ADL5324 AD [Analog Devices], ADL5324 Datasheet

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ADL5324

Manufacturer Part Number
ADL5324
Description
400 MHz to 4000 MHz
Manufacturer
AD [Analog Devices]
Datasheet

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADL5324ARKZ
Manufacturer:
ADI/亚德诺
Quantity:
20 000
Data Sheet
FEATURES
Operation from 400 MHz to 4000 MHz
Gain of 14.6 dB at 2140 MHz
OIP3 of 43.1 dBm at 2140 MHz
P1dB of 29.1 dBm at 2140 MHz
Noise figure of 3.8 dB
Dynamically adjustable bias
Operating temperature range of −40°C to +105°C
SOT-89 package, MSL-1 rated
ESD rating of ±3 kV (Class 2)
APPLICATIONS
Wireless infrastructure
Automated test equipment
ISM/AMR applications
GENERAL DESCRIPTION
The
circuit that allows for the customization of OIP3 and P1dB
performance from 3.3 V to 5 V, without the need for an external
bias resistor. This feature gives the designer the ability to tailor
driver amplifier performance to the specific needs of the design.
This feature also creates the opportunity for dynamic biasing of
the driver amplifier where a variable supply is used to allow for
full 5 V biasing under large signal conditions, and then reduced
supply voltage when signal levels are smaller and lower power
consumption is desirable. This scalability reduces the need to
evaluate and inventory multiple driver amplifiers for different
output power requirements, from 25 dBm to 29 dBm output
power levels.
The
range of −40°C to +105°C for reliable performance in designs
that experience higher temperatures, such as power amplifiers.
The ½ W driver amplifier also covers the wide frequency range
of 400 MHz to 4000 MHz, and only requires a few external
components to be tuned to a specific band within that wide range.
This high performance broadband RF driver amplifier is well
suited for a variety of wired and wireless applications, including
cellular infrastructure, ISM band power amplifiers, defense
equipment, and instrumentation equipment. A fully populated
evaluation board is available.
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.
Adjustable power supply bias: 3.3 V to 5 V
Low power supply current: 62 mA to 133 mA
No bias resistor needed
ADL5324
ADL5324
is also rated to operate across the wide temperature
incorporates a dynamically adjustable biasing
One Technology Way, P.O. Box 9106, Norwood, MA 02062−9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
The
bias voltage. The driver can deliver greater than 17 dBm of output
power at 2140 MHz, while achieving an ACPR of −55 dBc at 5 V. If
the bias is reduced to 3.3 V, the −55 dBc ACPR output power
only minimally reduces to 15 dBm.
ADL5324
–30
–35
–40
–45
–50
–55
–60
–65
–70
–75
–80
–85
½ Watt RF Driver Amplifier
–20
Figure 2. ACPR vs. Output Power, Single Carrier W-CDMA,
FUNCTIONAL BLOCK DIAGRAM
–15
also delivers excellent ACPR vs. output power and
400 MHz to 4000 MHz
–10
SOURCE
V
V
CC
CC
RFIN
= 3.3V
= 5V
TM1-64 at 2140 MHz
©2012 Analog Devices, Inc. All rights reserved.
1
–5
ADL5324
BIAS
Figure 1.
GND
GND
P
(2)
2
OUT
0
(dBm)
RFOUT
5
3
10
ADL5324
15
www.analog.com
20
25

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ADL5324 Summary of contents

Page 1

... P (dBm) OUT Figure 2. ACPR vs. Output Power, Single Carrier W-CDMA, TM1-64 at 2140 MHz One Technology Way, P.O. Box 9106, Norwood, MA 02062−9106, U.S.A. Tel: 781.329.4700 Fax: 781.461.3113 ©2012 Analog Devices, Inc. All rights reserved. ADL5324 www.analog.com ...

Page 2

... ADL5324 TABLE OF CONTENTS Features .............................................................................................. 1 Applications ....................................................................................... 1 Functional Block Diagram .............................................................. 1 General Description ......................................................................... 1 Revision History ............................................................................... 2 Specifications ..................................................................................... 3 Typical Scattering Parameters ..................................................... 5 Absolute Maximum Ratings ............................................................ 6 Thermal Resistance ...................................................................... 6 ESD Caution .................................................................................. 6 Pin Configuration and Function Descriptions ............................. 7 REVISION HISTORY 9/12—Rev Rev. B Changes to Figure 27 ...................................................................... 11 Changed Figure 30 Tex t Reference to Figure 33 Text Reference ... 12 Changed Table 7 Text Reference to Table 6 ...

Page 3

... ADL5324 Max Unit dBm dBm dBm dBm dB 17 dBm dBm dBm dBm dB 15 dBm dBm dB ...

Page 4

... ADL5324 Parameter FREQUENCY = 2630 MHz 1 Gain vs. Frequency vs. Temperature vs. Supply Output 1 dB Compression Point Output Third-Order Intercept Noise Figure FREQUENCY = 3600 MHz Gain vs. Frequency vs. Temperature vs. Supply Output 1 dB Compression Point Output Third-Order Intercept Noise Figure POWER INTERFACE Supply Voltage Supply Current vs. Temperature ...

Page 5

... Rev Page ADL5324 S12 S22 Angle (°) Magnitude (dB) Angle (°) 12.40754 −3.04567 175.7277 8.733014 −3.13245 175.9202 6.416618 −3.13132 176 ...

Page 6

... Measured on Analog Devices evaluation board. For more information about −65°C to +150°C board layout, see the Soldering Information and Recommended PCB Land Pattern section. 2 Based on simulation with JEDEC standard JESD51. ESD CAUTION Rev Page Data Sheet ) and the JA ) for the ADL5324. JC θ 1 θ 2 Unit ...

Page 7

... RFOUT RF Output and Supply Voltage. DC bias is provided to this pin through an inductor that is connected to the external power supply. The RF path requires a dc blocking capacitor. RFIN 1 ADL5324 TOP VIEW GND 2 (2) GND (Not to Scale) RFOUT 3 Figure 3. Pin Configuration Rev Page ADL5324 ...

Page 8

... ADL5324 TYPICAL PERFORMANCE CHARACTERISTICS 50 OIP3 (dBm P1dB (dBm GAIN (dB (dB 869 884 900 915 FREQUENCY (MHz) Figure 4. Gain, P1dB, OIP3, and Noise Figure vs. Frequency, 869 MHz to 961 MHz 17.5 –40°C 17.0 +25°C 16.5 +85°C 16.0 15.5 869 884 900 915 FREQUENCY (MHz) Figure 5 ...

Page 9

... Frequency, 2110 MHz to 2170 MHz OUT 6 5 +85°C +25°C 4 –40° 2110 2120 2130 2140 2150 FREQUENCY (MHz) Figure 15. Noise Figure vs. Frequency and Temperature, 2110 MHz to 2170 MHz ADL5324 +25° 2160 2170 15 20 2160 ...

Page 10

... ADL5324 50 45 OIP3 (dBm P1dB (dBm GAIN (dB (dB 2570 2590 2610 2630 FREQUENCY (MHz) Figure 16. Gain, P1dB, OIP3, and Noise Figure vs. Frequency, 2570 MHz to 2690 MHz 14.5 –40°C 14.0 13.5 +25°C 13.0 +85°C 12.5 12.0 11.5 2570 2590 2610 2630 FREQUENCY (MHz) Figure 17. Gain vs. Frequency and Temperature, 2570 MHz to 2690 MHz 0 – ...

Page 11

... TEMPERATURE (°C) (Using 2140 MHz Matching Components) 100 90 80 3.45V 70 3.3V 60 3.15V –40 – TEMPERATURE (°C) (Using 2140 MHz Matching Components) ADL5324 3.85 3. ...

Page 12

... HIGH TEMPERATURE OPERATION The ADL5324 has excellent performance at temperatures above 85°C. At 105°C, the gain and P1dB decrease by 0.2 dB, the OIP3 decreases by 0.1 dB, and the noise figure increases by 0.31 dB compared with the data at 85°C. Figure 28 through Figure 33 show the performance at 105°C. ...

Page 13

... SOLDERING INFORMATION AND RECOMMENDED PCB LAND PATTERN ADL5324 are shown Figure 35 shows the recommended land pattern for the ADL5324. To minimize thermal impedance, the exposed paddle on the SOT-89 package underside is soldered to a ground plane along with Pin 2. If multiple ground layers exist, they should be stitched together using vias ...

Page 14

... ADL5324 Table 6. Recommended Components for Basic Connections Function/ 420 MHz to 728 MHz to Component 494 MHz 768 MHz AC Coupling Capacitors C3 = 0402 10 pF 10pF 0402 Power Supply Bypassing Capacitors C4 = 0402 100 pF 100 0603 1206 10 µF 10 µF DC Bias Inductor ...

Page 15

... Ohms 0.50 dB step max = 45.19 dBm 2. 5.89 Ohms 1.00 dBm step Label: 26.37 + j30.90 ADL5324_2p63ghZ_LP3 Figure 37. Load-Pull Contours, 2600 MHz MAX ΓLoad (Magnitude) ΓLoad (°) 0.888 −173.55 0.0843 −175.41 MAX ΓLoad (Magnitude) ΓLoad (°) 0.654 +163.28 0.894 +166.52 ADL5324 Gain (dB) MAX 16.1 13.83 IP3 (dBm) MAX 44.18 45.19 ...

Page 16

... ADL5324 W-CDMA ACPR PERFORMANCE Figure 38 shows a plot of adjacent channel power ratio (ACPR) vs. P for the ADL5324. The signal type used is a single W-CDMA OUT carrier (Test Model 1-64) at 2140 MHz. This signal is generated by a very low ACPR source. ACPR is measured at the output by a high dynamic range spectrum analyzer, which incorporates an instrument noise correction function ...

Page 17

... MHz 2.4 pF 2pF 100 pF 100 µF 10 µ 1 1 2 Ω 0 Ω 0 Ω 0 Ω ADL5324 C7 20pF 3500 MHz to 3700 MHz 1 1pF 20 pF 100 µ 0 0. Ω 3 4.7 nH ...

Page 18

... ADL5324 Table 11. Recommended Component Spacing on Evaluation Board Frequency (MHz) 420 to 494 728 to 768 869 to 961 1880 to 1990 2110 to 2170 2300 to 2400 2570 to 2690 3500 to 3700 2Ω 20pF 1.6nH 120nH C3 248 mils 311 mils 10pF 438 mils 419 mils Figure 41. Evaluation Board Layout and Component Placement, ...

Page 19

... R2 0Ω 20pF 2.0pF 100pF C7 20pF R2 C2 0Ω 2.0pF Rev Page 0.5pF 1.0pF 4.7nH 15nH C2 R1 0Ω 0.75pF 316 mils 125 mils Figure 47. Evaluation Board Layout and Component Placement, 3500 MHz to 3700 MHz Operation ADL5324 100pF C7 20pF ...

Page 20

... ADL5324 OUTLINE DIMENSIONS 4.25 3.94 1.50 TYP ORDERING GUIDE 1 Model Temperature Range ADL5324ARKZ-R7 −40°C to +105°C ADL5324-EVALZ RoHS Compliant Part. ©2012 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. * 1.75 1.55 (2) 2.60 2. 1.20 0.75 3.00 TYP 2.29 2.14 4.60 4.40 0.44 0.35 END VIEW * 0 ...

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