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Variador

Oleo edited this page Dec 21, 2018 · 38 revisions

Parámetros Varispeed Modelo 616G5

Parámetro Descripción Valor por Defecto del Fabricante del Variador Configuración del Fabricante de la CNC Configuración Retrofit Unidad de Medida
A1-00 Select Language 4
A1-01 Access Level 4
A1-02 Control Method 0
A1-03 Init Parameters 0
A1-04 Enter Password 0
A1-05 Select Password 0
A2-01 User Parameter 1 0 h
A2-02 User Parameter 2 0 h
A2-03 User Parameter 3 0 h
A2-04 User Parameter 4 0 h
A2-05 User Parameter 5 0 h
A2-06 User Parameter 6 0 h
A2-07 User Parameter 7 0 h
A2-08 User Parameter 8 0 h
A2-09 User Parameter 9 0 h
A2-10 User Parameter 10 0 h
A2-11 User Parameter 11 0 h
A2-12 User Parameter 12 0 h
A2-13 User Parameter 13 0 h
A2-14 User Parameter 14 0 h
A2-15 User Parameter 15 0 h
A2-16 User Parameter 16 0 h
A2-17 User Parameter 17 0 h
A2-18 User Parameter 18 0 h
A2-19 User Parameter 19 0 h
A2-20 User Parameter 20 0 h
A2-21 User Parameter 21 0 h
A2-22 User Parameter 22 0 h
A2-23 User Parameter 23 0 h
A2-24 User Parameter 24 0 h
A2-25 User Parameter 25 0 h
A2-26 User Parameter 26 0 h
A2-27 User Parameter 27 0 h
A2-28 User Parameter 28 0 h
A2-29 User Parameter 29 0 h
A2-30 User Parameter 30 0 h
A2-31 User Parameter 31 0 h
A2-32 User Parameter 32 0 h
B1-01 Reference Source 2 1
B1-02 Run Source 2 1
B1-03 Stopping Method 0
B1-04 Reverse Oper 0
B1-05 Zero-Speed Oper 0
B1-06 Cntl Input Scan 0
B1-07 Cycle Extrn RUN 0
B1-08 RUN CMD at PRG 0
B1-09 L/R Select@Drive 0
B2-01 DCInj Start Freq .5 Hz
B2-02 DCInj Current 50 %
B2-03 DCInj Time @Start 0 sec
B2-04 DCInj Time @Stop .5 sec
B2-05 DCInj P Gain .05
B2-06 DCIntgl Time 100 msec
B2-07 DCInj Limit 15 %
B2-08 Field Comp@start 0 %
B3-01 SpdSrch at Start 0
B3-02 SpdSrch Current 150 %
B3-03 SpdSrch Dec Time 2 sec
B3-04 SpdSrch V/F 100 %
B4-01 Delay-ON Timer 0 sec
B4-02 Delay-OFF Timer 0 sec
B5-01 PID Mode 0
B5-02 PID Gain 1
B5-03 PID I Time 1 sec
B5-04 PID I Limit 100 %
B5-05 PID D Time 0 sec
B5-06 PID Limit 100 %
B5-07 PID Offset 0 %
B5-08 PID Delay Time 0 sec
B5-09 Output Level Sel 0
B5-10 Output Gain 1
B5-11 Output Rev Sel 0
B5-12 Fb los Det Sel 0
B5-13 Fb los Det Lvl 0 %
B5-14 Fb los Det Time 1 sec
B6-01 Dwell Ref @ Start 0 Hz
B6-02 Dwell Time @ Start 0 sec
B6-03 Dwell Ref @ Stop 0 Hz
B6-04 Dwell Time @ Stop 0 sec
B7-01 Droop gain 0 %
B7-02 Droop Delay Time .05 sec
B8-01 Energy Save Gain 80 %
B8-02 Energy Save Freq 0 Hz
B8-03 Energy Save Sel 0
B8-04 Energy Save Gain 0
B8-05 Energy Save F,T 0 sec
B9-01 Zero Servo Gain 5
B9-02 Zero Servo Count 10
C1-01 Accel Time 1 4 2 sec
C1-02 Decel Time 1 4 3 sec
C1-03 Accel Time 2 10 sec
C1-04 Decel Time 2 10 sec
C1-05 Accel Time 3 10 sec
C1-06 Decel Time 3 10 sec
C1-07 Accel Time 4 10 sec
C1-08 Decel Time 4 10 sec
C1-09 Fast Stop Time 5 3 sec
C1-10 Acc/Dec Units 1
C1-11 Acc/Dec SW Freq 0 0.0 Hz
C2-01 SCrv Acc@ Start 2.5 sec
C2-02 SCrv Acc@ End 0.2 sec
C2-03 SCrv Dec@ Start 0 sec
C2-04 SCrv Dec@ End 0 sec
C3-01 Slip Comp Gain 0 sec
C3-02 Slip Comp Time 2000 msec
C3-03 Slip Comp Limit 200 %
C3-04 Slip Comp Regen 0
C3-05 Flux Detect 0
C3-06 Output V limit 0
C4-01 Torq Comp Gain 0
C4-02 Torq Comp Time 200 msec
C4-03 F TorqCmp@start 0 %
C4-04 R TorqCmp@start 0 %
C4-05 TorqCmp Delay T 10 msec
C5-01 ASR P Gain 1 0
C5-01 ASR I Time 1 1 sec
C5-03 ASR P Gain 2 0.2
C5-04 ASR I Time 2 1 sec
C5-05 ASR Limit 5 %
C5-06 ASR Delay Time 0 sec
C5-07 ASR Gain SW Freq 0 Hz
C5-08 ASR I Limit 400 %
C6-01 Carrier Freq Max 10 KHz
C6-02 Carrier Freq Min 10 KHz
C6-03 Carrier Freq Gain 0
C7-01 Hunt Prev Select 0
C7-02 Hunt Prev Gain 1
C7-03 Hunt Prev Time 10 msec
C7-04 Hunt Prev Limit 5 %
C8-01 ACR Feedbk Gain 1
C8-02 ACR q Gain 0.1
C8-03 ACR q I Time 0 msec
C8-04 ACR q Limit 5 %
C8-05 ACR d Gain 0.5
C8-06 ACR D I Time 0 msec
C8-07 ACR d Limit 5 %
C8-08 AFR gain 1
C8-09 AFR Time 50 msec
C8-10 AFR Limit 5 Hz
C8-11 V Drop Comp Dly 1 sec
C8-12 AVR Time 1000 msec
C8-13 PWM Method 1
C8-14 IGBT Volt Drop 0 V
C8-15 On-Delay Time 4 usec
C8-16 On-Delay Comp 0 usec
C8-17 DCCT Filter Time 0 usec
C8-18 Pwr Angle Filt 1 20 msec
C8-19 Pwr Angle Filt 2 60 msec
C8-20 Simulation Mode 0
C8-21 Flux Observer 1
C8-22 Observer Comp 0.6
C8-23 Observer Filter 1 sec
C8-24 Observer Volt Comp 40
C8-25 Observer I Time 2 msec
C8-26 Observer Gain 1.2
C8-27 Inv Rate Current 27 A
C8-28 DCCT Gain 0.918
C8-29 Phase SW Level 1.5
C8-30 Carrier in tune 2
C8-31 Tuning Mode Sel 0
D1-01 Reference 1 0 Hz
D1-02 Reference 2 0 Hz
D1-03 Reference 3 0 Hz
D1-04 Reference 4 0 Hz
D1-05 Reference 5 0 Hz
D1-06 Reference 6 0 Hz
D1-07 Reference 7 0 Hz
D1-08 Reference 8 0 Hz
D1-09 Jog Reference 6 Hz
D2-01 Ref Upper Limit 100 %
D2-02 Ref Lower Limit 0 %
D3-01 Jump freq 1 0 Hz
D3-02 Jump freq 2 0 Hz
D3-03 Jump freq 3 0 Hz
D3-04 Jump Bandwidth 1 Hz
D4-01 MOP Ref Memory 0
D4-02 Trim Control LvI 25 %
D5-01 Torq Control Sel 0
D5-02 Torq Ref Filter 0 msec
D5-03 Speed Limit Sel 1
E1-01 380 VAC
E1-03 VF
E1-04 666.7 Hz
E1-05 380 VAC
E1-06 295.0 Hz
E1-07 233.3 Hz
E1-08 300 VAC
E1-09 1.5 Hz
E1-10 10 VAC
E1-11 0.0 Hz
E1-12 0.0 VAC
E1-13 0.0 VAC
E2-01 37.5 A
E2-03 0.6 A
E2-05 0.29 Ω
H3-01 0
H3-02 220 %
 

La inicializacion se hace con 2 wires B1-02

Caracteristicas del Motor

Asynchronous Triphase Motor        
V = 220 380 380 380
Hz = 233 400 500 800
rpm = 7000 12000 15000 24000
KW (s1) = 9 15 15 6
A = 34 34 34 17.4
cos φ = 0.82      
η = 0.85      
poli = 4      

Terminales del Variador 616G5

Tipo No. Signal Name Function Signal Level Conexión I/O
Sequence input signals 1 Forward run/stop command Forward run when CLOSED; stopped when OPEN. 24 VDC, 8 mA Photocoupler isolation
2 Reverse run/stop command Reverse run when CLOSED; stopped when OPEN.
3 External fault input Fault when CLOSED; normal when OPEN.
4 Fault reset Reset when CLOSED
5 Multi-step speed reference 1 (Master/auxiliary switch) Auxiliary frequency reference when CLOSED.
6 Multi-step speed reference 2 Multi-step setting 2 when CLOSED.
7 Jog frequency reference Jog run when CLOSED.
8 External baseblock Inverter output stopped when CLOSED.
11 Sequence input common -
Analog input signals 15 15 V power output 15 V power supply for analog references 15 V (Max. current: 20 mA)
33 −15 V power output −15 V power supply for analog references −15 V (Max. current: 20 mA)
13 Master speed frequence reference −10 to 10 V/−100% to 100% 0 to 10 V/100% −10 to 10 V (20 kΩ),0 to 10 V (20 kΩ)
14 Master speed frequence reference 4 to 20 mA/100%, −10 to +10 V/−100% to 100% 0 to +10 V/100% 4 to 20 mA (250 Ω)
16 Multi-function analog input −10 to 10 V/−100% to 100% 0 to 10 V/100% −10 to 10 V (20 kΩ), 0 to 10 V (20 kΩ)
17 Control common - -
12 Shield wire, optional ground line connection point - -
Sequence output signals 9 Running signal (1NO contact) Operating when CLOSED. Dry contacts Contact capacity:1 A max. at 250 VAC 1 A max. at 30 VDC
10 Running signal (1NO contact) Operating when CLOSED. Dry contacts Contact capacity:1 A max. at 250 VAC 1 A max. at 30 VDC
25 Zero speed detection Zero level (b2-01) or below when CLOSED Open-collector output 50 mA max. at 48 V*
26 Speed agree detection Within ±2 Hz of set frequency when CLOSED. Open-collector output 50 mA max. at 48 V*
27 Open-collector output common - Open-collector output 50 mA max. at 48 V*
18 Fault output signal (SPDT) Fault when CLOSED across 18 and 20 Fault when OPEN across 19 and 20 Dry contacts Contact capacity: 1 A max.max at 250 VAC 1 A max. at 30 VDC
19 Fault output signal (SPDT) Fault when CLOSED across 18 and 20 Fault when OPEN across 19 and 20 Dry contacts Contact capacity: 1 A max.max at 250 VAC 1 A max. at 30 VDC
20 Fault output signal (SPDT) Fault when CLOSED across 18 and 20 Fault when OPEN across 19 and 20 Dry contacts Contact capacity: 1 A max.max at 250 VAC 1 A max. at 30 VDC
Analog output signals 21 Frequency output 0 to 10 V/100% frequency 0 to ± 10 V max. ± 5% 2 mA max.
22 Common - 0 to ± 10 V max. ± 5% 2 mA max.
23 Current monitor 5 V/Inverter’s rated current 0 to ± 10 V max. ± 5% 2 mA max.
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