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EVAL-ADF4193EBZ1

更新时间: 2024-02-28 08:13:41
品牌 Logo 应用领域
亚德诺 - ADI /
页数 文件大小 规格书
28页 580K
描述
Low Phase Noise, Fast Settling, 6 GHz

EVAL-ADF4193EBZ1 数据手册

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Low Phase Noise, Fast Settling, 6 GHz  
PLL Frequency Synthesizer  
Data Sheet  
ADF4196  
FEATURES  
GENERAL DESCRIPTION  
Fast settling, fractional-N PLL architecture  
Single PLL replaces ping-pong synthesizers  
The ADF4196 frequency synthesizer can be used to implement  
local oscillators (LO) in the upconversion and downconversion  
Frequency hop across GSM band in 5 μs with phase settled  
within 20 μs  
1 degree rms phase error at 4 GHz RF output  
Digitally programmable output phase  
RF input range up to 6 GHz  
3-wire serial interface  
On-chip, low noise differential amplifier  
Phase noise figure of merit: −216 dBc/Hz  
sections of wireless receivers and transmitters. Its architecture is  
specifically designed to meet the GSM/EDGE lock time require-  
ments for base stations, and the fast settling feature makes the  
ADF4196 suitable for pulse Doppler radar applications.  
The ADF4196 consists of a low noise, digital phase frequency  
detector (PFD) and a precision differential charge pump.  
A differential amplifier converts the differential charge pump  
output to a single-ended voltage for the external voltage controlled  
oscillator (VCO). The sigma-delta (Σ-Δ) based fractional inter-  
polator, working with the N divider, allows programmable modulus  
fractional-N division. Additionally, the 4-bit reference (R) counter  
and on-chip frequency doubler allow selectable reference signal  
(REFIN) frequencies at the PFD input.  
APPLICATIONS  
GSM/EDGE base stations  
PHS base stations  
Pulse Doppler radar  
Instrumentation and test equipment  
Beam-forming/phased array systems  
A complete phase-locked loop (PLL) can be implemented if the  
synthesizer is used with an external loop filter and a VCO. The  
switching architecture ensures that the PLL settles within the  
GSM time slot guard period, removing the need for a second  
PLL and associated isolation switches. This decreases the cost,  
complexity, PCB area, shielding, and characterization found on  
previous ping-pong GSM PLL architectures.  
FUNCTIONAL BLOCK DIAGRAM  
SDV  
DV  
1
DV  
2
DV  
3
AV  
V 1  
V 2  
V 3  
R
SET  
DD  
DD  
×2  
DD  
DD  
DD  
P
P
P
REFERENCE  
SW1  
CP  
4-BIT R  
COUNTER  
/2  
DIVIDER  
+
PHASE  
+
REF  
CHARGE  
PUMP  
OUT+  
IN  
FREQUENCY  
DETECTOR  
DOUBLER  
CP  
OUT–  
SW2  
CMR  
V
DD  
HIGH-Z  
DGND  
LOCK DETECT  
DIFFERENTIAL  
AMPLIFIER  
AIN–  
AIN+  
+
OUTPUT  
MUX  
MUX  
OUT  
R
N
DIV  
DIV  
A
OUT  
N COUNTER  
SW3  
FRACTIONAL  
INTERPOLATOR  
RF  
RF  
IN+  
IN–  
CLK  
DATA  
LE  
24-BIT  
DATA  
REGISTER  
FRACTION  
REG  
MODULUS  
REG  
INTEGER  
REG  
ADF4196  
A
1
A
2
D
1
D
2
D
3
SD  
SW  
GND  
GND  
GND  
GND  
GND  
GND  
GND  
Figure 1.  
Rev. B  
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.  
Trademarks and registered trademarks are the property of their respective owners.  
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.  
Tel: 781.329.4700  
Fax: 781.461.3113  
www.analog.com  
©2011 Analog Devices, Inc. All rights reserved.  
 
 
 
 

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