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THS4281DBVT Datasheet(PDF) 19 Page - National Semiconductor (TI) |
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THS4281DBVT Datasheet(HTML) 19 Page - National Semiconductor (TI) |
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19 / 37 page ![]() _ + Rg 2.49 k Ω RT 1.24 k Ω 0.1 µF 6.8 µF −VS 50- Ω Source + VI 0.1 µF 6.8 µF + +VS VO CT 0.1 µF Rf 2.49 k Ω RM 51.1 Ω To Load _ + 49.9 Ω 50- Ω Source VI +VS VO Rf 2 k Ω Rg 2 k Ω +VS 2 +VS 2 _ + 2 k Ω 50- Ω Source VI VS VO Rf 2 k Ω 51.1 Ω Rg RT RT +VS 2 +VS 2 To Load To Load RT CT Power Supply Bypassing Not Shown For Simplicity THS4281 www.ti.com SLOS432A – APRIL 2004 – REVISED NOVEMBER 2009 WIDEBAND, INVERTING OPERATION Another consideration in inverting amplifier design is setting the bias current cancellation resistor (RT) on Figure 71 shows a typical inverting configuration the noninverting input. If the resistance is set equal to where the input and output impedances and noise the total dc resistance presented to the device at the gain from Figure 68 are retained with an inverting inverting terminal, the output dc error (due to the circuit gain of –1 V/V. input bias currents) is reduced to the input offset current multiplied by RT. In Figure 71, the dc source impedance presented at the inverting terminal is 2.49 k Ω || (2.49 kΩ + 25.3 Ω) ≈ 1.24 kΩ. To reduce the additional high-frequency noise introduced by the resistor at the noninverting input, RT is bypassed with a 0.1- μF capacitor to ground (CT). SINGLE-SUPPLY OPERATION The THS4281 is designed to operate from a single 2.7-V to 16.5-V power supply. When operating from a single power supply, care must be taken to ensure the input signal and amplifier are biased appropriately to allow for the maximum output voltage swing and not violate VICR. The circuits shown in Figure 72 shows inverting and noninverting amplifiers configured for single-supply operation. Figure 71. Wideband, Inverting Gain Configuration In the inverting configuration, some key design considerations must be noted. One is that the gain resistor (Rg) becomes part of the signal channel input impedance. If the input impedance matching is desired (which is beneficial whenever the signal is coupled through a cable, twisted pair, long PCB trace, or other transmission line conductors), Rg may be set equal to the required termination value and Rf adjusted to give the desired gain. However, care must be taken when dealing with low inverting gains, as the resulting feedback resistor value can present a significant load to the amplifier output. For example, an inverting gain of 2, setting Rg to 49.9 Ω for input matching, eliminates the need for RM but requires a 100- Ω feedback resistor. The 100- Ω feedback resistor, in parallel with the external load, causes excessive loading on the amplifier output. To eliminate this excessive loading, it is preferable to increase both Rg and Rf values, as shown in Figure 71, and then achieve the input matching Figure 72. DC-Coupled Single Supply Operation impedance with a third resistor (RM) to ground. The total input impedance is the parallel combination of Rg and RM. Copyright © 2004–2009, Texas Instruments Incorporated Submit Documentation Feedback 19 Product Folder Link(s): THS4281 |
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