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TS4995 bảng dữ liệu(PDF) 17 Page - STMicroelectronics |
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TS4995 bảng dữ liệu(HTML) 17 Page - STMicroelectronics |
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17 / 26 page ![]() TS4995 Application information 17/26 4 Application information 4.1 Differential configuration principle The TS4995 is a monolithic full-differential input/ output power amplifier with fixed +6 dB gain. The TS4995 also includes a common mode feedback loop that controls the output bias value to average it at VCC/2 for any DC common mode input voltage. This allows maximum output voltage swing, and therefore, to maximize the output power. Moreover, as the load is connected differentially instead of single-ended, output power is four times higher for the same power supply voltage. The advantages of a full-differential amplifier are: ● Very high PSRR (power supply rejection ratio) ● High common mode noise rejection ● Virtually no pop and click without additional circuitry, giving a faster start-up time compared to conventional single-ended input amplifiers ● Easier interfacing with differential output audio DAC ● No input coupling capacitors required due to common mode feedback loop In theory, the filtering of the internal bias by an external bypass capacitor is not necessary. However, to reach maximum performance in all tolerance situations, it is recommended to keep this option. 4.2 Common mode feedback loop limitations As explained previously, the common mode feedback loop allows the output DC bias voltage to be averaged at VCC/2 for any DC common mode bias input voltage. Due to the VIC limitation of the input stage (see Table 4 on page 5), the common mode feedback loop can fulfil its role only within the defined range. 4.3 Low frequency response The input coupling capacitors block the DC part of the input signal at the amplifier inputs. Cin and Rin form a first-order high pass filter with -3 dB cut-off frequency. Note: The input impedance for the TS4995 is typically 20k Ω and there is tolerance around this value. From Figure 56, you can easily establish the Cin value required for a -3 dB cut-off frequency. ) Hz ( C R 2 1 F in in CL × × π × = |
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