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CDCM7005 数据表(PDF) 25 Page - Texas Instruments |
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CDCM7005 数据表(HTML) 25 Page - Texas Instruments |
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25 / 45 page ![]() T0062-01 PRI_REF SEC_REF STATUS_REF PRI_SEC_CLK 1 2 1 2 3 4 Internal ReferenceClock PrimaryClock SecondaryClock PrimaryClock CDCM7005 www.ti.com SCAS793E – JUNE 2005 – REVISED FEBRUARY 2013 YxMUX2 YxMUX1 YxMUX0 Selected Divided V(C)XO Signal for the Default Yx Outputs 0 1 1 Div by 4 1 0 0 Div by 6 1 0 1 Div by 8 all Yx 1 1 0 Div by 16(1) 1 1 1 Div by 8 (1) This divider setting depends on the selected P-divider mode for the “Div-by-16” divider. In the default mode (after power up), Div-by-16 is selected. But if bit 30 or bit 31 of word 1 is set to [1], then the Div-by-4 and 90 degree phase shift or Div-by-8 and 90 degree phase shift is selected. FEATURE DESCRIPTION Automatic/Manual Reference Clock Switching The CDCM7005 supports two reference clock inputs, the primary clock input, PRI_REF, and the secondary clock input, SEC_REF. The clocks can be selected manually or automatically. The respective mode is selected by the dedicated SPI register bit (Word 0, Bit 30). In the manual mode, the external REF_SEL signal selects one of the two input clocks: REF_SEL [1] -> primary clock is selected REF_SEL [0] -> secondary clock is selected In the automatic mode, the primary clock is selected by default even if both clocks are available. In case the primary clock is not available or fails, then the input switches to the secondary clock as long until the primary clock is back. Figure 15 shows the automatic clock selection. NOTE: PRI_REF is the preferred clock input. Figure 15. Behavior of STATUS_REF and PRI_SEC_CLK In the automatic mode, the frequencies of both clock signals have to be similar, but may differ by up to 20%. The phase of the clock signal can be any. The clock input circuitry is design to suppress glitches during switching between the primary and secondary clock in the manual and automatic mode. This avoids an undefined switching of the following circuitries. The phase of the output clock slowly follows the new input phase. There will be no phase-jump at the output. How quick the phase adjustment is done depends on the selected loop parameter, i.e., at a loop bandwidth of <100 Hz; the phase adjustment can take several ms. There is no phase build-out function supported (like in SONET/SDH applications). Copyright © 2005–2013, Texas Instruments Incorporated Submit Documentation Feedback 25 Product Folder Links :CDCM7005 |
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