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ATV930D55N4

Variable speed drive, ATV930, 55kW, 400/480V, with braking unit, IP21

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درایو  ATV930D55N4 اشنایدر .

Variable Speed Drive for conveyors, cranes or mills, among others, up to 1200kW

Part of Altivar

Altivar Process ATV900 Drives with embedded services, high performance motor control, safety and application functionality to meet demanding applications including conveyors, cranes, mills and more in the Process Industry. Ideal for segments such as Mining & Metals, Oil & Gas, Food & Beverage and Hoisting, from 0.75kW to 1200kW.

Features

Altivar Process is a Services Oriented Drive designed to reduce OPEX in Process & Utilities installations.
ATV900 is a range of ready-to-order drives and custom engineered drives focused on maximum productivity, with exceptional motor control and connectivity capabilities.Altivar Process is the first Services Oriented Drive with:
• Embedded Power measurement and Energy dashboard
• Embedded process monitoring and control
• Low Harmonics (THDi < 48% at 80% load or THDi < 5% with low harmonic offer)
• Stop and Go function to reduce energy consumption in standby mode
• Asset monitoring and protection
• Drift monitoring
• Easy maintenance via a Dynamic QR-Code
• Seamless integration with embedded Ethernet:
o From device to process control with the Smart Process Object
o From data to insights with the embedded Web ServerCustom Engineered Drives:
• Proven technical cooling and harmonics solutions
• Modular and compact design
• Easy grid integration
• Embedded Control (PLC, RTU, HMI)
• A full set of control options
• Fully load tested in a controlled laboratory environment
• Complies with your country’s industry standards

Benefits

Services Oriented Drives
This new concept in drives meets the major needs of energy intensive process and utilities in terms of equipment efficiency and Total Cost of Ownership by supporting energy management, asset management and also the overall performance of the process.
• Sustainable cost savings thanks to predictive condition-based maintenance
• Up to 20% downtime reduction without additional investment

Process Efficiency

The Altivar Process ATV900 is focused on maximizing motor performance and enabling connectivity
• Excellent motor performance on any type of  motor in open or closed loop control
• Dual port Ethernet maximizes services such as connection to the control room and full process transparency
• Network service ensures operational continuity even in the instance of a connection breakdown
• Web server and data logging help reduce downtime through fast troubleshooting and preventive maintenanceComplete Control of your Applications
• Maximize your application performance by using the Drive-to-Drive communication: total control of any kind of coupling in master/slave applications.
• Total management and flexibility of speed and torque on rigid and elastic belt couplings
• Asset protection functions to increase production and reduce downtimeReal Time Intelligence
Web server and services via Ethernet

• Embedded web server interface based on the Ethernet network gives you process monitoring with your daily working tools
• Local and remote access to energy use and customized dashboards means your energy is visible anywhere, any time, on PC, tablet or smartphone.Custom Engineered Drives
Schneider Electric’s expertise in design and application services delivers solution-specific designs dedicated to your process requirements for seamless plant integration.
• Minimize design and delivery risks
• Reduces the commissioning and adaptation timeEnhanced Drives Specifications
Compact and modular, suitable even in harsh environments, Altivar Process is ideal for upgrades, retrofits, or new installations.
• Withstands harsh conditions of use, both from an electrical and environmental perspectiveRegenerative Functionality
The ATV980 Regenerative Drive Systems help improve efficiency by feeding back the drive’s energy to the mains.
• Ready-to-connect drives enclosure in which generator operating states can occur
• A 4-quadrant drive with shock-free changes from motor to generator operation
• Adaptable to individual requestsBraking Functionality
Braking resistors allow Altivar Process drives to operate while braking to a standstill, by dissipating the braking energy. They enable maximum transient braking torque.
• Located outside of the enclosure, without inhibiting natural cooling
• Braking units provide IP20 and IP23 protection and thermal protection is given by an integrated temperature probe

Applications

Altivar Process ATV900 drives have been specifically designed for industrial processes, such as:
O&G: Electrical submersible pumps, progressive cavity pumps, rod pumps, mud pumps, rotary table/ top drive, draw works and regasification compressors and refinery fans
MMM : Stackers/reclaimers, mills/kilns, crushers, grinders, mixers, conveyors, special cranes and ship loaders
F&B: Dairy beverage and agribusiness applications including conveyors, mixers shredders, centrifuges and hot rotary dryers
WWW: Decanters in various water and wastewater applications
سوالات متداول
مشخصات فنی
Main
range of product
Altivar Process ATV900
product or component type
Variable speed drive
device application
Industrial application
device short name
ATV930
variant
With braking chopper
Standard version
product destination
Asynchronous motors
Synchronous motors
EMC filter
Integrated with 150 m conforming to EN/IEC 61800-3 category C3
IP degree of protection
IP21 conforming to IEC 61800-5-1
IP21 conforming to IEC 60529
degree of protection
UL type 1 conforming to UL 508C
type of cooling
Forced convection
supply frequency
50…60 Hz +/- 5 %
network number of phases
3 phases
[Us] rated supply voltage
380…480 V – 15…10 %
motor power kW
55 kW (normal duty)
45 kW (heavy duty)
motor power hp
75 hp normal duty
60 hp heavy duty
line current
97.2 A at 380 V (normal duty)
84.2 A at 480 V (normal duty)
81.4 A at 380 V (heavy duty)
71.8 A at 480 V (heavy duty)
prospective line Isc
50 kA
apparent power
70 kVA at 480 V (normal duty)
59.7 kVA at 480 V (heavy duty)
continuous output current
106 A at 2.5 kHz for normal duty
88 A at 2.5 kHz for heavy duty
maximum transient current
127.2 A during 60 s (normal duty)
132 A during 60 s (heavy duty)
asynchronous motor control profile
Constant torque standard
Optimized torque mode
Variable torque standard
synchronous motor control profile
Permanent magnet motor
Synchronous reluctance motor
speed drive output frequency
0.1…599 Hz
nominal switching frequency
2.5 kHz
switching frequency
1…8 kHz adjustable
2.5…8 kHz with derating factor
safety function
STO (safe torque off) SIL 3
number of preset speeds
16 preset speeds
communication port protocol
Ethernet/IP
Modbus TCP
Modbus serial
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
Complementary
output voltage
<= power supply voltage
motor slip compensation
Automatic whatever the load
Not available in permanent magnet motor law
Can be suppressed
Adjustable
acceleration and deceleration ramps
Linear adjustable separately from 0.01…9999 s
braking to standstill
By DC injection
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
frequency resolution
Display unit: 0.1 Hz
Analog input: 0.012/50 Hz
electrical connection
Control: screw terminal0.5…1.5 mm²/AWG 20…AWG 16
Line side: screw terminal70…120 mm²/AWG 1/0…250 kcmil
Motor: screw terminal70…120 mm²/AWG 1/0…250 kcmil
DC bus: screw terminal70…120 mm²/AWG 1/0…250 kcmil
connector type
2 RJ45 for Ethernet IP/Modbus TCP on the control block
1 RJ45 for Modbus serial on the control block
physical interface
2-wire RS 485 for Modbus serial
transmission frame
RTU for Modbus serial
transmission rate
10/100 Mbit/s for Ethernet IP/Modbus TCP
4.8, 9.6, 19.2, 38.4 kbit/s for Modbus serial
exchange mode
Half duplex, full duplex, autonegotiation Ethernet IP/Modbus TCP
data format
8 bits, configurable odd, even or no parity for Modbus serial
type of polarization
No impedance for Modbus serial
number of addresses
1…247 for Modbus serial
method of access
Slave Modbus TCP
supply
External supply for digital inputs: 24 V DC (19…30 V), <1.25 mA, protection type: overload and short-circuit protection
Internal supply for reference potentiometer (1 to 10 kOhm): 10.5 V DC +/- 5 %, <10 mA, protection type: overload and short-circuit protection
Internal supply for digital inputs and STO: 24 V DC (21…27 V), <200 mA, protection type: overload and short-circuit protection
local signalling
Local diagnostic: 3 LED (mono/dual colour)
Embedded communication status: 5 LED (dual colour)
Communication module status: 2 LED (dual colour)
Presence of voltage: 1 LED (red)
width
290 mm
height
922 mm
depth
325.5 mm
net weight
57.5 kg
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
discrete input number
10
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
input compatibility
DI1…DI8: discrete input level 1 PLC conforming to EN/IEC 61131-2
DI7, DI8: pulse input level 1 PLC conforming to IEC 65A-68
STOA, STOB: discrete input level 1 PLC conforming to EN/IEC 61131-2
discrete input logic
Positive logic (source) (DI1…DI8), < 5 V (state 0), > 11 V (state 1)
Negative logic (sink) (DI1…DI8), > 16 V (state 0), < 10 V (state 1)
Positive logic (source) (DI7, DI8), < 0.6 V (state 0), > 2.5 V (state 1)
Positive logic (source) (STOA, STOB), < 5 V (state 0), > 11 V (state 1)
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
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
sampling duration
2 ms +/- 0.5 ms (DI1…DI8) – discrete input
5 ms +/- 1 ms (DI7, DI8) – pulse input
1 ms +/- 1 ms (AI1, AI2, AI3) – analog input
5 ms +/- 1 ms (AQ1, AQ2) – analog output
accuracy
+/- 0.6 % AI1, AI2, AI3 for a temperature variation 60 °C analog input
+/- 1 % AQ1, AQ2 for a temperature variation 60 °C analog output
linearity error
AI1, AI2, AI3: +/- 0.15 % of maximum value for analog input
AQ1, AQ2: +/- 0.2 % for analog output
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
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
refresh time
Relay output (R1, R2, R3): 5 ms (+/- 0.5 ms)
minimum switching current
Relay output R1, R2, R3: 5 mA at 24 V DC
isolation
Between power and control terminals
Variable speed drive application selection
Mixer Food and beverage processing
Conveyor Food and beverage processing
Shredder Food and beverage processing
Process crane Hoisting
Thruster Marine
Winch Marine
Press Material working (wood, ceramic, stone, pvc, metal)
Extruder Material working (wood, ceramic, stone, pvc, metal)
Other application Mining mineral and metal
Drilling rig Oil and gas
Progressive cavity pump Oil and gas
Rod pump Oil and gas
Swapping pump Oil and gas
Compressor for regasification Oil and gas
Separator Oil and gas
Other application Oil and gas
Separator Water and waste water
power range
55…100 kW at 200…240 V 3 phases
mounting mode
Wall mount
Environment
insulation resistance
> 1 MOhm 500 V DC for 1 minute to earth
noise level
68.3 dB conforming to 86/188/EEC
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
vibration resistance
1.5 mm peak to peak (f= 2…13 Hz) conforming to IEC 60068-2-6
1 gn (f= 13…200 Hz) conforming to IEC 60068-2-6
shock resistance
15 gn for 11 ms conforming to IEC 60068-2-27
volume of cooling air
295 m3/h
operating position
Vertical +/- 10 degree
maximum THDI
<48 % from 80…100 % of load conforming to IEC 61000-3-12
electromagnetic compatibility
Electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2
Radiated radio-frequency electromagnetic field immunity test level 3 conforming to IEC 61000-4-3
Electrical fast transient/burst immunity test level 4 conforming to IEC 61000-4-4
1.2/50 µs – 8/20 µs surge immunity test level 3 conforming to IEC 61000-4-5
Conducted radio-frequency immunity test level 3 conforming to IEC 61000-4-6
environmental characteristic
Chemical pollution resistance class 3C3 conforming to EN/IEC 60721-3-3
Dust pollution resistance class 3S3 conforming to EN/IEC 60721-3-3
pollution degree
2 conforming to EN/IEC 61800-5-1
relative humidity
5…95 % without condensation conforming to IEC 60068-2-3
ambient air temperature for operation
-15…50 °C (without derating)
50…60 °C (with derating factor)
ambient air temperature for storage
-40…70 °C
operating altitude
<= 1000 m without derating
1000…4800 m with current derating 1 % per 100 m
standards
UL 508C
EN/IEC 61800-3
Environment 1 category C2 EN/IEC 61800-3
Environment 2 category C3 EN/IEC 61800-3
EN/IEC 61800-5-1
IEC 61000-3-12
IEC 60721-3
IEC 61508
IEC 13849-1
product certifications
REACH
CSA
UL
TÜV
marking
CE
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