ATV71HC16N4 SQUARE D, ATV71HC16N4 Datasheet

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ATV71HC16N4

Manufacturer Part Number
ATV71HC16N4
Description
SPEED DRIVE, 250HP, 460V, ATV71
Manufacturer
SQUARE D
Datasheet
Product data sheet
Characteristics
Complementary
Apr 1, 2012
Product destination
Power supply voltage limits
Power supply frequency
Power supply frequency limits
Speed range
Speed accuracy
Torque accuracy
ATV71HC16N4
variable speed drive ATV71 - 160KW 250HP -
480V - EMC filter
Main
Range of product
Product or component
type
Product specific appli-
cation
Component name
Motor power kW
Motor power hp
Motor cable length
Power supply voltage
Network number of
phases
Line current
EMC filter
Assembly style
Variant
Apparent power
Prospective line Isc
Nominal output current
Maximum transient cur-
rent
Speed drive output fre-
quency
Nominal switching fre-
quency
Switching frequency
Asynchronous motor
control profile
Type of polarization
Asynchronous motors
Synchronous motors
323...528 V
50...60 Hz (- 5...5 %)
47.5...63 Hz
1...100 for asynchronous motor in open-loop mode, without speed feedback
1...1000 for asynchronous motor in closed-loop mode with encoder feedback
1...50 for synchronous motor in open-loop mode, without speed feedback
+/- 0.01 % of nominal speed for 0.2 Tn to Tn torque variation in closed-loop mode
with encoder feedback
+/- 10 % of nominal slip for 0.2 Tn to Tn torque variation without speed feedback
+/- 15 % in open-loop mode, without speed feedback
+/- 5 % in closed-loop mode with encoder feedback
Altivar 71
Variable speed drive
Complex, high-power machines
ATV71
160 kW at 380...480 V 3 phases
250 hp at 380...480 V 3 phases
<= 100 m shielded cable
<= 200 m unshielded cable
380...480 V (- 15...10 %)
3 phases
233 A for 480 V 3 phases 160 kW / 250 hp
289 A for 380 V 3 phases 160 kW / 250 hp
Integrated
With heat sink
Reinforced version
190.2 kVA at 380 V 3 phases 160 kW / 250 hp
<= 50 kA, 3 phases
314 A at 2.5 kHz 380 V 3 phases 160 kW / 250 hp
314 A at 2.5 kHz 460 V 3 phases 160 kW / 250 hp
471 A for 60 s 3 phases 160 kW / 250 hp
518 A for 2 s 3 phases 160 kW / 250 hp
0.1...500 Hz
2.5 kHz
2.5...8 kHz adjustable
2.5...8 kHz with derating factor
ENA (Energy adaptation) system for unbalanced
loads
Flux vector control (FVC) with sensor (current vec-
tor)
Sensorless flux vector control (SFVC) (voltage or
current vector)
Voltage/Frequency ratio (2 or 5 points)
No impedance for Modbus
1

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ATV71HC16N4 Summary of contents

Page 1

... Product destination Power supply voltage limits Power supply frequency Power supply frequency limits Speed range Speed accuracy Torque accuracy Apr 1, 2012 ATV71HC16N4 variable speed drive ATV71 - 160KW 250HP - 480V - EMC filter Main Range of product Altivar 71 Product or component Variable speed drive type ...

Page 2

Transient overtorque Braking torque Synchronous motor control profile Regulation loop Motor slip compensation Diagnostic Output voltage Insulation Type of cable for mounting in an enclosure Electrical connection Tightening torque Supply Analogue input number Analogue input type Input sampling time Response ...

Page 3

Discrete input type Discrete input logic Acceleration and deceleration ramps Braking to standstill Protection type Insulation resistance Frequency resolution Communication port protocol Type of connector Physical interface Transmission frame Transmission rate Data format Number of addresses Method of access Marking ...

Page 4

Environment Noise level Dielectric strength Electromagnetic compatibility Standards Product certifications Pollution degree IP degree of protection Vibration resistance Shock resistance Relative humidity Ambient air temperature for operation Ambient air temperature for storage Operating altitude RoHS EUR status RoHS EUR conformity ...

Page 5

... Option cards: I/O extension cards, communication cards or "Controller Inside” programmable card. Dimensions with 2 Option Cards (1) Dimensions 440 392 350 Dimensions in in 17.32 15.43 13.78 (1) Option cards: I/O extension cards, communication cards or "Controller Inside” programmable card. ATV71HC16N4 350 920 150 13.78 36.22 5. 920 ...

Page 6

... To ensure proper air circulation in the drive: ● Fit ventilation grilles. ● Ensure that there is sufficient ventilation. If there is not, install a forced ventilation unit with a filter. The openings and/or fans must provide a flow rate at least equal to that of the drive fans (refer to the product characteristics). 6 ATV71HC16N4 X1 in in. 5. in. 5.91 ...

Page 7

Use special filters with IP 54 protection. ● Remove the blanking cover from the top of the drive. Dust and Damp Proof Metal Enclosure (IP 54) The drive must be mounted in a dust and damp proof enclosure in ...

Page 8

... All terminals are located at the bottom of the drive. Fit interference suppressors on all inductive circuits near the drive or connected on the same circuit, such as relays, contactors, solenoid valves, fluorescent lighting, etc. Wiring Diagram Conforming to Standards EN 954-1 Category 1, IEC/EN 61508 Capacity SIL1, in Stopping Category 0 According to IEC/EN 60204-1 8 ATV71HC16N4 ...

Page 9

Three-Phase Power Supply with Downstream Breaking via Switch Disconnector A1 ATV71 drive L1 DC choke Q1 Circuit-breaker Q2 Switch disconnector (Vario) (1) Line choke (three-phase), mandatory for ATV71HC11Y…HC63Y drives (except when a special transformer is used (12-pulse)). (2) For ATV71HC40N4 ...

Page 10

... ATV71 drive A2 Preventa XPS AC safety module for monitoring emergency stops and switches. One safety module can manage the “Power Removal” function for several drives on the same machine. In this case, each drive must connect its PWR terminal to its + 24 V via the safety contacts on the XPS  ...

Page 11

... ATV71 drive A2 Preventa XPS ATE safety module for monitoring emergency stops and switches. One safety module can manage the "Power Removal” (5) safety function for several drives on the same machine. In this case the time delay must be adjusted on the drive controlling the motor that requires the longest stopping time. In addition, each drive must connect its PWR terminal to its + 24  ...

Page 12

... Product data sheet Performance Curves Derating Curves The derating curves for the drive nominal current (In) depend on the temperature and the switching frequency. For intermediate temperatures (e.g. 55°C), interpolate between 2 curves. X Switching frequency 12 ATV71HC16N4 ...

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