For external gain configuration from a fixed 12 dB gain, use the following formula: External Gain Settings = 20 log[4/(1 + R/150 kΩ)] To set a gain lower than 6 dB refer to Figure 23 for differential input configuration and Figure 24 for single-ended configuration. For external gain configuration from a fixed 6 dB gain, use the following formula: External Gain Settings = 20 log[2/(1 + R/150 kΩ)] POP-AND-CLICK SUPPRESSION Voltage transients at the output of audio amplifiers can occur when shutdown is activated or deactivated. Voltage transients as low as 10 mV can be heard as an audio pop in the speaker. Clicks and pops can also be classified as undesirable audible transients generated by the amplifier system, therefore as not coming from the system input signal. Such transients can be generated when the amplifier system changes its operating mode. For example, the following can be sources of audible transients: system power-up/ power-down, mute/unmute, input source change, and sample rate change. The SSM2301 has a pop-and-click suppression architecture that reduces these output transients, resulting in noiseless activation and deactivation. Rev. PrH | Page 11 of 19 |
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