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AD8554AR Datasheet(PDF) 13 Page - Analog Devices |
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AD8554AR Datasheet(HTML) 13 Page - Analog Devices |
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13 / 20 page ![]() AD8551/AD8552/AD8554 –13– REV. 0 FREQUENCY – kHz 0 140 0 10 1 2345 6 789 20 40 60 80 100 120 VSY = +5V AV = 0dB Figure 50. Spectral Analysis of AD855x Output in Unity Gain Configuration FREQUENCY – kHz 0 140 0 10 1 2345 6 789 20 40 60 80 100 120 VSY = +5V AV = +60dB Figure 51. Spectral Analysis of AD855x Output with +60 dB Gain When an input signal is applied, the output will contain some degree of Intermodulation Distortion (IMD). This is another characteristic feature of all autocorrection amplifiers. IMD will show up as sum and difference frequencies between the input sig- nal and the 4 kHz clock frequency (and its harmonics) and is at a level similar to or less than the clock feedthrough at the output. The IMD is also proportional to the closed loop gain of the ampli- fier. Figure 52 shows the spectral output of an AD8552 configured as a high gain stage (+60 dB) with a 1 mV input signal applied. The relative levels of all IMD products and harmonic distortion add up to produce an output error of –60 dB relative to the input signal. At unity gain, these would add up to only –120 dB relative to the input signal. FREQUENCY – kHz 0 0 10 1 2345 6 789 20 40 60 80 100 120 OUTPUT SIGNAL 1Vrms @ 200Hz IMD < 100 Vrms VSY = +5V AV = +60dB Figure 52. Spectral Analysis of AD855x in High Gain with a 1 mV Input Signal For most low frequency applications, the small amount of auto- zero clock frequency feedthrough will not affect the precision of the measurement system. Should it be desired, the clock frequency feedthrough can be reduced through the use of a feedback capaci- tor around the amplifier. However, this will reduce the bandwidth of the amplifier. Figures 53a and 53b show a configuration for reducing the clock feedthrough and the corresponding spectral analysis at the output. The –3 dB bandwidth of this configuration is 480 Hz. VIN = 1mV rms @ 200Hz 100 100k 3.3nF Figure 53a. Reducing Autocorrection Clock Noise with a Feedback Capacitor FREQUENCY – kHz 0 0 10 1 2345 6 789 20 40 60 80 100 120 VSY = +5V AV = +60dB Figure 53b. Spectral Analysis Using a Feedback Capacitor |
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