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ATV310H037N4E variable speed drive ATV310 - 0.37 kW - 0.5 hp - 380...460 V - 3 phase

In Stock (5 items)
AED1,050.00 AED800.00

ATV310H037N4E variable speed drive ATV310 - 0.37 kW - 0.5 hp - 380...460 V - 3 phase Read more

Range of productEasy Altivar 310
product or component typeVariable speed drive
Product specific applicationSimple machine
Assembly styleWith heat sink
Device short nameATV310
Network number of phasesThree phase
[Us] rated supply voltage380...460 V - 15...10 %
Motor power kW0.37 kW for heavy duty
Motor power hp0.5 hp for heavy duty
Complementary
Quantity per setSet of 1
EMC filterWithout EMC filter
Type of coolingSelf-cooled
Communication port protocolModbus
Connector typeRJ45 (on front face) for Modbus
Physical interface2-wire RS 485 for Modbus
Transmission frameRTU for Modbus
Transmission rate4800 bit/s
9600 bit/s
19200 bit/s
38400 bit/s
Number of addresses1…247 for Modbus
Communication serviceRead 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 current2.1 A at 380 V (heavy duty)
1.8 A at 460 V (heavy duty)
Apparent power1.4 kVA at 460 V (heavy duty)
Prospective line Isc5 kA ( heavy duty )
Continuous output current1.5 A heavy duty
Maximum transient current2.3 A during 60 s (heavy duty)
Power dissipation in W22.7 W, at In (heavy duty)
Speed drive output frequency0.5…400 Hz
Nominal switching frequency4 kHz
Switching frequency2...12 kHz adjustable
Speed range1…20 for asynchronous motor
Transient overtorque170…200 % of nominal motor torque depending on drive rating and type of motor
Braking torqueUp to 70 % of nominal motor torque without braking resistor
Asynchronous motor control profileVoltage/frequency ratio (V/f)
Voltage/frequency ratio - Energy Saving, quadratic U/f
Sensorless vector control (SVC)
Motor slip compensationAdjustable
Output voltage380...460 V three phase
Electrical connectionTerminal, clamping capacity: 1.5...2.5 mm?2;, AWG 16...AWG 14 (L1, L2, L3, U, V, W)
Tightening torque0.8…1 N.m
InsulationElectrical between power and control
SupplyInternal supply for reference potentiometer: 5 V (4.75…5.25 V)DC, <10> Internal supply for logic inputs: 24 V (20.4…28.8 V)DC, <100>
Analogue input number1
Analogue input typeConfigurable 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 number4
Discrete input typeProgrammable LI1...LI4 24 V 18...30 V
Discrete input logicNegative logic (sink), > 16 V (state 0), < 10> Positive logic (source), 0...< 5> 11 V (state 1)
Sampling duration10 ms for analogue input
20 ms, tolerance +/- 1 ms for logic input
Linearity error+/- 0.3 % of maximum value for analogue input
Analogue output number1
Analogue output typeAO1 software-configurable voltage: 0...10 V AC 0...10 V 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 number2
Discrete output typeLogic output LO+, LO-
Protected relay output R1A, R1B, R1C 1 C/O
Minimum switching current5 mA at 24 V DC for logic relay
Maximum switching current2 A at 250 V AC on inductive load cos phi = 0.4 L/R = 7 ms for logic relay
2 A at 30 V DC on inductive load cos phi = 0.4 L/R = 7 ms for logic relay
3 A at 250 V AC on resistive load cos phi = 1 L/R = 0 ms for logic relay
4 A at 30 V DC on resistive load cos phi = 1 L/R = 0 ms for logic relay
Acceleration and deceleration rampsLinear from 0...999.9 s
S
U
Specifications Descriptions
No Specifications

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