background image

S14

A2

S24 S34 S44 S54 L1 X1 X2

T11

A1

T12 T21 T22 T31 T32 T33 Y1

T41 T42

G9SX-AD322-T15 (24VDC)

(2-channel emergency stop switch input / Manual reset)

G9SX-AD322-T15

Control circuit

Timing chart

KM2

KM4

KM1

Feedback Loop

+24V

12

22

11

21

+24V

KM1 KM2

Motor controller

(Operation command)

KM3 KM4

Note1: This example is corresponding to category category 3(EN ISO 13849-1)

Off-delay time

Emergency stop switch S1

KM1,KM2  NC contact
KM3,KM4  NC contact

KM1,KM2  NO contact
KM3,KM4  NO contact

Operation command

Rotation of motor

OFF

AND

PLC etc.

S1

NC

NC

NC

NC

S34

M1

KM2

KM1

M2

KM4

KM3

Motor controller

S1 

KM1    KM4

M1,M2

:Emergency stop switch

S2

:Reset switch

:Contactor

:3-phase motor

Devices

S2

+24V

Reset switch S2

Pushed the E-stop switch

Examples of application

5

Application and timing chart

S14

A2

S24 S34 S44 S54 L1 X1 X2

T11

A1

T12 T21 T22 T31 T32 T33 Y1

T41 T42

G9SX-AD322-T15

Control circuit

G9SX-AD322-T15 (24VDC)

(2-channel safety sensor / Auto reset)

KM2

KM4

KM1

Feedback Loop

+24V

KM1 KM2

Motor controller

(Operation command)

KM3 KM4

Note1: This example is corresponding to category 4(EN ISO13849-1)
Note2: For further information of settings and wiring refer to the catalogue or 

instruction manual of the connected sensors

Off-delay time

Safety sensor outputs

KM1,KM2  NC contact
KM3,KM4  NC contact

KM1,KM2  NO contact
KM3,KM4  NO contact

Operation command

Rotation of motor

OFF

AND

PLC etc.

Receiver

Emitter

NC

NC

NC

NC

Timing chart

OSSD1

OSSD2

GND

F3SN-A

F3SN-A

M1,M2

:Safety sensor

KM1 ~ KM4 :Contactor

:3-phase motor

S34

M1

KM2

KM1

M2

KM4

KM3

Motor controller

Devices

+24V

+24V

S14

A2

S24

L1 L2

X1 X2

T11

A1

T12 T21 T22 T31 T32 T33 Y1

S14

A2

S24 S34 S44 S54 L1 X1 X2

T11

A1

T12 T21 T22 T31 T32 T33 Y1

T41 T42

Emergency stop switch S1

KM1,KM2  NC contact

KM1,KM2  NO contact

Reset switch S2

Logical AND output L1

Logical AND input T41

KM2

KM1

Feedback Loop

S2

G9SX-BC202 (24VDC) (2-channel emergency stop switch input / Manual reset)

  + G9SX-AD322-T15 (24VDC) (2-channel safety limit switch input / Auto reset)

12

11

21

22

+24V

KM1 KM2

:Emergency Stop Switch

:Reset Switch

:Contactor

:3-phase motor

M1

KM2

KM1

PLC etc.

S1

KM4

KM6

KM3

+24V

+24V

Feedback Loop

+24V

KM3 KM4

Motor controller

(Operation command)

KM5 KM6

Off-delay time

Limit switch S4

KM3,KM4  NC contact
KM5,KM6  NC contact

Safety limit switch S3

KM3,KM4  NO contact
KM5,KM6  NO contact

Operation command

Rotation of motor

S34

M2

KM4

KM3

M3

KM6 

KM5

Motor controller

OFF

AND

PLC etc.

NC

NC

Timing chart (uper unit)

Timing chart (lower unit)

open

23

24

11

12

S4

S3

S1

S2

KM1,KM2

M1

Devices (uper unit)

S3

S4

KM3 ~ KM6

M2,M3

:Safety limit switch

:Limit switch

:Contactor

:3-phase motor

Devices (lower unit)

Note1: This example is corresponding to category 4 (EN ISO13849-1)

G9SX-AD322-T15

Control circuit

G9SX-BC202

Control circuit

Pushed the E-stop switch

Terminal 
Name

T11,
T12

A1,
A2

T21,
T22

T31,
T32,
T33

T41,
T42

Y1

S44,
S54

X2

X1

L1,
L2

S14,
S24,
S34

To set Safety solid-state outputs in ON state, 
HIGH state signals must be input to both of 
Safety input 1 and Safety input 2 
Otherwise Safety solid-state outputs cannot 
be inON state.

The input terminals for power supply.
Connect the power source to the A1 and A2 terminals.

Connect the power supply plus to the A1 terminal.
Connect the power supply minus to the A2 terminal.

Wiring  of inputs and outputs

Feedback loop

G9SX-BC202 or

G9SX-AD322-T15

T11 T12 T21 T22

Y1

+24V

+24V

T11 T12 T21 T22

Y1

+24V

+24V

+24V

T11 T12 T21 T22

Y1

NC

KM

+24V

T31

T33

T32

Feedback loop

KM +24V

T31

T33

T32

Reset

Switch

L1 A2

G9SX-AD322-T15

L1

T41 T42

A2

A2

G9SX-AD322-T15

Next unit (4 unit Max.)

Logical AND connection sig. (1st layer)

Logical AND connection sig. (2nd layer)

Next unit (4 unit Max.)

Next unit (5layers Max.)

T41 T42

G9SX-AD322-T15

L1

T41 T42

input b

input a

output(a)

output(a&b)

Unit B

Unit A

To set Safety solid-state outputs in ON state, 
ON state signal must be input to T33.
Otherwise Safety solid-state outputs cannot 
be in ON state.

To set Safety solid-state outputs in ON state, 
the signal input to T32 must change from 
OFF state to ON state, and then to OFF state.
Otherwise Safety solid-state outputs cannot 
be in ON state.

To set Safety solid-state outputs of the 
subsequent Unit in ON state, its Logical AND 
Connection Preset Switch must be set to 
AND (enable) and High state signal must 
be input to T41 of the subsequent unit.

Selects a mode of failure detecting (Cross 
fault detecting) function for safety inputs of 
G9SX corresponding to the connection of 
Cross fault detection input.

Turns ON/OFF according to the state of safety
inputs, Feedback/Reset inputs, and 
Logical AND connection inputs.
During off-delay state, safety solid-state outputs 
are not able to turn ON.

Off-delayed safety solid-state outputs.
Off-delay time is set by off-delay preset switch.
When the delay time is set to zero, these 
outputs can be used  as non-delay outputs.

Outputs a signal of the same logic as Safety 
solid-state outputs.

Outputs a signal of the same logic as Safety 
solid-state outputs
Outputs during error indicator is lighting up or 
blinking.

Using 1 safety 
input channel

Using 2 safety 
input channels
(cross fault 
detection OFF)

Using 2 safety 
input channels
(cross fault 
detection ON)

Auto reset

Manual reset

Keep these outputs Open when NOT used.

Keep these outputs Open when NOT used.

Keep these outputs Open when NOT used.

Keep these outputs Open when NOT used.

Keep these outputs Open when NOT used.

Signal Name

Safety input 1

Power supply
input

Safety input 2

Logical AND 
connection input

Feedback/
Reset input

Cross fault 
detection input

Safety solid-state 
output

Off-delayed 
Safety solid-state 
output

Logical connection 
output
Auxiliary Monitor 
output
Auxiliary Error output

Description of operation

Wiring

Keep Y1 open when using T11, T21. (Wiring corresponding 
to category 4)
Connect Y1 to 24VDC when NOT using T11, T21. 
(Wiring corresponding category 2 or 3, or when connecting 
safety sensors and corresponding up to category 4.)

Logical AND connection means that lower unit
(Unit B) calculates the logical multiplicatin (AND)
of the safety output information from upper unit
(Unit A) and safety input signal "b", which is
input to lower unit.
In the example of a right picture, the safety
output of Unit C is "a" AND "b" .

Connect L1 or L2 of upper unit to T41 of lower
unit, and connect GND of upper unit to T42 of
lowre unit.

Connecting Safety Sensors and G9SX

500 µs Max.

1) When connecting Safety sensors with G9SX, Y1 terminal must 

be connected to 24VDC.
G9SX will detect the connection error, if Y1 terminal is open.

2) In many case, Safety Sensor outputs include the off-shot pulse 

for its self test.
The following condition of test pulse is applicable as safety 
inputs for G9SX.

- Off-shot pulse width of the sensor, during the ON-state : 

500 

µ

s Max.

FB

PWR

Y1

T33

T32

T31

A1

L2

A2

S14

T21

S24

T22

L1

X2

X1

T12

T11

T33

T32

T31

X1

S44

T41

S14

T21

S24

T22

S34

Y1

T12

T11

X2

S54

T42

A1

L1

A2

T1

AND

EI

T2

FB

PWR

T1

EI

T2

ED
ERR

ERR

TYPE G9SX-BC202-

TYPE G9SX-AD322-T

-

(Advanced Unit)

(Basic Unit)

Terminal arrangement and LED indicators

The G9SX can be used up to PL =e and Category 4 required by EN ISO 13849-1 European standard. Refer to the following link for the 
Safety-relay characteristic data: 
http://www.fa.omron.co.jp/safety_6en/
This does NOT mean that G9SX can always be used for required category under all the similar conditions and situations.
Conformity to the categories must be assessed as a whole system. 
When using G9SX for safety categories, make sure the conformity of the whole system. 
1) Input the signals to both of the Safety inputs (T11-T12 and T21-T22)
2) Input a signal to the Safety inputs (T11-T12 and T21-T22) through switches with Direct Opening Mechanism.

When using limit switches, at least one of them must have Direct Opening Mechanism.

3) When connecting Safety sensor with G9SX, use TYPE 4 safety sensor.
4) Input the signal through a NC contact of the contactor to Feedback/Reset input (T31-T32 for manual reset or T31-T33 for auto reset). (Refer to 

'5.Examples of Application')

5) Keep Cross fault detection mode input (Y1) open. However, when connecting devices with self-diagnosis function, such as  safety sensors, 

apply 24VDC to Y1.

6) Be sure to Connect A2 to ground.

Performance Level and Safety category of EN ISO 13849-1

6

Expected causes of the faults

Other

indicators

Checking points and

measures to take

Faults

ERR

indicator

1) Failures involving the wiring of Safety input 1
2) Incorrect setting of Cross fault detection mode.
3) Failures of the parts of the circuits of Safety input 1.
1) Failures involving the wiring of Safety input 2
2) Incorrect setting of Cross fault detection mode.
3) Failures of the parts of the circuits of Safety input 2.

1) Check the disturbance level around G9SX 
    and its related system.
2) Replace with a new product.
1) Check the wiring to T11 and T12.
2) Check the wiring to Y1.
3) Replace with a new product.
1) Check the wiring to T21 and T22.
2) Check the wiring to Y1.
3) Replace with a new product.
1) Check the wiring to T31, T32, and T33
2) Replace with a new product.

1) Failures involving the wiring of Feedback/Reset input.
2) Failures of the parts of the circuits of Feedback/Reset input

1) Improper feedback signals from Expansion units
    

2) Abnormal supply voltage to Expansion units

3) Failures of the parts of the circuits of Safety relay 

contact outputs

1) Failures involving the wiring of Off-delayed 
    Safety relay contact outputs
2) Incorrect set values of Off-delay time
3) Failures of the parts of the circuits of Off-delayed
    Safety relay contact outputs

4) Impermissible high ambient temperature

1) Failures involving the wiring of Logic AND 
    connection input

2) Incorrect setting for Logic AND connection input 
    
3) Failures of the parts of the circuits of Logical 
    AND connection input

1) Supply voltage outside the rated value

1) Check the wiring to S44 and S54
2) Confirm the set values of the two of 
    Off-delay time preset switches.
3) Replace with a new product.
4) Check the ambient temperature and 

spacing around G9SX.

1) Check the wiring to T41 and T42

* Make sure that the wiring length for T41 or 

T42 terminals is less than 100 
meters,respectively.

* Make sure that the Logical AND connection 

signal is branched for less than 4 units. 

2) Confirm the set value of the Logical 
    AND connection preset switch.
3) Replace with a new product.

1) Check the supply voltage to Expansion 

units.

Faults by electro-magnetic 
disturbance or of internal 
circuits.

1) By excessive electro-magnetic disturbance

2) Failures of the parts of internal circuits

Faults involved with 
Safety input 1

Faults involved with 
Safety input 2

Faults involved with 
Feedback/Reset input

Faults of Expansion 
units

Faults involved with 
Safety solid-state outputs or 
Logical connection outputs

Faults involved with 
Off-delayed Safety 
solid-state outputs

Faults involved with 
Logic AND connection 
input

Supply voltage outside 
the rated value

When G9SX detects a fault, ERR indicator and/or other indicators light up or blink to show the information of the fault.
Check and take needed measures referring to the following table. and then apply supply voltage to G9SX.

Fault Detection

7

Blink

T1 Blink

Light

up

T2 Blink

FB Blink

EI Blink

ED Blink

AND Blink

When indicators other than ERR indicator while ERR indicator keeps lit off, check and take needed actions referring to the following table.

ERR

indicator

Mismatch between input 1 and input 2.

 T1 Blink

or / and

 T2 Blink

Light off

The other
indicators

Expected causes of the faults

1) Failures involving the wiring of Safety solid-state outputs
2) Failures of the parts of the circuits of Safety solid-state 

outputs

3) Failures involving the wiring of Logical connection output
4) Failures of the parts of the circuits of Logical connection 

output

5) Impermissible high ambient temperature

1) Check the wiring to S14, S24, and S34
2) Replace with a new product.

3) Check the wiring to L1 and L2
4) Replace with a new product.

5) Check the ambient temperature and 

spacing around G9SX.

1) Check the connecting cable of Expansion units
    and the connection of the termination socket. 

2) Check the supply voltage to Expansion units.

* Make sure that all Expansion units' PWR 

indicators are lighting.

3) Replace the Expansion unit with a new one.

Conditions

Expected causes of the faults

1) Input status between input 1 and input 2 

is different, cause of contact failure or 
short circuit of safety input device(s) or 
any wiring fault.

1) Check the wiring from safety input devices to G9SX.

Or check the inputs sequence of safety input devices.
After removing the fault, turn both safety inputs to 
OFF state.

The All 

(without PWR)

indicators Blink

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