Schneider ATV930D55N4
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Description
range of product | Altivar Process ATV900 |
---|---|
Device application | Industrial application |
Product or component type | Variable speed drive |
Product destination | Asynchronous motors Synchronous motors |
Product specific application | Process for industrial |
variant | With braking chopper Standard version |
Network number of phases | 3 phases |
Mounting mode | Wall mount |
communication port protocol | EtherNet/IP Modbus TCP Modbus serial |
[Us] rated supply voltage | 380…480 V – 15…10 % |
Motor power kW | 55.0 kW for normal duty 45.0 kW for heavy duty |
Motor power hp | 75.0 hp for normal duty 60.0 hp for heavy duty |
Continuous output current | 106 A at 2.5 kHz for normal duty 88 A at 2.5 kHz for heavy duty |
EMC filter | Integrated With EMC plate option |
IP degree of protection | IP21 |
Degree of protection | UL type 1 |
option module | Slot A: communication module for Profibus DP V1 Slot A: communication module for PROFINET Slot A: communication module for DeviceNet Slot A: communication module for EtherCAT Slot A: communication module for CANopen daisy chain RJ45 Slot A: communication module for CANopen SUB-D 9 Slot A: communication module for CANopen screw terminals Slot A/slot B/slot C: digital and analog I/O extension module Slot A/slot B/slot C: output relay extension module Slot B: 5/12 V digital encoder interface module Slot B: analog encoder interface module Slot B: resolver encoder interface module communication module for Ethernet Powerlink |
Discrete input logic | 16 preset speeds |
Asynchronous motor control profile | Constant torque standard Optimized torque mode Variable torque standard |
Synchronous motor control profile | Permanent magnet motor Synchronous reluctance motor |
Maximum output frequency | 599 Hz |
Switching frequency | 1…8 kHz adjustable 2.5…8 kHz with derating factor |
Nominal switching frequency | 2.5 kHz |
Line current | 97.2 A at 380 V (normal duty) 81.4 A at 380 V (heavy duty) 84.2 A at 480 V (normal duty) 71.8 A at 480 V (heavy duty) |
Apparent power | 70 kVA at 480 V (normal duty) 59.7 kVA at 480 V (heavy duty) |
Maximum transient current | 127.2 A during 60 s (normal duty) 132 A during 60 s (heavy duty) |
Network frequency | 50…60 Hz |
Prospective line Isc | 50 kA |
Discrete input number | 10 |
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Discrete input type | DI1…DI8 programmable, 24 V DC (<= 30 V), impedance: 3.5 kOhm DI7, DI8 programmable as pulse input: 0…30 kHz, 24 V DC (<= 30 V) STOA, STOB safe torque off, 24 V DC (<= 30 V), impedance: > 2.2 kOhm |
Discrete output number | 2 |
Discrete output type | Logic output DQ+ 0…1 kHz <= 30 V DC 100 mA Programmable as pulse output DQ+ 0…30 kHz <= 30 V DC 20 mA Logic output DQ- 0…1 kHz <= 30 V DC 100 mA |
Analogue input number | 3 |
Analogue input type | AI1, AI2, AI3 software-configurable voltage: 0…10 V DC, impedance: 30 kOhm, resolution 12 bits AI1, AI2, AI3 software-configurable current: 0…20 mA/4…20 mA, impedance: 250 Ohm, resolution 12 bits |
Analogue output number | 2 |
Analogue output type | Software-configurable voltage AQ1, AQ2: 0…10 V DC impedance 470 Ohm, resolution 10 bits Software-configurable current AQ1, AQ2: 0…20 mA impedance 500 Ohm, resolution 10 bits |
Relay output number | 3 |
Relay output type | Configurable relay logic R1: fault relay NO/NC electrical durability 100000 cycles Configurable relay logic R2: sequence relay NO electrical durability 1000000 cycles Configurable relay logic R3: sequence relay NO electrical durability 1000000 cycles |
Maximum switching current | Relay output R1 on resistive load, cos phi = 1: 3 A at 250 V AC Relay output R1 on resistive load, cos phi = 1: 3 A at 30 V DC Relay output R1 on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 250 V AC Relay output R1 on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 30 V DC Relay output R2, R3 on resistive load, cos phi = 1: 5 A at 250 V AC Relay output R2, R3 on resistive load, cos phi = 1: 5 A at 30 V DC Relay output R2, R3 on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 250 V AC Relay output R2, R3 on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 30 V DC |
Minimum switching current | Relay output R1, R2, R3: 5 mA at 24 V DC |
physical interface | Ethernet 2-wire RS 485 |
Connector type | 2 RJ45 1 RJ45 |
Method of access | Slave Modbus TCP |
Transmission rate | 10, 100 Mbits 4.8 kbps 9600 bit/s 19200 bit/s |
Transmission frame | RTU |
Number of addresses | 1…247 |
Data format | 8 bits, configurable odd, even or no parity |
type of polarization | No impedance |
4 quadrant operation possible | True |
Acceleration and deceleration ramps | Linear adjustable separately from 0.01…9999 s |
Motor slip compensation | Automatic whatever the load Not available in permanent magnet motor law Can be suppressed Adjustable |
Braking to standstill | By DC injection |
Brake chopper integrated | True |
Maximum input current | 97.2 A |
Maximum output voltage | 480.0 V |
Relative symmetric network frequency tolerance | 5 % |
Base load current at high overload | 88.0 A |
Base load current at low overload | 106.0 A |
Power dissipation in W | Natural convection: 131 W at 380 V, switching frequency 2.5 kHz Forced convection: 917 W at 380 V, switching frequency 2.5 kHz |
With safety function Safely Limited Speed (SLS) | True |
With safety function Safe brake management (SBC/SBT) | True |
With safety function Safe Operating Stop (SOS) | False |
With safety function Safe Position (SP) | False |
With safety function Safe programmable logic | False |
With safety function Safe Speed Monitor (SSM) | False |
With safety function Safe Stop 1 (SS1) | True |
With sft fct Safe Stop 2 (SS2) | False |
With safety function Safe torque off (STO) | True |
With safety function Safely Limited Position (SLP) | False |
With safety function Safe Direction (SDI) | False |
Protection type | Thermal protection: motor Safe torque off: motor Motor phase break: motor Thermal protection: drive Safe torque off: drive Overheating: drive Overcurrent between output phases and earth: drive Overload of output voltage: drive Short-circuit protection: drive Motor phase break: drive Overvoltages on the DC bus: drive Line supply overvoltage: drive Line supply undervoltage: drive Line supply phase loss: drive Overspeed: drive Break on the control circuit: drive |