INA10386 Agilent Technologies, Inc., INA10386 Datasheet

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INA10386

Manufacturer Part Number
INA10386
Description
Manufacturer
Agilent Technologies, Inc.
Datasheet
RF IN
5965-9679E
Low Noise, Cascadable
Silicon Bipolar MMIC Amplifier
Technical Data
Features
• Cascadable 50
• 3 dB Bandwidth:
• 26 dB Typical Gain at
• 10 dBm Typical P
• Unconditionally Stable
• Surface Mount Plastic
Description
The INA-10386 is a low-noise
silicon bipolar Monolithic Micro-
wave Integrated Circuit (MMIC)
Typical Biasing Configuration
DC to 1.8 GHz
1.5 GHz
1.5 GHz
(k>1)
Package
C
block
1
4
2
Gain Block
3
1dB
I
d
= 45 mA
nom.
at
V
d
= 6.0 V
R
bias
C
RFC (Optional)
block
feedback amplifier housed in a
low cost surface mount plastic
package. It is designed for narrow
or wide bandwidth commercial
and industrial applications that
require high gain and moderate
power.
The INA series of MMICs is
fabricated using HP’s 10 GHz f
25 GHz f
bipolar process which uses nitride
self-alignment, submicrometer
lithography, trench isolation, ion
implantation, gold metallization
and polyimide intermetal dielec-
tric and scratch protection to
achieve excellent performance,
uniformity and reliability.
V
RF OUT
CC
MAX
, ISOSAT™-I silicon
6-112
T
,
INA-10386
86 Plastic Package

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INA10386 Summary of contents

Page 1

Low Noise, Cascadable Silicon Bipolar MMIC Amplifier Technical Data Features • Cascadable 50 Gain Block • Bandwidth 1.8 GHz • Typical Gain at 1.5 GHz • 10 dBm Typical P at 1dB 1.5 GHz ...

Page 2

INA-10386 Absolute Maximum Ratings Parameter Device Current Power Dissipation [2,3] RF Input Power Junction Temperature Storage Temperature INA-10386 Electrical Specifications Symbol Parameters and Test Conditions Power Gain (| Gain Flatness P [2] ...

Page 3

INA-10386 Typical Scattering Parameters ( Freq. GHz Mag Ang 0.05 .12 –9 0.10 .11 –17 0.50 .13 –79 1.00 .17 –137 26.8 1.50 .21 171 2.00 .21 127 2.50 .19 106 3.00 .14 86 3.50 .07 85 4.00 ...

Page 4

Plastic Package Dimensions 0.51 0.13 (0.020 0.005 2.34 (0.092 2 2.67 0.38 (0.105 0.15) 1.52 0.25 (0.060 0.010) 5 TYP. 8 MAX 0 MIN 0.66 0.013 (0.026 0.005) 2.16 0.13 (0.085 0.005) 0.30 MIN (0.012 MIN) ...

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