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AD641-EB Datasheet(PDF) 5 Page - Analog Devices |
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AD641-EB Datasheet(HTML) 5 Page - Analog Devices |
5 / 16 page REV. C AD641 –5– Typical AC Performance Characteristics– INPUT LEVEL – dBm –2.25 –2.00 0.25 2 –48 –44 –40 –4 –1.25 –0.50 –0.25 0.00 –1.75 –1.50 –0.75 –1.00 –52 –36 –32 –28 –24 –20 –16 –12 –8 0 50MHz 150MHz 190MHz 210MHz 250MHz Figure 10. AC Response at 50 MHz, 150 MHz, 190 MHz, 210 MHz at 250 MHz, vs. dBm Input (Sinusoidal Input) INPUT FREQUENCY – MHz 87.5 70.0 50 250 100 150 170 190 210 230 85.0 80.0 77.5 75.0 72.5 82.5 Figure 11. Intercept Level (dBm) vs. Frequency (Cascaded AD641s—Sinusoidal Input) Figure 12. Baseband Pulse Response of Single AD641, Inputs of 1 mV, 10 mV and 100 mV INPUT LEVEL – dBm –2.00 –1.75 0.50 2 –48 –44 –40 –4 –1.00 –0.25 –0.00 0.25 –1.50 –1.25 –0.50 –0.75 –52 –36 –32 –28 –24 –20 –16 –12 –8 0 +25 C +125 C –55 C +25 C +125 C –55 C OUTPUT +25 C +125 C –55 C +125 C ERROR +25 C –55 C 5 4 3 2 1 0 –1 –2 –3 –4 –5 Figure 13. Logarithmic Response and Linearity at 200 MHz, TA for TA = –55°C, +25°C, +125°C INPUT FREQUENCY – MHz 1.0 0.95 0.75 50 250 150 190 210 0.90 0.85 0.80 Figure 14. Slope Current, IY, vs. Input Frequency 10 0% 5µs 5µs 20mV 20mV 100 90 Figure 15. Baseband Pulse Response of Cascaded AD641s at Inputs of 0.2 mV, 2 mV, 20 mV and 200 mV |
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