ADL5355-EVALZ AD [Analog Devices], ADL5355-EVALZ Datasheet

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ADL5355-EVALZ

Manufacturer Part Number
ADL5355-EVALZ
Description
1200 MHz to 2500 MHz Balanced Mixer, LO Buffer, IF Amplifier, and RF Balun
Manufacturer
AD [Analog Devices]
Datasheet
FEATURES
RF frequency range of 1200 MHz to 2500 MHz
IF frequency range of 30 MHz to 450 MHz
Power conversion gain: 8.4 dB
SSB noise figure of 9.2 dB
SSB noise figure with 5 dBm blocker of 20 dB
Input IP3 of 27 dBm
Input P1dB of 10.4 dBm
Typical LO drive of 0 dBm
Single-ended, 50 Ω RF and LO input ports
High isolation SPDT LO input switch
Single-supply operation: 3.3 V to 5 V
Exposed paddle 5 mm × 5 mm, 20-lead LFCSP
1500 V HBM/500 V FICDM ESD performance
APPLICATIONS
Cellular base station receivers
Transmit observation receivers
Radio link downconverters
GENERAL DESCRIPTION
The ADL5355 uses a highly linear, doubly balanced passive
mixer core along with integrated RF and LO balancing circuitry
to allow for single-ended operation. The ADL5355 incorporates
an RF balun, allowing for optimal performance over a 1200 MHz
to 2500 MHz RF input frequency range using low-side LO
injection for RF frequencies from 1700 MHz to 2500 MHz and
high-side LO injection for RF frequencies from 1200 MHz to
1700 MHz. The balanced passive mixer arrangement provides
good LO-to-RF leakage, typically better than −39 dBm, and
excellent intermodulation performance. The balanced mixer
core also provides extremely high input linearity, allowing the
device to be used in demanding cellular applications where in-
band blocking signals may otherwise result in the degradation
of dynamic performance. A high linearity IF buffer amplifier
follows the passive mixer core to yield a typical power conversion
gain of 8.4 dB and can be used with a wide range of output
impedances.
Rev. 0
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.
1200 MHz to 2500 MHz Balanced Mixer,
LO Buffer, IF Amplifier, and RF Balun
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
The ADL5355 provides two switched LO paths that can be
used in TDD applications where it is desirable to rapidly switch
between two local oscillators. LO current can be externally set
using a resistor to minimize dc current commensurate with the
desired level of performance. For low voltage applications, the
ADL5355 is capable of operation at voltages down to 3.3 V with
substantially reduced current. Under low voltage operation, an
additional logic pin is provided to power down (<200 μA) the
circuit when desired.
The ADL5355 is fabricated using a BiCMOS high performance
IC process. The device is available in a 5 mm × 5 mm, 20-lead
LFCSP and operates over a −40°C to +85°C temperature range.
An evaluation board is also available.
NC = NO CONNECT
COMM
COMM
RFCT
RFIN
VPIF
1
2
3
4
5
VLO3
IFGM
FUNCTIONAL BLOCK DIAGRAM
20
6
LGM3
IFOP
19
GENERATOR
7
©2009 Analog Devices, Inc. All rights reserved.
BIAS
Figure 1.
VLO2
IFON
18
8
PWDN
LOSW
ADL5355
17
9
ADL5355
www.analog.com
LEXT
NC
16
10
15
14
13
12
11
LOI2
VPSW
VGS1
VGS0
LOI1

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ADL5355-EVALZ Summary of contents

Page 1

... LO current can be externally set using a resistor to minimize dc current commensurate with the desired level of performance. For low voltage applications, the ADL5355 is capable of operation at voltages down to 3.3 V with substantially reduced current. Under low voltage operation, an additional logic pin is provided to power down (<200 μA) the circuit when desired ...

Page 2

... ADL5355 TABLE OF CONTENTS Features .............................................................................................. 1 Applications ....................................................................................... 1 General Description ......................................................................... 1 Functional Block Diagram .............................................................. 1 Revision History ............................................................................... 2 Specifications ..................................................................................... Performance ........................................................................... 4 3.3 V Performance ........................................................................ 4 Spur Tables .................................................................................... 5 Absolute Maximum Ratings ............................................................ 6 ESD Caution .................................................................................. 6 Pin Configuration and Function Descriptions ............................. 7 Typical Performance Characteristics ............................................. Performance ........................................................................... 8 REVISION HISTORY 7/09—Revision 0: Initial Version   3.3 V Performance ...................................................................... 15   ...

Page 3

... Conditions Tunable to >20 dB over a limited bandwidth Differential impedance 200 MHz Externally generated Device enabled, IF output to 90% of its final level Device disabled, supply current < Device enabled Device disabled Rev Page ADL5355 = 50 Ω, unless otherwise noted. O Min Typ Max 20 50 1200 2500 230||0 ...

Page 4

... ADL5355 5 V PERFORMANCE 190 mA 25° 1950 MHz otherwise noted. Table 2. Parameter DYNAMIC PERFORMANCE Power Conversion Gain Voltage Conversion Gain SSB Noise Figure SSB Noise Figure Under Blocking Input Third-Order Intercept (IIP3) Input Second-Order Intercept (IIP2) Input 1 dB Compression Point (IP1dB) ...

Page 5

... Rev Page ADL5355 = 50 Ω <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 <−100 < ...

Page 6

... ADL5355 ABSOLUTE MAXIMUM RATINGS Table 6. Parameter Supply Voltage Input Level LO Input Level IFOP, IFON Bias Voltage VGS0, VGS1, LOSW, PWDN Internal Power Dissipation θ JA Maximum Junction Temperature Operating Temperature Range Storage Temperature Range Lead Temperature Range (Soldering, 60 sec) Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device ...

Page 7

... Exposed pad. Must be soldered to ground. PIN 1 INDICATOR VPIF 1 15 LOI2 RFIN 2 14 VPSW ADL5355 RFCT 3 13 VGS1 TOP VIEW COMM 4 12 VGS0 (Not to Scale) COMM 5 11 LOI1 NOTES CONNECT EXPOSED PAD. MUST BE SOLDERED TO GROUND. Figure 2. Pin Configuration Rev Page ADL5355 ...

Page 8

... ADL5355 TYPICAL PERFORMANCE CHARACTERISTICS 5 V PERFORMANCE 190 mA 25° 1950 MHz and Ω, unless otherwise noted. O 240 220 T = +25° –40°C 200 A A 180 T = +85°C A 160 140 120 100 1.70 1.75 1.80 1.85 1.90 1.95 2.00 RF FREQUENCY (GHz) Figure 3. Supply Current vs. RF Frequency ...

Page 9

... V POS – Rev Page ADL5355 V = 5.25V POS = 4.75V POS V = 5.0V POS – TEMPERATURE (°C) Figure 12. Input IP2 vs. Temperature V = 5.25V POS V = 4.75V POS V = 5.0V POS – TEMPERATURE (° ...

Page 10

... ADL5355 230 220 210 200 T = +25° –40° 190 180 T = +85°C A 170 160 150 30 80 130 180 230 280 IF FREQUENCY (MHz) Figure 15. Supply Current vs. IF Frequency –40° +85° 130 180 230 ...

Page 11

... Rev Page ADL5355 T = +85° +25° –40° –4 – POWER (dBm) Figure 24. Input P1dB vs. LO Power T = –40°C ...

Page 12

... ADL5355 100 7.0 7.5 8.0 8.5 CONVERSION GAIN (dB) Figure 27. Conversion Gain Distribution 100 INPUT IP3 (dBm) Figure 28. Input IP3 Distribution 100 INPUT P1dB (dBm) Figure 29. Input P1dB Distribution ...

Page 13

... Rev Page ADL5355 T = +25° +85° –40°C A 1.55 1.60 1.65 1.70 1.75 1.80 1.85 1.90 1.95 LO FREQUENCY (GHz) Figure 36. LO-to-RF Leakage vs. LO Frequency 2LO TO IF 2LO TO RF 1.55 1.60 1.65 1.70 1.75 1.80 1.85 1.90 1.95 LO FREQUENCY (GHz) Figure 37 ...

Page 14

... ADL5355 CONVERSION GAIN SSB NOISE FIGURE 1.70 1.75 1.80 1.85 1.90 1.95 2.00 RF FREQUENCY (GHz) Figure 39. Power Conversion Gain and SSB Noise Figure vs. RF Frequency INPUT IP3 INPUT P1dB VGS = 00 8 VGS = 01 VGS = 10 VGS = 11 6 1.70 1.75 1.80 1.85 1.90 1.95 2.00 RF FREQUENCY (GHz) Figure 40. Input IP3 and Input P1dB vs. RF Frequency ...

Page 15

... Figure 48. Input IP2 vs. RF Frequency at 3 +85° +25° –40° 1.70 1.75 1.80 1.85 1.90 1.95 2.00 2.05 RF FREQUENCY (GHz) Figure 49. Input P1dB vs. RF Frequency at 3 +85° +25° –40° 1.70 1.75 1.80 1.85 1.90 1.95 2.00 2.05 2.10 RF FREQUENCY (GHz) Figure 50. SSB Noise Figure vs. RF Frequency at 3.3 V ADL5355 2.10 2.15 2.20 2.10 2.15 2.20 2.15 2.20 ...

Page 16

... ADL5355 CIRCUIT DESCRIPTION The ADL5355 consists of two primary components: the radio frequency (RF) subsystem and the local oscillator (LO) subsystem. The combination of design, process, and packaging technology allows the functions of these subsystems to be integrated into a single die, using mature packaging and interconnection technologies to provide a high performance, low cost design with excellent electrical, mechanical, and thermal properties ...

Page 17

... V, resulting in substantial dc power savings. In addition, when operating with supply voltages below 3.6 V, the ADL5355 has a power-down mode that permits the dc current to drop to <200 μA. All of the logic inputs are designed to work with any logic family that provides a Logic 0 input level of less than 0 ...

Page 18

... IP3 performance. MIXER VGS CONTROL DAC The ADL5355 features two logic control pins, VGS0 (Pin 12) and VGS1 (Pin 13), that allow programmability for internal gate-to- source voltages for optimizing mixer performance over desired frequency bands. The evaluation board defaults both VGS0 and VGS1 to ground ...

Page 19

... 10pF 0.1µF GENERATOR BIAS LO +5V 10pF Figure 52. Typical Application Circuit Rev Page +5V 150pF 470nH 4:1 10kΩ ADL5355 22pF 15 14 10pF 13 BIAS 12 22pF 10kΩ 10pF ADL5355 IF OUT LO2 IN +5V LO1 IN ...

Page 20

... L5 470nH T1 C19 L4 C17 100pF 470nH 150pF R24 R25 0Ω 0Ω R14 910Ω VPIF C21 10pF RFIN ADL5355 RFCT C4 10pF COMM COMM VPOS R9 C6 1.1kΩ 10pF VPOS C8 10pF Figure 53. Evaluation Board Schematic Rev Page IF1-OUT R1 0Ω PWR_UP R21 10kΩ ...

Page 21

... kΩ (size 0402) R21 = 10 kΩ (size 0402) C22 = 1 nF (size 0402 Ω (size 0603 1.1 kΩ (size 0402), R14 = 910 Ω (size 0402), R22 = 10 kΩ (size 0402), R23 = 15 kΩ (size 0402), VGS0 = VGS1 = 3-pin shunt Rev Page ADL5355 ...

Page 22

... ADL5355 Figure 54. Evaluation Board Top Layer Figure 55. Evaluation Board Ground Plane, Internal Layer 1 Figure 56. Evaluation Board Power Plane, Internal Layer 2 Figure 57. Evaluation Board Bottom Layer Rev Page ...

Page 23

... OUTLINE DIMENSIONS PIN 1 INDICATOR 12° MAX 0.90 0.85 0.80 SEATING PLANE ORDERING GUIDE Temperature Model Range 1 ADL5355ACPZ-R7 −40°C to +85°C 1 ADL5355ACPZ-WP −40°C to +85°C 1 ADL5355-EVALZ RoHS Compliant Part. 0.60 MAX 5.00 BSC SQ 0.60 MAX 15 16 4.75 0.65 BSC SQ BSC (BOTTOM VIEW 0.75 TOP VIEW 0.60 2.60 BSC 0.50 0.70 0.65 FOR PROPER CONNECTION OF ...

Page 24

... ADL5355 NOTES ©2009 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D08080-0-7/09(0) Rev Page ...

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