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TDA7513 数据表(PDF) 22 Page - STMicroelectronics |
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TDA7513 数据表(HTML) 22 Page - STMicroelectronics |
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22 / 58 page ![]() TDA7513 22/58 AutoZero In order to reduce the number of pins there is no AC coupling between the In-Gain and the following stage, so that in theory any offset generated by or before the In-Gain stage would be transferred or even ampli- fied to the output. To avoid this undesired situation a special offset cancellation stage called AutoZero is implemented. This stage is located before the Volume block to eliminate all offsets generated by the Ste- reodecoder, the Input Stage and the In-Gain stage (please note that externally generated offsets, e.g. those generated because of leakage current into the coupling capacitors, are not cancelled). The auto-zeroing is started every time the APSD data byte 0 is selected and takes a maximum time of 0.6ms. The rationale behind this choice is that the APSD byte encodes the signal source selection, and auto-zero ought to be performed every time a new source is selected. To avoid audible clicks the audio- processor is muted before the volume stage during this time. AutoZero Remain In some cases, for example if the uP is executing a refresh cycle of the I2C bus programming, it is not necessary to start a new AutoZero action because no new source is selected and an undesired mute would appear at the outputs. For such applications the device can be switched in the "AutoZero Remain mode" (Bit 6 of the APSD subaddress byte). If this bit is set to high, the APSD data byte 0 can be loaded without invoking the AutoZero and the old adjustment value remains. Softmute The digitally controlled softmute stage allows signal muting and unmuting with a I2C bus programmable slope. The mute process can either be activated by pin #AUDIOMUTE or I2C bus. The slope is realized in a special S-shaped curve so as to slowly mute in the critical regions (see figure 5). For timing purposes the Bit 3 of the I2C bus output register is set to 1 from the start of muting until the end of unmuting. BASS There are four parameters programmable in the bass filter stage: (see figs 6, 7, 8, 9): Attenuation Figure 6 shows the attenuation as a function of frequency at a center frequency at a center frequency of 80Hz. Center Frequency Figure 7 shows the four possible center frequencies: 60,70,80 and 100Hz. Quality Factors Figure 8 shows the four possible quality factors: 1, 1.25, 1.5 and 2. DC Mode In this mode the DC gain is increased by 5.1dB. In addition the programmed center frequency and quality factor is decreased by 25%: this can be used to realize different center frequencies or quality factors with respect to the values listed in the "BASS" section. MID There are 3 parameters programmable in the mid filter stage (see figs. 10, 11 & 12): Attenuation Figure 10 shows the attenuation as a function of frequency at a center frequency of 1kHz. Center Frequency Figure 11 shows the four possible center frequencies: 500Hz, 1kHz, 1.5kHz and 2kHz. |
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