MGA-85563-BLKG Avago Technologies US Inc., MGA-85563-BLKG Datasheet

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MGA-85563-BLKG

Manufacturer Part Number
MGA-85563-BLKG
Description
AMP RFIC LNA GAAS 3V SOT-363
Manufacturer
Avago Technologies US Inc.
Type
General Purpose Amplifierr
Datasheet

Specifications of MGA-85563-BLKG

P1db
0.9dBm
Noise Figure
1.6dB
Package / Case
SC-70-6, SC-88, SOT-363
Current - Supply
15mA ~ 20mA
Frequency
0Hz ~ 6GHz
Gain
18dB
Rf Type
Cellular, PCS, WLAN
Test Frequency
2GHz
Voltage - Supply
2.7V ~ 3.6V
Mounting Style
SMD/SMT
Technology
Low Noise Amplifier
Number Of Channels
1
Operating Frequency
6000 MHz
Operating Supply Voltage
3 V
Supply Current
20 mA @ 3 V
Manufacturer's Type
Low Noise Amplifier
Frequency (max)
6GHz
Operating Supply Voltage (typ)
3V
Package Type
SOT-363
Mounting
Surface Mount
Pin Count
6
Noise Figure (typ)
1.6(Min)@6000MHzdB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1957
MGA-85563-BLKG

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MGA-85563-BLKG
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Surface Mount Package
SOT-363 (SC-70)
Pin Connections and Package Marking
MGA-85563
3-volt, Low Noise Amplifier
for 0.8 – 6 GHz Applications
Data Sheet
Description
Avago’s MGA-85563 is an easy-to-use GaAs RFIC amplifier
that offers low noise figure and high gain from 0.8 to
6 GHz. Packaged in an ultra-miniature SOT-363 package,
it requires half the board space of a SOT-143 package.
The MGA-85563 features a minimum noise figure of
1.6 dB and associated gain of 18 dB at 1.9 GHz. The
output is matched internally to 50Ω, and the input is par-
tially matched, requiring only a single external inductor
for optimal performance. The supply current can be ad-
justed using an external resistor, varying IP3 from +12
dBm to +17 dBm.
The circuit uses state-of-the-art PHEMT technology with
proven reliability. On-chip bias circuitry allows opera-
tion from a single +3V supply, while resistive feedback
ensures stability (K > 1) over frequency and temperature.
Note:
Package marking provides orientation and identification;
“x” is date code.
INPUT
GND
GND
1
2
3
6
5
4
OUTPUT
and V
GND
R
bias
d
NPUT
Features
x Lead-free Option Available
x 1.6 dB minimum Noise Figure at 1.9 GHz
x Adjustable IP3 from +12 dBm to +17 dBm via
x 18 dB Gain at 1.9 GHz
x Single 3V Supply
x Unconditionally Stable
Applications
x Amplifier for Cellular, PCS, and Wireless LAN
Equivalent Circuit
RF
3
External Resistor
Applications
BIAS
(Simplified)
Attention: Observe precautions for
handling electrostatic sensitive devices.
ESD Human Body Model (Class 0)
Refer to Avago Application Note A004R:
Electrostatic Discharge Damage and Control.
BIAS
RF OUTPUT
GROUND
and V
1, 2, 5
R
bias
6
4
d

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MGA-85563-BLKG Summary of contents

Page 1

... GHz. Packaged in an ultra-miniature SOT-363 package, it requires half the board space of a SOT-143 package. The MGA-85563 features a minimum noise figure of 1.6 dB and associated gain 1.9 GHz. The output is matched internally to 50Ω, and the input is par- tially matched, requiring only a single external inductor for optimal performance ...

Page 2

... MGA-85563 Absolute Maximum Ratings Symbol Parameter V , max Maximum Device Voltage Input Power in T Channel Temperature ch T Storage Temperature STG Electrical Specifications 25° Symbol Parameters and Test Conditions G Gain in Test Circuit test NF Noise Figure in Test Circuit test NF Minimum Noise Figure MIN (measured with G opt input and 50 Ω ...

Page 3

... Measured using the final test circuit shown below GHz. 3. Standard Deviation number is based on measurement of at least 500 parts from three non-consecutive wafer lots during the initial characteriza- tion of this product, and is intended to be used as an estimate for distribution of the typical specification. MGA-85563 Final Test Circuit 25°C, Z ...

Page 4

... MGA-85563 Typical Performance 25° Ω and using default of no external resistor at the 3.3V 3.0V 2. FREQUENCY (GHz) Figure 1. Minimum Noise Figure vs. Frequency and Voltage +85C +25C –40C FREQUENCY (GHz) Figure 4. Associated Gain vs. Frequency and Temperature. 6 +85C +25C 4 –40C FREQUENCY (GHz) Figure 7. Output Power @ 1 dB Gain Compression vs. ...

Page 5

... MGA-85563 Typical Performance, continued 25° Ω and using default of no external resistor at the +85C +25C –40C SUPPLY VOLTAGE (V) Figure 10. Device Current vs. Voltage and Temperature Input 6 4 Output FREQUENCY (GHz) Figure 13. Input and Output VSWR vs. Frequency 1dB CURRENT (mA) @ 2.0 GHz Figure 11. Output Third Order Intercept and P vs ...

Page 6

... MGA-85563 Typical Noise Parameters 25° Ω and using default of no external resistor at the Frequency F min (GHz) (dB) 0.2 1.63 0.5 1.61 0.9 1.60 1 ...

Page 7

... MHz. Application Guidelines The MGA-85563 is very easy to use. For most applications, all that is required to operate the MGA-85563 is to apply +3 volts to the RF Output pin, and noise match the RF Input. RF Input To achieve lowest noise figure performance, the input of the MGA-85563 should be matched from the system impedance (typically 50 Ω ...

Page 8

... If for any reason the R resistor is not located immedi- b ately adjacent to the MGA-85563 (such as in the case of remote current adjustment or to implement dynamic control of the device’s linearity), then a small series re- sistor (e.g., 10 Ω) should be located near the R de-Q the connection from the MGA-85563 to the exter- nal current-setting circuit ...

Page 9

... RF Input R Figure 22. Schematic of 1.9 GHz Circuit. DC bias is applied to the MGA-85563 through the RFC at the RF Output pin. The power supply connection is by- passed to ground with capacitor C3. Provision is made for an additional bypass capacitor, C4 added to the bias line near the +3 volt connection. C4 will not normal needed unless several stages are cascaded using ...

Page 10

... Since the input terminal of the MGA-85563 is at ground potential, the input DC blocking capacitor C1 need not be used unless the amplifier is connected to a preceding stage that has a voltage present at this point. The value of the DC blocking and RF bypass capacitors (C1 – C4) should be chosen to provide a small reactance (typically < ...

Page 11

... Typical values are intended to be used as a basis for electrical design. To assist designers in optimizing not only the immedi- ate amplifier circuit using the MGA-85563, but to also evaluate and optimize trade-offs that affect a complete wireless system, the standard deviation (σ) is provided for many of the Electrical Specifications parameters (at 25° ...

Page 12

... Part Number Devices MGA-85563-TR1 3000 MGA-85563-TR2 10000 MGA-85563-BLK 100 MGA-85563-TR1G 3000 MGA-85563-TR2G 10000 MGA-85563-BLKG 100 Note: For lead-free option, the part number will have the character “G” at the end NOTES: 1. All dimensions are in mm. 2. Dimensions are inclusive of plating. 3. Dimensions are exclusive of mold flash & metal burr. ...

Page 13

Device Orientation REEL USER FEED DIRECTION COVER TAPE Tape Dimensions and Product Orientation For Outline (CARRIER TAPE THICKNESS) 1 10° MAX DESCRIPTION SYMBOL CAVITY LENGTH WIDTH DEPTH PITCH BOTTOM HOLE DIAMETER PERFORATION ...

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