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AD9522-5/PCBZ bảng dữ liệu(PDF) 25 Page - Analog Devices |
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AD9522-5/PCBZ bảng dữ liệu(HTML) 25 Page - Analog Devices |
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25 / 76 page ![]() AD9522-5 Rev. 0 | Page 25 of 76 THEORY OF OPERATION OPERATIONAL CONFIGURATIONS The AD9522 can be configured in several ways. These configurations must be set up by loading the control registers (see Table 43 to Table 54). Each section or function must be individually programmed by setting the appropriate bits in the corresponding control register or registers. When the desired configuration is programmed, the user can store these values in the on-board EEPROM to allow the part to power up in the desired configuration without user intervention. Mode 1: Clock Distribution or External VCO < 1600 MHz When the external clock source to be distributed or the external VCO/VCXO is <1600 MHz, a configuration that bypasses the VCO divider can be used. This is the only difference from Mode 2. Bypassing the VCO divider limits the frequency of the clock source to <1600 MHz (due to the maximum input frequency allowed at the channel dividers). For clock distribution applications where the external clock is <1600 MHz, the register settings shown in Table 19 should be used. Table 19. Settings for Clock Distribution < 1600 MHz Register Description 0x010[1:0] = 01b PLL asynchronous power-down (PLL off ) 0x1E1[0] = 1b Bypass the VCO divider as the source for the distribution section When using the PLL with an external VCO < 1600 MHz, the PLL must be turned on. Table 20. Settings for Using the PLL with External VCO < 1600 MHz Register Description 0x1E1[0] = 1b Bypass the VCO divider as the source for the distribution section 0x010[1:0] = 00b PLL normal operation (PLL on) along with other appropriate PLL settings in 0x010 to 0x01F An external VCO/VCXO requires an external loop filter that must be connected between CP and the tuning pin of the VCO/ VCXO. This loop filter determines the loop bandwidth and stability of the PLL. Make sure to select the proper PFD polarity for the VCO/VCXO being used. Table 21. Setting the PFD Polarity Register Description 0x010[7] = 0b PFD polarity positive (higher control voltage produces higher frequency) 0x010[7] = 1b PFD polarity negative (higher control voltage produces lower frequency) |
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