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ADF4360-8 Fiches technique(PDF) 7 Page - Analog Devices

No de pièce ADF4360-8
Description  Integrated Synthesizer and VCO
Download  24 Pages
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Fabricant  AD [Analog Devices]
Site Internet  http://www.analog.com
Logo AD - Analog Devices

ADF4360-8 Fiches technique(HTML) 7 Page - Analog Devices

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Data Sheet
ADF4360-8
Rev. C | Page 7 of 24
PIN CONFIGURATION AND FUNCTION DESCRIPTIONS
ADF4360-8
TOP VIEW
(Not to Scale)
CPGND
1
AVDD 2
AGND
3
RFOUTA 4
RFOUTB 5
VVCO 6
DATA
18
CLK
17
REFIN
16
DGND
15
CN
14
RSET
13
PIN 1
IDENTIFIER
NOTES
1. THE EXPOSED PAD MUST BE CONNECTED TO AGND.
Figure 3. Pin Configuration
Table 4. Pin Function Descriptions
Pin No.
Mnemonic
Description
1
CPGND
Charge Pump Ground. This is the ground return path for the charge pump.
2
AVDD
Analog Power Supply. This ranges from 3.0 V to 3.6 V. Decoupling capacitors to the analog ground plane should be
placed as close as possible to this pin. AVDD must have the same value as DVDD.
3, 8, 11, 22
AGND
Analog Ground. This is the ground return path of the prescaler and VCO.
4
RFOUTA
VCO Output. The output level is programmable from 0 dBm to
−9 dBm. See the Output Matching section for a
description of the various output stages.
5
RFOUTB
VCO Complementary Output. The output level is programmable from 0 dBm to −9 dBm. See the Output Matching
section for a description of the various output stages.
6
VVCO
Power Supply for the VCO. This ranges from 3.0 V to 3.6 V. Decoupling capacitors to the analog ground plane should
be placed as close as possible to this pin. VVCO must have the same value as AVDD.
7
VTUNE
Control Input to the VCO. This voltage determines the output frequency and is derived from filtering the CP output voltage.
9
L1
An external inductor to AGND should be connected to this pin to set the ADF4360-8 output frequency. L1 and L2
need to be the same value. A 470 Ω resistor should be added in parallel to AGND.
10
L2
An external inductor to AGND should be connected to this pin to set the ADF4360-8 output frequency. L1 and L2
need to be the same value. A 470 Ω resistor should be added in parallel to AGND.
12
CC
Internal Compensation Node. This pin must be decoupled to ground with a 10 nF capacitor.
13
RSET
Connecting a resistor between this pin and CPGND sets the maximum charge pump output current for the synthesizer.
The nominal voltage potential at the RSET pin is 0.6 V. The relationship between ICP and RSET is
SET
CPmax
R
I
75
.
11
=
where RSET = 4.7 kΩ, ICPmax = 2.5 mA.
14
CN
Internal Compensation Node. This pin must be decoupled to VVCO with a 10 µF capacitor.
15
DGND
Digital Ground.
16
REFIN
Reference Input. This is a CMOS input with a nominal threshold of VDD/2 and a dc equivalent input resistance of
100 kΩ (see Figure 16). This input can be driven from a TTL or CMOS crystal oscillator, or it can be ac-coupled.
17
CLK
Serial Clock Input. This serial clock is used to clock in the serial data to the registers. The data is latched into the 24-bit
shift register on the CLK rising edge. This input is a high impedance CMOS input.
18
DATA
Serial Data Input. The serial data is loaded MSB first with the two LSBs being the control bits. This input is a high
impedance CMOS input.
19
LE
Load Enable, CMOS Input. When LE goes high, the data stored in the shift registers is loaded into one of the four
latches, and the relevant latch is selected using the control bits.
20
MUXOUT
This multiplexer output lets either the lock detect, the scaled RF, or the scaled reference frequency be accessed externally.
21
DVDD
Digital Power Supply. This ranges from 3.0 V to 3.6 V. Decoupling capacitors to the digital ground plane should be
placed as close as possible to this pin. DVDD must have the same value as AVDD.
23
CE
Chip Enable. A logic low on this pin powers down the device and puts the charge pump into three-state mode.
Taking the pin high powers up the device depending on the status of the power-down bits.
24
CP
Charge Pump Output. When enabled, this provides ±ICP to the external loop filter, which in turn drives the internal VCO.
EP
Exposed Pad. The exposed pad must be connected to AGND.


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