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ADRF6755ACPZ-R7 Datasheet(PDF) 35 Page - Analog Devices

Part # ADRF6755ACPZ-R7
Description  100 MHz to 2400 MHz I/Q Modulator with Integrated Fractional-N PLL and VCO
PDF  48 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADRF6755ACPZ-R7 Datasheet(HTML) 35 Page - Analog Devices

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Data Sheet
ADRF6755
Rev. B | Page 35 of 48
SUGGESTED POWER-UP SEQUENCE
INITIAL REGISTER WRITE SEQUENCE
After applying power to the part, perform the initial register write
sequence that follows. Note that Register CR33, Register CR32, and
Register CR31 are read-only registers. Also, note that all writable
registers should be written to on power-up. Refer to the Register
Map section for more details on all registers.
1. Write 0x00 to Register CR30. Set the attenuator to 0 dB gain.
2. Write 0x80 to Register CR29. The modulator is powered
down. The modulator is powered down by default to ensure
that no spurious signals can occur on the RF output when
the PLL is carrying out its first acquisition. The modulator
should be powered up only when the PLL is locked.
3. Write 0x0X to Register CR28. RFDIV depends on the value
of the LO frequency to be used and is set according to
Table 6. Note that Register CR28, Bit 3, is set to 1.
4. Write 0xX0 to Register CR27. Bit 4 depends on the LO
frequency to be used and is set according to Table 6.
5. Write 0x00 to Register CR26. Reserved register.
6. Write 0x64 to Register CR25, the autocalibration timer.
This setting applies for PFD = 40 MHz. For other PFDs,
refer to Equation 3 in the VCO Autocalibration section.
7. Write 0x18 to Register CR24. Enable autocalibration.
8. Write 0x70 to Register CR23. Enable the lock detector and
choose the recommended lock detect timing. This setting
applies to PFD = 40 MHz. For other PFDs, refer to the
Lock Detect (LDET) section in the Program Modes
section.
9. Write 0x80 to Register CR22. Reserved register.
10. Write 0x00 to Register CR21. Reserved register.
11. Write 0x00 to Register CR20. Reserved register.
12. Write 0x80 to Register CR19. Reserved register.
13. Write 0x60 to Register CR18. Reserved register.
14. Write 0x00 to Register CR17. Reserved register.
15. Write 0x00 to Register CR16. Reserved register.
16. Write 0x00 to Register CR15. Reserved register.
17. Write 0x80 to Register CR14. Stop LO when TXDIS = 1.
18. Write 0xE8 to Register CR13. This setting applies to PFD =
40 MHz. For other PFDs, refer to the Lock Detect (LDET)
section in the Program Modes section.
19. Write 0x18 to Register CR12. Power up the PLL.
20. Write 0x00 to Register CR11. Reserved register.
21. Write to Register CR10. Refer to the Reference Input Path
section, in particular Equation 1.
22. Write 0xF0 to Register CR9. With the recommended loop
filter component values and RSET = 4.7 kΩ, as shown in
Figure 70, the charge pump current is set to 5 mA for a
loop bandwidth of 100 kHz.
23. Write 0x00 to Register CR8. Reserved register.
24. Write 0x0X to Register CR7. Set according to Equation 2 in
the Theory of Operation section. Also, set the MUXOUT
pin to tristate.
25. Write 0xXX to Register CR6. Set according to Equation 2
in the Theory of Operation section.
26. Write to Register CR5. Refer to the Reference Input Path
section, in particular Equation 1.
27. Write 0x01 to Register CR4. Reserved register.
28. Write 0000010X binary to Register CR3. Set according to
Equation 2 in the Theory of Operation section.
29. Write 0xXX to Register CR2. Set according to Equation 2
in the Theory of Operation section.
30. Write 0xXX to Register CR1. Set according to Equation 2
in the Theory of Operation section.
31. Write 0xXX to Register CR0. Set according to Equation 2
in the Theory of Operation section. Register CR0 must be
the last register written for all the double-buffered bit
writes to take effect.
32. Write to Register CR27, setting Bit 4 according to Table 6.
33. Monitor the LDET output or wait 170 μs to ensure that the
PLL is locked.
34. Write 0x81 to Register CR29. Power up the modulator. The
write to Register CR29 does not need to be followed by a write
to Register CR0 because this register is not double-buffered.
Example—Changing the LO Frequency
Following is an example of how to change the LO frequency
after the initialization sequence. Using an example in which
the PLL is locked to 2000 MHz, the following conditions apply:
fPFD = 40 MHz (assumed)
Divide ratio N = 50; therefore, INT = 50 decimal and
FRAC = 0
RFDIVIDER = divide-by-1. See Table 6.
Register CR28[2:0] = 000
Register CR27[4] = 1
The INT registers contain the following values:
Register CR7 = 0x00 and Register CR6 = 0x32
The FRAC registers contain the following values:
Register CR3 = 0x04, Register CR2 = 0x00,
Register CR1 = 0x00, and Register CR0 = 0x00



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