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AN3003 数据表(PDF) 3 Page - M/A-COM Technology Solutions, Inc. |
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AN3003 数据表(HTML) 3 Page - M/A-COM Technology Solutions, Inc. |
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3 / 3 page ![]() Integrating SMT Synthesizer Solutions into Wireless Designs Rev. V2 Application Note AN3003 • North America Tel: 800.366.2266 • Europe Tel: +353.21.244.6400 • India Tel: +91.80.4155721 • China Tel: +86.21.2407.1588 3 Visit www.macomtech.com for additional data sheets and product information. M/A-COM Technology Solutions Inc. and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice. Clock, Data and Load Enable Inputs The Clock, Data and Load Enable Inputs are all high impedance CMOS and should be fed with square waves with level of VHIGH ³ 0.8 Vcc and VLOW £ 0.2 Vcc. An external termination resistor can be added externally if desired. Refer to the specific device datasheet for the proper programming infor- mation. Consideration needs to be taken when choosing the command word for programming the dividers. While the PLL will allow for a variety of steps to be programmed, the step size specific to the synthesizer design should be used. The internal loop filter is optimized for a given step size and the use of another could result in greater than specified phase noise or spurious outputs. Noise Contributors Understanding the key contributors to single side- band phase noise is paramount to achieving opti- mum performance. Often, the noise profile can be adjusted to obtain dynamic properties of the synthe- sizer. Careful consideration of the noise profile re- quired at spot frequencies, integrated or both will lead to a superior system design. Phase noise is measured in units of dBc/Hz at a given offset from the carrier. It is the difference between the level of the carrier and the noise level at a given offset nor- malized to a 1Hz bandwidth. Assuming power supply contribution is negligible, the three key contributors are: • Phase Comparator Noise • Reference Noise • VCO Noise The phase comparator noise affects the noise floor within the loop. The phase noise is multiplied up to the VCO output frequency by 20log (Fout/Fstep). An- other effect that is often ignored is that the noise floor is related to the step size by approximately 10dB/decade. This is particularly important as the step size is increased because the noise floor de- grades by 10log (Fstep/Fstep(comp)). Fstep(comp) is the frequency at which the noise floor is measured. For example consider a PLL IC which has a noise floor of approximately –165 dBc/Hz at a phase comparison frequency of 30 kHz. If the frequency output of the synthesizer is 1 GHz with a step size of 200 kHz the noise floor within the loop is: = -165 + 10 log (200 kHz/30 kHz) + 20 log (1 GHz/200 kHz) = -82.78 dBc/Hz With respect to the effect of the reference noise, the reference frequency is multiplied up to the VCO output frequency within the PLL IC. The noise side bands of the reference oscillator are increased by the ratio given by 20log(FVCO/Fref). For example, a synthesizer with a 15 MHz reference is divided down to 30 kHz has an output frequency of 1GHz. If the 15 MHz reference noise is –115 dBc/Hz at 100 Hz offset, then the reference noise at the output frequency would be: -115 +20 log (1 GHz / 15 MHz) = -78.5 dBc/Hz Finally the effect of the VCO noise should be consid- ered. Within the loop bandwidth, the VCO noise is suppressed at a rate of –40 dB/decade. Near the loop bandwidth, the suppression is not so great and some of the VCO noise will add to the loop noise floor. Spurious signals that are at or within the loop bandwidth will undergo similar suppression characteristics to phase noise. Figure 4 gives a good representation of this effect when trying to assess design risks. Ultimately the VCO design is part of the integrated package so outside the scope of changes to the synthesizer interfaces but as noise that appears on the power supplies modulates the VCO this will directly effect the performance of the synthesizer. The same principles as described earlier should be applied to reduce power supply noise. Loop VCO (suppressed) Reference VCO Loop (suppressed) Reference (suppresed) F/2 F 2F Sideband Frequency Figure 4 |
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