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LM6182 Datasheet(PDF) 21 Page - National Semiconductor (TI) |
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LM6182 Datasheet(HTML) 21 Page - National Semiconductor (TI) |
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21 / 24 page ![]() Typical Applications (Continued) The common-mode input range of a unity-gain circuit is ex- ceeded by a 4V pulse resulting in a typical recovery time of 20 ns shown in Figure 16. SPICE MACROMODEL A spice macromodel is available for the LM6182. Contact your local National Semiconductor sales office to obtain an operational amplifier spice model library disk. Typical Application Circuits UNITY GAIN AMPLIFIER The LM6182 current feedback amplifier is unity gain stable. The feedback resistor, R f, is required to maintain the LM6182’s dynamic performance. NON-INVERTING GAIN AMPLIFIER Current feedback amplifiers can be used in non-inverting gain and level shifting functions. The same basic closed-loop gain equation used for voltage feedback amplifiers applies to current feedback amplifiers:1+R f/Rs. INVERTING GAIN AMPLIFIER The inverting closed loop gain equation used with voltage feedback amplifiers also applies to current feedback amplifiers. SUMMING AMPLIFIER The current feedback topology of the LM6182 provides sig- nificant performance advantages over a conventional volt- age feedback amplifier used in a standard summing circuit. Using a voltage feedback amplifier, the bandwidth of the summing circuit in Figure 20 is limited by the highest gain needed for either signal V1 or V2. If the LM6182 amplifier is used instead, wide circuit bandwidth can be maintained rela- tively independent of gain requirements. DS011926-45 DS011926-46 FIGURE 16. Output Recovery from an Input that Exceeds the Common-Mode Range DS011926-47 FIGURE 17. LM6182 Is Unity Gain Stable DS011926-48 FIGURE 18. Non-Inverting Closed Loop Gain is Determined with the Same Equation Voltage Feedback Amplifiers Use:1+R f/Rs DS011926-49 FIGURE 19. Current Feedback Amplifiers Can Be Used for Inverting Gains, Just Like a Voltage Feedback Amplifier: −R f/Rs DS011926-50 FIGURE 20. LM6182 Allows the Summing Circuit to Meet the Requirements of Wide Bandwidth Systems Independent of Signal Gain www.national.com 21 |
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