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DAC5687MPZPEP датащи(PDF) 67 Page - Texas Instruments |
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DAC5687MPZPEP датащи(HTML) 67 Page - Texas Instruments |
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67 / 75 page ![]() www.ti.com C001 lower sideband 200 MHz LO lower sideband 200 MHz LO DAC5687-EP SGLS333 – JUNE 2006 A(t) = I(t)cos( ω ct) – Q(t)sin(ωct) = m(t) B(t) = I(t)sin( ω ct) + Q(t)cos(ωct) = mh(t) where m(t) and mh(t) connote a Hilbert transform pair and ωc is the sum of the NCO and CMIX frequencies. The complex DAC5687 output is input to an analog quadrature modulator (AQM) such as the TRF3701 or TRF3702. A passive (resistor only) interface is recommended between the DAC5687 and TRF3701/2 (See the Passive Interface to TRF3701/2 section). Upper single-sideband up-conversion is achieved at the output of the analog quadrature modulator, whose output is expressed as: RF(t) = I(t)cos( ω c + ωLO)t – Q(t)sin(ωc + ωLO)t Flexibility is provided to the user by allowing for the selection of –B(t) out, which results in lower-sideband up-conversion. This option is selected by usb in the CONFIG3 register. Note that the process of complex mixing in FMIX and CMIX to translate the signal frequency from 0 Hz means that the analog quadrature modulator IQ imbalance produces a side-band and LO feedthrough that falls outside the signal. This is shown in Figure 77, which is the RF analog quadrature modulator (AQM) output of an asymmetric three carrier WCDMA signal with the properties in Table 17. The wanted signal is offset from the LO frequency by the DAC5687 complex IF, in this case 122.88 MHz. The nearest spurious signals are ~ 100 MHz away from the wanted signal (due to non-harmonic clock-related spurious signals generated by the fDAC/4 digital clock), providing 200 MHz of spurious free bandwidth. The AQM phase and gain imbalance produce a lower sideband product, which does not affect the quality of the wanted signal. Unlike the real IF architecture, the non-harmonic clock-related spurious signals generated by the fDAC/2 digital clock fall ±245.76-MHz offset from the wanted rather than falling inband. As a consequence, in the complex IF system it may be possible that no AQM phase, gain and offset correction is needed, instead relying on RF filtering to remove the LO feedthrough, sideband, and other spurious products. Figure 77. Analog Quadrature Modulator Output for a Complex IF System 67 Submit Documentation Feedback |
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