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What is ADF4360-0?

This electronic component, produced by the manufacturer "Analog Devices", performs the same function as "Integrated Synthesizer and VCO".


ADF4360-0 Datasheet PDF - Analog Devices

Part Number ADF4360-0
Description Integrated Synthesizer and VCO
Manufacturers Analog Devices 
Logo Analog Devices Logo 


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Data Sheet
Integrated Synthesizer and VCO
ADF4360-0
FEATURES
GENERAL DESCRIPTION
Output frequency range: 2400 MHz to 2725 MHz
Divide-by-2 output
3.0 V to 3.6 V power supply
1.8 V logic compatibility
Integer-N synthesizer
Programmable dual-modulus prescaler 16/17, 32/33
Programmable output power level
3-wire serial interface
Analog and digital lock detect
Hardware and software power-down mode
APPLICATIONS
The ADF4360-0 is a fully integrated integer-N synthesizer and
voltage-controlled oscillator (VCO). The ADF4360-0 is designed
for a center frequency of 2600 MHz. In addition, a divide-by-2
option is available, whereby the user gets an RF output of
between 1200 MHz and 1360 MHz.
Control of all the on-chip registers is through a simple 3-wire
interface. The device operates with a power supply ranging
from 3.0 V to 3.6 V and can be powered down when not in use.
Wireless handsets (DECT, GSM, PCS, DCS, WCDMA)
Test equipment
Wireless LANs
CATV equipment
FUNCTIONAL BLOCK DIAGRAM
AVDD
DVDD
CE RSET
REFIN
CLK
DATA
LE
ADF4360-0
14-BIT R
COUNTER
24-BIT
DATA REGISTER
24-BIT
FUNCTION
LATCH
LOCK
DETECT
MULTIPLEXER
MUTE
CHARGE
PUMP
PHASE
COMPARATOR
MUXOUT
CP
VVCO
VTUNE
CC
CN
INTEGER
REGISTER
PRESCALER
P/P+1
N = (BP + A)
13-BIT B
COUNTER
LOAD
LOAD
5-BIT A
COUNTER
VCO
CORE
DIVSEL = 1
OUTPUT
STAGE
RFOUTA
RFOUTB
÷2
AGND
DIVSEL = 2
DGND
CPGND
Figure 1.
Rev. D
Document Feedback
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700 ©2004–2016 Analog Devices, Inc. All rights reserved.
Technical Support
www.analog.com

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ADF4360-0 equivalent
ADF4360-0
Data Sheet
Parameter
NOISE CHARACTERISTICS5
VCO Phase-Noise Performance8
Synthesizer Phase-Noise Floor9
Phase Noise Figure of Merit9
In-Band Phase Noise10, 11
RMS Integrated Phase Error12
Spurious Signals due to PFD Frequency11, 13
Level of Unlocked Signal with MTLD Enabled
B Version Unit
−111
−133
−140
−145
−172
−163
−147
−216
−80
1.4
−75
−45
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
dBc/Hz typ
Degrees typ
dBc typ
dBm typ
Test Conditions/Comments
At 100 kHz offset from carrier.
At 1 MHz offset from carrier.
At 3 MHz offset from carrier.
At 10 MHz offset from carrier.
At 25 kHz PFD frequency.
At 200 kHz PFD frequency.
At 8 MHz PFD frequency.
At 1 kHz offset from carrier.
100 Hz to 100 kHz.
1 Operating temperature range is: –40°C to +85°C.
2 Guaranteed by design. Sample tested to ensure compliance.
3 ICP is internally modified to maintain constant loop gain over the frequency range.
4 TA = 25°C; AVDD = DVDD = VVCO = 3.3 V; P = 32.
5 These characteristics are guaranteed for VCO core power = 10 mA.
6 Jumping from 2.4 GHz to 2.725 GHz. PFD frequency = 200 kHz; loop bandwidth = 10 kHz.
7 Using 50 Ω resistors to VVCO into a 50 Ω load. For tuned loads, see the Output Matching section.
8 The noise of the VCO is measured in open-loop conditions.
9 The synthesizer phase-noise floor is estimated by measuring the in-band phase noise at the output of the VCO and subtracting 20 log N (where N is the N divider value). The
phase noise figure of merit subtracts 10 log (PFD frequency).
10 The phase noise is measured with the EV-ADF4360-0EB1Z Evaluation Board and the HP8562E Spectrum Analyzer. The spectrum analyzer provides the REFIN for the
synthesizer; offset frequency = 1 kHz.
11 fREFIN = 10 MHz; fPFD = 200 kHz; N = 13000; Loop B/W = 10 kHz.
12 fREFIN = 10 MHz; fPFD = 1 MHz; N=2600; Loop B/W = 25 kHz.
13 The spurious signals are measured with the EV-ADF4360-0EB1Z Evaluation Board and the HP8562E Spectrum Analyzer. The spectrum analyzer provides the REFIN for
the synthesizer; fREFOUT = 10 MHz at 0 dBm.
Rev. D | Page 4 of 24


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