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AD9773AST датащи(PDF) 17 Page - Analog Devices |
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AD9773AST датащи(HTML) 17 Page - Analog Devices |
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17 / 19 page ![]() AD9773 17 PRELIMINARY TECHNICAL DATA a(t) b(t) real input output imaginary input output complex filter = (c+jd) c × a(t)-d × b(t) d × a(t)+c × b(t) complex input = (a+jb) Figure 11. Realization of a Complex Filter Figure 12. Implementation of Complex Modulator Figure 13. Quadrature Modulator ejωt = cos ωt + jsinωt × × Σ × × Σ cos ωt 90 ° sin ωt output (real) output (imaginary) input (real) input (imaginary) + - + + × × Σ cos ωt 90 ° sin ωt output input (real) input (imaginary) + - Figure 10. Identical Baseband Signals, Amplitude Modulated with Sine and Cosine Carriers. A more efficient method of suppressing the unwanted image can be achieved by using a complex modulator followed by a quadrature modulator. Figure 13 shows a block diagram of of a quadrature modulator. Note that it is in fact the real output half of a complex modulator. using the architecture defined in figure 11, a system can be realized which operates on complex signals, giving a complex (real and imaginary) output. The complete upconversion can actually be referred to as two complex upconversion stages, the real output of which becomes the transmitted signal. The entire upconversion, from baseband to transmit frequency, is represented graphically in figure 14.The resulting spectrum shown in figure 14 represents the complex data consisting of the baseband real and imaginary channels, now modulated onto orthogonal (cosine and negative sine) carriers at the transmit frequency. Note that by changing the sign of the sinusoidal multiplying term in the complex modulator, the upper sideband image could have been suppressed while passing the lower one. dc Aejωt/2 Ae-jωt/2 dc Aejωt/2j Ae-jωt/2j sinusoidal m odulation cosinusoidal m odulation dc A (am plitude) baseband signal BW BW BW BW BW If a complex modulation function (e+jωt) is desired, the real and imaginary components of the system corre- spond to the real and imaginary components of e+jωt, or cos ωt and sinωt.As Figure 12 shows, the complex modulation function can be realized by applying these components to the structure of the complex system defined in Figure 11. COMPLEX MODULATION AND IMAGE REJECTION In many applications, a two step upconversion is done in which the baseband signal is modulated by one carrier to an IF (intermediate frequency) and then mod- ulated a second time to the transmit frequency. Although this approach has several benefits, a major drawback is that two images are created near the transmit frequency. Only one image is needed, the other being an exact duplicate. Unless the unwanted image is filtered, typi- cally with analog components, transmit power is wasted and the usable bandwidth available in the system is reduced. REV. PrA |
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