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PDF ADL5601 Data sheet ( Hoja de datos )

Número de pieza ADL5601
Descripción 50 MHz to 4.0 GHz RF/IF Gain Block
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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FEATURES
Fixed gain of 15 dB
Operation from 50 MHz to 4.0 GHz
Highest dynamic range gain block
Input/output internally matched to 50 Ω
Integrated bias control circuit
OIP3 of 43.0 dBm at 900 MHz
P1dB of 19.0 dBm at 900 MHz
Noise figure of 3.7 dB at 900 MHz
Single 5 V power supply
Low quiescent current of 83 mA
Thermally efficient SOT-89 package
ESD rating of ±1.5 kV (Class 1C)
GENERAL DESCRIPTION
The ADL5601 is a broadband, 15 dB linear amplifier that operates
at frequencies up to 4.0 GHz. The device can be used in a wide
variety of cellular, cable television (CATV), military, and instru-
mentation equipment.
The ADL5601 provides the highest dynamic range available
from an internally matched gain block. This is accomplished by
providing extremely low noise figures and very high OIP3 speci-
fications simultaneously, across the entire 4.0 GHz frequency range.
The ADL5601 provides a gain of 15 dB, which is stable over
frequency, temperature, and supply voltage, as well as from device
to device. The device is internally matched to 50 Ω at the input
www.DaantadSohueteptu4Ut,.mcoamking the ADL5601 very easy to implement in a wide
50 MHz to 4.0 GHz
RF/IF Gain Block
ADL5601
FUNCTIONAL BLOCK DIAGRAM
GND
(2)
ADL5601
1
RFIN
BIAS
23
GND RFOUT
Figure 1.
variety of applications. Only input/output ac coupling capacitors,
power supply decoupling capacitors, and an external inductor
are required for operation.
The ADL5601 is fabricated on an InGaP heterojunction bipolar
transistor (HBT) process and has an ESD rating of ±1.5 kV
(Class 1C). The device is available in a thermally efficient SOT-89
package.
The ADL5601 consumes 83 mA on a single 5 V supply and is
fully specified for operation from −40°C to +85°C.
A fully populated RoHS-compliant evaluation board is
available.
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.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
www.analog.com
Fax: 781.461.3113
©2009 Analog Devices, Inc. All rights reserved.

1 page




ADL5601 pdf
ADL5601
Parameter
POWER INTERFACE
Supply Voltage (VCC)
Supply Current
vs. Temperature
Power Dissipation
Test Conditions/Comments
VCC
−40°C ≤ TA ≤ +85°C
VCC = 5 V
Min Typ
4.5 5.0
83
±2.3
0.42
Max Unit
5.5 V
100 mA
mA
W
TYPICAL SCATTERING PARAMETERS (S-PARAMETERS)
VCC = 5 V, TA = 25°C, and the effects of the evaluation board have been deembedded up to the pins of the device.
Table 2.
Frequency
S11
(MHz)
Magnitude (dB)
50 −20.65
100 −25.05
150 −25.57
200 −24.93
250 −24.24
300 −23.29
350 −22.53
400 −22.07
450 −21.78
500 −21.51
550 −21.57
600 −21.78
650 −22.13
700 −22.68
750 −23.43
800 −24.35
850 −25.29
900 −25.88
950 −25.90
www.Da1t0a0S0heet4U.com−25.31
1050
−24.16
1100
−23.38
1150
−22.70
1200
−22.10
1250
−21.81
1300
−21.78
1350
−21.96
1400
−22.31
1450
−22.92
1500
−23.53
1550
−24.04
1600
−24.50
1650
−24.13
1700
−23.01
1750
−21.46
1800
−19.67
1850
−17.73
1900
−15.95
1950
−14.26
2000
−12.72
2050
−11.36
Angle (°)
−144.57
+175.09
+149.73
+130.36
+114.36
+101.24
+88.38
+76.45
+66.13
+55.91
+46.37
+38.11
+30.61
+23.62
+18.47
+16.37
+16.28
+20.10
+25.78
+29.70
+29.42
+25.45
+20.88
+13.43
+4.90
−4.74
−15.31
−27.46
−40.13
−55.61
−74.40
−95.46
−118.14
−140.97
−161.36
−178.55
+167.17
+154.24
+141.96
+130.33
+119.00
S21 S12
Magnitude (dB) Angle (°) Magnitude (dB)
+15.59
+161.69 −19.76
+15.34
+149.77 −19.85
+15.27
+136.48 −19.89
+15.20
+122.75 −19.92
+15.14
+108.91 −19.96
+15.07
+95.06 −19.99
+15.02
+81.26 −20.03
+14.97
+67.39 −20.05
+14.94
+53.57 −20.07
+14.92
+39.81 −20.08
+14.90
+25.97 −20.09
+14.89
+12.17 −20.10
+14.89
−1.54
−20.10
+14.88
−15.54 −20.11
+14.89
−29.41 −20.11
+14.89
−43.49 −20.11
+14.89
−57.51 −20.12
+14.88
−71.67 −20.13
+14.87
−85.39 −20.14
+14.87
−99.48 −20.16
+14.86
−113.64 −20.18
+14.83
−127.83 −20.22
+14.81
−141.81 −20.25
+14.80
−155.93 −20.27
+14.78
−170.15 −20.31
+14.75
+175.70 −20.35
+14.72
+161.57 −20.40
+14.68
+147.40 −20.44
+14.64
+133.17 −20.50
+14.60
+118.79 −20.56
+14.56
+104.52 −20.62
+14.49
+90.23 −20.70
+14.43
+75.97 −20.79
+14.37
+61.50 −20.89
+14.27
+47.04 −21.00
+14.18
+32.52 −21.12
+14.07
+18.07 −21.26
+13.92
+3.63
−21.42
+13.77
−10.89 −21.60
+13.60
−25.40 −21.81
+13.39
−39.85 −22.05
Rev. 0 | Page 5 of 16
Angle (°)
−7.97
−24.47
−38.84
−52.66
−66.22
−79.64
−92.91
−106.12
−119.35
−132.53
−145.77
−159.04
−172.37
+174.38
+161.06
+147.71
+134.31
+120.86
+107.34
+93.84
+80.32
+66.77
+53.39
+39.79
+26.19
+12.56
−1.10
−14.74
−28.45
−42.17
−55.96
−69.82
−83.66
−97.51
−111.39
−125.37
−139.35
−153.36
−167.35
+178.67
+164.79
S22
Magnitude (dB)
−16.61
−16.06
−15.85
−15.63
−15.49
−15.40
−15.35
−15.38
−15.48
−15.68
−16.07
−16.65
−17.41
−18.36
−19.65
−21.34
−23.41
−25.86
−28.12
−28.73
−27.11
−25.16
−23.33
−22.27
−21.38
−20.75
−20.35
−20.06
−19.80
−19.60
−19.29
−18.83
−18.22
−17.57
−16.78
−15.91
−14.91
−13.88
−12.82
−11.79
−10.77
Angle (°)
−168.75
+164.97
+145.84
+128.22
+112.53
+98.52
+84.79
+71.26
+58.84
+46.57
+34.25
+22.42
+10.91
−0.29
−10.39
−18.60
−25.16
−26.32
−18.10
−1.68
+8.91
+5.98
+1.75
−8.80
−21.30
−35.07
−50.07
−66.34
−83.25
−100.18
−117.80
−135.14
−150.53
−164.65
−177.64
+170.73
+160.24
+150.20
+140.45
+130.63
+120.32

5 Page





ADL5601 arduino
BASIC CONNECTIONS
The basic connections for operating the ADL5601 are shown in
Figure 15. Recommended components are listed in Table 5. The
input and output should be ac-coupled with appropriately sized
capacitors (the device characterization was performed with
0.1 μF capacitors). A 5 V dc bias is supplied to the amplifier
through the bias inductor connected to RFOUT (Pin 3). The
bias voltage should be decoupled using a 1 μF capacitor, a 1.2 nF
capacitor, and a 68 pF capacitor.
GND
(2)
GND VCC
C6
1µF
C5
ADL5601
1.2nF
C4
RFIN
C1 1
0.1µF RFIN
2
GND
3
RFOUT
68pF
L1
470nH
C2
0.1µF
RFOUT
Figure 15. Basic Connections
ADL5601
SOLDERING INFORMATION AND RECOMMENDED
PCB LAND PATTERN
Figure 16 shows the recommended land pattern for the ADL5601.
To minimize thermal impedance, the exposed paddle on the
package underside, along with Pin 2, should be soldered to a
ground plane. If multiple ground layers exist, they should be
stitched together using vias. For more information on land
pattern design and layout, refer to the AN-772 Application
Note, A Design and Manufacturing Guide for the Lead Frame
Chip Scale Package (LFCSP).
1.80mm
5.56mm 0.20mm
3.48mm
0.86mm
0.62mm
1.27mm
1.50mm
3.00mm
Figure 16. Recommended Land Pattern
www.DaTtaabSlhee5e.t4RUe.ccoomm mended Components for Basic Connections
Frequency
C1 C2 L1
50 MHz to 4000 MHz 0.1 μF
0.1 μF
470 nH (Coilcraft 0603LS-NX or equivalent)
C4
68 pF
C5
1.2 nF
C6
1 μF
Rev. 0 | Page 11 of 16

11 Page







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