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Additional Configur

ditional Configur

ditional Configur

ditional Configur

ditional Configura

aa

a

ation Options and F

tion Options and F

tion Options and F

tion Options and F

tion Options and Fea

ea

ea

ea

eatur

tur

tur

tur

tures

es

es

es

es

The TX787 and T788 is capable of performing many functions in addition to the simple example outlined in the Quick Start exercise.

Dynamic Input Filtering

Dynamic Input Filtering

Dynamic Input Filtering

Dynamic Input Filtering

Dynamic Input Filtering

Filtering is provided to optimize the stability and response time of the transmitter output signal.  The filter is set by specifying a Filter Band and a Damping
Time Constant. To simplify the definition of the filter values, click on the “Set to Optimal” button on the configuration screen.

Filter Band

Filter Band

Filter Band

Filter Band

Filter Band

T

he Filter Band allows the transmitter to be configured to react quickly to significant changes in input while smoothing out small changes.  This band

defines the range above and below the current input reading 

within which the Damping Time Constant will be applied.

  It is defined as a percent of

the configured span of the transmitter.  For example, a 0.5% Filter Band on a transmitter configured for an input range of 200 to 700 deg F would mean
that the Damping Time Constant will be applied to input changes of less than 2.5 deg but that changes of more than 2.5 deg would be immediately
reflected in the output.  In general, the larger the full scale range, the smaller the Filter Band should be.  Conversely, a larger Filter Band is generally
appropriate for smaller input ranges.  Clicking the “Set to Optimal” button triggers the calculation of an appropriate setting based on the currently defined
input range.

Damping

Damping

Damping

Damping

Damping

Damping defines the length of time, in seconds, that the input will be averaged over to determine the output value 

when the input change is less than

the Filter Band.

  Changes in the input that are greater than the Filter Band bypass the Damping filter and are immediately reflected in the output. The

default value of 15 seconds, when used with the optimal Filter Band yields a very stable output while maintaining a fast response to significant changes in
the input.

Input/Output 

Input/Output 

Input/Output 

Input/Output 

Input/Output  T

T

T

T

Trimming

rimming

rimming

rimming

rimming

Because of slight variations between sensing elements or other loop characteristics, it is sometimes beneficial to “trim” the transmitter so that its output
corrects for these effects. If the measurement error is known, the transmitter may be trimmed “off-line.” “ON-line” trimming allows the characteristics of an
individual sensor to measure and match to the transmitter to which it will be connected in the field. Trimming allows the basic calibration of the transmitter to
be left intact.

Dynamic Sensor Sim

Dynamic Sensor Sim

Dynamic Sensor Sim

Dynamic Sensor Sim

Dynamic Sensor Simula

ula

ula

ula

ulation

tion

tion

tion

tion

This option allows a loop to be tested dynamically verifying control logic as well as wiring. The transmitter’s current loop output can be controlled via four
parameters: simulate an input value in raw units (ohm, mV, etc.); simulate an input value in engineering units (e.g. 450 DEG); set an ouput in percent; or set
an ouput in mA. After an initial simulation is selected, the ouput may be incremented or decremented in 1% or 10% steps.

Other 

Other 

Other 

Other 

Other  T

T

T

T

Trrrrransf

ansf

ansf

ansf

ansfer Functions

er Functions

er Functions

er Functions

er Functions

The transfer function is the “formula” that the transmitter uses to determine the appropriate output signal for a given input signal. A “Linear” function means
that output is changed in a straight line fashion as the input changes within the configured input zero and full scale range: 0% of range input yields 4 mA
output, 25% of range input yields 8 mA, etc. A “Standard” function means that the transmitter will apply a standard linearization curve for temperature inputs.

R

R

R

R

RTD Sensor Ma

TD Sensor Ma

TD Sensor Ma

TD Sensor Ma

TD Sensor Matc

tc

tc

tc

tching

hing

hing

hing

hing

The accuracy of RTD temperature sensing can be increased significantly when the temperature transmitter is “matched” to the individual sensor using a
method called Callender Van Dusen linearization.  Doing so requires entering the sensor’s Alpha, Beta (measured for temperatures above zero and for
temperatures below zero), Sigma, and Ro values into the transmitters' configuration.  These values can be requested from the manufacturer when the
sensor is purchased or may be measured by a testing lab.

Squar

Squar

Squar

Squar

Square R

e R

e R

e R

e Root

oot

oot

oot

oot

Select this function if the transmitter’s output is to vary with the square root of the input.

Custom P

Custom P

Custom P

Custom P

Custom Pol

ol

ol

ol

olynomial

ynomial

ynomial

ynomial

ynomial

The transmitter can use up to a 10th order polynomial equation (y = A

0

 + A

1

x + A

2

x

2

 + …  + A

10

x

10

) as the transfer function by inputting the coefficients

into the transmitter’s configuration.

Custom 

Custom 

Custom 

Custom 

Custom  T

T

T

T

Ta

aa

a

ab

bb

b

ble

le

le

le

le

The transmitter can use a User Defined table by specifying a .tbl file.  The data in the file should be two columns, tab delimited.  Up to 140 data pairs may
be listed.  The input values in column one must be equally spaced.

Defining 

Defining 

Defining 

Defining 

Defining  T

T

T

T

The 

he 

he 

he 

he  T

T

T

T

Trrrrransmitter’

ansmitter’

ansmitter’

ansmitter’

ansmitter’s User Fields

s User Fields

s User Fields

s User Fields

s User Fields

E

ach unit may be assigned an I.D. Tag name of up to eight characters, Job Number up to eight characters, and a “Message” of up to sixteen characters;

stored in the transmitter’s memory.  Click on the desired field, enter the text, and click the download icon.

Postbus 8034, 1180 LA Amstelveen, The Netherlands
Tel: (31) 20 6418405
Toll Free in Benelux: 06 0993344
e-mail: [email protected]

Ostravska 767, 733 01 Karvina
Tel: 420 (69) 6311627
e-mail: [email protected]

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Tel: (33) 0130-621-400
Toll Free in France: 0800-4-06342
e-mail: [email protected]

Daimlerstrasse 26, D-75392
Deckenpfronn, Germany
Tel: 49 (07056) 3017
Toll Free in Germany: 0130 11 21 66
e-mail: [email protected]

25 Swannington Road,
Broughton Astley, Leicestershire,
LE9 6TU, England
Tel: 44 (1455) 285520
FAX: 44 (1455) 283912

Sales Service: 1-800-826-6324 /1-800-TC-OMEGA

SM

Customer Service: 1-800-622-2378 /1-800-622-BEST

SM

Engineering Services: 1-800-872-9436 /1-800-USA-WHEN

SM

TELEX: 996404   EASYLINK: 62968934   CABLE: OMEGA

Tel: (95) 800-TC-OMEGA

SM

En Espanol: (203) 359-1660 ext: 2203

Internet e-mail

[email protected]

OMEGAnet

SM

 On-Line Service

http://www.omega.com

One Omega Drive, Box 4047
Stamford, CT 06907-0047
Telephone: (203) 359-1660
e-mail: [email protected]

976 Bergar
Laval (Quebec) H7L 5A1
Telephone: (514) 856-6928
e-mail: [email protected]

USA:
ISO 9001 Certified

Canada:

USA and Canada:

Mexico and
Latin America:

Benelux:

Czech Republic:

France:

Germany/Austria:

United Kingdom:
IS0 9002 Cerfified

FAX: (203) 359-7700

FAX: (514) 856-6886

FAX: (95) 203-359-7807
e-mail: [email protected]

FAX: (31) 20 6434643

 FAX: 420 (69) 6311114

FAX: (33) 130-699-120

 FAX: 49 (07056) 8540

P.O. Box 7, Omega Drive,
Irlam, Manchester,
M44 5EX, England
Tel: 44 (161) 777-6611
FAX: 44 (161) 777-6622

It is the policy of OMEGA to comply with all worldwide safety and EMC/EMI regulations that apply. OMEGA is constantly
pursuing certification of its products to the European New Approach Directives.  OMEGA will add the CE mark to every
appropriate device upon certification.

The information contained in this document is believed to be correct but OMEGA Engineering, Inc. accepts no liability
for any errors it contains, and reserves the right to alter specifications without notice.
WARNING: These product are not designed for use in, and  should not be used for, patient connected applications.

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