Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC
Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC

Schneider ATV310H075N4E, Easy Altivar 310, heavy duty, 0.75kW, 1hp, 380 to 460V, without EMC

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SKU
ATV310H075N4E
Special Price ₹9,436.16 Regular Price ₹29,488.00
(18% GST Extra)
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  • Meet the requirements of directives regarding the protection of the environment (RoHS, WEEE)
  • Designed with an increased adaptability to motors and tough loads
  • Embedded U/F and sensorless vector control
  • Easy to install
  • Easy to commission
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Spec Table Template
Main
Range of product Easy Altivar 310
Product or component type Variable speed drive
Product specific application Simple machine
Assembly style With heat sink
Device short name ATV310
Network number of phases Three phase
[Us] rated supply voltage 380...460 V - 15...10 %
Motor power kW 0.75 kW for heavy duty
Motor power hp 1 hp for heavy duty
Complementary
Quantity per set Set of 1
EMC filter Without EMC filter
Type of cooling Self-cooled
Communication port protocol Modbus
Connector type RJ45 (on front face) for Modbus
Physical interface 2-wire RS 485 for Modbus
Transmission frame RTU for Modbus
Transmission rate 4800 bit/s
9600 bit/s
19200 bit/s
38400 bit/s
Number of addresses 1…247 for Modbus
Communication service Read holding registers (03) 29 words
Write single register (06) 29 words
Write multiple registers (16) 27 words
Read/write multiple registers (23) 4/4 words
Read device identification (43)
Line current 3.5 A at 380 V (heavy duty)
3.1 A at 460 V (heavy duty)
Apparent power 2.5 kVA at 460 V (heavy duty)
Prospective line Isc 5 kA (heavy duty)
Continuous output current 2.3 A heavy duty
Maximum transient current 3.5 A during 60 s (heavy duty)
Power dissipation in W 34.1 W, at In (heavy duty)
Speed drive output frequency 0.5…400 Hz
Nominal switching frequency 4 kHz
Switching frequency 2...12 kHz adjustable
Speed range 1…20 for asynchronous motor
Transient overtorque 170…200 % of nominal motor torque depending on drive rating and type of motor
Braking torque Up to 70 % of nominal motor torque without braking resistor
Asynchronous motor control profile Voltage/frequency ratio (V/f)
Voltage/frequency ratio - Energy Saving, quadratic U/f
Sensorless vector control (SVC)
Motor slip compensation Adjustable
Output voltage 380...460 V three phase
Electrical connection Terminal, clamping capacity: 1.5...2.5 mm², AWG 16...AWG 14 (L1, L2, L3, U, V, W)
Tightening torque 0.8…1 N.m
Insulation Electrical between power and control
Supply Internal supply for reference potentiometer: 5 V (4.75…5.25 V) DC, <10 mA with overload and short-circuit protection

Internal supply for logic inputs: 24 V (20.4…28.8 V) DC, <100 mA with overload and short-circuit protection
Analogue input number 1
Analogue input type Configurable current AI1 0...20 mA 250 Ohm
Configurable voltage AI1 0...10 V 30 kOhm
Configurable voltage AI1 0...5 V 30 kOhm
Discrete input number 4
Discrete input type Programmable LI1...LI4 24 V 18...30 V
Discrete input logic Negative logic (sink), > 16 V (state 0), < 10 V (state 1), input impedance 3.5 kOhm

Positive logic (source), 0...< 5 V (state 0), > 11 V (state 1)
Sampling duration 10 ms for analogue input
20 ms, tolerance +/- 1 ms for logic input
Linearity error +/- 0.3 % of maximum value for analogue input
Analogue output number 1
Analogue output type AO1 software-configurable voltage: 0...10 V AC, 0…0.02 A, impedance: 470 Ohm, resolution 8 bits

AO1 software-configurable current: 0...20 mA, impedance: 800 Ohm, resolution 8 bits
Discrete output number 2
Discrete output type Logic output LO+, LO-
Protected relay output R1A, R1B, R1C 1 C/O
Minimum switching current 5 mA at 24 V DC for logic relay
Maximum switching current 2 A at 250 V AC on inductive load cos phi = 0.4 L/R = 7 ms
2 A at 30 V DC on inductive load cos phi = 0.4 L/R = 7 ms
3 A at 250 V AC on resistive load cos phi = 1 L/R = 0 ms
4 A at 30 V DC on resistive load cos phi = 1 L/R = 0 ms
Acceleration and deceleration ramps Linear from 0...999.9 s
Braking to standstill By DC injection, <30 s
Protection type Line supply overvoltage
Line supply undervoltage
Overcurrent between output phases and earth
Overheating protection
Short-circuit between motor phases
Against input phase loss in three-phase
Thermal motor protection via the drive by continuous calculation of I²t
Frequency resolution Analog input: converter A/D, 10 bits
Display unit: 0.1 Hz
Time constant 20 ms +/- 1 ms for reference change
Operating position Vertical +/- 10 degree
Height 143 mm
Width 72 mm
Depth 140 mm

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