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OPA690 Datasheet(PDF) 13 Page - Texas Instruments |
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OPA690 Datasheet(HTML) 13 Page - Texas Instruments |
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13 / 22 page ![]() OPA690 13 SBOS223A www.ti.com DC gain for this circuit is equal to RF. At high frequencies, the DAC output capacitance will produce a zero in the noise gain for the OPA690 that may cause peaking in the closed- loop frequency response. CF is added across RF to compen- sate for this noise gain peaking. To achieve a flat transimpedance frequency response, the pole in the feed- back network should be set to: 12 4 // ππ RC GBP RC FF FD = which will give a closed-loop transimpedance bandwidth f–3dB, of approximately: f GBP R C dB F D – / 3 2 =π HIGH POWER LINE DRIVER The large output swing capability of the OPA690 and its high current capability allows it to drive a 50 Ω line with a peak-to- peak signal up to 4Vp-p at the load, or 8Vp-p at the output FIGURE 6. High Power Coax Line Driver. FIGURE 5. DAC Transimpedance Amplifier. of the amplifier using a single 12V supply. Figure 6 shows such a circuit set for a gain of 8 to the output or 4 to the load. The 5pF capacitor in the feedback loop provides added bandwidth control for the signal path. SINGLE-SUPPLY ACTIVE FILTERS The high bandwidth provided by the OPA690, while operat- ing on a single +5V supply, lends itself well to high-frequency active filter designs. Again, the key additional requirement is to establish the DC operating point of the signal near the supply midpoint for highest dynamic range. Figure 7 shows an example design of a 5MHz low-pass Butterworth filter using the Sallen-Key topology. Both the input signal and the gain setting resistor are AC- coupled using 0.1 µF blocking capacitors (actually giving bandpass response with the low-frequency pole set to 32kHz for the component values shown). As discussed for Figure 2, this allows the midpoint bias formed by the two 1.87k Ω resistors to appear at both the input and output pins. The FIGURE 7. Single-Supply, High-Frequency Active Filter. OPA690 High-Speed DAC V O = IO RF R F C F GBP → Gain Bandwidth Product (Hz) for the OPA690 C D I O I O 50 Ω OPA690 2k Ω 2k Ω 0.1 µF 400 Ω 50 Ω 50 Ω +12V 5pF 1Vp-p 50 Ω Source 8Vp-p 4Vp-p 50 Ω Load OPA690 1.5k Ω 432 Ω 137 Ω 500 Ω 1.87k Ω 1.87k Ω V I +5V DIS 0.1 µF 150pF 0.1 µF 100pF 4V I 5MHz, 2nd-Order Butterworth Filter Frequency (Hz) 5MHz, 2nd-Order Butterworth Filter Response 100k 1M 10M 15 10 5 0 –5 |
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