808 Analog Signal Processor
808
ANALOG SIGNAL PROCESSOR
Low cost, direct processing of
Analog instrumentation signals
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808 ANALOG SIGNAL PROCESSOR
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COMPUTERS FOR DYNAMIC ANALYSIS
THE COMDYNA 808 ANALOG SIGNAL PROCESSOR
is a versatile, low cost analog computer
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designed specifically for handling meas-
urement data. It enables instrumentation
signals to be processed while still in an
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and may be displayed, recorded or used
in parallel with raw source data.
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THE 808 ROUNDS OUT A DATA ACQUISITION SYSTEM
The 808 Analog Signal Processor increases the efficiency, flexibility and expands the usefulness of data
acquisition systems. It rounds out an instrumentation system by performing operations that are best han-
dled in an analog form.
In a typical data acquisition system...
THE 808 FILLS THIS GAP
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OUTPUTS FROM THE 808 ANALOG SIGNAL PROCESSOR:
May be recorded or displayed in analog form for direct analysis.
Provide preprocessed inputs to a digital data acquisition unit for digital computer analysis.
May be used as controller set-points, where processed variables are the desired control functions.
4 GENERAL OPERATIONS
provide the versatility to meet a variety of instrumentation needs. All four are readily programmed on the
808 Analog Signal Processor. And, they likely will cost a fraction of alternate methods
such as
manual calculations, digital computer run time or special designed equipment.
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Arithmetic Calculations . . . Practically every conceivable
arithmetic operation can be handled with the wide as-
sortment of operational elements. Program linear opera-
tions with integrators, summers, sign inverters and po-
tentiometers. Add non-linear functions with multipliers,
dividers, squaring, logarithm or other arithmetic function
generators. And, even include empirical functions with
the Comdyna 701 Variable Diode Function Generator.
One versatile system performs all the arithmetic calcula-
tions likely to be encountered.
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Time Variant Functions . . . For time-dependent functions,
such as integrations and differentiations, the 808 is per-
fect for the job. Connect an instrumentation variable to
an integrator input. . . . On command, the continuous,
exact integral is obtained. Derivatives, and other time
variant functions, are handled in a similar manner.
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Signal Conditioning . .. A wide assortment of operational
elements are available to aid the conditioning of raw
analog data. The 808 system has free amplifiers, poten-
tiometers, a precision plus and minus ten volt reference,
a fifteen volt power supply, summing resistor networks,
integrating capacitors, and multiplying networks. These
can be easily used for special filters, summers, integrators,
sign inverters, special scaling and balancing circuits or
numerous other operations that aid signal conditioning.
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Digitally-controlled Operations . . . The 808 control func-
tions are compatible with digital logic systems. Analog/
Digital or Digital/Analog operations, therefore, can be
combined to serve many data handling needs. High speed
electronic switching is the standard integrator mode con-
trol. Electronic switching may also be used to create ana-
log memory, change scale factors, or apply functions
based on logic decision making.
TYPICAL APPLICATIONS
The four general operations listed above are often used in the following application categories. Under
these categories, the 808 range of specific applications is practically unlimited.
Implicit Measurement . . . Instrumentation variables that
cannot be directly measured often can be obtained
through indirect calculation. For example, mechanical
power is frequently the product of shaft speed times
torque. Both speed and torque are obtained through
direct measurement, but power is not. Implicit power
measurement, however, can be obtained by using the
Comdyna 808 to multiply speed and torque. Power, ob-
tained through analog multiplication, is but one ex-
ample of implicit measurement. Others include .. . effi-
ciency, co-efficient of friction, work, enthalpy, rosette
stress, directional vector, and many more. In each case,
the implicit measurement appears as an analog signal,
and is handled like any direct measurement.
Process Control . . . Analog operations serve a variety
of production or prototype control applications. Im-
plicit measurements are desirable set-points where con-
trol functions are more influenced by calculated than
measured variables. In addition to providing calculated
set-points, various control techniques can readily be
patched on the 808, and then tried with a minimum of
difficulty. There are standard programs for one, two or
three mode controllers, lead and lag circuits, etc. Special
approaches, such as optimization schemes, also can be
programmed. The Analog Signal Processor is adaptable
to a wide range of process control designs, modifications
and applications.
Data Reduction . . . Reduction of analog data to usable
form is handled accurately, easily and efficiently. Reduc-
tions can be performed either on-line during a test, or
off-line from recorded analog tape. Either way, inputs
and outputs are in analog form, and can be handled in
an identical manner.
Preprocessing Digital Computer Inputs . . . Preprocessing
inputs to digital acquisition systems often simplifies both
data acquisition and digital computer data analysis pro-
grams. Some mathematical operations, such as integra-
tion, are better handled with analog techniques. Arithme-
tic calculations requiring large, time-consuming digital
routines are often handled with only a few inexpensive
analog elements. Where high frequency signals occur,
continuous analog calculations can eliminate the need
for storing large amounts of digital data. By preprocess-
ing inputs the 808 Analog Signal Processor can greatly
increase the potential of digital data acquisition systems
. and reduce costly digital computer run time.
808 FUNCTIONAL COMPONENTS
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808 ANALOG SIGNAL PROCESSOR
Straightforward programming and good operator features are a major design criteria. Some of the primary
system features and computing capabilities are shown above and described in the following .
Patch Panel . . . Programming is performed with color
coded patch cords and banana jacks. Clearly marked sym-
bols make patching easy for the operator. %4” hole spac-
ing is standard.
Operational Amplifiers . . . Eight high gain operational
amplifiers offer stable performance over a wide frequen-
cy range. Four amplifiers (nos. 1 through 4) are furnished
with high-speed electronic switches that can be inde-
pendently controlled with external logic commands.
Summation . . . Each operational amplifier has an asso-
ciated precision summing network for accurate summa-
tion of analog variables.
Integration . . . Amplifiers with electronic switching also
have provisions for integrating capacitors. Values for
these precision capacitors can be selected by the user,
based on the need for specific integration time constants.
Individual integrator modes is controlled either from the
control panel mode control switch, or with external logic
commands.
Multiplication by Constants . . . Six co-efficient potenti-
ometers are provided for entering constants into a pro-
gram. A Pot Set mode and Pot Address switch are used
with an external voltmeter for accurate setting of co-
efficients.
Multiplication of Variables . . . Four multiplying net-
works can be used with any of the eight operational
amplifiers for multiplication division, squaring and square
foot functions.
Trunks . . . Eight input/output trunks, brought from a
rear trunk connector, terminate at the patch panel. These
trunks allow for convenient input/output of raw and
processed data.
Precision Reference . . . A precise, positive and nega-
tive 10 volt reference supply is terminated at the patch
panel. The reference can be used internally or with ex-
ternal instrumentation.
Overload Indicator . . . A lamp overload indicator shows
when any of the eight amplifiers exceeds 10 volt system
reference.
Control and Address Features . . . The Amp/Pot Ad-
dress switch provides address of the eight operational
amplifiers and the six co-efficient potentiometers. Outputs
of the address switch is placed on an amplifier address
and potentiometer address bus, found in the rear trunk
connector.
Mode Selector Switch . . . The Mode Selector switch
either places the unit in an operate or a pot set mode.
During the pot set mode, all six co-efficient potentiometers
receive the 10 volt reference as inputs for accurate set-
ting of co-efficients.
Mode Control Switch . . . The Mode Control switch
manually provides a logic command for placing inte-
grators into the initial condition, hold or operate mode.
ACCESSORY COMPONENTS
Digital Voltmeter . . . A 3% place digital voltmeter, with
auto polarity feature, is available for digital readout of
808 variables. The unit is furnished in a standard rack
mounted chassis.
Null Meter . . . Economical readout of analog variables
is available with a null meter and 3 place precision null
potentiometer. The unit is furnished on a rack mounted
panel.
Comdyna 701 VDFG .. . Arbitrary variable functions or
co-efficients are available with addition of the 701 Vari-
able Diode Function Generator. The unit is panel or
chassis mounted, and patched to the 808 for operation.
Special Input Amplifiers . . . Special amplifiers for in-
strumentation signal amplification are available upon
request, and can be mounted within the 808 unit.
THE 808 OFFERS COST AND OPERATING BENEFITS
CONSIDER THE SAVINGS ...
Elimination of Data Processing Time
Analog computing is instantaneous. The Comdyna 808 performs operations in virtually zero
time. There is no faster way to process analog data.
Low Cost Analysis
Cost of individual operations is a fraction of any alternate method — whether by manual cal-
culation or digital computer run time. Initial equipment is low, and the total cost of operation
is negligible . . . just 25 watts of power.
AND THESE BENEFITS ...
Improved Presentation of Measured Variables
Instant results make calculated variables available for immediate readout. Calculated variables
can be displayed or recorded in place of/or along with measured variables. Total information
from instrumentation is presented in a better, more useful form.
Increased Efficiency of Test Runs and Process Control
The 808 gives immediate access to calculated variables as variations occur during a process or
test run. With better information, processes and tests are more effectively controlled and eval-
uated. Analysis can be performed at the test or process location.
Improved Data Reduction
The better and more complete presentation of instrumentation variables helps to reduce the
recording and processing of superfluous information. More meaningful recorded data helps sim-
plify and improve off-line data reduction.
PLUS OTHER IMPORTANT FACTORS .. .
Ease of Installation
As analog data signals and 808 operations are compatible, there is virtually no interface re-
quirements. The 808 is easily installed in any instrumentation system.
Ease of Operation
Programming is straightforward and easily learned. Operation requires no special training.
Excellent Accuracy Over a Wide Frequency Range
Accurate operation covers both static and dynamic conditions. Performance meets static needs
and excels in processing high frequency data.
Adds System Flexibility
The wide selection of operations and ease of program changes lets the 808 Analog Signal proc-
essor meet a variety of needs. This one unit can greatly increase the flexibility and power of
your instrumentation system.