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ZXFV201 Datasheet(PDF) 5 Page - Zetex Semiconductors |
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ZXFV201 Datasheet(HTML) 5 Page - Zetex Semiconductors |
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5 / 6 page ![]() APPLICATIONS INFORMATION Introduction A typical circuit application is shown in Figure 1, above. This is suitable for 75 ohm transmission line connections at both the input and the output and is useful for distribution of wide-band signals such as video and xDSL via cables. The 75ohms reverse terminating resistor R4 gives the correct matching condition to a terminated video cable. The amplifier load is then 150 ohms in parallel with the local feedback network. The wide bandwidth of this device necessitates some care in the layout of the printed circuit. A continuous ground plane is required under the device and its signal connection paths, to provide the shortest possible ground return paths for signals and power supply filtering. A double-sided or multi-layer PCB construction is required, with plated-through via holes providing closely spaced low-inductance connections from some components to the continuous ground plane. For the power supply filtering, low inductance surface mount capacitors are normally required. It has been found that very good RF decoupling is provided on each supply using a 1000pF NPO size 0805 or smaller ceramic surface mount capacitor, closest to the device pin, with an adjacent 0.1uF X7R capacitor. Other configurations are possible and it may be found that a single 0.01uF X7R capacitor on each supply gives good results. However this should be supported by larger decoupling capacitors elsewhere on the printed circuit board. Values of 1 to 10 µF are recommended, particularly where the voltage regulators are located more than a few inches from the device. These larger capacitors are recommended to be solid tantalum electrolytic or ceramic types. Note particularly that the inverting input of this current feedback type of amplifier is sensitive to small amounts of capacitance to ground which occur as part of the practical circuit board layout. This capacitance affects bandwidth, frequency response peaking and pulse overshoot. Therefore to minimise this capacitance, the feedback components R2 and R3 of Figure1 should be positioned as close as possible to the inverting input connection. The frequency response and pulse response will vary according to particular values of resistors and layout capacitance. The response can be tailored for the application to some extent by choice of the value of feedback resistor. Figure 2 shows an oscilloscope display of the pulse response for a practical double sided printed circuit board where RF=510ohms. ZXFV201 ISSUE 1 - FEBRUARY 2002 5 Figure 3: Graphs of Gain and Phase vs Frequncy (RL=150 ) |
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