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ATV12H055M2

5/5 - (5 votes)

variable speed drive ATV12 – 0.55kW – 0.75hp – 200..240V – 1ph – with heat sink

Local distributor code:
392951579

Main documents

Main
Range of productAltivar 12
product or component typeVariable speed drive
Product specific applicationSimple machine
mounting modeCabinet mount
Communication port protocolModbus
Supply frequency50/60 Hz +/- 5 %
[Us] rated supply voltage200…240 V – 15…10 %
Nominal output current3.5 A
Motor power hp0.75 hp
Motor power kW0.55 kW
Motor power hp0.75 hp
EMC filterIntegrated
IP degree of protectionIP20
Complementary
Discrete input number4
Discrete output number2
Analogue input number1
Analogue output number1
Relay output number1
Physical interface2-wire RS 485
Connector type1 RJ45
Continuous output current3.5 A at 4 kHz
Method of accessServer Modbus serial
Speed drive output frequency0.5…400 Hz
Speed range1…20
Sampling duration20 ms, tolerance +/- 1 ms for logic input
10 ms for analogue input
Linearity error+/- 0.3 % of maximum value for analogue input
Frequency resolutionAnalog input: converter A/D, 10 bits
Display unit: 0.1 Hz
Time constant20 ms +/- 1 ms for reference change
Transmission rate9.6 kbit/s
19.2 kbit/s
38.4 kbit/s
Transmission frameRTU
Number of addresses1…247
Data format8 bits, configurable odd, even or no parity
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)
Type of polarizationNo impedance
4 quadrant operation possibleFalse
Asynchronous motor control profileVoltage/frequency ratio (V/f)
Quadratic voltage/frequency ratio
Sensorless flux vector control
Maximum output frequency4 kHz
Transient overtorque150…170 % of nominal motor torque depending on drive rating and type of motor
Acceleration and deceleration rampsLinear from 0 to 999.9 s
S
U
Motor slip compensationPreset in factory
Adjustable
Switching frequency2…16 kHz adjustable
4…16 kHz with derating factor
Nominal switching frequency4 kHz
Braking to standstillBy DC injection
Brake chopper integratedFalse
Line current8.0 A at 100 V (heavy duty)
6.7 A at 120 V (heavy duty)
Maximum input current6.7 A
Maximum output voltage240 V
Apparent power1.6 kVA at 240 V (heavy duty)
Maximum transient current5.3 A during 60 s (heavy duty)
5.8 A during 2 s (heavy duty)
Network frequency50…60 Hz
Relative symmetric network frequency tolerance5 %
Prospective line Isc1 kA
Base load current at high overload3.5 A
Power dissipation in WNatural: 34.0 W
With safety function Safely Limited Speed (SLS)False
With safety function Safe brake management (SBC/SBT)False
With safety function Safe Operating Stop (SOS)False
With safety function Safe Position (SP)False
With safety function Safe programmable logicFalse
With safety function Safe Speed Monitor (SSM)False
With safety function Safe Stop 1 (SS1)False
With sft fct Safe Stop 2 (SS2)False
With safety function Safe torque off (STO)False
With safety function Safely Limited Position (SLP)False
With safety function Safe Direction (SDI)False
Protection typeLine 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
Tightening torque0.8 N.m
InsulationElectrical between power and control
Quantity per setSet of 1
Width72 mm
Height143 mm
Depth131.2 mm
net weight0.8 kg
Environment
Operating altitude> 1000…2000 m with current derating 1 % per 100 m
<= 1000 m without derating
Operating positionVertical +/- 10 degree
Product certificationsNOM
CSA
C-Tick
UL
GOST
RCM
KC
markingCE
StandardsUL 508C
UL 618000-5-1
IEC 61800-5-1
IEC 61800-3
Assembly styleWith heat sink
Electromagnetic compatibilityElectrical fast transient/burst immunity test level 4 conforming to IEC 61000-4-4
Electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2
Immunity to conducted disturbances level 3 conforming to IEC 61000-4-6
Radiated radio-frequency electromagnetic field immunity test level 3 conforming to IEC 61000-4-3
Surge immunity test level 3 conforming to IEC 61000-4-5
Voltage dips and interruptions immunity test conforming to IEC 61000-4-11
Environmental class (during operation)Class 3C3 according to IEC 60721-3-3
Class 3S2 according to IEC 60721-3-3
Maximum acceleration under shock impact (during operation)150 m/s² at 11 ms
Maximum acceleration under vibrational stress (during operation)10 m/s² at 13…200 Hz
Maximum deflection under vibratory load (during operation)1.5 mm at 2…13 Hz
Overvoltage categoryClass III
Regulation loopAdjustable PID regulator
Electromagnetic emissionRadiated emissions environment 1 category C2 conforming to IEC 61800-3 2…16 kHz shielded motor cable
Conducted emissions with integrated EMC filter environment 1 category C1 conforming to IEC 61800-3 2, 4, 8, 12 and 16 kHz shielded motor cable <5 m
Conducted emissions with integrated EMC filter environment 1 category C2 conforming to IEC 61800-3 2…12 kHz shielded motor cable <5 m
Conducted emissions with integrated EMC filter environment 1 category C2 conforming to IEC 61800-3 2, 4 and 16 kHz shielded motor cable <10 m
Conducted emissions with additional EMC filter environment 1 category C1 conforming to IEC 61800-3 4…12 kHz shielded motor cable <20 m
Conducted emissions with additional EMC filter environment 1 category C2 conforming to IEC 61800-3 4…12 kHz shielded motor cable <50 m
Conducted emissions with additional EMC filter environment 2 category C3 conforming to IEC 61800-3 4…12 kHz shielded motor cable <50 m
Vibration resistance1 gn (f = 13…200 Hz) conforming to IEC 60068-2-6
1.5 mm peak to peak (f = 3…13 Hz) – drive unmounted on symmetrical DIN rail – conforming to IEC 60068-2-6
Shock resistance15 gn conforming to IEC 60068-2-27 for 11 ms
Relative humidity5…95 % without condensation conforming to IEC 60068-2-3
5…95 % without dripping water conforming to IEC 60068-2-3
Noise level0 dB
Pollution degree2
Ambient air transport temperature-25…70 °C
Ambient air temperature for operation-10…40 °C without derating
40…60 °C with current derating 2.2 % per °C
ambient air temperature for storage-25…70 °C
Packing Units
Unit Type of Package 1PCE
Number of Units in Package 11
Package 1 Height10.600 cm
Package 1 Width18.600 cm
Package 1 Length18.600 cm
Package 1 Weight1.117 kg
Unit Type of Package 2P06
Number of Units in Package 245
Package 2 Height73.500 cm
Package 2 Width60.000 cm
Package 2 Length80.000 cm
Package 2 Weight63.310 kg
Product Description

Schneider Driver

Frequently Asked Questions

A soft starter continuously controls the motor's voltage supply during the start-up phase. By adjusting the motor to the machine's load behavior, it ensures that mechanical operating equipment accelerates smoothly. This gradual acceleration lengthens the service life of the equipment, improves operating behavior, and smooths workflows, leading to more efficient and reliable operations.

A Schneider Electric drive, often referred to as a variable frequency drive (VFD) or variable speed drive (VSD), is an advanced device used to control the speed and torque of electric motors. These drives are integral components in modern industrial automation, providing precise motor control, energy efficiency, and enhanced operational performance.

✅ The primary difference between a Variable Frequency Drive (VFD) and a soft starter is their functionality. A VFD can vary the speed of a motor, providing precise control over its operation, while a soft starter only controls the starting and stopping phases of the motor. When considering an application, soft starters are typically more cost-effective and compact. However, if speed control is required, a VFD is the better choice.

✅ The primary difference between a Variable Frequency Drive (VFD) and a soft starter is their functionality. A VFD can vary the speed of a motor, providing precise control over its operation, while a soft starter only controls the starting and stopping phases of the motor. When considering an application, soft starters are typically more cost-effective and compact. However, if speed control is required, a VFD is the better choice.

Essentially, a Variable Frequency Drive (VFD) functions as a soft starter with added speed control capabilities. If your application requires speed variation, a VFD is the ideal choice. However, if you only need to control the inrush of current during startup and prefer a smaller, more cost-effective device, a soft starter is the better option.

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