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OPA820SKGD3 Datenblatt(PDF) 26 Page - Texas Instruments |
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OPA820SKGD3 Datenblatt(HTML) 26 Page - Texas Instruments |
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26 / 32 page ![]() 4kT R R R R G G F S OPA820 I BI E O I BN 4kT = 1.6E − 20J at 290 K E RS E NI √4kTR S √4kTR F = + + + + O NI BN S S BI F F 2 2 2 2 E [E (I R ) 4kTR ]NG (I R ) 4kTR NG æ ö = + + + + ç ÷ è ø BI F F N NI BN S S 2 2 2 E I R 4kTR E (I R ) 4kTR NG NG OPA820-HT SBOS587 – DECEMBER 2011 www.ti.com Noise Performance The OPA820 complements its low harmonic distortion with low input noise terms. Both the input-referred voltage noise and the two input-referred current noise terms combine to give a low output noise under a wide variety of operating conditions. Figure 12 shows the operational amplifier noise analysis model with all the noise terms included. In this model, all the noise terms are taken to be noise voltage or current density terms in either nV/ √Hz or pA/ √Hz. Figure 12. Operational Amplifier Noise Analysis Model The total output spot noise voltage is computed as the square root of the squared contributing terms to the output noise voltage. This computation is adding all the contributing noise powers at the output by superposition, then taking the square root to get back to a spot noise voltage. Equation 7 shows the general form for this output noise voltage using the terms presented in Figure 12. (7) Dividing this expression by the noise gain (NG = 1 + RF/RG) will give the equivalent input referred spot noise voltage at the noninverting input, as shown in Equation 8. (8) Evaluating these two equations for the OPA820 circuit presented in Figure 2 will give a total output spot noise voltage of 6.44 nV/ √Hz and an equivalent input spot noise voltage of 3.22 nV/√Hz. DC Offset Control The OPA820 can provide excellent DC signal accuracy because of its high open-loop gain, high common-mode rejection, high power-supply rejection, and low input offset voltage and bias current offset errors. To take full advantage of this low input offset voltage, careful attention to input bias current cancellation is also required. The high-speed input stage for the OPA820 has a moderately high input bias current (9 μA typ into the pins) but with a very close match between the two input currents —typically 100-nA input offset current. The total output offset voltage may be considerably reduced by matching the source impedances looking out of the two inputs. For example, one way to add bias current cancellation to the circuit of Figure 2 would be to insert a 175- Ω series resistor into the noninverting input from the 50- Ω terminating resistor. When the 50-Ω source resistor is DC-coupled, this will increase the source impedance for the noninverting input bias current to 200 Ω. Since this is now equal to the impedance looking out of the inverting input (RF||RG), the circuit will cancel the gains for the bias currents to the output leaving only the offset current times the feedback resistor as a residual DC error term at the output. Using a 402- Ω feedback resistor, this output error will now be less than ±0.4 μA × 402 Ω = ±160 μV at 25 °C. 26 Submit Documentation Feedback Copyright © 2011, Texas Instruments Incorporated Product Folder Link(s): OPA820-HT |
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