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PEAK-HOLD:

At a deactivated digital input the output value is the greatest input value 
registered since the last reset. Activation of the digital input will set the output 
value at the present input value (reset).

DELAY:

The delay function transfers the input value to the output according to an 
exponential curve (R/C delay), where the time constant of the R/C delay can be 
entered.

PID CONTROLLER:

Features the following regulation parameters: XP (proportio 

nal band), TI 

(integrating time), and TD (differentiating time). The units are selected as XP %, 
TI s, and TD s. By selecting TI and TD as 0, the function will be a pure proportional 
controller. The regulation can be either direct or inverted. The setpoint can be 
selected as an internal or external current / voltage signal. 

MANUAL / AUTOMATIC CONTROLLER:

The digital input is used to change between the manual and automatic mode. In 
the auto matic mode the analogue output follows input A. When changing to the 
manual mode the analogue output is fixed and can now be activated up or down 
manually. The output holds the manual setting for an unlimited period.

SIGNAL LIMITER:

By the signal limiting function the output follows the input values linearly in the range 
between the min. and max. settings. At input signals outside the min. and max. 
settings, the output is fixed on either the min. or the max. value. The min. or the 
max. value can be set externally by means of the other analogue input.

AVERAGING TRANSMITTER:

The averaging function calculates an accurate average value of the input values 
over a set period. Once this period has expired the output will be updated by the 
average value. This means that the ouput will typically make a jump at each update. 
A stack function can be selected to increase the updates of the output and to 
decrease any jumps while still keeping the set averaging period.

SLOPE TRANSMITTER (DI/DT FUNCTION):

The dI/dt function converts the slope of the input over a set period to an analogue 
output signal. The min. and max. slope to be converted are entered in % of the 
input span. The slope can be selected as either positive or negative. By means 
of a pressure transmitter the dI/dt function is suitable for for instance leak 
monitoring or flow measurement of substances with a high viscosity grade.

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SIGNAL CALCULATOR 2289

• Two analogue inputs
• Multiple functions
• Front-programmable
• 3-digit LED display
• Version with a Pt100 input
• Analogue output

APPLICATION:

Operates as a PID controller with an analogue or a Pt100 input, a manual / 
automatic controller, an analogue calculator with a scale function on both inputs, 
a sample-hold transmitter, a peak-hold transmitter, a delay transmitter, a signal 
limiter, averaging of noisy signals, monitoring of a signal’s slope, or an analogue 
multiplexer. 

 The 2289 Signal Calculator will meet the demands of any process 

engineer with an unexpected or special signal processing assignment at hand.

TECHNICAL CHARACTERISTICS:

The unit is built around a microprocessor core with an efficient program operation. 
The basic calibration data and the present set-up are saved in an EEPROM 
thereby avoiding the loss or change of data at power off. The user interface 
consists of a 3-digit dis play and 3 front function keys. The input and output values, 
function, and all parameter selections are entered by means of the user interface. 
Both the input signals and the output signal can be inverted.

FUNCTIONS:

ANALOGUE CALCULATOR:

Contains the following calculation functions: addition, sub traction, maximum / 
minimum selection, multi plication, division, raising to a power and root extraction. 
At raising to a power and root extraction, any of the analogue inputs can be 
selected. By means of the scale function the calculation functions can be 
executed on differently scaled input signals.

SAMPLE-HOLD:

Activation of the digital input (hold) will set the output value to the present 
input value and will hold this value for as long as the digital input is active. At a 
deactivated digital input the output value will track the input value.

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Summary of Contents for 2289

Page 1: ...oth loop powered and universal isolators featuring linearisation inversion and scaling of output signals PC or front programmable modules with universal options for input output and supply This range offers a number of advanced features such as process calibration linearisation and auto diagnosis A wide selection of transmitters for DIN form B mounting and DIN rail modules with analogue and digita...

Page 2: ...er 39 Signal limiter 39 Averaging transmitter 39 Slope transmitter dI dt function 39 Analogue multiplexer 40 Inputs 40 Digital input 2289A 40 Output 40 Electrical specifications 41 Order 43 Block diagrams 44 Hardware programming 46 Jumper positioning 47 External up down operation of manual controller 47 Routing diagram 48 Programming operating the function keys 50 Function description selection of...

Page 3: ... jumpers can now be moved When assembling the back plate and housing please make sure no wires are stuck 37 DECLARATION OF CONFORMITY As manufacturer PR electronics A S Lerbakken 10 DK 8410 Rønde hereby declares that the following product Type 2289 Name Signal calculator is in conformity with the following directives and standards The EMC Directive 2004 108 EC and later amendments EN 61326 1 For s...

Page 4: ...e of the input over a set period to an analogue output signal The min and max slope to be converted are entered in of the input span The slope can be selected as either positive or negative By means of a pressure transmitter the dI dt function is suitable for for instance leak monitoring or flow measurement of substances with a high viscosity grade 39 SIGNAL CALCULATOR 2289 Two analogue inputs Mul...

Page 5: ... max value Input resistance Nom 50 Ω 41 ANALOGUE MULTIPLEXER At a deactivated digital input input A x P1 is sent to the output At an activated digital input input B x P2 is sent to the output P1 and P2 are scaling factors for the two inputs INPUTS ANALOGUE INPUTS 2289A The A and B inputs can be programmed according to your choice to receive current signals in the range 0 20 mA for instance 4 20 mA...

Page 6: ...P Pull down 0 VDC 6 9 mA Pulse length 50 ms Pt100 input 2289B Measurement range 99 850 C Min measurement range span 50 C Max offset 50 of selec max value Cable resistance per wire max 25 Ω Sensor current Nom 1 25 mA Response time 100 ms Basic accuracy 0 2 C Temperature coefficient span 100 C 0 01 C Camb span 100 C 0 01 of span Camb Immunity influence span 100 C 1 of span span 100 C 0 5 of span Eff...

Page 7: ...BLOCK DIAGRAM 2289B 45 BLOCK DIAGRAM 2289A 44 ...

Page 8: ...AL CONTROLLER Channel A 0 20 mA 0 10 VDC JP4 ON JP4 OFF MENU 2 3 I MENU 2 3 U Channel B 0 20 mA 0 10 VDC JP3 ON JP3 OFF MENU 3 3 I MENU 3 3 U NPN PNP JP6 ON JP6 OFF Output JP1 JP2 JP5 MENU 4 3 0 10 mA 0 20 mA OFF OFF OFF ON 1 2 0 500 mV 0 1000 mV ON OFF OFF ON 3 4 0 5 V 0 10 V OFF ON OFF ON 5 6 ...

Page 9: ...nnel selection Menu 5 1 14 Function Averaging 1 1 Averaging time 1 2 Stack size 1 14 1 3 Channel selection Time constant in s 0 slope in 100 slope in Sampling in s 1000 Sampling in s If no buttons are pressed for a period of 20 minutes the display returns to default 0 0 Fast Setting Fast Setting Store and exit fast setting 040 Enable change in all stages Disable change Routing diagram Function sel...

Page 10: ... max and min Valid selections are 99 999 Factor 51 PROGRAMMING OPERATING THE FUNCTION KEYS DOCUMENTATION FOR ROUTING DIAGRAM GENERAL The programming is menu controlled The main menus are numbered in level 0 X 0 and the submenus are numbered in level 1 X 1 to X 5 Each submenu has an accompanying entry menu The menus are structured in such a way that the menus most frequently used are closer to the ...

Page 11: ... CH Input for subtraction If A has been selected the result is A B If B has been selected the result is B A Possible selections are A or B Input 1 5 HLd Fixing of signal on input A When the digital input is active the input signal is fixed on the value it had when activated Max and Min functions are not available Possible selections are EnA Enable hold or dSA Disable hold 1 6 OOr Input signal less...

Page 12: ...value is entered in of the output span Valid selections are 0 100 Per cent 1 2 IH Maximum output value The maximum output value is entered in of the output span Possible selections are 0 100 Per cent 55 1 2 CH Input Possible selections are A or B Input 1 0 PAr for PID controller Function no 11 1 1 SEt Setpoint The setpoint value is entered in of the input span Valid selections are 0 99 9 Per cent ...

Page 13: ...Valid selections are current 0 0 20 0 mA or voltage 0 0 10 0 VDC For modules with a Pt100 input the valid 0 temperature is 99 850 C 57 1 3 IE Internal external signal limiter When I has been selected the other analogue input is disabled and the signal limiting follows the set IL and IH values When EL has been selected the high limit will follow the set IH value while the low limit will follow the ...

Page 14: ... extra offset of 50 of the output span This means that the signal range starts at 15 mA and starts to limit at 20 mA At most calculations the calculation offset must be set to 0 but at complex calculations it can be used for moving the range of the output signal range 59 2 2 IAH Setting of 100 input signal Valid selections are current 0 0 20 0 mA or voltage 0 0 10 0 VDC For modules with a Pt100 in...

Page 15: ...averaging time has expired the average value is calculated by dividing the memory value by the number of measurements made and the output is then updated by this value The averaging function 61 When calculating scale factors the input and output signal spans always have values between 0 and 1 When adding 2 identically scaled input signals of for instance 4 20 mA the output would be 8 40 mA at the ...

Page 16: ... is updated each time a period dt has expired The slope can be selected as either positive or negative The input signal can be averaged according to an exponential function so that it can be applied to noisy signals Example Minimum slope dIL 0 Maximum slope dIH 1 Period 5 seconds Analogue output 4 20 mA Result Has the input value not been changed within 5 seconds the output will be 4 mA Has the in...

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