參數(shù)資料
型號(hào): MSA-2743
元件分類: 放大器
英文描述: 100 MHz - 6000 MHz RF/MICROWAVE WIDE BAND LOW POWER AMPLIFIER
封裝: PLASTIC, SOT-343, SC70, 4 PIN
文件頁(yè)數(shù): 5/15頁(yè)
文件大?。?/td> 220K
代理商: MSA-2743
13
Statistical Parameters
Several categories of parameters
appear within this data sheet.
Parameters may be described with
values that are either “minimum or
maximum,” “typical,” or “standard
deviations.”
The values for parameters are
based on comprehensive product
characterization data, in which
automated measurements are
made on of a minimum of 500
parts taken from six non-consecu-
tive process lots of semiconductor
wafers. The data derived from
product characterization tends to
be normally distributed, e.g., fits
the standard bell curve.
Parameters considered to be the
most important to system perfor-
mance are bounded by minimum
or maximum values. For the
MSA-2743, these parameters are:
Gain (G
test) and Device Voltage
(V
d). Each of the guaranteed pa-
rameters is 100% tested as part of
the manufacturing process.
Values for most of the parameters
in the table of Electrical Specifica-
tions that are described by typical
data are the mathematical mean
(), of the normal distribution tak-
en from the characterization data.
For parameters where measure-
ments or mathematical averaging
may not be practical, such as S-pa-
rameters or Noise Parameters and
the performance curves, the data
represents a nominal part taken
from the center of the character-
ization distribution. Typical values
are intended to be used as a basis
for electrical design.
To assist designers in optimizing
not only the immediate ampli-
fier circuit using the MSA-2743,
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°C) in addition
to the mean. The standard devia-
tion is a measure of the variability
about the mean. It will be recalled
that a normal distribution is com-
pletely described by the mean and
standard deviation.
Standard statistics tables or calcu-
lations provide the probability of
a parameter falling between any
two values, usually symmetrically
located about the mean. Refer-
ring to Figure 10 for example, the
probability of a parameter being
between ±1
σ is 68.3%; between
±2
σ is 95.4%; and between ±3σ is
99.7%.
68%
95%
99%
Parameter Value
Mean
(
), typ
-3
σ -2σ -1σ
+1
σ +2σ +3σ
Figure 10. Normal Distribution.
Phase Reference Planes
The positions of the reference
planes used to specify S-pa-
rameters for the MSA-2743 are
shown in Figure 11. As seen in the
illustration, the reference planes
are located at the point where the
package leads contact the test
circuit for the RF input and RF
output/bias. As noted under the
s-parameter table in section one of
the data sheet the MSA-2743 was
tested in a fixture that includes
plated through holes through a
0.025" thickness printed circuit
board. Due to the complexity of
de-embedding these grounds, the
S-parameters include the effects
of the test fixture grounds. There-
fore, when simulating the perfor-
mance of the MSA-2743 the added
ground path inductance should be
taken into account. For example
if you were designing an amplifier
on 0.031" thickness printed circuit
board material, only the differ-
ence in the printed circuit board
thickness needs to be included in
the simulation, i.e. 0.031" – 0.025"
= 0.006".
TEST FIXTURE
Input
Reference
Plane
Test Fixture
Vias
Output
Reference
Plane
Test Fixture
Vias
27x
Figure 11. Phase Reference Planes.
References
Performance data for MSA series
of amplifiers are found in the
CD ROM Catalog or http://www.
Avagotech.com/view/rf
Application Notes
AN-S001: Basic MODAMP MMIC
Circuit Techniques
AN-S002: MODAMP MMIC
Nomenclature
AN-S003: Biasing MODAMP MMICs
AN-S011: Using Silicon MMIC Gain
Blocks as Transimpedance Amplifiers
AN-S012: MagIC Low Noise Amplifiers
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