AD813AR-REEL Analog Devices, AD813AR-REEL Datasheet
AD813AR-REEL
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AD813AR-REEL Summary of contents
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... 150 L REV. B Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. ...
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AD813–SPECIFICATIONS Dual Supply (@ 150 A L Model DYNAMIC PERFORMANCE –3 dB Bandwidth Bandwidth for 0.1 dB Flatness Slew Rate 1 Settling Time to 0.1% NOISE/HARMONIC PERFORMANCE Total Harmonic Distortion Input Voltage Noise Input ...
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Model OUTPUT CHARACTERISTICS Output Voltage Swing Output Current Short Circuit Current MATCHING CHARACTERISTICS Dynamic Crosstalk Gain Flatness Match DC Input Offset Voltage –Input Bias Current POWER SUPPLY Operating Range Quiescent Current Quiescent Current, Powered Down Power Supply Rejection Ratio Input ...
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AD813–SPECIFICATIONS Single Supply (@ Model DYNAMIC PERFORMANCE –3 dB Bandwidth Bandwidth for 0.1 dB Flatness Slew Rate 1 NOISE/HARMONIC PERFORMANCE Input Voltage Noise Input Current Noise Differential Gain Error 2 2 Differential Phase ...
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... Channel + Mux MHz + Model AD813AN V S AD813AR-14 AD813ACHIPS AD813AR-REEL AD813AR-REEL7 5962-9559601M2A* – +125 C 20-Lead LCC *Refer to official DSCC drawing for tested specifications and pin configuration. –5– AD813 AD813A Min Typ Max Units –65 dB ...
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AD813 Maximum Power Dissipation The maximum power that can be safely dissipated by the AD813 is limited by the associated rise in junction temperature. The maximum safe junction temperature for the plastic encap- sulated parts is determined by the glass ...
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SUPPLY VOLTAGE – Figure 4. Input Common-Mode Voltage Range vs. Supply Voltage LOAD SUPPLY VOLTAGE – Figure 5. Output Voltage Swing vs. Supply ...
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AD813 –2 – –6 –8 –10 –12 –14 –16 –60 –40 – JUNCTION TEMPERATURE – C Figure 10. Input Offset Voltage vs. Junction Temperature 160 140 SINK 120 100 SOURCE 80 ...
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INVERTING INPUT CURRENT NOISE 10 VOLTAGE NOISE NONINVERTING INPUT CURRENT NOISE 1 10 100 1k FREQUENCY – Hz Figure 16. Input Current and Voltage Noise vs. Frequency 90 80 681 681 ...
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AD813 1000 V = 15V S 900 R = 500 L 800 700 600 500 400 300 200 100 OUTPUT STEP SIZE – V p-p Figure 22. Slew Rate vs. Output Step ...
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Figure 28. Large Signal Pulse Response, Gain = +10 357 , R = 500 , PHASE GAIN 0 –1 ...
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AD813 2V 100 Figure 34. Large Signal Pulse Response, Gain = – 750 , R = 150 , PHASE GAIN 0 ...
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General Consideration The AD813 is a wide bandwidth, triple video amplifier that offers a high level of performance on less than 5.5 mA per am- plifier of quiescent supply current. With its fast acting power down switch designed ...
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AD813 Printed Circuit Board Layout Guidelines As with all wideband amplifiers, printed circuit board parasitics can affect the overall closed-loop performance. Most important for controlling the 0.1 dB bandwidth are stray capacitances at the output and inverting input nodes. Increasing ...
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– FREQUENCY – MHz Figure 42. Response to a Small Load Capacitor 150pF ...
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AD813 High Performance Video Line Driver At a gain of +2, the AD813 makes an excellent driver for a back terminated 75 video line. Low differential gain and phase errors and wide 0.1 dB bandwidth can be realized over a ...
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Operation Using a Single Supply The AD813 will operate with total supply voltages from 36 V down to 2.4 V. With proper biasing (see Figure 52) it can make an outstanding single supply video amplifier. Since the input and output ...
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AD813 3:1 Video Multiplexer Wiring the amplifier outputs together will form a 3:1 mux with outstanding gain flatness. Figure 55 shows a recommended configuration which results in –0.1 dB bandwidth of 20 MHz and OFF channel isolation ...
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REV. B OUTLINE DIMENSIONS Dimensions shown in inches and (mm). 14-Lead Plastic DIP (N-14) 0.795 (20.19) 0.725 (18.42 0.280 (7.11) 0.240 (6.10) 0.325 (8.25 0.300 (7.62) 0.060 (1.52) PIN 1 ...