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MAX2611EUSMAXIMN/a3avaiDC-to-Microwave / Low-Noise Amplifier


MAX2611EUS ,DC-to-Microwave / Low-Noise AmplifierApplications ________________Ordering InformationSatellite ReceiversPART TEMP. RANGE PIN-PACKAGETV ..
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MAX2611EUS
DC-to-Microwave / Low-Noise Amplifier
_______________General Description
The MAX2611 is a low-voltage, low-noise amplifier for
use from DC to microwave frequencies. Operating from
a single +5V supply, it has a 3dB bandwidth of
1100MHz. The MAX2611’s low noise figure and high
drive capability make it ideal for a variety of transmit,
receive, and buffer applications.
In a typical application, the only external components
needed are input and output blocking capacitors and
a VCCseries resistor. To improve gain and output
power, an RF choke can be added in series to the bias
resistor.
The MAX2611 comes in a 4-pin SOT143 package,
requiring minimal board space.
________________________Applications

Satellite Receivers
TV Tuners
Wireless Local Loops
ISM Radios
Global Positioning Systems
Wireless Local-Area Networks
Land Mobile Radios
Set-Top Boxes
____________________________Features
Single +5V Supply Operation3dB Bandwidth: DC to 1100MHzHigh Gain: 18dB at 500MHzLow Noise Figure: 3.5dB at 500MHzHigh Drive Capability: +3dBm at 16mA IDUltra-Small SOT143 Package
MAX2611
________________________________________________________________Maxim Integrated Products1
__________________Pin Configuration
__________Typical Operating Circuit
& the latest literature: http://,
MAX2611
DC-to-Microwave, Low-Noise Amplifier_______________________________________________________________________________________
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS

(ID= 16mA, Z0= 50Ω, fIN= 500MHz, TA= +25°C, unless otherwise noted.)
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to
absolute maximum rating conditions for extended periods may affect device reliability.
Note 1:
Parts are designed to operate over specified temperature range. Specifications are production tested and guaranteed
at +25°C.
Note 2:
Guaranteed by design, not tested.
ID.........................................................................................40mA
Input Power....................................................................+13dBm
Continuous Power Dissipation (TA= +70°C)
SOT143-4 (derate 4mW/°C above +70°C)..................320mW
Operating Temperature Range...........................-40°C to +85°C
Junction Temperature......................................................+150°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10sec).............................+300°C
MAX2611
DC-to-Microwave, Low-Noise Amplifier
_______________________________________________________________________________________3

GAIN vs. FREQUENCY
MAX2611-01
FREQUENCY (GHz)
GAIN (dB)
5:1
1:1
VOLTAGE STANDING-WAVE RATIO
vs. FREQUENCY
2:1
3:1
4:1
MAX2611-02
FREQUENCY (GHz)
VSWR
OUTPUT 1dB COMPRESSION
POINT vs. FREQUENCY
MAX2611-03
FREQUENCY (GHz)
(dBm)
NOISE FIGURE vs. FREQUENCY
MAX2611-04
FREQUENCY (GHz)
NOISE FIGURE (dB)
GAIN vs. CURRENT
MAX2611-05
ID(mA)
GAIN (dB)35
__________________________________________Typical Operating Characteristics

(ID = 16mA, Z0= 50Ω, fIN= 500MHz, TA= +25°C, unless otherwise noted.)
MAX2611
DC-to-Microwave, Low-Noise Amplifier_______________________________________________________________________________________
______________________________________________________________Pin Description
Table 1. Typical Scattering Parameters

(ID= 16mA, Z0= 50Ω, TA= +25°C)
MAX2611
DC-to-Microwave, Low-Noise Amplifier
_______________________________________________________________________________________5
_______________Detailed Description

The MAX2611 is a broadband amplifier with flat gain
and 50Ωinput and output ports. Its small size and sim-
ple bias circuitry make it ideal for applications where
board space is limited.
__________Applications Information
External Components

As shown in the Typical Operating Circuit, the
MAX2611 is easy to use. Input and output series
capacitors may be necessary to block DC bias volt-
ages (generated by the MAX2611) from interacting with
adjacent circuitry. These capacitors must be large
enough to contribute negligible reactance in a 50Ω
system at the minimum operating frequency. Use the
following equation to calculate their minimum value:
where f (in MHz) is the minimum operating frequency.
Bias current is supplied to the MAX2611 through an
external resistor and optional RF choke connected
between VCCand the OUT pin. A bypass capacitor
from VCCto GND may be necessary to isolate the VCC
line from other circuitry. The resistor value determines
the bias current from the following equation:
where VDis the device voltage, nominally 3.8V.
An optional RF choke can be added to improve the
MAX2611’s gain and output power. The choke should
be large enough to reduce the loading effect that the
bias resistor has on the amplifier output. This is a func-
tion of RBIAS, frequency of operation, and output
impedance.
Grounding

Proper grounding of the GND pins is essential. If the
PC board uses a topside RF ground, the GND pins
should be connected directly to it. For a board where
the ground plane is not on the component side, the
best technique is to connect the GND pins to it through
multiple plated through-holes.
PC Board Layout Example

An example PC board layout is given in Figure 1. It
uses FR-4 with 31mil layer thickness between the RF
lines and the ground plane. This board satisfies all the
above requirements.
ID =VCC - VD
RBIAS
Figure 1. Example PC Board Layout
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are
implied. Maxim reserves the right to change the circuitry and specifications without notice at any time.___________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-76001996 Maxim Integrated Products Printed USAis a registered trademark of Maxim Integrated Products.
MAX2611
DC-to-Microwave, Low-Noise Amplifier
0.30 ±0.05
0.8 ±0.05
0.30R MAX.
2.2 ±0.1
0.5 RADIUS
TYPICAL1.5 +0.1/-0.0 DIAMETER
8.0 ±0.33.5 ±0.05
1.0 MINIMUMAo = 3.1mm ±0.1
Bo = 2.7mm ±0.1
Ko = 1.2mm ±0.1
NOTE: DIMENSIONS ARE IN MM.
AND FOLLOW EIA481-1 STANDARD.
ICs MAY ALSO BE MARKED WITH FULL PART NAME: 2611
__________________________________________________Tape-and-Reel Information
________________________________________________________Package Information
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