IAM-91563-BLKG Avago Technologies US Inc., IAM-91563-BLKG Datasheet

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IAM-91563-BLKG

Manufacturer Part Number
IAM-91563-BLKG
Description
MIXER RFIC GAAS 3V SOT-363
Manufacturer
Avago Technologies US Inc.
Series
IAM-91563r
Datasheet

Specifications of IAM-91563-BLKG

Package / Case
6-TSSOP, SC-88, SOT-363
Rf Type
Cellular, ISM, PCS, PHS, WLL
Frequency
800MHz ~ 6GHz
Number Of Mixers
1
Gain
7.7dB
Noise Figure
11dB
Secondary Attributes
Down Converter
Current - Supply
12mA
Voltage - Supply
3V
Maximum Input Frequency
6000 MHz
Mounting Style
SMD/SMT
Maximum Operating Frequency
700 MHz
Maximum Power Gain
11 dB
Operating Supply Voltage
6 V
Frequency Range
0.8GHz To 6GHz
Supply Voltage Range
3V
Rf Ic Case Style
SOT-363
No. Of Pins
6
Operating Temperature Range
-40°C To +85°C
Noise Figure Typ
18dB
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IAM-91563-BLKG
Manufacturer:
AVAGO/安华高
Quantity:
20 000
IAM-91563
0.8–6 GHz 3V Downconverter
Data Sheet
Description
Avago’s IAM-9563 is an economical 3V GaAs MMIC mixer
used for frequency down-conversion. RF frequency cover-
age is from 0.8 to 6 GHz and IF coverage is from 50 to 700
MHz. Packaged in the SOT-363 package, this 4.0 sq. mm.
package requires half the board space of a SOT-43 and
only 5% the board space of an SO-8 package.
At .9 GHz, the IAM-9563 provides 9 dB of conversion
gain, thus eliminating an RF or IF gain stage normally
needed with a lossy mixer. LO drive power is nominally
only -5 dBm, eliminating an LO buffer amplifier. The 8.5 dB
noise figure is low enough to allow the system to use a
low cost LNA. The -6 dBm Input IP
system linearity for most commercial applications, but is
adjustable to 0 dBm.
The circuit uses GaAs PHEMT technology with proven reli-
ability, and uniformity. The MMIC consists of a cascode FET
structure that provides unbalanced gm modulation type
mixing. An on-chip LO buffer amp drives the mixer while
bias circuitry allows a single +3V supply (through a choked
IF port). The LO port is internally matched to 50 Ω. The
RF and IF ports are high impedance and require external
matching networks.
Surface Mount Package: SOT-363 (SC-70)
Pin Connections and Package Marking
Note:
. Package marking provides orientation and identification.

GND
LO
RF
1
2
3
MGA-86563 Pkg
6
5
4 SOURCE
IF and V
GND
BYPASS
d
3
provides adequate
Features
• Lead-free Option Available
• +0 dBm Input IP
• Single +3V Supply
• 8.5 dB SSB Noise Figure at .9 GHz
• 9.0 dB Conversion Gain at .9 GHz
• Ultra-miniature Package
Applications
• Downconverter for PCS, PHS, ISM, WLL, and other
Simplified Schematic
LO
RF
1
3
Wireless Applications
3
at .9 GHz
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.
SOURCE
BYPASS
IF and V
GROUND
2, 5
4
6
d

Related parts for IAM-91563-BLKG

IAM-91563-BLKG Summary of contents

Page 1

... MHz. Packaged in the SOT-363 package, this 4.0 sq. mm. package requires half the board space of a SOT-43 and only 5% the board space of an SO-8 package. At .9 GHz, the IAM-9563 provides conversion gain, thus eliminating gain stage normally needed with a lossy mixer. LO drive power is nominally only -5 dBm, eliminating an LO buffer amplifier ...

Page 2

... IAM-91563 Absolute Maximum Ratings Symbol Parameter V Device Voltage, RF output to ground voltage or LO voltage to ground RF Input Power in T Channel Temperature ch T Storage Temperature STG IAM-91563 Electrical Specifications, Symbol Parameters and Test Conditions G Gain in test circuit [] test NF Noise Figure in test circuit [] test I Device Current ...

Page 3

... IAM-91563 Typical Performance + + – FREQUENCY (GHz) Figure 1. Available Conversion Gain vs. Frequency and Temperature FREQUENCY (GHz) Figure 4. Available Conversion Gain vs. Frequency and Voltage - FREQUENCY (GHz) Figure 7. RF, LO, and IF Return Loss vs. Frequency 25° 3.0 V, RF=1890 MHz dBm 250 MHz, unless otherwise stated. ...

Page 4

... IAM-91563 Typical Performance + + - 100 200 300 400 500 600 700 IF FREQUENCY (MHz) Figure 10. SSB Noise Figure vs. Frequency and Temperature GAIN POWER (dBm) Figure 13. Available Conversion Gain and Noise Figure vs. LO Drive Power RF-LO -8 -12 -16 -20 -24 RF-IF -28 -32 LO-IF -36 - FREQUENCY (GHz) Figure 16 ...

Page 5

... IAM-91563 Typical Reflection Coefficients, Frequency (GHz) RF (Mag) 0. 0. 0.3 0.4 0.5 0.6 0.7 0.8 0.9 0.9 0.9  0.9 . 0.9 . 0.9 .3 0.88 .4 0.87 .5 0.85 .6 0.84 .7 0.83 .8 0.8 .9 0.8  0.8 . 0.8 . 0.8 .3 0.8 .4 0.8 .5 0.80 .6 0.80 .7 0.8 .8 0.8 .9 0.8 3 0.8 3. 0.83 3. 0.83 3.3 ...

Page 6

... Using a minimum of external components with a standard bias of 3 volts/9 mA and LO power of -5 dBm, the IAM-9563 mixer achieves conversion gain .9 GHz with a noise figure of 8.5 dB and an input third order inter- cept point of -6 dBm. LO-to-IF isolation is greater than 35 dB ...

Page 7

... To assist designers in optimizing not only the immedi- ate circuit using the IAM-9563, but to also optimize and evaluate trade-offs that affect a complete wireless system, the standard deviation (σ) is provided for many of the Elec- trical Specifications parameters (at 5°) in addition to the mean. The standard deviation is a measure of the variabil- ity about the mean ...

Page 8

... If other types of matching networks are used, it should be noted that while the RF input terminal of the IAM-9563 is at ground potential, it should not be used as a current sink. If the input is connected directly to a preceding stage that has a voltage present blocking capacitor should be used ...

Page 9

... IF. When biased in the high linearity mode, a resistor is added from the Source Bypass pin to ground. High Linearity Mode The IAM-9563 has a feature that allows the user to place an external resistor from the Source Bypass pin to ground and increase the device current from a nominal high ...

Page 10

... The printed circuit layout in Figure  general purpose layout that will accommodate components for using the IAM-9563 for RF inputs from 800 MHz to 6 GHz. This lay- out is a microstripline design (solid groundplane on the backside of the circuit board) with 50 Ω interfaces for the RF input, IF output, and LO input ...

Page 11

... LO the table of Reflection Coefficients. Capacitor block for the LO port. DC bias is applied to the IAM-9563 through the RFC at the IF Output pin. The power supply is bypassed to ground with capacitor C5 to keep RF, IF, and LO signals off of the DC bias lines and to prevent gain dips or peaks in the re- sponse of the mixer ...

Page 12

... Figure 34. 2.4 GHz ISM Band Mixer. SOT-363 PCB Footprint A recommended PCB pad layout for the miniature SOT- 363 (SC-70) package used by the IAM-9563 is shown in Figure 35 (dimensions are in inches). This layout provides ample allowance for package placement by automated assembly equipment without adding parasitics that could impair the high frequency RF performance of the IAM- 9563 ...

Page 13

... Part Number Ordering Information No. of Part Number Devices IAM-9563-TR 3000 IAM-9563-TR 0000 IAM-9563-BLK 00 IAM-9563-TRG 3000 IAM-9563-TRG 0000 IAM-9563-BLKG 00 Note: For lead-free option, the part number will have the character “G” at the end NOTES: . All dimensions are in mm. . Dimensions are inclusive of plating. ...

Page 14

... FEED DIRECTION COVER TAPE Tape Dimensions and Product Orientation For Outline DESCRIPTION CAVITY LENGTH WIDTH DEPTH PITCH BOTTOM HOLE DIAMETER PERFORATION DIAMETER PITCH POSITION CARRIER TAPE WIDTH THICKNESS COVER TAPE WIDTH TAPE THICKNESS DISTANCE CAVITY TO PERFORATION (WIDTH DIRECTION) CAVITY TO PERFORATION (LENGTH DIRECTION) For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries ...

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