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AD8048AR датащи(PDF) 13 Page - Analog Devices |
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AD8048AR датащи(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() AD8047/AD8048 REV. 0 –13– circuit when driving large capacitive loads will be dominated by the passive roll-off of RSERIES and CL. R F R SERIES R L 1k Ω C L AD8047 Figure 54. Driving Capacitive Loads 5ns 500mV Figure 55. AD8047 Large Signal Transient Response; VO = 2 V p-p, G = +1, RF = 0 Ω, RSERIES = 0 Ω, CL = 27 pF R F R SERIES R L 1k Ω C L AD8048 R IN Figure 56. Driving Capacitive Loads 5ns 500mV Figure 57. AD8048 Large Signal Transient Response; VO = 2 V p-p, G = +2, RF = RIN = 200 Ω, RSERIES = 0 Ω, CL = 27 pF APPLICATIONS The AD8047 and AD8048 are voltage feedback amplifiers well suited for such applications as photodetectors, active filters, and log amplifiers. The devices’ wide bandwidth (260 MHz), phase margin (65 °), low noise current (1.0 pA/√Hz), and slew rate (1000 V/ µs) give higher performance capabilities to these appli- cations over previous voltage feedback designs. With a settling time of 30 ns to 0.01% and 13 ns to 0.1%, the devices are an excellent choice for DAC I/V conversion. The same characteristics along with low harmonic distortion make them a good choice for ADC buffering/amplification. With su- perb linearity at relatively high signal frequencies, the AD8047 and AD8048 are ideal drivers for ADCs up to 12 bits. Operation as a Video Line Driver The AD8047 and AD8048 have been designed to offer out- standing performance as video line drivers. The important specifications of differential gain (0.01%) and differential phase (0.02 °) meet the most exacting HDTV demands for driving video loads. 75 Ω CABLE 200 Ω 200 Ω 75 Ω CABLE 75 Ω 75 Ω V OUT +V S –V S 75 Ω V IN 0.1 µF 10 µF AD8047/ AD8048 3 2 7 0.1 µF 10 µF 4 6 Figure 58. Video Line Driver Active Filters The wide bandwidth and low distortion of the AD8047 and AD8048 are ideal for the realization of higher bandwidth active filters. These characteristics, while being more common in many current feedback op amps, are offered in the AD8047 and AD8048 in a voltage feedback configuration. Many active filter configu- rations are not realizable with current feedback amplifiers. A multiple feedback active filter requires a voltage feedback amplifier and is more demanding of op amp performance than other active filter configurations such as the Sallen-Key. In general, the amplifier should have a bandwidth that is at least ten times the bandwidth of the filter if problems due to phase shift of the amplifier are to be avoided. Figure 59 is an example of a 20 MHz low pass multiple feed- back active filter using an AD8048. 1 VIN R4 154 Ω C1 50pF C2 100pF R1 154 Ω AD8048 R3 78.7 Ω +5V 0.1 µF 3 2 100 Ω 6 VOUT 10 µF 5 0.1 µF –5V 10 µF 4 7 Figure 59. Active Filter Circuit Choose: FO = Cutoff Frequency = 20 MHz α = Damping Ratio = 1/Q = 2 |
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