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AD831AP датащи(PDF) 8 Page - Analog Devices |
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AD831AP датащи(HTML) 8 Page - Analog Devices |
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8 / 16 page ![]() AD831 REV. B –8– Low-Pass Filtering A simple low-pass filter may be added between the mixer and the output amplifier by shunting the internal resistive loads (an equivalent resistance of about 14 Ω with a tolerance of 20%) with external capacitors; these attenuate the sum component in a down-conversion application (Figure 20). The corner fre- quency of this one-pole low-pass filter (f = (2 π RC F) –1) should be placed about an octave above the difference frequency IF. Thus, for a 70 MHz IF, a –3 dB frequency of 140 MHz might be chosen, using CF = (2 × π × 14 Ω × 140 MHz) –1 ≈ 82 pF, the nearest standard value. IFN VP IFP AP GND VN RFP RFN VN VP LON LOP VP GND BIAS VN AD831 Top View 50 Ω 50 Ω 6 7 8 4 5 9 10 11 12 13 AN VFB COM OUT 14 15 16 17 18 1 2 3 19 20 CF CF CF = = 1 2 π f R 1 89.7 f Figure 20. Low-Pass Filtering Using External Capacitors Using the Output Amplifier The AD831’s output amplifier converts the mixer core’s dif- ferential current output into a single-ended voltage and provides an output as high as ±1 V peak into a 50 Ω load (+10 dBm). For unity gain operation (Figure 21), the inputs AN and AP connect to the open-collector outputs of the mixer’s core and OUT connects to VFB. IF OUTPUT IFN VP IFP AP GND VN RFP RFN VN VP LON LOP VP GND BIAS VN AD831 Top View 50 Ω 50 Ω 6 7 8 4 5 9 10 11 12 13 AN VFB COM OUT 14 15 16 17 18 1 2 3 19 20 Figure 21. Output Amplifier Connected for Unity Gain Operation The mixer has two open-collector outputs (differential cur- rents) at pins IFN and IFP. These currents may be used to pro- vide nominal unity RF-to-IF gain by connecting a center-tapped transformer (1:1 turns ratio) to pins IFN and IFP as shown in Figure 18. 20 2 Q3 R5 1k Ω LIMITING AMPLIFIER VP 18mA TYP IFN IFP 18mA TYP 5k Ω 5k Ω Q1 Q2 Q5 Q6 Q4 R4 1k Ω R1 20 Ω R2 20 Ω R3 26 Ω Q7 36mA TYP LOP LON RFP RFN VP BIAS VN LOCAL OSCILLATOR INPUT RF INPUT 1 10 11 6 7 BIAS CURRENT IF OUTPUT VPOS MCLT4-1H Figure 18. Connections for Transformer Coupling to the IF Output Programming the Bias Current Because the AD831’s RF port is a Class-A circuit, the maxi- mum RF input is proportional to the bias current. This bias cur- rent may be reduced by connecting a resistor from the BIAS pin to the positive supply (Figure 19). For normal operation, the BIAS pin is left unconnected. For lowest power consumption, the BIAS pin is connected directly to the positive supply. The range of adjustment is 100 mA for normal operation to 45 mA total current at minimum power consumption. 1.33k Ω 0.1µF VPOS NOTE ADDED RESISTOR IFN VP IFP AP GND VN RFP RFN VN VP LON LOP VP GND BIAS VN AD831 Top View 50 Ω 50 Ω 6 7 8 4 5 9 10 11 12 13 AN VFB COM OUT 14 15 16 17 18 1 2 3 19 20 Figure 19. Programming the Quiescent Current |
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