ADL5565 AD [Analog Devices], ADL5565 Datasheet

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ADL5565

Manufacturer Part Number
ADL5565
Description
6 GHz Ultrahigh Dynamic Range Differential Amplifier
Manufacturer
AD [Analog Devices]
Datasheet

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FEATURES
3 dB bandwidth of 6 GHz (A
Pin strappable gain adjust: 6 dB, 12 dB, and 15.5 dB
Gain range from 0 dB to 15.5 dB using two external resistors
Differential or single-ended input to differential output
Low noise input stage: NF = 8.7 dB at 15.5 dB gain
Low broadband distortion (A
IMD3 of −113 dBc at 100 MHz center
Slew rate: 11 V/ns
Fast settling and overdrive recovery of 2 ns
Single-supply operation: 2.8 V to 5.2 V
Power down
Fabricated using the high speed XFCB3 SiGe process
APPLICATIONS
Differential ADC drivers
Single-ended-to-differential conversion
RF/IF gain blocks
SAW filter interfacing
GENERAL DESCRIPTION
The
optimized for RF and IF applications. The amplifier offers low
noise of 1.5 nV/√Hz and excellent distortion performance over
a wide frequency range making it an ideal driver for high speed
8-bit to 16-bit analog-to-digital converters (ADCs).
The
through a pin strappable configuration. For the single-ended
input configuration, the gains are reduced to 5.3 dB, 10.3 dB,
and 13 dB. Using two external series resistors expands the gain
flexibility of the amplifier and allows for any gain selection from
0 dB to 15.5 dB for a differential input and 0 dB to 13 dB for a
single-ended input.
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.
10 MHz: −107 dBc (HD2), −110 dBc (HD3)
100 MHz: −108 dBc (HD2), −103 dBc (HD3)
200 MHz: −82 dBc (HD2), −87 dBc (HD3)
500 MHz: −68 dBc (HD2), −63 dBc (HD3)
ADL5565
ADL5565
provides three gain levels of 6 dB, 12 dB, and 15.5 dB
is a high performance differential amplifier
V
= 6 dB)
V
= 6 dB)
6 GHz Ultrahigh Dynamic Range
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
Fax: 781.461.3113
The quiescent current of the
when disabled, consumes less than 5 mA with −25 dB of input-
to-output isolation at 100 MHz.
The device is optimized for wideband, low distortion, and noise
performance, giving it unprecedented performance for overall
spurious-free dynamic range. These attributes, together with its
adjustable gain capability, make this device the amplifier of
choice for driving a wide variety of ADCs, mixers, pin diode
attenuators, SAW filters, and multielement discrete devices.
Fabricated on an Analog Devices, Inc., high speed SiGe process, the
ADL5565
package and operates over the −40°C to +85°C temperature range.
VIN1
VIN2
VIP2
VIP1
is supplied in a compact 3 mm × 3 mm, 16-lead LFCSP
FUNCTIONAL BLOCK DIAGRAM
R
R
R
R
G2
G1
G1
G2
Differential Amplifier
©2011 Analog Devices, Inc. All rights reserved.
GND
VCC
Figure 1.
ADL5565
R
R
F
F
ADL5565
is typically 70 mA, and
ADL5565
www.analog.com
ENBL
VON
VCOM
VOP

Related parts for ADL5565

ADL5565 Summary of contents

Page 1

... LFCSP package and operates over the −40°C to +85°C temperature range. One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel: 781.329.4700 Fax: 781.461.3113 ©2011 Analog Devices, Inc. All rights reserved. ADL5565 ENBL VON VCOM VOP ADL5565 is typically 70 mA, and www ...

Page 2

... ADL5565 TABLE OF CONTENTS Features .............................................................................................. 1 Applications....................................................................................... 1 Functional Block Diagram .............................................................. 1 General Description ......................................................................... 1 Revision History ............................................................................... 2 Specifications..................................................................................... 3 3.3 V Specifications ...................................................................... Specifications ......................................................................... 6 Absolute Maximum Ratings............................................................ 9 ESD Caution.................................................................................. 9 Pin Configuration and Function Descriptions........................... 10 Typical Performance Characteristics ........................................... 11 REVISION HISTORY 10/11—Revision 0: Initial Version   Circuit Description......................................................................... 16   Basic Structure ............................................................................ 16   ...

Page 3

... ENBL high ENBL low ENBL high ENBL low Rev Page ADL5565 = 25°C; parameters specified A Min Typ Max Unit 6750 MHz 6500 MHz 6250 MHz 1000 MHz ±1 dB 1.9 mdB/V 0.35 mdB/°C 11 ...

Page 4

... ADL5565 Parameter NOISE/HARMONIC PERFORMANCE 10 MHz Second/Third Harmonic Distortion (HD2/HD3) Output IP3/Third-Order Intermodulation Distortion (OIP3/IMD3) Second-Order Intermodulation Distortion (IMD2) Noise Spectral Density, RTI (NSD) Noise Figure (NF Compression Point, RTO (OP1dB) 100 MHz Second/Third Harmonic Distortion (HD2/HD3) Output IP3/Third-Order Intermodulation Distortion (OIP3/IMD3) ...

Page 5

... V p-p composite (2 MHz spacing 15 15 Rev Page ADL5565 Min Typ Max Unit −82/−87 dBc −72/−86 dBc −71/−86 dBc +46/−97 dBm/dBc +46/−99 dBm/dBc +46/−98 dBm/dBc −85 dBc −73 dBc − ...

Page 6

... ADL5565 5 V SPECIFICATIONS 200 Ω differential ac-coupled differential input and differential output, unless otherwise noted. Table 2. Parameter DYNAMIC PERFORMANCE −3 dB Bandwidth Bandwidth for 0.1 dB Flatness Gain Accuracy Gain Supply Sensitivity Gain Temperature Sensitivity Slew Rate Settling Time Overdrive Recovery Time ...

Page 7

... Rev Page ADL5565 Min Typ Max Unit −111/−116 dBc −100/−104 dBc −105/−106 dBc +47/−99 dBm/dBc +50/−105 dBm/dBc +50/−105 dBm/dBc −78 dBc −86 dBc −91 dBc 2.25 nV/√ ...

Page 8

... ADL5565 Parameter 200 MHz Second/Third Harmonic Distortion (HD2/HD3) Output IP3/Third-Order Intermodulation Distortion (OIP3/IMD3) Second-Order Intermodulation Distortion (IMD2) Noise Spectral Density, RTI (NSD) Noise Figure (NF) 500 MHz Second/Third Harmonic Distortion (HD2/HD3) Output IP3/Third-Order Intermodulation Distortion (OIP3/IMD3) Second-Order Intermodulation Distortion (IMD2) Noise Spectral Density, RTI (NSD) ...

Page 9

... V section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect 30 mA device reliability. 525 mW 52°C/W 34.6°C/W ESD CAUTION 125°C −40°C to +100°C −65°C to +150°C Rev Page ADL5565 ...

Page 10

... ENBL Enable. Apply positive voltage (1.3 V < ENBL < VCC) to activate device. 13, 14, 15, 16, GND Ground. Exposed paddle is internally connected to GND and must be soldered to a low impedance Exposed Paddle ground plane. VIP2 1 12 ENBL ADL5565 VIP1 2 11 VOP TOP 10 VIN1 3 VON VIEW VIN2 ...

Page 11

... FREQUENCY (MHz) Four Temperatures, VPOS = 3 6dB 12dB 15.5dB 100 FREQUENCY (MHz dB dB, and VPOS = 3.3 V ADL5565 200 250 200 250 = 6 dB, V 1000 = 15.5 dB, V ...

Page 12

... ADL5565 6dB 12dB 15.5dB 10M 100M FREQUENCY (Hz) Figure 9. Noise Figure vs. Frequency 15.5 dB, VPOS = 5 6dB 12dB 4 15.5dB 6dB V 4 12dB 15.5dB V 3.5 3.0 2.5 2.0 1.5 1.0 0 100 FREQUENCY (MHz) Figure 10. Noise Spectral Density vs. Frequency ...

Page 13

... Figure 19. Harmonic Distortion vs. Output Power per Tone, = 200 Ω, VPOS = 3.3 V and VPOS = HD2, 5V HD3, 5V HD2, 3.3V HD3, 3.3V 1.0 1.5 2.0 2.5 VCOM Figure 20. Harmonic Distortion (HD2/HD3) vs. VCOM dB, VPOS = 3.3 V and VPOS = ADL5565 0 –20 –40 –60 –80 –100 –120 –140 450 500 0 –20 –40 –60 –80 –100 – ...

Page 14

... ADL5565 –60 HD2 A = 5.3dB V HD2 A = 10.3dB V –65 HD2 A = 13dB V HD3 A = 5.3dB V HD3 A = 10.3dB –70 V HD3 A = 13dB V –75 –80 –85 –90 –95 –100 –105 0 50 100 150 FREQUENCY (MHz) Figure 21. Single-Ended Harmonic Distortion (HD2/HD3) vs. Frequency CH3 400mV/DIV 50Ω 8:0G 25GS CH1 70 ...

Page 15

... 1000 = Rev Page 3.3V – TEMPERATURE (°C) Figure 29. I vs. Temperature 200 Ω, A SUPPLY L V VPOS = 3.3 V and VPOS = 5 V ADL5565 80 100 = 6 dB, ...

Page 16

... VCOM, which allows driving an ADC directly without external components. Although distortion is similar over the specified frequency range at both 3.3 V and 5 V, lower distortion results on the 5 V supply for signal swings larger than 2 V p-p. Rev Page very flexible in terms of I/O coupling. It can be ADL5565 provides an output ...

Page 17

... APPLICATIONS INFORMATION BASIC CONNECTIONS Figure 31 shows the basic connections for operating the ADL5565. Apply a voltage between 3 V and the VCC pins, and decouple each supply pin with at least one low inductance, 0.1 μF surface-mount ceramic capacitor, placed as close as possible to the device. Also, decouple the VCOM pin (Pin 9) using a 0.1 μ ...

Page 18

... CONNECT INPUT A TO VIP2 V AND INPUT B TO VIN2. 3. FOR 13dB GAIN (A = 4.5), CONNECT INPUT A TO BOTH V VIP1 AND VIP2 AND INPUT B TO BOTH VIN1 AND VIN2. R1 (Ω ADL5565 200Ω VIP2 50Ω 0.1µF VIP1 100Ω R2 VIN1 100Ω VIN2 50Ω ...

Page 19

... Instead, a simple voltage divider can be implemented using the combination of additional series resistors at the amplifier input and the input impedance of the ADL5565, as shown in Figure 36. A pair of resistors is used to match to the impedance of the previous stage. 0.1 µF ...

Page 20

... ADL5565. Figure 40 uses a wideband 1:1 transmission line balun followed by two 40 Ω resistors in parallel with the three input impedances (which change with the gain selection of the ADL5565) to provide a 50 Ω differential impedance and provides a wideband match Ω source. The ...

Page 21

... PCB parasitics 1nF 4Ω 105Ω CML L1 L3 105Ω 1nF 4Ω Figure 41. Narrow-Band IF Sampling Solution for an ADC Application L1 (nH) 3.3 3.3 3.3 3.3 Rev Page AD9467 C2 (pF) L3 (nH) C4 (pF ADL5565 L5 (nH) 82 150 120 51 ...

Page 22

... Figure 42. General-Purpose Characterization Circuit R2 (Ω) R3 (Ω) R4 (Ω) 29 Open Open 40 (Ω) R9 (Ω) R10 (Ω) 84.5 34.8 34.8 R3 VIP2 R1 R4 VIP1 VOP ADL5565 R5 VIN1 VON R2 R6 VIN2 R2 (Ω) R3 (Ω) R4 (Ω) 100 Open 0 Open 0 Open Open (Ω) R9 (Ω) R10 (Ω) 50 Open Open Rev Page ...

Page 23

... As an alternative, the input transformer, T1, can be replaced with one of the following transformers to provide a low loss balanced input to the ADL5565. • gain configuration, Mini-Circuits TC4-1W+ • ...

Page 24

... ADL5565 Table 15. Evaluation Board Configuration Options Component Description VPOS, GND Ground and supply vector pins. C3, C4, C5, Power supply decoupling. The supply decoupling consists μF capacitor (C3) to C6, C7, C11 ground are bypass capacitors. C11 ac couples VREF to ground. J1, J2, R1, R2, Input interface. The SMA labeled J1 is the input 1-to-1 impedance ratio balun R3, R4, R5, R6, to transform a single-ended input into a balanced differential signal ...

Page 25

... Figure 45. Layout of Evaluation Board, Component Side Figure 46. Layout of Evaluation Board, Circuit Side Rev Page ADL5565 ...

Page 26

... ADL5565 OUTLINE DIMENSIONS PIN 1 INDICATOR 0.80 0.75 0.70 SEATING PLANE ORDERING GUIDE 1 Model Temperature Range ADL5565ACPZ-R7 −40° 85°C ADL5565-EVALZ RoHS Compliant Part 3.10 0.30 3.00 SQ 0.25 2.90 0.20 13 0.50 12 BSC EXPOSED PAD 9 8 0.50 TOP VIEW BOTTOM VIEW 0.40 0.30 0.05 MAX 0.02 NOM COPLANARITY 0.08 0.20 REF COMPLIANT TO JEDEC STANDARDS MO-229. Figure 47. 16-Lead Lead Frame Chip Scale Package [LFCSP_WQ × ...

Page 27

... NOTES Rev Page ADL5565 ...

Page 28

... ADL5565 NOTES ©2011 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. D09959-0-10/11(0) Rev Page ...

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