AD ADL5531 20 mhz to 500 mhz if gain block Datasheet

20 MHz to 500 MHz
IF Gain Block
ADL5531
Data Sheet
FUNCTIONAL BLOCK DIAGRAM
Fixed gain of 20 dB
Operation up to 500 MHz
Input/output internally matched to 50 Ω
Integrated bias control circuit
Output IP3
41 dBm at 70 MHz
39 dBm at 190 MHz
Output 1 dB compression: 20.6 dB at 190 MHz
Noise figure: 2.5 dB at 190 MHz
Single 5 V power supply
Small footprint 8-lead LFCSP
ADL5534 20 dB gain dual-channel version
±2 kV ESD (Class 2)
ADL5531
8 NC
NC 1
RFIN 2
NC 3
NC 4
7 RFOUT
BIAS
CONTROL
LINEARIZER
6 NC
5 CLIN
06833-001
FEATURES
NC = NO CONNECT
Figure 1.
GENERAL DESCRIPTION
The ADL5531 is a broadband, fixed-gain, linear amplifier
that operates at frequencies up to 500 MHz. The device can be
used in a wide variety of equipment, including cellular, satellite,
broadband, and instrumentation equipment.
The ADL5531 is fabricated on a GaAs HBT process and has
an ESD rating of ±2 kV (Class 2). The device is packaged in an
8-lead 3 mm × 3 mm LFCSP that uses an exposed paddle for
excellent thermal impedance.
The ADL5531 provides a gain of 20 dB, which is stable over
frequency, temperature, power supply, and from device to device.
This amplifier is single ended and internally matched to 50 Ω.
Only input/output ac coupling capacitors, power supply decoupling
capacitors, and external inductors are required for operation.
The ADL5531 consumes 100 mA on a single 5 V supply and is
fully specified for operation from −40°C to +85°C.
Rev. B
The dual-channel 20 dB gain version, ADL5534, is also available
from Analog Devices, Inc.
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Tel: 781.329.4700 ©2007–2013 Analog Devices, Inc. All rights reserved.
Technical Support
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ADL5531
Data Sheet
TABLE OF CONTENTS
Features .............................................................................................. 1
Typical Performance Characteristics ..............................................7
Functional Block Diagram .............................................................. 1
Basic Connections .............................................................................9
General Description ......................................................................... 1
Revision History ............................................................................... 2
Soldering Information and Recommended PCB Land
Pattern .............................................................................................9
Specifications..................................................................................... 3
Evaluation Board ............................................................................ 10
Typical Scattering Parameters ..................................................... 4
Outline Dimensions ....................................................................... 11
Absolute Maximum Ratings............................................................ 5
Ordering Guide .......................................................................... 11
ESD Caution .................................................................................. 5
Pin Configuration and Function Descriptions ............................. 6
REVISION HISTORY
11/13—Rev. A to Rev. B
Changes to Figure 2 .......................................................................... 6
Added Figure 14, Renumbered Sequentially ................................ 8
8/08—Rev. 0 to Rev. A
Changes to Features Section and General Description
Section ................................................................................................ 1
Added Exposed Pad Notation to Outline Dimensions ............. 11
8/07—Revision 0: Initial Version
Rev. B | Page 2 of 12
Data Sheet
ADL5531
SPECIFICATIONS
VPOS = 5 V and TA = 25°C, unless otherwise noted.
Table 1.
Parameter
OVERALL FUNCTION
Frequency Range
Gain (S21)
Input Return Loss (S11)
Output Return Loss (S22)
Reverse Isolation (S12)
FREQUENCY = 70 MHz
Gain
vs. Frequency
vs. Temperature
vs. Supply
Output 1 dB Compression Point
Output Third-Order Intercept
Noise Figure
FREQUENCY = 190 MHz
Gain
vs. Frequency
vs. Temperature
vs. Supply
Output 1 dB Compression Point
Output Third-Order Intercept
Noise Figure
FREQUENCY = 380 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
Power Dissipation
Conditions
Min
Typ
Max
Unit
500
20.3
−19.5
−26.5
−23.0
MHz
dB
dB
dB
dB
20.9
±0.03
±0.22
±0.19
20.4
41.0
2.5
dB
dB
dB
dB
dBm
dBm
dB
20
190 MHz
190 MHz
190 MHz
190 MHz
± 5 MHz
−40°C ≤ TA ≤ +85°C
4.75 V to 5.25 V
Δf = 1 MHz, output power (POUT) = 0 dBm per tone
19.7
20.3
±0.12
±0.22
±0.17
20.6
39.0
2.5
21.0
dB
dB
dB
dB
dBm
dBm
dB
19.2
19.7
±0.15
±0.24
±0.15
20.4
36.0
3.0
20.5
dB
dB
dB
dB
dBm
dBm
dB
4.75
5
100
±15
0.5
5.25
110
V
mA
mA
W
± 50 MHz
−40°C ≤ TA ≤ +85°C
4.75 V to 5.25 V
Δf = 1 MHz, output power (POUT) = 0 dBm per tone
± 50 MHz
−40°C ≤ TA ≤ +85°C
4.75 V to 5.25 V
Δf = 1 MHz, output power (POUT) = 0 dBm per tone
Pin RFOUT
−40°C ≤ TA ≤ +85°C
VPOS = 5 V
Rev. B | Page 3 of 12
ADL5531
Data Sheet
TYPICAL SCATTERING PARAMETERS
VPOS = 5 V and TA = 25°C. The effects of the test fixture have been de-embedded up to the pins of the device.
Table 2.
Frequency
(MHz)
20
50
100
150
200
250
300
350
400
450
500
S11
Magnitude (dB)
−19.9933
−19.6622
−17.9244
−18.4041
−18.6386
−19.2303
−19.4456
−20.1783
−20.2409
−20.7266
−20.6064
S21
Angle (°)
−132.614
−151.093
−166.031
−177.116
+179.6269
+175.3384
+175.0622
+173.422
+174.1593
+175.6233
+175.853
Magnitude (dB)
21.99753
21.20511
20.83152
20.67117
20.56097
20.45422
20.34563
20.21365
20.07116
19.90932
19.72779
S12
Angle (°)
173.7349
170.3258
167.5595
164.1871
160.4721
156.5272
152.4398
148.3008
144.2311
140.0789
135.9952
Rev. B | Page 4 of 12
Magnitude (dB)
−24.2574
−23.4894
−23.22
−23.0914
−22.9921
−22.9219
−22.8475
−22.7662
−22.665
−22.5569
−22.4519
S22
Angle (°)
4.854191
5.603544
6.119636
6.631844
7.784913
8.763143
9.908631
11.21706
12.36953
13.57857
14.73385
Magnitude (dB)
−19.1444
−21.4752
−23.0386
−23.335
−22.8555
−21.6619
−20.2707
−18.7007
−17.1242
−15.726
−14.41
Angle (°)
−46.7161
−89.9497
−115.741
−119.722
−115.855
−111.307
−106.681
−104.369
−103.565
−103.863
−105.079
Data Sheet
ADL5531
ABSOLUTE MAXIMUM RATINGS
ESD CAUTION
Table 3.
Parameter
Supply Voltage on RFOUT
Input Power on RFIN
Internal Power Dissipation (Paddle Soldered)
θJA (Junction to Air)
Maximum Junction Temperature
Operating Temperature Range
Storage Temperature Range
ESD Rating—Human Body Model
Rating
5.5 V
10 dBm
600 mW
103°C/W
150°C
−40°C to +85°C
−65°C to +150°C
±2 kV
Stresses above those listed under Absolute Maximum Ratings
may cause permanent damage to the device. This is a stress
rating only; functional operation of the device at these or any
other conditions above those indicated in the operational
section of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect
device reliability.
Rev. B | Page 5 of 12
ADL5531
Data Sheet
PIN CONFIGURATION AND FUNCTION DESCRIPTIONS
PIN 1
INDICATOR
8 NC
NC 1
NC 3
ADL5531
TOP VIEW
(Not to Scale)
NC 4
7 RFOUT
6 NC
5 CLIN
NOTES
1. NC = NO CONNECT.
2. EXPOSED PAD. SOLDER THIS
PAD TO A LOW IMPEDANCE
GROUND PLANE.
06833-002
RFIN 2
Figure 2. Pin Configuration
Table 4. Pin Function Descriptions
Pin No.
1, 3, 4, 6, 8
2
5
7
Mnemonic
NC
RFIN
CLIN
RFOUT
EP
Exposed Pad
Description
No Connect.
RF Input. Requires a 10 nF dc blocking capacitor.
A 1 nF capacitor connected between Pin 5 and ground provides decoupling for the on-board linearizer.
RF Output and Bias. DC bias is provided to this pin through a 470 nH inductor (Coilcraft 1008CS-471XJLC or
equivalent). The RF path requires a 10 nF dc blocking capacitor.
GND. Solder this pad to a low impedance ground plane.
Rev. B | Page 6 of 12
Data Sheet
ADL5531
TYPICAL PERFORMANCE CHARACTERISTICS
23.0
20
18
22.5
14
33
12
30
10
27
24
8
P1dB
6
0
50
100
150
200
250
300
350
400
450
12
500
06833-003
0
21.5
36
21.0
34
+85°C
+25°C
32
20.5
20.0
30
19.5
28
18
15
2
38
+85°C
–40°C
21
NOISE
FIGURE
4
22.0
P1dB (dBm)
36
P1dB, OIP3 (dBm)
16
40
–40°C
39
OIP3
NOISE FIGURE, GAIN (dB)
42
+25°C
42
OIP3 (dBm)
45
GAIN
FREQUENCY (MHz)
26
500
19.0
0
50
100
150
200
250
300
350
400
450
06833-006
22
FREQUENCY (MHz)
Figure 3. Noise Figure, Gain, P1dB, and OIP3 vs. Frequency
Figure 6. P1dB and OIP3 vs. Frequency and Temperature
42
21.4
70MHz
20MHz
21.2
40
21.0
38
20.8
–40°C
190MHz
36
OIP3 (dBm)
GAIN (dB)
20.6
20.4
20.2
+25°C
20.0
380MHz
34
500MHz
32
30
19.8
+85°C
19.6
28
19.4
50
100
150
200
250
300
350
400
450
500
FREQUENCY (MHz)
24
–8
–6
–4
–2
0
2
4
6
8
10
12
14
16
18
20
06833-007
0
06833-004
19.0
500
06833-008
26
19.2
POUT PER TONE (dBm)
Figure 4. Gain vs. Frequency and Temperature
Figure 7. OIP3 vs. Output Power (POUT) and Frequency
0
5.0
–5
4.5
NOISE FIGURE (dB)
S11 (dB)
–15
S12 (dB)
–20
–25
–30
4.0
3.5
+85°C
3.0
+25°C
2.5
–40°C
2.0
–35
S22 (dB)
–40
0
50
100
150
200
250
300
350
400
450
500
FREQUENCY (MHz)
1.5
06833-005
S-PARAMETERS (dB)
–10
0
50
100
150
200
250
300
350
400
450
FREQUENCY (MHz)
Figure 5. Input Return Loss (S11), Reverse Isolation (S12), and
Output Return Loss (S22) vs. Frequency
Figure 8. Noise Figure vs. Frequency and Temperature
Rev. B | Page 7 of 12
ADL5531
Data Sheet
45
5.0
40
4.5
4.0
NOISE FIGURE (dB)
30
25
20
15
3.5
3.0
2.5
2.0
10
1.5
5
37.9
38.3
38.7
39.1
39.5
39.9
1.0
06833-009
0
37.5
40.3
OIP3 (dBm)
0
50
100
150
200
250
350
300
450
400
500
FREQUENCY (MHz)
Figure 9. OIP3 Distribution at 190 MHz
06833-012
PERCENTAGE (%)
35
Figure 12. Noise Figure vs. Frequency at 25°C, Multiple Devices Shown
60
150
140
50
SUPPLY CURRENT (mA)
PERCENTAGE (%)
130
40
30
20
10
5.25V
120
110
100
5V
90
80
4.75V
70
20.4
20.6
20.8
21.0
21.2
21.4
P1dB (dBm)
50
–40 –30 –20 –10
0
10
20
30
40
50
60
70
80
90
TEMPERATURE (°C)
06833-013
20.2
06833-010
60
0
20.0
Figure 13. Supply Current vs. Supply Voltage and Temperature
Figure 10. P1dB Distribution at 190 MHz
115
50
+85°C
110
45
105
30
25
20
15
100
90
85
80
70
65
5
60
19.7
19.9
19.8
20.1
20.0
20.3
20.2
20.5
20.4
20.7
20.6
20.9
20.8
GAIN (dB)
21.0
–40°C
75
10
55
–6
0
+25°C
95
–4
–2
0
2
4
6
8
10
12
14
16
18
20
POUT (dBm)
Figure 14. Supply Current vs. POUT and Temperature
Figure 11. Gain Distribution at 190 MHz
Rev. B | Page 8 of 12
22
06833-100
SUPPLY CURRENT (mA)
35
06833-011
PERCENTAGE (%)
40
Data Sheet
ADL5531
BASIC CONNECTIONS
The basic connections for operating the ADL5531 are shown
in Figure 16. The input and output are ac-coupled with 10 nF
(0402) capacitors. DC bias is provided to the amplifier via an
inductor (Coilcraft 1008CS-471XJLC or equivalent) connected
to the RFOUT pin. The bias voltage should be decoupled using
10 nF and 1 μF capacitors.
2.03mm
8
SOLDERING INFORMATION AND RECOMMENDED
PCB LAND PATTERN
1.78mm
4
5
1.53mm
Figure 15 shows the recommended land pattern for ADL5531.
To minimize thermal impedance, the exposed pad on the
package underside is soldered down to a ground plane. If
multiple ground layers exist, they are stitched together using
vias (a minimum of five vias is recommended). Pin 1, Pin 3,
Pin 4, Pin 6, and Pin 8 can be left unconnected or can be connected
to ground. Connecting these pins to ground slightly enhances
thermal impedance. For more information on land pattern design
and layout, refer to AN-772 Application Note, A Design and
Manufacturing Guide for the Lead Frame Chip Scale Package (LFCSP).
0.71mm
Figure 15. Recommended Land Pattern
VPOS
(TESTLOOP RED)
C6
1µF
C5
10nF
L1
470nH
W1
GND
(TESTLOOP BLACK)
ADL5531
C1
1 NC
2 RFIN
10nF
NC 8
C2
RFOUT
RFOUT 7
10nF
3 NC
NC 6
4 NC
CLIN 5
C3
1nF
NC = NO CONNECT
Figure 16. Basic Connections
Rev. B | Page 9 of 12
06833-014
RFIN
06833-015
0.5mm
1.85mm
1
ADL5531
Data Sheet
EVALUATION BOARD
Figure 19 shows the schematic for the ADL5531 evaluation
board. The board is powered by a single 5 V supply.
06833-017
The components used on the board are listed in Table 5. Power
can be applied to the board through clip-on leads or through
Jumper W1. Note that C4, C7, C8, L3, L4, L5, R1, and R2 have
no function.
06833-016
Figure 18. Evaluation Board Layout (Top)
Figure 17. Evaluation Board Layout (Bottom)
L5
OPEN
VPOS
C4
(TESTLOOP RED)
C5
10nF
L1
470nH
OPEN
C6
1µF
W1
GND
ADL5531
RFIN
L2
0Ω
C1
1 NC
2 RFIN
10nF
C8
OPEN
R1
C2
RFOUT
RFOUT 7
R2
3 NC
NC 6
OPEN
4 NC
CLIN 5
OPEN
L4
OPEN
10nF
C3
1nF
Z1
06833-018
L3
OPEN
C7
OPEN
(TESTLOOP BLACK)
NC 8
NC = NO CONNECT
Figure 19. Evaluation Board Schematic
Table 5. Evaluation Board Configuration Options
Component
Z1
C1, C2
C3
C5
C6
C4, C7, C8
R1, R2
L1
L2
L3, L4, L5
VPOS, GND
W1
RFIN, RFOUT
Function
DUT
AC coupling capacitors
Linearizer capacitor
Power supply decoupling capacitor
Power supply decoupling capacitor
DC bias inductor
Clip-on terminals for power supply
2-pin jumper for connection of ground and supply via cable
50 Ω SMA female connectors
Rev. B | Page 10 of 12
Default Value
ADL5531
10 nF, 0402
1 nF, 0603
10 nF, 0603
1 µF, 0603
Open
Open
470 nH, 1008 (Coilcraft 1008CS-471XJLC or equivalent)
0 Ω, 0402
Open
VPOS, GND
W1
RFIN, RFOUT
Data Sheet
ADL5531
OUTLINE DIMENSIONS
0.60 MAX
5
TOP
VIEW
PIN 1
INDICATOR
2.95
2.75 SQ
2.55
8
12° MAX
0.50
0.40
0.30
0.70 MAX
0.65 TYP
0.05 MAX
0.01 NOM
0.30
0.23
0.18
SEATING
PLANE
0.20 REF
1.60
1.45
1.30
EXPOSED
PAD
(BOTTOM VIEW)
4
0.90 MAX
0.85 NOM
0.50
BSC
0.60 MAX
1
1.89
1.74
1.59
PIN 1
INDICATOR
FOR PROPER CONNECTION OF
THE EXPOSED PAD, REFER TO
THE PIN CONFIGURATION AND
FUNCTION DESCRIPTIONS
SECTION OF THIS DATA SHEET.
04-04-2012-A
3.25
3.00 SQ
2.75
Figure 20. 8-Lead Lead Frame Chip Scale Package [LFCSP_VD]
3 mm × 3 mm Body, Very Thin, Dual Lead
CP-8-2
Dimensions shown in millimeters
ORDERING GUIDE
Model 1
ADL5531ACPZ-R7
ADL5531-EVALZ
1
Temperature Range
−40°C to +85°C
Package Description
8-Lead LFCSP_VD, 7” Tape and Reel
Evaluation Board
Z = RoHS Compliant Part.
Rev. B | Page 11 of 12
Package Option
CP-8-2
Branding
Q16
ADL5531
Data Sheet
NOTES
©2007–2013 Analog Devices, Inc. All rights reserved. Trademarks and
registered trademarks are the property of their respective owners.
D06833-0-11/13(B)
Rev. B | Page 12 of 12
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