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DA-6018S41TA Datasheet(PDF) 4 Page - American Accurate Components, Inc.

Part # DA-6018S41TA
Description  Detector Log Video Amplifiers (DLVA)
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Manufacturer  AAC [American Accurate Components, Inc.]
Direct Link  http://www.aacix.com
Logo AAC - American Accurate Components, Inc.

DA-6018S41TA Datasheet(HTML) 4 Page - American Accurate Components, Inc.

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Detector Log Video Amplifiers (DLVA)
The content of this specification may change without notification7/01/09
188 Technology Drive, Unit H, Irvine, CA 92618
Tel: 949-453-9888
Fax: 949-453-8889
Email: sales@aacix.com
4
American Accurate Components, Inc.
DLVA
Outline Drawings (Size: mm)
Terms and Definitions
Operational Bandwidth is the range of input
frequency
over which
the technical
speci-
fications of the amplifier are met.
Log Slope is the straight line slope of the
input/output
transfer
characteristics
of the
detected signal over the dynamic range. The
log slope is expressed in millivolts per dB of a
best-fit straight line as derived by a least-
squares
approximation
of all
data
points
Log Linearity is the maximum deviation in dB
of all measured points from the calculated
best-fit straight line. The dynamic range can
be
as
high
as
75dB,
depending
upon
DL1
DL3
Dynamic Range is the range of the input
signals in dB over which the output linearity
requirement is met.
Maximum
Input
Power
is the
maximum
power
that
the
logarithmic
amplifier
can
withstand without damage.
DC offset
is the residual
DC output
of a
logarithmic
amplifier
when
the
input
is
terminated with 50ohm.
Tangential Signal Sensitivity (TSS) defines
the input level that results in an output signal-
to-noise ratio of 6 dB. TSS, which is directly
related to noise figure and bandwidth, aids in
defining the lower limit of the input dynamic
range of a logarithmic amplifier. TSS is also a
convenient way of specifying a logarithmic
amplifier's
noise performance,
since
noise
Rise Time is defined as the time difference
between the 10% point and 90% point on the
rising leading edge of the output video pulse.
Recovery Time for a logarithmic amplifier is
defined in many ways by system engineers.
The most common is to use multiple pulses
and characterize the time between the 90%
point on the trailing edge of the first pulse and
the 10% point on the leading edge of the


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