ADF4110 Analog Devices, ADF4110 Datasheet - Page 20

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ADF4110

Manufacturer Part Number
ADF4110
Description
Single, Integer-N, 550 MHZ PLL With Programmable Prescaler And Charge Pump
Manufacturer
Analog Devices
Datasheet

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ADF4110/ADF4111/ADF4112/ADF4113
USING A D/A CONVERTER TO DRIVE R
You can use a D/A converter to drive the R
ADF4110 family and thus increase the level of control over the
charge pump current I
applications where the sensitivity of the VCO varies over the
tuning range. To compensate for this, the I
maintain good phase margin and ensure loop stability. See
Figure 8.
SHUTDOWN CIRCUIT
The attached circuit in Figure 9 shows how to shut down both
the ADF4110 family and the accompanying VCO. The ADG701
switch goes closed circuit when a Logic 1 is applied to the IN
input. The low-cost switch is available in both SOT-23 and
micro SO packages.
WIDEBAND PLL
Many of the wireless applications for synthesizers and VCOs in
PLLs are narrowband in nature. These applications include
the various wireless standards like GSM, DSC1800, CDMA or
WCDMA. In each of these cases, the total tuning range for the
local oscillator is less than 100 MHz. However, there are also
FREF
CP
IN
. This can be advantageous in wideband
2.7k
SPI COMPATIBLE SERIAL BUS
8
1
REF
R SET
CE
CLK
DATA
LE
V-OUT DAC
AD5320
12-BIT
ADF4111
ADF4112
ADF4113
IN
CP
MUXOUT
SET
SET
RF
RF
may be varied to
R
IN
IN
SET
CP
PIN
pin of the
A
B
14
2
6
5
100pF
LOCK
DETECT
100pF
POWER SUPPLY CONNECTIONS AND DECOUPLING
CAPACITORS ARE OMITTED FOR CLARITY.
51
FILTER
LOOP
wide band applications where the local oscillator could have up
to an octave tuning range. For example, cable TV tuners have a
total range of about 400 MHz. Figure 10 shows an applica-
tion where the ADF4113 is used to control and program the
Micronetics M3500-2235. The loop filter was designed for an
RF output of 2900 MHz, a loop bandwidth of 40 kHz, a PFD
frequency of 1 MHz, I
multiplied by the gain factor of 4), VCO K
sitivity of the M3500-2235 at an output of 2900 MHz) and a
phase margin of 45°C.
In narrow-band applications, there is generally a small variation
in output frequency (generally less than 10%) and also a small
variation in VCO sensitivity over the range (typically 10% to 15%).
However, in wide band applications both of these parameters
have a much greater variation. In Figure 10, for example, we have
–25% and +17% variation in the RF output from the nominal
2.9 GHz. The sensitivity of the VCO can vary from 120 MHz/V
at 2750 MHz to 75 MHz/V at 3400 MHz (+33%, –17%).
Variations in these parameters will change the loop bandwidth.
This in turn can affect stability and lock time. By changing the
programmable I
varying loop conditions and ensure that the loop is always operat-
ing close to optimal conditions.
INPUT
GND
VCO
CP
OUTPUT
, it is possible to get compensation for these
CP
100pF
of 10 mA (2.5 mA synthesizer I
100pF
18
18
18
RF
OUT
D
of 90 MHz/V (sen-
CP

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