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www.autonics.com  |  +82-51-519-3232  |  [email protected]

-|Transparent Guide|-

-|Transparent Guide|-

Function Description

  

■ High / Low-limit scale value

This function is to display setting of particular high / low-limit value in order to display high / 

low-limit value of measured input. 

If measured inputs are a and b and particular values are A and B, it will display a = A, b = B as 

below graphs. 

• 

When changing input range, it is changed automatically as factory default display range of 

the input range.

Display

value

Display

value

Display

value

Display

value

Display

value

Input

value

Input

value

Input

value

Input

value

Input

value

a

a

a

a

a

b

b

b

b

b

B

B

A

A

B

B

B

A

A

A

Display

value

Input

value

a

b

B

A

  

■  High / low-limit value of transmission output and

 

High / low-limit scale value of transmission output

This function is to set output scale and range for display value for transmission output.

Output

Output

Display

Display

A

A

C

C

D

D

B

B

A

: High-limit value of transmission output 1 / 2

B

: Low-limit value of transmission output 1 / 2

C

: Low-limit scale value of transmission output 1 / 2

D

: High-limit scale value of transmission output 1 / 2

When the input value set at  low-limit scale value of transmission output 1 / 2 is displayed, the 

output value set at  low-limit value of transmission output 1 / 2 is transmitted.

When the input value set at  high-limit scale value of transmission output 1 / 2 is displayed, the 

output value set at  high-limit value of transmission output 1 / 2 is transnitted.

•  E.g:  Relation among input type, high / low-limit input value, high / low-limit scale, high / low-

limit scale value of transmission output 1 / 2, and high / low-limit value of transmission 

output 1 / 2. The below figure is the example for 4 to 20mA input. 

When display value is 100, it outputs 4mA.

When display value is 900, it outputs 20mA. 

Input type

= A. MA2

Low-limit to 

high-limit input value

= 6 mA to 16 mA

Low-limit to 

high-limit scale

= 0 to 1000

High / low-limit scale value

of transmission output

High / low-limit value

of transmission output

4 mA

20 mA

LLLL

HHHH

20 mA 

transmission

4 mA 

transmission

Low-limit input value =  6

High-limit input value = 16

Low-limit scale = 0

High-limit scale = 1000

Low-limit scale value of 

transmission output 1 = 100

High-limit scale value of 

transmission output 1 = 900

Low-limit value of 

transmission output 1 = 4

High-limit value of 

transmission output 1 = 20

  

■ Input correction

This function is to correct the error occurring from a thermocouple, a RTD or analog input 

out of allowable error range of this unit. 

This is also available to correct error when a sensor cannot contact the subject position by 

calculating the error temperature.

When executing input correction function, you should measure the error from a sensor 

accurately. If the measured error is not correct, error may be greater.

•  E.g.:  When measured temperature is 4 ℃ and actual temperature is 0 ℃. Set IN-B as -4, and 

and display value is 0 ℃. 

  

■ Normal / moving average digital filter

Digital filter is able to stably display and output the noise from input line and irregular signals.

Normal average filter displays the averaged n times of input values periodically. Moving 

average filter displays the moving averaged n times of input values in real time.

D

4

 =

S

1

 + S

2

 + S

3

 + S

4

4

D

6

 =

S

3

 + S

4

 + S

5

 + S

6

D

8

 =

S

5

 + S

6

 + S

7

 + S

8

D

5

 =

S

2

 + S

3

 + S

4

 + S

5

D

7

 =

S

4

 + S

5

 + S

6

 + S

7

S

1

D

1

D

2

D

3

D

4

D

5

D

6

D

7

D

8

S

2

S

3

100 ms

S

4

S

5

S

6

S

7

S

8

S

9

Initial operation 

before averaging 4

S

n

Sampling value

Using a moving 

average digital filter

D

n

Display value

, n = 4

4

4

4

4

Segment Table

The segments displayed on the product indicate the following meanings. It may differ 
depending on the product.

7 segment

11 segment

12 segment

16 segment

0

0

I

I

0

0

I

I

0

0

I

I

0

0

I

I

1

1

J

J

1

1

J

J

1

1

J

J

1

1

J

J

2

2

K

K

2

2

K

K

2

2

K

K

2

2

K

K

3

3

L

L

3

3

L

L

3

3

L

L

3

3

L

L

4

4

M

M

4

4

M

M

4

4

M

M

4

4

M

M

5

5

N

N

5

5

N

N

5

5

N

N

5

5

N

N

6

6

O

O

6

6

O

O

6

6

O

O

6

6

O

O

7

7

P

P

7

7

P

P

7

7

P

P

7

7

P

P

8

8

Q

Q

8

8

Q

Q

8

8

Q

Q

8

8

Q

Q

9

9

R

R

9

9

R

R

9

9

R

R

9

9

R

R

A

A

S

S

A

A

S

S

A

A

S

S

A

A

S

S

B

B

T

T

B

B

T

T

B

B

T

T

B

B

T

T

C

C

U

U

C

C

U

U

C

C

U

U

C

C

U

U

D

D

V

V

D

D

V

V

D

D

V

V

D

D

V

V

E

E

W

W

E

E

W

W

E

E

W

W

E

E

W

W

F

F

X

X

F

F

X

X

F

F

X

X

F

F

X

X

G

G

Y

Y

G

G

Y

Y

G

G

Y

Y

G

G

Y

Y

H

H

Z

Z

H

H

Z

Z

H

H

Z

Z

H

H

Z

Z

  

■ Input special function

When selecting analog input, this function is to display the calculated actual value by 

square, root (√), or two unit function (TUF) as display value.

SV

Functions

Graph

Applications

LIN

Outputs as 

input value

Display

Input

Y = AX + B

Standard 

characteristics

ROOT 

 01)

Outputs the 

rooted (√) 

input value

Display

Input

Y = 0 

(X < 0)

Y =  A(    X ) + B

 

(X ≥ 0)

Used for measuring 

flows by pressure 

signal.

SQAR 

 02)

Outputs the 

squared input 

value

Display

Input

Y =  A(X)

2

 + B

 

(X > 0)

Y =  -A(X)

2

 + B

 

(X < 0)

Used for  outputting 

differential pressure 

by flow signal.

TUF

•  Refer to Atmospheric pressure (0) setting for Two Unit Function

 01)  Display value and mA output value for ROOT

 

Output = ( 

) × (High-limit scale

 

-

 

Low-limit scale) + Low-limit scale

Input -

 

Low-limit input

High-limit input

 

-

 

Low-limit input

 02)  Display value and mA output value for SQAR

 

Output = ( 

)

2

 × (High-limit scale

 

-

 

Low-limit scale) + Low-limit scale

Input -

 

Low-limit input

High-limit input

 

-

 

Low-limit input

  

■ Atmospheric pressure (0) setting for Two Unit Function

When connecting a pressure sensor, compound pressure which is below atmospheric 

pressure (0) is for vacuum as mmHg and which is atmospheric pressure or over it is for

positive pressure as kg/cm

2

. Atmospheric pressure is 0 kg/cm

2

. When this unit does not 

display 0 kg/cm

2

, you can correct zero-point adjustment function.

When using two unit function, low-limit scale is fixed as -760. low-limit scale parameter is 

displayed but you cannot set this. You can set high-limit scale within 0 to 9999 range.

•  E.g:  When pressure range is -760.0 mmHg to 3.000 kg/cm

2

, and pressure transmitter outputs 

DC 4 - 20 mA and it outputs 8.00 mA for atmospheric pressure (0), set input special 

function = TUF, high-limit scale = 3000, decimal point position = 0.000, atmospheric 

pressure = 08.00. This unit displays for 4 mA input as -760, for 8 mA input as 0.000 and 20 

mA input as 3.000.

 

8 mA

Display

3.000 kg/cm

2

2.000 kg/cm

2

1.000 kg/cm

2

4 mA

12 mA 16 mA 20 mA

Input

kg/cm

2

UNIT

-760 mmHg

mmHg
UNIT

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