abb REF601/REJ601
REF601/REJ601
Importata da documento
| Len | Scala | Endian | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| 0 | Binary Output 1 Status 0=OFF, 1=ON. | binary_output_1_status | 1 | boolean | 1 | 1 | — | R | — | |
| 0 | Breaker Open Status 0000=Not Open, 0001=Open. | breaker_open_status | 2 | boolean | 1 | 1 | — | R | — | |
| 0 | Breaker Open command Scrivere 0xFF00 per comandare apertura interruttore. | breaker_open_command | 5 | boolean | 1 | 1 | — | W | — | |
| 0 | Fault Record 1 - I1 (tstart-100ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i1_tstart_100ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 1 | Binary Output 2 Status 0=OFF, 1=ON. | binary_output_2_status | 1 | boolean | 1 | 1 | — | R | — | |
| 1 | Breaker Close Status 0000=Not Closed, 0001=Closed. | breaker_close_status | 2 | boolean | 1 | 1 | — | R | — | |
| 1 | Breaker Close command Scrivere 0xFF00 per comandare chiusura interruttore. | breaker_close_command | 5 | boolean | 1 | 1 | — | W | — | |
| 1 | Fault Record 1 - I2 (tstart-100ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i2_tstart_100ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 2 | Binary Output 3 Status 0=OFF, 1=ON. | binary_output_3_status | 1 | boolean | 1 | 1 | — | R | — | |
| 2 | Breaker in Service Status 0000=Not in Service, 0001=In Service. Le porte BI2-BI4 possono essere configurate per indicare lo stato dell'interruttore (open/close/maintenance). | breaker_in_service_status | 2 | boolean | 1 | 1 | — | R | — | |
| 2 | Reset of protection command Scrivere 0xFF00. | reset_of_protection_command | 5 | boolean | 1 | 1 | — | W | — | |
| 2 | Fault Record 1 - I3 (tstart-100ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i3_tstart_100ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 3 | Binary Input 1 Status 0=OFF, 1=ON. | binary_input_1_status | 2 | boolean | 1 | 1 | — | R | — | |
| 3 | Binary Output 4 Status 0=OFF, 1=ON. | binary_output_4_status | 1 | boolean | 1 | 1 | — | R | — | |
| 3 | Remote trip command Scrivere 0xFF00. | remote_trip_command | 5 | boolean | 1 | 1 | — | W | — | |
| 3 | Fault Record 1 - I0 (tstart-100ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i0_tstart_100ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 4 | Binary Input 2 Status 0=OFF, 1=ON. | binary_input_2_status | 2 | boolean | 1 | 1 | — | R | — | |
| 4 | Binary Output 5 Status 0=OFF, 1=ON. | binary_output_5_status | 1 | boolean | 1 | 1 | — | R | — | |
| 4 | Fault Record 1 - I1 (tstart) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i1_tstart | 4 | uint16 | 1 | 1 | — | R | — | |
| 5 | Binary Input 3 Status 0=OFF, 1=ON. | binary_input_3_status | 2 | boolean | 1 | 1 | — | R | — | |
| 5 | Binary Output 6 Status 0=OFF, 1=ON. | binary_output_6_status | 1 | boolean | 1 | 1 | — | R | — | |
| 5 | Fault Record 1 - I2 (tstart) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i2_tstart | 4 | uint16 | 1 | 1 | — | R | — | |
| 6 | Binary Input 4 Status 0=OFF, 1=ON. | binary_input_4_status | 2 | boolean | 1 | 1 | — | R | — | |
| 6 | Programmable LED 1 Status 0=OFF, 1=ON. | programmable_led_1_status | 1 | boolean | 1 | 1 | — | R | — | |
| 6 | Fault Record 1 - I3 (tstart) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i3_tstart | 4 | uint16 | 1 | 1 | — | R | — | |
| 7 | Programmable LED 2 Status 0=OFF, 1=ON. | programmable_led_2_status | 1 | boolean | 1 | 1 | — | R | — | |
| 7 | Fault Record 1 - I0 (tstart) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i0_tstart | 4 | uint16 | 1 | 1 | — | R | — | |
| 8 | Programmable LED 3 Status 0=OFF, 1=ON. | programmable_led_3_status | 1 | boolean | 1 | 1 | — | R | — | |
| 8 | Fault Record 1 - Timestamp tstart (DD/MM) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_tstart_dd_mm | 4 | uint16 | 1 | 1 | — | R | — | |
| 9 | Programmable LED 4 Status 0=OFF, 1=ON. | programmable_led_4_status | 1 | boolean | 1 | 1 | — | R | — | |
| 9 | Fault Record 1 - Timestamp tstart (YY:HH) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_tstart_yy_hh | 4 | uint16 | 1 | 1 | — | R | — | |
| 10 | Programmable LED 5 Status 0=OFF, 1=ON. | programmable_led_5_status | 1 | boolean | 1 | 1 | — | R | — | |
| 10 | Fault Record 1 - Timestamp tstart (MM/SS) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_tstart_mm_ss | 4 | uint16 | 1 | 1 | — | R | — | |
| 11 | Fault Record 1 - Timestamp tstart (mSec) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_tstart_msec | 4 | uint16 | 1 | 1 | ms | R | — | |
| 12 | Fault Record 1 - I1 (ttrip) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i1_ttrip | 4 | uint16 | 1 | 1 | — | R | — | |
| 13 | Fault Record 1 - I2 (ttrip) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i2_ttrip | 4 | uint16 | 1 | 1 | — | R | — | |
| 14 | Fault Record 1 - I3 (ttrip) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i3_ttrip | 4 | uint16 | 1 | 1 | — | R | — | |
| 15 | Fault Record 1 - I0 (ttrip) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i0_ttrip | 4 | uint16 | 1 | 1 | — | R | — | |
| 16 | Fault Record 1 - Timestamp ttrip (DD/MM) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_ttrip_dd_mm | 4 | uint16 | 1 | 1 | — | R | — | |
| 17 | Fault Record 1 - Timestamp ttrip (YY:HH) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_ttrip_yy_hh | 4 | uint16 | 1 | 1 | — | R | — | |
| 18 | Fault Record 1 - Timestamp ttrip (MM/SS) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_ttrip_mm_ss | 4 | uint16 | 1 | 1 | — | R | — | |
| 19 | Fault Record 1 - Timestamp ttrip (mSec) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_timestamp_ttrip_msec | 4 | uint16 | 1 | 1 | ms | R | — | |
| 20 | Fault Record 1 - I1 (ttrip+80ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i1_ttrip_80ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 21 | Fault Record 1 - I2 (ttrip+80ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i2_ttrip_80ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 22 | Fault Record 1 - I3 (ttrip+80ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i3_ttrip_80ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 23 | Fault Record 1 - I0 (ttrip+80ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i0_ttrip_80ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 24 | Fault Record 1 - I1 (ttrip+200ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i1_ttrip_200ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 25 | Fault Record 1 - I2 (ttrip+200ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i2_ttrip_200ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 26 | Fault Record 1 - I3 (ttrip+200ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i3_ttrip_200ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 27 | Fault Record 1 - I0 (ttrip+200ms) Fault Record 1, indirizzi 0-27 (FC4). I Fault Record 2-5 ripetono la stessa struttura a partire rispettivamente dagli indirizzi 28, 56, 84, 112 (offset +28 per record). Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | fault_record_1_i0_ttrip_200ms | 4 | uint16 | 1 | 1 | — | R | — | |
| 288 | IED Status 0000=Internal Relay Fault, 0004=Unit Ready with no trip, 0005=Unit Ready with Phase Trip, 0006=Unit Ready with Earth Trip. | ied_status | 4 | uint16 | 1 | 1 | — | R | — | |
| 289 | L/R Status 0000=Local, 0001=Remote. | l_r_status | 4 | uint16 | 1 | 1 | — | R | — | |
| 512 | I1 (current measurement) Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | i1_current_measurement | 4 | uint16 | 1 | 1 | — | R | — | |
| 513 | I2 (current measurement) Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | i2_current_measurement | 4 | uint16 | 1 | 1 | — | R | — | |
| 514 | I3 (current measurement) Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | i3_current_measurement | 4 | uint16 | 1 | 1 | — | R | — | |
| 515 | I0 (current measurement) Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | i0_current_measurement | 4 | uint16 | 1 | 1 | — | R | — | |
| 516 | Operation counter | operation_counter | 4 | uint16 | 1 | 1 | — | R | — | |
| 517 | Negative phase sequence current measurement Valore grezzo, 1In=1000. Formula: Actual Current = (valore * Ipn)/1000 [variante CT, Ipn=corrente primaria TA fase 20..9999] oppure (valore * Ir)/1000 [variante Sensor, Ir=corrente di riferimento del relè]. | negative_phase_sequence_current_measurement | 4 | uint16 | 1 | 1 | — | R | — | |
| 518 | Thermal level | thermal_level | 4 | uint16 | 1 | 1 | — | R | — | |
| 4096 | I> Curve Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7936). Indirizzo legacy: 0. Enum: 1=DT, 2=IEC NI, 3=IEC VI, 4=IEC LI, 5=IEC EI, 6=IEC RI, 7=ANSI NI, 8=ANSI VI, 9=ANSI MI, 10=ANSI EI. Default DT. | i_curve | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4097 | I> k (Time multiplier) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7937). Indirizzo legacy: 1. Range 0.02-1.6. | i_k_time_multiplier | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4098 | I> (stadio 1) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7938). Indirizzo legacy: 2. Range 0.1-2.5 In. Default 1.500 In. | i_stadio_1 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4099 | t> (stadio 1) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7939). Indirizzo legacy: 3. Range 0.04-64 s. Default 1.00 s. | t_stadio_1 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4100 | I>> (stadio 2) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7940). Indirizzo legacy: 4. Range 0.2-25 In. Default 4.000 In. | i_stadio_2 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4101 | t>> (stadio 2) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7941). Indirizzo legacy: 5. Range 0.04-64 s. Default 0.30 s. | t_stadio_2 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4102 | I>>> (stadio 3) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7942). Indirizzo legacy: 6. Range 0.5-25 In. Default 10.000 In. | i_stadio_3 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4103 | t>>> (stadio 3) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7943). Indirizzo legacy: 7. Range 0.03-64 s. Default 0.03 s. | t_stadio_3 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4104 | I0> Curve Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7944). Indirizzo legacy: 8. Enum: 1=DT, 2=IEC NI, 3=IEC VI, 4=IEC LI, 5=IEC EI, 6=IEC RI, 7=ANSI NI, 8=ANSI VI, 9=ANSI MI, 10=ANSI EI. Default DT. | i0_curve | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4105 | I0> k0 (Time multiplier) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7945). Indirizzo legacy: 9. Range 0.02-1.6. | i0_k0_time_multiplier | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4106 | I0> (stadio 1) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7946). Indirizzo legacy: 10. Earth type External: 0.01-2.0 In. Earth type Internal: 0.1-2.0 In. Default 0.500 In. | i0_stadio_1 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4107 | t0> (stadio 1) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7947). Indirizzo legacy: 11. Range 0.04-64 s. Default 1.50 s. | t0_stadio_1 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4108 | I0>> (stadio 2) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7948). Indirizzo legacy: 12. Earth type External: 0.05-12.5 In. Earth type Internal: 0.5-12.5 In. Default 2.500 In. | i0_stadio_2 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4109 | t0>> (stadio 2) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7949). Indirizzo legacy: 13. Range 0.04-64 s. Default 0.50 s. | t0_stadio_2 | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4110 | I inr (Inrush Current Threshold) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7950). Indirizzo legacy: 14. Range 0.2-25 In (0.2-20 In su variante Sensor). Default 0.50 In. | i_inr_inrush_current_threshold | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4111 | Inrush Ratio Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7951). Indirizzo legacy: 15. Range 30-50 (%). Default 30%. | inrush_ratio | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4112 | st_I2>Isat Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7952). Range 0.1-1.50. Default 0.30. | st_i2_isat | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4113 | st_I2>Time Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7953). Range 0.1-300 s. Default 1.0 s. | st_i2_time | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4114 | st_I2/I1>Isat Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7954). Range 10-100 (%). Default 15. | st_i2_i1_isat | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4115 | st_I2/I1>.Time Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7955). Range 0.1-64 s. Default 0.1 s. | st_i2_i1_time | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4116 | Counter. BI Map Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7956). Range 0-4. Default 1. | counter_bi_map | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4117 | Counter. Value Set Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7957). Range 0-65535. Default 1. | counter_value_set | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4118 | Setting Group Selection Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7958). 1=Setting Group 1, 2=Setting Group 2. Default 1. | setting_group_selection | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4119 | Setting Group Activation Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7959). 1=Setting Group 1, 2=Setting Group 2. Default 1. | setting_group_activation | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4120 | Setting Group Edit Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7960). 1=Setting Group 1, 2=Setting Group 2. Default 1. | setting_group_edit | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4124 | ϑ0 (thermal ambient reference) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7964). Range 0-100 (%). Default 80. | 0_thermal_ambient_reference | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4125 | Ib (thermal base current) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7965). Range 0.1-1.5 In. Default 1. | ib_thermal_base_current | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4126 | t↑ (thermal heating time constant) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7966). Range 1-300 min. Default 45. | t_thermal_heating_time_constant | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4127 | t↓s (thermal cooling time constant, stopped) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7967). Range 1-300 min. Default 45. | t_s_thermal_cooling_time_constant_stopped | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4129 | ϑalm (thermal alarm threshold) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7969). Range 50-200 (%). Default 121. | alm_thermal_alarm_threshold | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4130 | ϑtrip (thermal trip threshold) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7970). Range 50-200 (%). Default 144. | trip_thermal_trip_threshold | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4131 | ϑstartinhibit (thermal start inhibit threshold) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7971). Range 50-200 (%). Default 105. | startinhibit_thermal_start_inhibit_threshold | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4133 | Mode ϑpowerOFF (thermal memory on power off) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7973). Range 1-4. Default 4. | mode_poweroff_thermal_memory_on_power_off | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4135 | AR start mode Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7975). 1=Select trip, 2=General Start & Trip. Default 1. | ar_start_mode | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4136 | CB Ready (setting) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7976). 1=OCO, 2=CO. Default 1. | cb_ready_setting | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4137 | Shot of Cycle(#) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7977). Range 0-4. Default 1. | shot_of_cycle | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4139 | Cycle t1 Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7979). Range 0.2-300 s. Default 0.50 s. | cycle_t1 | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4140 | Cycle t2 Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7980). Range 0.2-300 s. Default 0.50 s. | cycle_t2 | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4141 | Cycle t3 Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7981). Range 0.2-300 s. Default 0.50 s. | cycle_t3 | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4142 | Cycle t4 Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7982). Range 0.2-300 s. Default 0.50 s. | cycle_t4 | 3 | uint16 | 1 | 0.01 | — | R/W | — | |
| 4143 | Reclaim tr Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7983). Range 1-300 s. Default 1. | reclaim_tr | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4144 | Block tb Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7984). Range 1-300 s. Default 5. | block_tb | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4145 | Pulse tp Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7985). Range 0.2-20 s. Default 0.200 s. | pulse_tp | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4146 | Activate t Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7986). Range 0.1-5 s. Default 0.800 s. | activate_t | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4147 | I CBFP (Circuit Breaker Failure Protection) Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7987). Range 0.2-2 In. Default 1.100 In. | i_cbfp_circuit_breaker_failure_protection | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4148 | I0 CBFP Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7988). Range 0.1-2 In. Default 1.100 In. | i0_cbfp | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4149 | t Retrip Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7989). Range 0.06-0.5 s. Default 0.100 s. | t_retrip | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4150 | t Backup Setting Group 1 (il mirror Setting Group 2 e' all'indirizzo 7990). Range 0.06-0.5 s. Default 0.120 s. | t_backup | 3 | uint16 | 1 | 0.001 | — | R/W | — | |
| 4861 | Application configuration 0001=A, 0002=B, 0003=C, 0004=D. | application_configuration | 3 | uint16 | 1 | 1 | — | R | — | |
| 4862 | Base Board Software Version (A) Range 0-9999. Default 02.20. Il documento riporta anche un secondo registro omonimo all'indirizzo 4868, senza ulteriore distinzione. | base_board_software_version_a | 3 | uint16 | 1 | 1 | — | R | — | |
| 4863 | Base Board Software Sub Version Range 0-99. Default 00. | base_board_software_sub_version | 3 | uint16 | 1 | 1 | — | R | — | |
| 4864 | Model Type 0=CEI 0-16, 1=IEC. Default 1. | model_type | 3 | uint16 | 1 | 1 | — | R | — | |
| 4865 | Nominal Current Applicabile solo a variante Sensor (indirizzo legacy 33; sulla variante CT genera eccezione Illegal Data Address). Sensore 250A: 0000=40A,0001=80A,0002=250A,0003=1250A. Sensore 80A: 0000=12.8A,0001=25.6A,0002=80A,0003=400A. | nominal_current | 3 | uint16 | 1 | 1 | — | R | — | |
| 4866 | Product Name 0000=REF, 0001=REJ. Indirizzo legacy: 34. | product_name | 3 | uint16 | 1 | 1 | — | R | — | |
| 4867 | Earth Type(I0 Measurement) 0000=Internal Calculation, 0001=External Measurement. Default 1. Indirizzo legacy: 35. | earth_type_i0_measurement | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4868 | Base Board Software Version (B) Range 0-9999. Default 02.20. Indirizzo legacy: 36. Il documento riporta anche un registro omonimo all'indirizzo 4862, senza ulteriore distinzione. | base_board_software_version_b | 3 | uint16 | 1 | 1 | — | R | — | |
| 4869 | Phase Trip counter Range 0-9999. Indirizzo legacy: 37. | phase_trip_counter | 3 | uint16 | 1 | 1 | — | R | — | |
| 4870 | Earth Trip counter Range 0-9999. Indirizzo legacy: 38. | earth_trip_counter | 3 | uint16 | 1 | 1 | — | R | — | |
| 4871 | Frequency 0000=50Hz, 0001=60Hz. Default 0. Indirizzo legacy: 39. | frequency | 3 | uint16 | 1 | 1 | Hz | R/W | — | |
| 4872 | Comm. Board Software Version Range 0-9999. Default 00.00. Indirizzo legacy: 40. | comm_board_software_version | 3 | uint16 | 1 | 1 | — | R | — | |
| 4873 | Comm. Board Software Sub Version Range 0-99. Default 00. | comm_board_software_sub_version | 3 | uint16 | 1 | 1 | — | R | — | |
| 4874 | TCS Operating Time (in Second) Range 1-300. Indirizzo legacy: 42. | tcs_operating_time_in_second | 3 | uint16 | 1 | 1 | s | R/W | — | |
| 4876 | TCS Block/Unblock 0000=TCS Unblock, 0001=TCS Block. Default 0. Indirizzo legacy: 44. | tcs_block_unblock | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4877 | RTC - DD - Date Range 1-31. Indirizzo legacy (pre-2.2 FP1): 45. | rtc_dd_date | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4878 | RTC - MM - Month Range 1-12. Indirizzo legacy: 46. | rtc_mm_month | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4879 | RTC - YY - Year Range 11-99. Indirizzo legacy: 47. | rtc_yy_year | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4880 | RTC - HH - Hour Range 0-23. Indirizzo legacy: 48. | rtc_hh_hour | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4881 | RTC - MM - Minute Range 0-59. Indirizzo legacy: 49. | rtc_mm_minute | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4882 | RTC - SS - Second Range 0-59. Indirizzo legacy: 50. | rtc_ss_second | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4883 | RTC - MILLI - Second Range 0-999. Indirizzo legacy: 51. Sola lettura. | rtc_milli_second | 3 | uint16 | 1 | 1 | — | R | — | |
| 4884 | Analogue Input type 0000=Sensor, 0001=1A CT, 0005=5A CT. Indirizzo legacy: 52. | analogue_input_type | 3 | uint16 | 1 | 1 | — | R | — | |
| 4885 | Phase CT primary Range 20-9999. Default 1000. Applicabile solo a variante CT (indirizzo legacy 53; su variante Sensor solo i valori 80 e 250 sono ammessi come Data Value). | phase_ct_primary | 3 | uint16 | 1 | 1 | A | R/W | — | |
| 4886 | Earth CT secondary 0001=1A, 0005=5A. Indirizzo legacy: 54. | earth_ct_secondary | 3 | uint16 | 1 | 1 | A | R | — | |
| 4887 | Earth CT primary Range 20-9999. Default 1000. Indirizzo legacy: 55. | earth_ct_primary | 3 | uint16 | 1 | 1 | A | R/W | — | |
| 4888 | I>Block (protection setting, stadio 1) 0000=No, 0001=Yes. Default 0. | i_block_protection_setting_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4889 | I>>Block (protection setting, stadio 2) 0000=No, 0001=Yes. Default 0. | i_block_protection_setting_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4890 | I>>>Block (protection setting, stadio 3) 0000=No, 0001=Yes. Default 0. | i_block_protection_setting_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4891 | I0>Block (protection setting, stadio 1) 0000=No, 0001=Yes. Default 0. | i0_block_protection_setting_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4892 | I0>>Block (protection setting, stadio 2) 0000=No, 0001=Yes. Default 0. | i0_block_protection_setting_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4893 | I2>Block (protection setting) 0000=No, 0001=Yes. Default 0. | i2_block_protection_setting | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4894 | I2/I1>Block (protection setting) 0000=No, 0001=Yes. Default 0. | i2_i1_block_protection_setting | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4895 | BF Blocking 0000=No, 0001=Yes. Default 0. | bf_blocking | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4896 | 3I>/I0 - I>Block (stadio 1) 0000=No, 0001=Yes. Default 0. | 3i_i0_i_block_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4897 | 3I>/I0 - I>>Block (stadio 2) 0000=No, 0001=Yes. Default 0. | 3i_i0_i_block_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4898 | 3I>/I0 - I>>>Block (stadio 3) 0000=No, 0001=Yes. Default 0. | 3i_i0_i_block_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4899 | 3I>/I0 - I0>Block (stadio 1) 0000=No, 0001=Yes. Default 0. | 3i_i0_i0_block_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4900 | 3I>/I0 - I0>>Block (stadio 2) 0000=No, 0001=Yes. Default 0. | 3i_i0_i0_block_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 4901 | Thermal Protection Block 0000=No, 0001=Yes. Default 0. | thermal_protection_block | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5632 | Binary Input1 configuration status 0000=Non-Inverted, 0001=Inverted. Default 0. Indirizzo legacy: 60. | binary_input1_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5633 | Binary Input2 configuration status 0000=Non-Inverted, 0001=Inverted. Default 0. Indirizzo legacy: 61. | binary_input2_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5634 | Binary Input3 configuration status 0000=Non-Inverted, 0001=Inverted. Default 0. Indirizzo legacy: 62. | binary_input3_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5635 | Binary Input4 configuration status 0000=Non-Inverted, 0001=Inverted. Default 0. Indirizzo legacy: 63. | binary_input4_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5652 | I> Block (BI mapping, stadio 1) 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 70. | i_block_bi_mapping_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5653 | I>> Block (BI mapping, stadio 2) 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 71. | i_block_bi_mapping_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5654 | I>>> Block (BI mapping, stadio 3) 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 72. | i_block_bi_mapping_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5655 | I0> Block (BI mapping, stadio 1) 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 73. | i0_block_bi_mapping_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5656 | I0>> Block (BI mapping, stadio 2) 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 74. | i0_block_bi_mapping_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5657 | CB Ctl Blk 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 75. | cb_ctl_blk | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5658 | Lockout Rs (Reset) 0000=Not mapped, 0002=Mapped with BI2, 0004=Mapped with BI3, 0008=Mapped with BI4. Default 8. Indirizzo legacy: 76. | lockout_rs_reset | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5659 | CB Cls Pos 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 77. | cb_cls_pos | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5660 | CB Opn Pos 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 78. | cb_opn_pos | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5661 | CB Maint 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 79. | cb_maint | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5662 | TCS (BI mapping) 0000=Not mapped, 0001=Mapped with BI2. Default 1. Indirizzo legacy: 80. | tcs_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5663 | Ext Trip 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 4. Indirizzo legacy: 81. | ext_trip | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5664 | Ext Close 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 82. | ext_close | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5665 | Power Off 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 83. | power_off | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5666 | SIGNAL 1 (BI mapping) 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 84. | signal_1_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5667 | SIGNAL 2 (BI mapping) 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 85. | signal_2_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5668 | SIGNAL 3 (BI mapping) 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. Indirizzo legacy: 86. | signal_3_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5669 | TCS Block 0000=Not mapped, 0001=Mapped with BI1. Default 0. Indirizzo legacy: 87. | tcs_block | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5670 | I2> Block (BI mapping) 0000=Not mapped, 0001=Mapped with BI1. Default 0. | i2_block_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5671 | I2/I1> Block (BI mapping) 0000=Not mapped, 0001=Mapped with BI1. Default 0. | i2_i1_block_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5672 | 3Ith Block 0000=Not mapped, 0001=Mapped with BI1. Default 0. | 3ith_block | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5673 | SG Select 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. | sg_select | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5676 | CB Ready (BI mapping) 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. | cb_ready_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5677 | BF Block 0000=Not mapped, 0001=Mapped with BI1. Default 0. | bf_block | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5678 | BF ProtExt 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. | bf_protext | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 5679 | BF RecTrip (BI mapping) 0000=Not mapped, 0002=BI2, 0004=BI3, 0008=BI4. Default 0. | bf_rectrip_bi_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6400 | Binary Output 1 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 3. Indirizzo legacy: 90. | binary_output_1_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6401 | Binary Output 2 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 3. Indirizzo legacy: 91. | binary_output_2_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6402 | Binary Output 3 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 3. Indirizzo legacy: 92. | binary_output_3_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6403 | Binary Output 4 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 2. Indirizzo legacy: 93. | binary_output_4_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6404 | Binary Output 5 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 3. Indirizzo legacy: 94. | binary_output_5_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6405 | Binary Output 6 configuration status 0000=Non-Inverted Hold, 0001=Non-Inverted Latch, 0002=Non-Inverted Self Reset, 0003=Non-Inverted Pulse, 0100=Inverted Hold, 0101=Inverted Latch, 0102=Inverted Self Reset, 0103=Inverted Pulse. Default 3. Indirizzo legacy: 95. | binary_output_6_configuration_status | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6420 | I>Start Mapped with Binary Output _Data value (stadio 1) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 100. | i_start_mapped_with_binary_output_data_value_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6421 | I>>Start Mapped with Binary Output _Data Value (stadio 2) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 101. | i_start_mapped_with_binary_output_data_value_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6422 | I>>>Start Mapped with Binary Output _Data Value (stadio 3) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 102. | i_start_mapped_with_binary_output_data_value_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6423 | Unit Rdy Mapped with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 8. Indirizzo legacy: 103. UNIT READY e' fisso su BO4, non modificabile; nessun altro segnale puo' essere configurato su BO4. | unit_rdy_mapped_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6424 | I0>Start Mapped with Binary Output _Data Value (stadio 1) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 104. | i0_start_mapped_with_binary_output_data_value_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6425 | I0>>Start Mapped with Binary Output _Data Value (stadio 2) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 105. | i0_start_mapped_with_binary_output_data_value_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6426 | I>Trip Mapped with Binary Output _Data Value (stadio 1) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 19. Indirizzo legacy: 106. | i_trip_mapped_with_binary_output_data_value_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6427 | I>>Trip Mapped with Binary Output _Data Value (stadio 2) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 19. Indirizzo legacy: 107. | i_trip_mapped_with_binary_output_data_value_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6428 | I>>>Trip Mapped with Binary Output _Data Value (stadio 3) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 19. Indirizzo legacy: 108. | i_trip_mapped_with_binary_output_data_value_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6429 | TCS Fault Mapped with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. Indirizzo legacy: 109. | tcs_fault_mapped_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6430 | I0>Trip Mapped with Binary Output _Data Value (stadio 1) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 19. Indirizzo legacy: 110. | i0_trip_mapped_with_binary_output_data_value_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6431 | I0>>Trip Mapped with Binary Output _Data Value (stadio 2) Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 19. Indirizzo legacy: 111. | i0_trip_mapped_with_binary_output_data_value_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6432 | CB Cls Cmd Mapped with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 4. Indirizzo legacy: 112. | cb_cls_cmd_mapped_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6433 | CB Opn Cmd Mapped with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 3. Indirizzo legacy: 113. | cb_opn_cmd_mapped_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6434 | SIGNAL 1 with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Indirizzo legacy: 114. | signal_1_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6435 | SIGNAL 2 with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Indirizzo legacy: 115. | signal_2_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6436 | SIGNAL 3 with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Indirizzo legacy: 116. | signal_3_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6437 | I2> Start with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | i2_start_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6438 | I2> Trip with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | i2_trip_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6439 | I2/I1> Start with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | i2_i1_start_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6440 | I2/I1> Trip with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | i2_i1_trip_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6441 | 3Ith tr with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 3ith_tr_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6442 | 3Ith Alarm with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 3ith_alarm_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6443 | 3Ith BLK CL with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 3ith_blk_cl_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6444 | 0->I Close with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 0_i_close_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6445 | 0->I InPro with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 0_i_inpro_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6446 | 0->I Final Tr with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 0_i_final_tr_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6447 | 0->I Blocked with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | 0_i_blocked_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6448 | BF Stage 1 with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | bf_stage_1_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6449 | BF Stage 2 with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | bf_stage_2_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 6450 | BF Rec Trip with Binary Output _Data Value Range 0000-003F, bitmask BO1-BO6 (bit0=BO1...bit5=BO6). Es.: 0x0001=solo BO1, 0x003F=tutti i canali. Default 0. | bf_rec_trip_with_binary_output_data_value | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7168 | LED 1 Config 0000=Non-Inverted Hold, 0002=Non-Inverted Self Reset. | led_1_config | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7169 | LED 2 Config 0000=Non-Inverted Hold, 0002=Non-Inverted Self Reset. | led_2_config | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7170 | LED 3 Config 0000=Non-Inverted Hold, 0002=Non-Inverted Self Reset. | led_3_config | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7171 | LED 4 Config 0000=Non-Inverted Hold, 0002=Non-Inverted Self Reset. | led_4_config | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7172 | LED 5 Config 0000=Non-Inverted Hold, 0002=Non-Inverted Self Reset. | led_5_config | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7188 | I> Start (stadio 1) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_start_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7189 | I>> Start (stadio 2) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_start_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7190 | I>>> Start (stadio 3) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_start_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7191 | I0> Start (stadio 1) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i0_start_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7192 | I0>> Start (stadio 2) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i0_start_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7193 | I> Trip (stadio 1) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_trip_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7194 | I>> Trip (stadio 2) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_trip_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7195 | I>>> Trip (stadio 3) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i_trip_stadio_3 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7196 | I0> Trip (stadio 1) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i0_trip_stadio_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7197 | I0>> Trip (stadio 2) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i0_trip_stadio_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7198 | TCS (LED mapping) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | tcs_led_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7199 | SIGNAL 1 (LED mapping) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | signal_1_led_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7200 | SIGNAL 2 (LED mapping) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | signal_2_led_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7201 | SIGNAL 3 (LED mapping) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | signal_3_led_mapping | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7202 | I2>Start Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i2_start | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7203 | I2>Trip Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i2_trip | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7204 | I2/I1>Start Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i2_i1_start | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7205 | I2/I1>Trip Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | i2_i1_trip | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7206 | 3 Ith > Trip Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 3_ith_trip | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7207 | 3 Ith > Alarm Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 3_ith_alarm | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7208 | 3 Ith > BlkCl Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 3_ith_blkcl | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7209 | 0->I Close Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 0_i_close | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7210 | 0->I InPro Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 0_i_inpro | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7211 | 0->I Final Tr Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 0_i_final_tr | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7212 | 0->I Blocked Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | 0_i_blocked | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7213 | BF Stage 1 Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | bf_stage_1 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7214 | BF Stage 2 Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | bf_stage_2 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7215 | BF RecTrip (LED mapping) Range 0000-001F, bitmask LED1-LED5 (bit0=LED1...bit4=LED5). | bf_rectrip_led_mapping | 3 | uint16 | 1 | 1 | — | R/W | — |
Leggi questi registri via API
curl https://busbabel.vercel.app/api/devices/abb/ref601-rej601/registers?version=v1