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ADF4382ABCCZ датащи(PDF) 25 Page - Analog Devices |
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ADF4382ABCCZ датащи(HTML) 25 Page - Analog Devices |
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25 / 82 page ![]() Data Sheet ADF4382A THEORY OF OPERATION analog.com Rev. A | 25 of 82 Lock Detector The lock detector uses internal signals from the PFD to measure the phase difference between the output signal of the reference divider and doubler (RCLK) and the output signal of the feedback divider (NCLK) in Figure 44. This detector is enabled by setting both the EN_LOL and EN_LDWIN bits (Register 0x02D, Bit 5 and Bit 4, respectively) to 1 and presents the lock detector output on the LKDET pin (Pin 27) and the LOCKED bit (Register 0x58, Bit 0). The lock detector output can also be presented on the MUXOUT pin (Pin 37 by programming the MUXOUT bits in Register 0x2E, Bits[7:4], to b0001). The PFD RCLK and NCLK phase difference must be less than the phase difference lock window time, tLDWIN, for a set number of PFD cycles before the lock detector output indicates the PLL has locked. The desired number of PFD cycles vary depending on whether the lock detect accuracy or speed is prioritized. Five loop filter time constants can be used as an initial estimate of the desired number of PFD cycles, as shown in the following equation: PFD Cycles= 52×π×LFBW (35) where: LFBW = loop filter bandwidth. Note that LD_COUNT bits (Register 0x02C, Bits[4:0]) are used to select the desired number of PFD cycles. Use Table 15 to select the LD_COUNT value for the desired number of PFD cycles. Table 15. LD_COUNT Programming LD_COUNT[4:0] PFD Cycles 0 27 1 35 2 51 3 67 4 99 5 131 6 195 7 259 8 387 9 515 10 771 11 1027 12 1539 13 2051 14 3075 15 4099 16 6147 17 8195 18 12291 19 16387 20 24579 21 32771 Table 15. LD_COUNT Programming (Continued) LD_COUNT[4:0] PFD Cycles 22 49155 23 65539 24 98307 25 131075 26 196611 27 262147 28 393219 29 524291 30 786345 31 1048579 Figure 47. Lock Detector Timing, Bleed Current Disabled Table 16. Lock Detector Timing, Bleed Current Disabled Region Absolute Phase Difference at PFD Lock Detector State 1 >tLDWIN Low 2 <tLDWIN Low, counts PFD cycles 3 ~0 Low, counts PFD cycles 4 ~0 High, greater than or equal to the desired PFD cycle count 5 <tLDWIN High 6 >tLDWIN Low (immediately) When the charge pump bleed current is enabled, a phase offset is applied to the PFD inputs. This phase offset, tIDEL, is proportional to the amount of bleed current. Region 3 and Region 4 in Figure 47 and Figure 48 highlight the PFD phase difference the PLL settles to when the charge pump bleed current is disabled or enabled, respectively. Figure 48. Lock Detector Timing, Bleed Current Enabled For proper operation of the lock detector, the absolute value of tIDEL must be less than tLDWIN. The user sets the phase difference lock |
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