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Steps to Monitor the AUX Output with a PLC

 

Configure the AUX output to source current from 
an external power supply to the PLC.  
1) Connect the power 24 VDC to TB2-2.  
2) Connect TB2-1 to the PLC input.  
3) Connect the power supply common to the PLC 
common.   
Note: If the PLC or power supply has any other 
connection  to  the  PCB,  then  R27  must  be 
removed.  Use pliers to twist and snap off R27.  
R27 is located behind TB2-1. 

 

PLC Monitor of reconfigured Auxiliary Output 

Figure 3 

SW3

-

5

FC-40 PLUS

TB2

6

60

7

JUMPER

-

2

+

+

5

FC-40 Plus Subordinate Control

+

S

60 Rev

OPTIC SENSOR

Min

2

A C   C O MMO N

4 -2 0 mA

So

ft

100K

P O T

8

SW4

12

R27

-

LO A D

Direct

3

9

A C   HO T

120

-

H1

P/N 111-500

-

SW5

9

J1

TB1

RUN

SIG

Bl

SM312FP1H

11

SENSOR OPTION

OPTICS

4

3

INTERLOCK INPUT

BOWL/HOPPER

S

G

S1

+

CO NTRO L

INTERLOCK OUTPUT

12

10

+

1

+

-

11

7

ACCEPTS BOTH OPTIC AND PROX SENSORS, NPN OR PNP.

8

7

Bu

Br

1

External

RUN

6

P/N 24-210

4

-

VF Series Master Control

Aux Out

-

TRANSFORMER

BANNER

SENSOR

10

Pot Input

-

+

Sig.

1/8W MIN

MA IN

SIG

+

TB2

cw

5

6

Ma

x

1

Interlock

CONNECT SINK OR SOURCE WIRE TO "SIG" INPUT

Steps to Interlock Two VF Series Controls together 

If a PLC is interfaced to both controls, optical isolation is necessary, see step 4 below. 
1. Remove the run jumper from TB2 terminals 8 & 9 of the subordinate control. 
2. Add a wire from terminal 3 of the master control to terminal 8 of the subordinate control. 
3. Add a wire from terminal 2 of the master control to terminal 7 of the subordinate control.  
4. If optical isolation between the controls is desirable, remove R21 from the subordinate control. 

 

 

Steps to Interlock an FC-40 Plus Series to a VF Series Control 

1. Add a wire from terminal 2 of the VF master control to TB2-11 of the subordinate control. 
2. Add a wire from terminal 3 of the VF master control to TB2-12 of the subordinate control. 
3. Move the run jumper on the subordinate control from TB2-6 & TB2-7 to TB2-5 & TB2-6. 

 

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

6/1/2017  Page 7 

S

1

Bl

 #

14

Enable

BOWL/HOPPER

-

Bl

 #

14

O -

CFR Sensor

P/N 123-215

12

BANNER

S

Load 

Out

R21

3

6

Out -

GND

Keypad

Line 

Input

ACCEPTS BOTH OPTIC AND PROX SENSORS, NPN OR PNP.

Gr

 #

14

13

14

+

Chassis

1

Br

BOWL/HOPPER

OPTIC SENSOR

7

Gr

 #

14

Gr

/Y

l #

14

O +

Bl

S

GND

GND

R27

+

+

TB3

L2

LC D C ontrast

SENSOR

OPTICS

Bl

 #

14

Out +

L2

F2

E

8

Bu

Br

12

10

Out +

14

CONNECT SINK OR SOURCE WIRE TO "SIG" INPUT

Bl

 #

14

4

LCD Display

11

Gr

/Y

l #

14

TB1

0-

10

 V

D

C

-

Bl

 #

14

An

al

o

g

 G

n

d

.

An

al

o

g

 G

n

d

.

E

BANNER

S

TB2

L1

OPTICS

+

L1

Bu

SIG

SIG

SENSOR OPTION

Line 

Input

4

LC D C ontrast

TB3

E

VF Series Master Control

9

P/N 111-500

LCD Display

+

-

CONNECT SINK OR SOURCE WIRE TO "SIG" INPUT

Br

11

9

TB4

+

-

L2

INTERLOCK OUTPUT

10

Analog

JUMPER

P1

+

+

Accel.

MASTER CONTROL

Aux Out

P1

OUTPUT POWER

-

Bl

 #

14

Bl

 #

14

O -

V+

Bl

 #

14

Bl

RUN

High Voltage LED

0-

10

 V

D

C

7

-

Keypad

L1

2

High Voltage LED

1

+

GND

1

F1

8

+

Enable

P/N 111-500

INPUT POWER

85 - 264 VAC

+

6

S

+

SENSOR

Danger!

Shock

Hazard

-

+

Bu

ACCEPTS BOTH OPTIC AND PROX SENSORS, NPN OR PNP.

Br

Danger!

Shock

Hazard

(Remove R21 if optical isolation desired).

SM312FP1H

-

Load 

Out

E

1

INPUT POWER

85 - 264 VAC

Aux Out

TB4

5

S

Gr

 #

14

Out -

Accel.

-

L1

OPTIC SENSOR

S

O +

-

Bu

R27

3

CFR Sensor

P/N 123-215

SM312FP1H

Gr

 #

14

TB1

E

L2

-

5

2

Analog

-

Chassis

4-

20

m

A

+ +

OUTPUT POWER

R21

INTERLOCK OUTPUT

1

TB2

13

SENSOR OPTION

F1

S

VF Series Subordinate Control

E

F2

4-

20

m

A

+

Aux Out

-

S

3

1

2

R27

TB2

+24 VDC

+ Input

External 

Power

Supply

PLC

0V (Common)

(Common) 0V

Summary of Contents for Autotune Series

Page 1: ...Rated Output Current 3 Amps at 120V or 1 5 Amps at 240V Rated for IP54 environment UL rated for Type 5 environment Model Information The Autotune Series of Variable Frequency Feeder Cubes generates an...

Page 2: ...Bl 14 Out LCD Contrast Br Bl 14 Out Danger Shock Hazard E ACCEPTS BOTH OPTIC AND PROX SENSORS NPN OR PNP Analog Gnd 11 7 MASTER CONTROL SM312FP1H OPTICS INPUT 3 Bl OPTIC SENSOR 1 RUN 2 R27 High Voltag...

Page 3: ...nnecting TB1 L2 to the L2 fuse holder Remove the terminal end of the wire connecting the L2 fuse to the power switch and connect it to TB1 L2 1 Parts Sensor Input Photo sensor or Proximity Switch Conn...

Page 4: ...or below the minimum power setting level The amplitude power setting is displayed in the following manner A 50 0 8 Limiting The Maximum Output Of Control The Max Amplitude setting can be adjusted to...

Page 5: ...g is enabled the normal display menu will show a bold F When is shown in bold the control is locked onto the resonate frequency of the feeder C The frequency can be adjusted with an analog 0 10 volt i...

Page 6: ...n will put the original factory settings into the memory 23 Language The run display and programming menus can be set to display in English Spanish Espa ol French Fran ais or German Deutsch 24 Over Cu...

Page 7: ...nate control Steps to Interlock an FC 40 Plus Series to a VF Series Control 1 Add a wire from terminal 2 of the VF master control to TB2 11 of the subordinate control 2 Add a wire from terminal 3 of t...

Page 8: ...r Resets Control to Factory Default Settings Shown in bold Language Pick Language English Espa ol Spanish Fran ais French Deutsch German Normal Display Message Priority The normal operating display sh...

Page 9: ...ensor at least 20 minutes to cure before operation Note It takes 72 hours for the adhesive to fully cure at 70 F Alternatively 8 or M4 screws can be used to mount the sensor to the feeder The mounting...

Page 10: ...f a nearby noise source Solutions for Electrical Noise 1 Use shielded wires for all I O Input Output signals The I O signals may include 4 20mA input Run input Sensor input 0 5VDC input Interlock inpu...

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