DOCA0355EN-00

Digital Output Settings

Description

The TeSys Tera system supports maximum 13 digital outputs:

  • Three digital outputs on the LTMT main unit.

  • Up to 10 digital outputs with LTMT expansion units.

Each digital output setting is made up of five registers. The order and the description of the settings for digital output 1 are valid for the other digital outputs.

Address

Register

No.

Description

0x1211

4626

5

Digital output 1 settings

DO1 on LTMT main unit

0x1216

4631

5

Digital output 2 settings

DO2 on LTMT main unit

0x121B

4636

5

Digital output 3 settings

DO3 on LTMT main unit

0x1220

4641

5

Digital output 4 settings

DO on LTMT expansion unit

0x1225

4646

5

Digital output 5 settings

DO on LTMT expansion unit

0x122A

4651

5

Digital output 6 settings

DO on LTMT expansion unit

0x122F

4656

5

Digital output 7 settings

DO on LTMT expansion unit

0x1234

4661

5

Digital output 8 settings

DO on LTMT expansion unit

0x1239

4666

5

Digital output 9 settings

DO on LTMT expansion unit

0x123E

4671

5

Digital output 10 settings

DO on LTMT expansion unit

0x1242

4675

5

Digital output 11 settings

DO on LTMT expansion unit

0x1243

4676

5

Digital output 12 settings

DO on LTMT expansion unit

0x1248

4681

5

Digital output 13 settings

DO on LTMT expansion unit

0x124D

4686

5

Reserved

The settings of the three digital outputs on the LTMT main unit corresponds to the settings of digital output 1 to digital output 3.

The settings of digital outputs on a LTMT expansion unit are defined according to the expansion unit configuration.

Example: If the TeSys Tera system is composed of:

  • One LTMT main unit

  • One LTMTIN42 expansion unit with two digital outputs, configured as expansion unit 1

Then,

  • Digital output 1 settings to Digital output 3 settings are valid for DO1 to DO3 on the LTMT main unit

  • Digital output 4 settings and Digital output 5 settings are valid for DO1 and DO2 on the LTMTIN42 expansion unit

Digital Output 1 Settings

The table lists the registers for the digital output settings.

Address

Register

No.

Function code

RW

X Unit

Type

Range Default value

Svd

Description

0x1211 4626 1

0x03,
0x06,
0x10

RW

1

UINT16

0: Active high

1: Active low

0

Y

Digital output 1 active type

0x1212 4627 1

0x03,
0x06,
0x10

RW

1

UINT16

0–65535
(step 1)

504

Y

Digital output 1 input source
0x1213 4628 1

0x03,
0x06,
0x10

RW

1

UINT16

0–12
(step 1)

7

Y

Digital output 1 tag
0x1214 4629 1

0x03,
0x06,
0x10

RW

1

UINT16

0: Level

1: Pulse

0

Y

Digital output 1 output type
0x1215 4630 1

0x03,
0x06,
0x10

RW

1 ms UINT16

0–60000
(step 10)

0

Y

Digital output 1 pulse time

Digital Output Tag

The table lists the output source for the digital output settings.

Register value Digital output tag

0

Other

1

Device internal DO

2

Trip DO

3

Alarm DO

4

Pickup DO

5

Inhibit DO

6

Block OP

7

CNTR OP 1

8

CNTR OP 2

9

CNTR OP 3

10

CNTR OP 4

11

CNTR OP 5

12

CNTR OP 6

Digital Output Input Source

The table lists the output input source for the digital output settings.

Register value

Digital output input source

0

None

1

Fixed 0

2

Fixed 1

3–6

Reserved

7

Reset button on LTMT main unit

8

DI 1

9

DI 2

10

DI 3

11

DI 4

12

DI 5

13

DI 6

14

DI 7

15

DI 8

16

DI 9

17

DI 10

18

DI 11

19

DI 12

20

DI 13

21

DI 14

22

DI 15

23

DI 16

24

DI 17

25

DI 18

26

DI 19

27

DI 20

28

DI 21

29

DI 22

30

DI 23

31

DI 24

32–39

Reserved

40

DO 1

41

DO 2

42

DO 3

43

DO 4

44

DO 5

45

DO 6

46

DO 7

47

DO 8

48

DO 9

49

DO 10

50

DO 11

51

DO 12

52

DO 13

53–231

Reserved

232

Pickup status

233

Alarm status

234

Trip Status

235

Motor stop error detection

236

Reserved

237

Block Output

238–247

Reserved

248

Motor Stop

249

Motor Start

250

Motor Run

251

Motor Inhibit

252–263

Reserved

264

Thermal overload alarm

265

Locked rotor alarm

266

Stalled rotor alarm

267

Definite time overcurrent alarm

268

Normal inverse overcurrent alarm

269

Short time overcurrent alarm

270

Calculated ground current alarm

271

Measured ground current alarm

272

Under current alarm

273

Current imbalance alarm

274

Current phase loss alarm

275

Current phase reversal alarm

276

Under voltage alarm

277

Over voltage alarm

278

Voltage phase loss alarm

279

Voltage imbalance alarm

280

Voltage phase reversal alarm

281

Under frequency alarm

282

Over frequency alarm

283

Reserved

284

Communication loss alarm

285

Over temperature alarm

286

Under power alarm

287

Over power alarm

288

Under power factor alarm

289–290

Reserved

291

HMI communication loss alarm

292–295

Reserved

296

Thermal overload pickup

297

Locked rotor pickup

298

Stalled rotor pickup

299

Definite time overcurrent pickup

300

Normal inverse overcurrent pickup

301

Short time overcurrent pickup

302

Calculated ground current pickup

303

Measured ground current pickup

304

Under current pickup

305

Current imbalance pickup

306

Current phase loss pickup

307

Current phase reversal pickup

308

Under voltage pickup

309

Over voltage pickup

310

Voltage phase loss pickup

311

Voltage imbalance pickup

312

Voltage phase reversal pickup

313

Under frequency pickup

314

Over frequency pickup

315

Excessive start time pickup

316

Communication loss pickup

317

Over temperature pickup

318

Under power pickup

319

Over power pickup

320

Under power factor pickup

321

Reserved

322

Device internal pickup

323

HMI communication loss pickup

324–327

Reserved

328

Thermal overload trip

329

Locked rotor trip

330

Stalled rotor trip

331

Definite time overcurrent trip

332

Normal inverse overcurrent trip

333

Short time overcurrent trip

334

Calculated ground current trip

335

Measured ground current trip

336

Under current trip

337

Current imbalance trip

338

Current phase loss trip

339

Current phase reversal trip

340

Under voltage trip

341

Over voltage trip

342

Voltage phase loss trip

343

Voltage imbalance trip

344

Voltage phase reversal trip

345

Under frequency trip

346

Over frequency trip

347

Excessive start time trip

348

Communication loss trip

349

Over temperature trip

350

Under power trip

351

Over power trip

352

Under power factor trip

353

Reserved

354

Device internal trip

355

HMI communication loss trip

356–359

Reserved

360

Interlock 1 alarm

361

Interlock 2 alarm

362

Interlock 3 alarm

363

Interlock 4 alarm

364

Interlock 5 alarm

365

Interlock 6 alarm

366

Interlock 7 alarm

367

Interlock 8 alarm

368

Interlock 9 alarm

369

Interlock 10 alarm

370

Interlock 11 alarm

371

Interlock 12 alarm

372–375

Reserved

376

Interlock 1 pickup

377

Interlock 2 pickup

378

Interlock 3 pickup

379

Interlock 4 pickup

380

Interlock 5 pickup

381

Interlock 6 pickup

382

Interlock 7 pickup

383

Interlock 8 pickup

384

Interlock 9 pickup

385

Interlock 10 pickup

386

Interlock 11 pickup

387

Interlock 12 pickup

388–391 Reserved

392

Interlock 1 trip

393

Interlock 2 trip

394

Interlock 3 trip

395

Interlock 4 trip

396

Interlock 5 trip

397

Interlock 6 trip

398

Interlock 7 trip

399

Interlock 8 trip

400

Interlock 9 trip

401

Interlock 10 trip

402

Interlock 11 trip

403

Interlock 12 trip

404–503

Reserved

504

Contactor output 1

505

Contactor output 2

506

Contactor output 3

507

Contactor output 4

508

Contactor output 5

509–535

Reserved

536

Motor forward running

537

Motor reverse running

538

Motor fast forward running

539

Motor fast reverse running

540

Motor running in star (forward)

541

Motor running in delta (forward)

542

Motor running in star (reverse)

543

Motor running in delta (reverse)

544

Motor in star-delta changeover (forward)

545

Motor in star-delta changeover (reverse)

546

Interlocking time active

547

Change-over pause active

548–551

Reserved

552

Status - Permissive Command 1

553

Status - Permissive Command 2

554

Status - Permissive Command 3

555

Status - Permissive Command 4

556

Status - Permissive Command 5

557

Status - Permissive Command 6

558

Status - Permissive Command 7

559

Status - Permissive Command 8

560–583

Reserved

584

No Voltage Inhibit

585

Under Voltage Inhibit

586

Trip Inhibit

587

Thermal Inhibit

588

Max Starts Inhibit

589

Interlock 1 Inhibit

590

Interlock 2 Inhibit

591

Interlock 3 Inhibit

592

Interlock 4 Inhibit

593

Interlock 5 Inhibit

594

Interlock 6 Inhibit

595

Interlock 7 Inhibit

596

Interlock 8 Inhibit

597

Interlock 9 Inhibit

598

Interlock 10 Inhibit

599

Interlock 11 Inhibit

600

Interlock 12 Inhibit

601

Local DI Stop Inhibit

602

Remote DI Stop Inhibit

603

Communication Stop  Inhibit

604

Forced Stop Inhibit

605

Antibackspin Inhibit

606

Reserved

607

Direction change Inhibit

608

Speed change Inhibit

609

Custom Stop Inhibit

610–615

Reserved

616

Sensor module communication error detected

617

Expansion unit communication error detected

618

HMI communication error detected

619

EEPROM interface error detected

620

EEPROM checksum error detected

621

Configuration error detected

622

PROFIBUS DP interface error detected

623

Internal temperature major error detected

624

Watchdog timeout detected

625

Low Battery detected

626–627

Reserved

628

Energy Register Overflow

629

Error detected during expansion unit initialization

630

RTC initialization error detected

631

Internal temperature minor error detected

632–647

Reserved

648

SM watchdog timeout detected

649

ADC conversion error detected

650

Flash error detected

651

Reserved

652

Voltage configuration not detected

653

Reserved

654

Calibration error detected

655

VL1 measurement error detected

656

VL2 measurement error detected

657

VL3 measurement error detected

658

IL1 low gain measurement error detected

659

IL1 high gain measurement error detected

660

IL2 low gain measurement error detected

661

IL2 high gain measurement error detected

662

IL3 low gain measurement error detected

663

IL3 high gain measurement error detected

664–65535

Reserved
QR Code is a registered trademark of DENSO WAVE INCORPORATED in Japan and other countries.

Was this helpful?