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MAX4100 Datasheet(PDF) 11 Page - Maxim Integrated Products |
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MAX4100 Datasheet(HTML) 11 Page - Maxim Integrated Products |
11 / 12 page ![]() Carbon composition resistors with leads are manufac- tured by pouring the resistor material into a mold. This process yields a relatively low-inductance resistor that is very useful in high-frequency applications, although they tend to cost more and have more thermal noise than other types. The ability of carbon composition resistors to self-heal after a large current overload makes them useful in high-power RF applications. For general-purpose use, surface-mount metal-film resistors seem to have the best overall performance for low cost, low inductance, and low noise. Driving Capacitive Loads When driving 50 Ω or 75Ω back-terminated transmission lines, capacitive loading is not an issue; therefore an iso- lation resistor is not required. For other applications where the ability to drive capacitive loads is required, the MAX4100/MAX4101 can typically drive 5pF and 20pF, respectively. Figure 4a illustrates how a capacitive load influences the amplifier’s peaking without an isolation resistor (RS). Figure 4b shows how an isolation resistor decreases the amplifier’s peaking. The MAX4100/MAX4101 can drive capacitive loads up to 5pF. By using a small isolation resistor between the amplifier output and the load, large capacitance values may be driven without oscillation (Figure 5a). In most cases, less than 50 Ω is sufficient. Use Figure 5b to deter- mine the value needed in your application. Determine the worst-case maximum capacitive load you may encounter and select the appropriate resistor from the graph. 500MHz, Low-Power Op Amps ______________________________________________________________________________________ 11 MAX4100 24 Ω RS CL VIN RL Figure 5a. Using an Isolation Resistor for High Capacitive Loads (MAX4100) Figure 5b. Isolation vs. Capacitive Load 0 20 120 CAPACITIVE LOAD (pF) 60 25 20 5 15 10 0 40 80 100 MAX4100 MAX4101 |
Similar Part No. - MAX4100 |
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