Thytronic NA016
NA016
Importata da documento
| Len | Scala | Endian | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| 0 | Identification DIM=5. UWORD[1] Identification(1=SIF,2=SVF...); ULONG[2] Serial number; UWORD[4] FW release(formato XX.XX hex); UWORD[5] Protocol release(formato XX.XX hex). | identification | 4 | string | — | 1 | — | R | — | |
| 1 | Information DIM=5. ENUM[1] Code(0=NA016-a); ULONG[2] Serial; UWORD[4] Firmware release(XX.XX hex); UWORD[5] Nominal freq. | information | 4 | string | — | 1 | — | R | — | |
| 1 | Comando Config PAR 1=Clear, 2=Store, 3=PAR default. Comando impulsivo: la protezione azzera automaticamente il registro al termine dell'esecuzione. Leggibile come qualsiasi altro registro. | comando_config_par | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 2 | Comando Config REE 3=REE default. Comando impulsivo: la protezione azzera automaticamente il registro al termine dell'esecuzione. Leggibile come qualsiasi altro registro. | comando_config_ree | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 3 | Reset commands bit0(1) Reset counters; bit1(2) Reset events; bit2(4) Reset faults; bit3(8) Reset settings; bit4(16) Reset led-relay. Comando impulsivo: la protezione azzera automaticamente il registro al termine dell'esecuzione. Leggibile come qualsiasi altro registro. | reset_commands | 6 | bitfield | 1 | 1 | — | W | — | |
| 4 | Self-test diagnostics DIM=3. ENUM[1] Self-test(0=None,1=Minor,2=Major,3=Fatal); B16[2] Self-test cause(bit0 Stack overflow, bit2 Eeprom overflow, bit3 Eeprom CAL fail, bit4 Eeprom PAR fail, bit5 Eeprom REE fail); B16[3] Self-test latch(stessi bit di [2], versione latched). | self_test_diagnostics | 4 | string | — | 1 | — | R | — | |
| 4 | Test commands 0=Test off, 1=Test I> no-trip, 2=Test I>> no-trip, 3=Test I>>> no-trip, 4=Test IE> no-trip, 5=Test IE>> no-trip, 4097=Test I> trip, 4098=Test I>> trip, 4099=Test I>>> trip, 4100=Test IE> trip, 4101=Test IE>> trip. Comando impulsivo: la protezione azzera automaticamente il registro al termine dell'esecuzione. Leggibile come qualsiasi altro registro. | test_commands | 6 | uint16 | 1 | 1 | — | W | — | |
| 5 | Clock DIM=6. UWORD[1] Year(2000-2099); UWORD[2] Month(1-12); UWORD[3] Day(1-31); UWORD[4] Hour(0-23); UWORD[5] Minute(0-59); UWORD[6] Second(0-59). | clock | 4 | string | — | 1 | — | R | — | |
| 5 | Set clock DIM=6. UWORD[1] Set year(2000-2099,def.2000); [2] Set month(1-12,def.1); [3] Set day(1-31,def.1); [4] Set hour(0-23,def.0); [5] Set minute(0-59,def.0); [6] Set second(0-59,def.0). | set_clock | 3 | string | — | 1 | — | R/W | — | |
| 6 | Oscillo info DIM=2. UWORD[1] Records stored(0-2); UWORD[2] Last record(0-2). | oscillo_info | 4 | string | — | 1 | — | R | — | |
| 6 | Modbus slave address Range 1-247, default 1. | modbus_slave_address | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 7 | Oscillo state ENUM: 0=Init, 1=Start, 2=Acquire, 3=Trigger, 4=Store, 5=Reset, 6=Off, 7=Error. | oscillo_state | 4 | uint16 | 1 | 1 | — | R | — | |
| 7 | Protocol RS485 0=Modbus, 1=IEC60870-5-103. | protocol_rs485 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 8 | Fault info DIM=2. UWORD[1] Faults stored(0-20); UWORD[2] Last fault(0-20). | fault_info | 4 | string | — | 1 | — | R | — | |
| 8 | Baudrate RS485 0=1200, 1=2400, 2=4800, 3=9600(default), 4=19200, 5=38400, 6=57600. | baudrate_rs485 | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 9 | Fault DIM=18. UWORD[1] F-Number(0-20); ENUM[2] F-Cause(0=None,1=Start I>,2=Start I>>,3=Start I>>>,4=Start IE>,5=Start IE>>,6=Trip I>,7=Trip I>>,8=Trip I>>>,9=Trip IE>,10=Trip IE>>); B16[3] F-Phases(bit0 IL1,bit1 IL2,bit2 IL3); ULONG[4] F-IL1; ULONG[6] F-IL2; ULONG[8] F-IL3; ULONG[10] F-IE; UWORD[12] F-Year; UWORD[13] F-Month; UWORD[14] F-Day; UWORD[15] F-Hour; UWORD[16] F-Minute; UWORD[17] F-Second; UWORD[18] F-Millisecond. Selezionato tramite WREG "Fault read". | fault | 4 | string | — | 1 | — | R | — | |
| 9 | Modbus delay DIM=2. UWORD[1] Enable TX delay(ms, 0-50, default2); UWORD[2] Start TX delay(ms, 0-10, default1). | modbus_delay | 3 | string | — | 1 | — | R/W | — | |
| 10 | Event info DIM=2. UWORD[1] Events stored(0-100); UWORD[2] Last event(0-100). | event_info | 4 | string | — | 1 | — | R | — | |
| 10 | Oscillo set DIM=8. UWORD[1] Pre-trigger(0-63,default2); B16[2] Trigger(bit0 Manual,bit1 General Start,bit2 General Trip,bit3 IN1,bit4 IN2,bit5 IN3,bit6 K1,bit7 K2,bit8 K3,bit9 K4,bit10 Auxiliar); B16[3] Trigger aux(bit0-4 Start I>/I>>/I>>>/IE>/IE>>, bit5-9 Trip I>/I>>/I>>>/IE>/IE>>); B16[4] Digital channels(bit0 General Start,bit1 General Trip,bit2 IN1,bit3 IN2,bit4 IN3,bit5-8 K1-K4); ENUM[5-8] Analog channel 1-4(0=OFF,1=iL1,2=iL2,3=iL3,4=iE,5=measure IL1,6=measure IL2,7=measure IL3,8=measure IE). | oscillo_set | 3 | string | — | 1 | — | R/W | — | |
| 11 | Event DIM=9. UWORD[1] E-Number(0-100); ENUM[2] E-Cause(0=None,1=Overflow,2=Power down,3=Power up,4=Settings,5=Start I>,6=Start I>>,7=Start I>>>,8=Start IE>,9=Start IE>>,10=Trip I>,11=Trip I>>,12=Trip I>>>,13=Trip IE>,14=Trip IE>>,15=IN1 ON,16=IN1 OFF,17=IN2 ON,18=IN2 OFF,19=IN3 ON,20=IN3 OFF,21=TCS ON,22=TCS OFF,23=ALARM CB ON,24=ALARM CB OFF); UWORD[3-9] E-Year/Month/Day/Hour/Minute/Second/Millisecond. Selezionato tramite WREG "Event read". | event | 4 | string | — | 1 | — | R | — | |
| 11 | Fault read Seleziona il fault da leggere tramite RREG "Fault". Range 1-20, default 1. | fault_read | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 12 | Setting info DIM=2. UWORD[1] Settings stored(0-10); UWORD[2] Last setting(0-10). | setting_info | 4 | string | — | 1 | — | R | — | |
| 12 | Event read Seleziona l'evento da leggere tramite RREG "Event". Range 1-100, default 1. | event_read | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 13 | Setting DIM=42. Snapshot completo delle impostazioni di protezione attive: S-Number, S-Changed(ULONG), S-I>Curve(ENUM IEC/BS A/B/C), S-I>inv, S-t>inv, S-I>>def, S-t>>def, S-t>>RES, S-I>>>def, S-t>>>def, S-t>>>RES, S-IE>def, S-tE>def, S-tE>RES, S-IE>>def, S-tE>>def, S-tE>>RES, S-CB Diagnostic(Off/On), S-74 TCS(Off/On), S-K1(B32 bitfield: Self test,Start I>,I>>,I>>>,Start IE>,IE>>,Trip I>,I>>,I>>>,Trip IE>,IE>>,Self test CB,Trip TCS), S-K1 logic(De-energized/Energized), S-K1 mode(No-latched/Latched), stesso schema per S-K2/S-K3/S-K4, S-Year/Month/Day/Hour/Minute/Second. Selezionato tramite WREG "Setting read". Vedi le strutture WREG NUM=22-38 per il significato e la scala di ogni singolo campo di soglia. | setting | 4 | string | — | 1 | — | R | — | |
| 13 | Setting read Seleziona il setting da leggere tramite RREG "Setting". Range 1-10, default 1. | setting_read | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 14 | Protections trip bit0 Trip I>; bit1 Trip I>>; bit2 Trip I>>>; bit3 Trip IE>; bit4 Trip IE>>. Default 0x0000. | protections_trip | 4 | bitfield | 1 | 1 | — | R | — | |
| 14 | IL line data DIM=2. UWORD[1] Inp value(1-1000 step5, default300); ENUM[2] Inp unit(0=A). | il_line_data | 3 | string | — | 1 | — | R/W | — | |
| 15 | IL1 Scala doppia a seconda del registro WREG "Measures reading": modalita' Direct -> valore/20000=Ampere; modalita' Relative -> valore/20000=multiplo di In. Riportato come valore grezzo (scale=1). | il1 | 4 | uint32 | 2 | 1 | — | R | — | |
| 15 | IE line data DIM=2. UWORD[1] IEnp value(1-1000 step5, default100); ENUM[2] IEnp unit(0=A). | ie_line_data | 3 | string | — | 1 | — | R/W | — | |
| 16 | Measures reading 0=Relative, 1=Direct(default). Determina l'interpretazione di scala dei registri RREG IL1/IL2/IL3/IE. | measures_reading | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 17 | IL2 Scala doppia a seconda del registro WREG "Measures reading": modalita' Direct -> valore/20000=Ampere; modalita' Relative -> valore/20000=multiplo di In. Riportato come valore grezzo (scale=1). | il2 | 4 | uint32 | 2 | 1 | — | R | — | |
| 17 | K1 configuration DIM=5. B32[1] bitfield(bit0 Self test, bit1-2-3 Start I>/I>>/I>>>, bit4-5 Start IE>/IE>>, bit6-7-8 Trip I>/I>>/I>>>, bit9-10 Trip IE>/IE>>, bit11 Self test CB, bit12 Trip TCS); ENUM[3] logic(0=De-energized,1=Energized); ENUM[4] mode(0=No-latched,1=Latched); UWORD[5] tTR(1=10ms, 1-50, default20). | k1_configuration | 3 | string | — | 1 | — | R/W | — | |
| 18 | K2 configuration DIM=5. B32[1] bitfield(bit0 Self test, bit1-2-3 Start I>/I>>/I>>>, bit4-5 Start IE>/IE>>, bit6-7-8 Trip I>/I>>/I>>>, bit9-10 Trip IE>/IE>>, bit11 Self test CB, bit12 Trip TCS); ENUM[3] logic(0=De-energized,1=Energized); ENUM[4] mode(0=No-latched,1=Latched); UWORD[5] tTR(1=10ms, 1-50, default20). | k2_configuration | 3 | string | — | 1 | — | R/W | — | |
| 19 | IL3 Scala doppia a seconda del registro WREG "Measures reading": modalita' Direct -> valore/20000=Ampere; modalita' Relative -> valore/20000=multiplo di In. Riportato come valore grezzo (scale=1). | il3 | 4 | uint32 | 2 | 1 | — | R | — | |
| 19 | K3 configuration DIM=5. B32[1] bitfield(bit0 Self test, bit1-2-3 Start I>/I>>/I>>>, bit4-5 Start IE>/IE>>, bit6-7-8 Trip I>/I>>/I>>>, bit9-10 Trip IE>/IE>>, bit11 Self test CB, bit12 Trip TCS); ENUM[3] logic(0=De-energized,1=Energized); ENUM[4] mode(0=No-latched,1=Latched); UWORD[5] tTR(1=10ms, 1-50, default20). | k3_configuration | 3 | string | — | 1 | — | R/W | — | |
| 20 | K4 configuration DIM=5. B32[1] bitfield(bit0 Self test, bit1-2-3 Start I>/I>>/I>>>, bit4-5 Start IE>/IE>>, bit6-7-8 Trip I>/I>>/I>>>, bit9-10 Trip IE>/IE>>, bit11 Self test CB, bit12 Trip TCS); ENUM[3] logic(0=De-energized,1=Energized); ENUM[4] mode(0=No-latched,1=Latched); UWORD[5] tTR(1=10ms, 1-50, default20). | k4_configuration | 3 | string | — | 1 | — | R/W | — | |
| 21 | IE Scala doppia a seconda del registro WREG "Measures reading": modalita' Direct -> valore/100000=Ampere; modalita' Relative -> valore/100000=multiplo di IEn. Riportato come valore grezzo (scale=1). | ie | 4 | uint32 | 2 | 1 | — | R | — | |
| 21 | I> protection I>Curve: 0=IEC/BS A, 1=IEC/BS B(default), 2=IEC/BS C. | i_protection | 3 | uint16 | 1 | 1 | — | R/W | — | |
| 22 | I>inv Range 0.1-2.5 In (raw 100-2500), default 1.00 In (1000). | i_inv | 3 | uint16 | 1 | 0.001 | In | R/W | — | |
| 23 | IN1 - 52b input 0=Off, 1=On. | in1_52b_input | 4 | boolean | 1 | 1 | — | R | — | |
| 23 | t>inv Range 0.02-60 s (raw 2-6000), default 1.00 s (100). | t_inv | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 24 | IN2 - 52a input 0=Off, 1=On. | in2_52a_input | 4 | boolean | 1 | 1 | — | R | — | |
| 24 | I-L2 def Range 0.1-20 In (raw 100-20000), default 7.00 In (7000). Simbolo originale: "I>>def". | i_l2_def | 3 | uint16 | 1 | 0.001 | In | R/W | — | |
| 25 | IN3 - TCS input 0=Off, 1=On. | in3_tcs_input | 4 | boolean | 1 | 1 | — | R | — | |
| 25 | t-L2 def Range 0.03-10 s (raw 3-1000), default 0.03 s (3). Simbolo originale: "t>>def". | t_l2_def | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 26 | Position 0=Unknown, 1=Open, 2=Closed, 3=Alarm. | position | 4 | uint16 | 1 | 1 | — | R | — | |
| 26 | t-L2 RES Range 0-1 s (raw 0-100), default 0. Simbolo originale: "t>>RES". | t_l2_res | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 27 | TCS 0=Off, 1=Alarm. | tcs | 4 | uint16 | 1 | 1 | — | R | — | |
| 27 | I-L3 def Range 0.1-20 In (raw 100-20000), default 7.00 In (7000). Simbolo originale: "I>>>def". | i_l3_def | 3 | uint16 | 1 | 0.001 | In | R/W | — | |
| 28 | Counter start I-L1 Range 0-10000. Simbolo originale: "Counter start I>". | counter_start_i_l1 | 4 | uint16 | 1 | 1 | — | R | — | |
| 28 | t-L3 def Range 0.03-10 s (raw 3-1000), default 0.03 s (3). Simbolo originale: "t>>>def". | t_l3_def | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 29 | Counter start I-L2 Range 0-10000. Simbolo originale: "Counter start I>>". | counter_start_i_l2 | 4 | uint16 | 1 | 1 | — | R | — | |
| 29 | t-L3 RES Range 0-1 s (raw 0-100), default 0. Simbolo originale: "t>>>RES". | t_l3_res | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 30 | Counter start I-L3 Range 0-10000. Simbolo originale: "Counter start I>>>". | counter_start_i_l3 | 4 | uint16 | 1 | 1 | — | R | — | |
| 30 | IE-L1 def Range 0.005-5 In (raw 5-5000), default 0.030 In (30). Simbolo originale: "IE>def". | ie_l1_def | 3 | uint16 | 1 | 0.001 | In | R/W | — | |
| 31 | Counter start IE-L1 Range 0-10000. Simbolo originale: "Counter start IE>". | counter_start_ie_l1 | 4 | uint16 | 1 | 1 | — | R | — | |
| 31 | tE-L1 def Range 0.03-180 s (raw 3-18000), default 1.00 s (100). Simbolo originale: "tE>def". | te_l1_def | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 32 | Counter start IE-L2 Range 0-10000. Simbolo originale: "Counter start IE>>". | counter_start_ie_l2 | 4 | uint16 | 1 | 1 | — | R | — | |
| 32 | tE-L1 RES Range 0-1 s (raw 0-100), default 50 ms (5). Simbolo originale: "tE>RES". | te_l1_res | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 33 | Counter trip I-L1 Range 0-10000. Simbolo originale: "Counter trip I>". | counter_trip_i_l1 | 4 | uint16 | 1 | 1 | — | R | — | |
| 33 | IE-L2 def Range 0.005-5 In (raw 5-5000), default 0.050 In (50). Simbolo originale: "IE>>def". | ie_l2_def | 3 | uint16 | 1 | 0.001 | In | R/W | — | |
| 34 | Counter trip I-L2 Range 0-10000. Simbolo originale: "Counter trip I>>". | counter_trip_i_l2 | 4 | uint16 | 1 | 1 | — | R | — | |
| 34 | tE-L2 def Range 0.03-10 s (raw 3-1000), default 0.04 s (4). Simbolo originale: "tE>>def". | te_l2_def | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 35 | Counter trip I-L3 Range 0-10000. Simbolo originale: "Counter trip I>>>". | counter_trip_i_l3 | 4 | uint16 | 1 | 1 | — | R | — | |
| 35 | tE-L2 RES Range 0-1 s (raw 0-100), default 50 ms (5). Simbolo originale: "tE>>RES". | te_l2_res | 3 | uint16 | 1 | 0.01 | s | R/W | — | |
| 36 | Counter trip IE-L1 Range 0-10000. Simbolo originale: "Counter trip IE>". | counter_trip_ie_l1 | 4 | uint16 | 1 | 1 | — | R | — | |
| 36 | CB Diagnostic 0=Off(default), 1=On. | cb_diagnostic | 3 | boolean | 1 | 1 | — | R/W | — | |
| 37 | Counter trip IE-L2 Range 0-10000. Simbolo originale: "Counter trip IE>>". | counter_trip_ie_l2 | 4 | uint16 | 1 | 1 | — | R | — | |
| 37 | 74 TCS 0=Off(default), 1=On. | 74_tcs | 3 | boolean | 1 | 1 | — | R/W | — |
Leggi questi registri via API
curl https://busbabel.vercel.app/api/devices/thytronic/na016/registers?version=v1