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TSH350ILT Datasheet(PDF) 12 Page - STMicroelectronics |
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TSH350ILT Datasheet(HTML) 12 Page - STMicroelectronics |
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12 / 22 page ![]() Power supply considerations TSH350 12/22 4 Power supply considerations Correct power supply bypassing is very important for optimizing performance in high- frequency ranges. Bypass capacitors should be placed as close as possible to the IC pins to improve high-frequency bypassing. A capacitor greater than 1 μF is necessary to minimize the distortion. For better quality bypassing, a capacitor of 10nF can be added which should also be placed as close as possible to the IC pins. Bypass capacitors must be incorporated for both the negative and the positive supply. Note: On the SO8_SINGLE_HF board, these capacitors are C6, C7, C8, C9. Figure 30. Circuit for power supply bypassing Single power supply In the event that a single supply system is used, biasing is necessary to obtain a positive output dynamic range between 0V and +VCC supply rails. Considering the values of VOH and VOL, the amplifier will provide an output swing from +0.9V to +4.1V on a 100Ω load. The amplifier must be biased with a mid-supply (nominally +VCC/2), in order to maintain the DC component of the signal at this value. Several options are possible to provide this bias supply, such as a virtual ground using an operational amplifier or a two-resistance divider (which is the cheapest solution). A high resistance value is required to limit the current consumption. On the other hand, the current must be high enough to bias the non-inverting input of the amplifier. If we consider this bias current (35 μA maximum) as 1% of the current through the resistance divider, to keep a stable mid-supply, two resistances of 750 Ω can be used. The input provides a high-pass filter with a break frequency below 10Hz which is necessary to remove the original 0 volt DC component of the input signal, and to fix it at +VCC/2. Figure 31 illustrates a 5V single power supply configuration for the SO8_S_MULTI evaluation board (see Evaluation boards on page 11). + -VCC +VCC 10µF + 10nF 10µF + 10nF - + -VCC +VCC 10µF + 10nF 10µF + 10nF - |
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