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AD9546/PCBZ Scheda tecnica(PDF) 76 Page - Analog Devices |
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AD9546/PCBZ Scheda tecnica(HTML) 76 Page - Analog Devices |
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76 / 205 page ![]() AD9546 Data Sheet Rev. 0 | Page 76 of 205 of calibrating, status Bit 2 of Register 0x3001 indicates busy (Logic 1). Bit 1 of Register 0x2000 provides an alternate means to calibrate the system clock PLL (this bit also calibrates APLL0 and APLL1). Although the AD9546 has a variety of power-down modes, including a specific system clock power-down, it is not necessary to calibrate the system clock when recovering from any of the power-down modes. However, recovering from a power-down of the system clock necessitates calibration of the APLLs due to the loss of the system clock during its power-down. SYSTEM CLOCK STABILITY COMPENSATION An application requiring low DPLL loop bandwidth necessitates the use of a very stable system clock source. Using a relatively unstable system clock source like a crystal resonator or crystal oscillator, for example, in conjunction with the DPLL having a very narrow loop bandwidth (less than approximately 50 Hz) may cause the DPLL to unlock or experience intermittent unlock events. The typical solution requires the use of a very stable system clock source (an OCXO, for example). An alternate solution uses the integrated system clock compensation of the AD9546, which enables the use of a crystal resonator as the system clock source. The basic concept is the connection of a crystal resonator (25 MHz to 80 MHz) to the XOA and XOB pins per Figure 30, which capitalizes on the exceptional phase noise performance of the crystal. However, the crystal resonator lacks the desired stability. Instead, the stability arises via the connection of a highly stable source (for example, TCXO, OCXO, or GPS) to an unused REFx or Mx input. The stable source then serves as the reference frequency to the system clock compensation feature of the device (see the System Clock Compensation section). The system clock compensation feature allows the device to benefit from both the stability of the highly stable source and the exceptional phase noise performance of the crystal resonator. Thus, the system clock compensation feature provides a mechanism to employ a low loop bandwidth DPLL (as required by the application) even though the system clock source is a relatively unstable crystal resonator. |
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