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ADF4355BCPZ датащи(PDF) 27 Page - Analog Devices |
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ADF4355BCPZ датащи(HTML) 27 Page - Analog Devices |
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27 / 36 page ![]() ADF4355 Data Sheet Rev. A | Page 26 of 35 DB31 DB30 DB29 DB28 DB27 DB26 DB25 DB24 DB23 DB22 DB21 DB20 DB19 DB18 DB17 DB16 DB15 DB14 DB13 DB12 DB11 DB10 DB9 DB8 DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 0 0 LE 0 0 0000 000 0 LD1 C3(1) C2(1) C1(1) CONTROL BITS RESERVED LD3 LD2 FRACTIONAL-N LD PRECISION 005.0ns 016.0ns 108.0ns 1112.0ns LD1 0 FRACTIONAL-N 1INTEGER-N (2.9ns) C4(0) LOCK DETECT MODE LD2 LD3 LOL 0 DISABLED 1 ENABLED LOSS OF LOCK MODE LOL LD5 LD4 LOCK DETECT CYCLE COUNT 0 0 1024 0 1 2048 1 0 4096 1 1 8192 LD4 LD5 LD CYCLE COUNT 0 0 0 0 0 0 1 0 0 LE 0 DISABLED 1 LE SYNCED TO REFIN LE SYNCHRONIZ ATION RESERVED Figure 37. Register 7 REGISTER 7 Control Bits With Bits[C4:C1] set to 0111, Register 7 is programmed. Figure 37 shows the input data format for programming this register. Reserved Bits[DB31:DB29] are reserved and must be set to 0. Bit DB28 is reserved and must be set to 1. Bits[DB27:DB26] are reserved and must be set to 0. LE Sync When set to 1, Bit DB25 ensures that the load enable (LE) edge is synchronized internally with the rising edge of reference input frequency. This synchronization prevents the rare event of reference and RF dividers from loading at the same time as a falling edge of reference frequency, which can lead to longer lock times. Reserved Bits[DB24:DB10] are reserved and must be set to 0. Fractional-N Lock Detect Count (LDC) LD5 and LD4 (Bits[DB9:DB8]) set the number of consecutive cycles counted by the lock detect circuitry before asserting lock detect high. See Figure 37 for details. Loss of Lock (LOL) Mode Set LOL (Bit DB7) to 1 when the application is a fixed frequency application in which the input reference frequency (REFIN) is likely to be removed, such as a clocking application. The standard lock detect circuit assumes that REFIN is always present; however, this may not be the case with clocking applications. To enable this functionality, set DB7 to 1. Loss of lock mode does not function reliably when using a differential REFIN mode. Fractional-N Lock Detect Precision (LDP) LD3 and LD2 (Bits[DB6:DB5]) set the precision of the lock detect circuitry in fractional-N mode. LDP is available at 5.0 ns, 6.0 ns, 8.0 ns, or 12.0 ns. If bleed currents are used, use 12 ns. Lock Detect Mode (LDM) If LD1 (Bit DB4) is set to 0, each reference cycle is set by fractional-N lock detect precision as described in the Fractional-N Lock Detect Count (LDC) section. If DB4 is set to 1, each reference cycle is 2.9 ns long, which is more appropriate for integer-N applications. |
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