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H-12

TM Series

 TM2 Series

 TM4 Series

●RELAY●AL3/4●is●available●only●for●TM2-42● ● ●model.

 

Connections and block diagram

CURRENT

0.0A-50.0A

DIGITAL

INPUT

SSR●OUT1

12VDC●±3V

30mA●Max.●

CURRENT●OUT1

DC0/4-20mA

Load●500Ω●Max.

RELAY●OUT1

250VAC●3A●1a

RELAY●AL1●OUT

250VAC●3A●1a
RELAY●AL2●OUT

250VAC●3A●1a

CONTROL

CIRCUIT

ADC

ADC

ADC

ADC

1
2
3
4
5
6

13

14

15

16

17

7
8
9

10
11
12

18

19

20

21

22

A

A

B

B

B'

B'

RTD

RTD

DI-1

CT2

CT1

DI-2

TC

TC

CH2●IN

CH1●IN

OUTPUT

CIRCUIT

OUTPUT

CIRCUIT

1●●●●2●●●●3●●●●4●●●●5

N.C

RS485

SOURCE

24VDC

A B

RS485

CIRCUIT

POWER

CIRCUIT

SSR●OUT2

12VDC●±3V

30mA●Max.●

CURRENT●OUT2

DC0/4-20mA

Load●500Ω●Max.

RELAY●OUT2

250VAC●3A●1a

RELAY●AL3

250VAC●3A●1a
RELAY●AL4

250VAC●3A●1a

SSR●OUT1

22VDC●±3V

30mA●Max.●

SSR●OUT2

22VDC●±3V

30mA●Max.●

SSR●OUT3

22VDC●±3V

30mA●Max.●

SSR●OUT4

22VDC●±3V

30mA●Max.●

RELAY●OUT1

250VAC●3A●1a

RELAY●OUT2

250VAC●3A●1a

CONTROL

CIRCUIT

ADC

ADC

ADC

ADC

1
2
3
4
5
6

13

14

15

16

17

7
8
9

10
11
12

18

19

20

21

22

A

A

A

A

B

B

B

B

B'

B'

B'

B'

RTD

RTD

RTD

RTD

TC

TC

TC

TC

V

V

V

V

CH1●IN

CH2●IN

CH3●IN

CH4●IN

OUTPUT

CIRCUIT

1●●●●2●●●●3●●●●4●●●●5

N.C

RS485

SOURCE

24VDC

A

B

RS485

CIRCUIT

POWER

CIRCUIT

RELAY●OUT3

250VAC●3A●1a

RELAY●OUT4

250VAC●3A●1a

Port●A

:●Available●for

●●●single●module

※ 

This●connector●is●

available●only●for●

standard●model●

●●●●(TM●

●B).

Port●B

●●:●Available●for

●●●single/multi●module

SCM-US(USB to Serial converter)

R

S4

85

 A

(+

)

R

S4

85

 B

(-)

N

.C

PLC

GP-S070

GP-S057

GP-S044

<RS485 communication support external device>

SOURCE

24VDC 5W

- +

1

2

3

4

5

SCM-US48

(USB to RS485 converter)

SCM-38

(RS232C to RS485 converter)

RS232C

Serial

SCM-WF48

(Wi-Fi to RS485/USB 

communication converter)

(available●soon)

PC

Summary of Contents for TM2-

Page 1: ...tput 2 Channel 2 Alarm1 Alarm2 Relay output 4 Alarm1 Alarm2 Alarm3 Alarm4 Relay output 4 Channel N None No auxiliary input output Item Minimum requirements System IBM PC compatible computer with Intel Pentium Ⅲ or above Operating system Microsoft Windows 98 NT XP Vista 7 Memory 256MB or more Hard disk More than 1GB of free hard disk space VGA 1024 768 or higher resolution display Others RS 232 ser...

Page 2: ...00 Digital input Contact input ON Max 1kΩ OFF Min 100kΩ Non contact input ON Max 1 5V residual voltage OFF Max 0 1mA leakage current Outflow current Approx 0 5mA Control method Heating cooling ON OFF control mode P PI PD PID control mode Heating cooling Hysteresis 1 to 100 0 1 to 100 variable 1 to 100 digit Proportional band P 0 1 to 999 9 Integral time I 0 to 9999 sec Derivative time D 0 to 9999 ...

Page 3: ...VDC 3V 30mA Max SSR OUT2 22VDC 3V 30mA Max SSR OUT3 22VDC 3V 30mA Max SSR OUT4 22VDC 3V 30mA Max RELAY OUT1 250VAC 3A 1a RELAY OUT2 250VAC 3A 1a CONTROL CIRCUIT ADC ADC ADC ADC 1 2 3 4 5 6 13 14 15 16 17 7 8 9 10 11 12 18 19 20 21 22 A A A A B B B B B B B B RTD RTD RTD RTD TC TC TC TC V V V V CH1 IN CH2 IN CH3 IN CH4 IN OUTPUT CIRCUIT 1 2 3 4 5 N C RS485 SOURCE 24VDC A B RS485 CIRCUIT POWER CIRCUI...

Page 4: ... and expansion modules Insert expansion connectors Connect an expansion module without space Fix the LOCK switch by pushing it in the LOCK direction Mount the END cover at each side Up to 30 expansion modules can be connected to a basic module Use an adequate power supply system for the power input specifications and overall capacity Maximum power 155W 31ea X 5W is required when connecting 31 unit...

Page 5: ...ress setting switch SW1 Used to set communication address 5 Communication address group change switch SW2 When communication address is over 16 select 16 Ex For setting 20 address set the communication address group change switch SW as 16 and set the commuicaiton address setting switch SW1 as 4 6 Lock switch Used for fixing units to DIN rail or to the wall 7 Rail Lock Used for fixing each module w...

Page 6: ...to 3272 R PR 9 1 R PR 0 to 1750 32 to 3182 S PR 10 1 S PR 0 to 1750 32 to 3182 N NN 11 1 N NN 200 to 1300 328 to 2372 C TT 1 12 1 C TT 0 to 2300 32 to 4172 G TT 2 13 1 G TT 0 to 2300 32 to 4172 L IC 14 1 L IC H 200 to 900 328 to 1652 15 0 1 L IC L 200 0 to 900 0 328 0 to 1652 0 U CC 16 1 U CC H 200 to 400 328 to 752 17 0 1 U CC L 200 0 to 400 0 328 0 to 752 0 Platinel II 18 1 PLII 0 to 1400 32 to ...

Page 7: ...1 0 1 SENSED CURRENT IN AMPS RMS Io OUTPUT IN VOLTS RMS V 1 10 100 1000 CSTC E80LN CSTC E200LN Do not supply primary current in case that CT output is open High voltage will be generated in CT output The current for above two CTs is 50A same but inner hole sizes are different Please use this your environment Ø23 3 Ø7 7 K Black L White 150 26 5 3 10 5 3 8 unit mm unit mm Ø37 1 Ø13 K Black L White 1...

Page 8: ...body s connections to external units Caution for using Use DC power only Keep the ambient temperature 10 to 50 For more accurate controlling start temperature controlling approx 20 minutes later after connecting input sensors and supplying power In case display accuracy does not meet the specification check Input Bias parameter first Power switch or a circuit breaker must be installed for proper a...

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