เพิ่มประสิทธิภาพการสตาร์ทมอเตอร์ ด้วย Torque Control / Voltage control
ติดตั้งใช้งานง่ายด้วย Internal bypass
หน้าจอแสดงผลดิจิตอล (Plain text display)
-โหมดการสื่อสารมาตรฐาน Modbus RTU on R.45 + Open Style
Specifications
Range of product
Altivar Soft Starter ATS430
Product or component type
Soft starter
Product destination
Asynchronous motors
Product specific application
Standard industrial machines
Device short name
ATS430
Network number of phases
3 phases
Utilisation category
AC-3A AC-53A
Ue power supply voltage
208…600 V AC (- 15…10 %)
power supply frequency
50…60 Hz – 20…20 %
[Ie] rated operational current
Normal duty: 17 A in line (at <40 °C)
Service factor at Ie
100
Torque control
True
IP degree of protection
IP20
Motor power kW
4 kW at 230 V in line normal duty 7.5 kW at 400 V in line normal duty 7.5 kW at 440 V in line normal duty 9 kW at 500 V in line normal duty 9 kW at 525 V in line normal duty
Motor power hp
3 hp at 208 V normal duty 5 hp at 230 V normal duty 10 hp at 460 V normal duty 15 hp at 575 V normal duty
Communication port protocol
Modbus serial
Device connection
In line
Overload current
400 % Ie for 13 s
On-load factor
50 %
Operating cycles/hour
10 cyc/h
[Us] control circuit voltage
110…230 V AC 50…60 Hz – 15…10 %
Apparent power
70 VA
Integrated motor overload protection
True
motor thermal protection class
Class 10E
Protection type
Phase failure: mains Thermal protection: mains Thermal protection: starter Current overload: motor Motor underload: motor Excessive acceleration time: motor Motor phase loss detection: motor Protection against line phase inversion: mains External thermal protection: motor Short-circuit between motor phase and earth: motor
current limiting %In (5 x Ie maximum)
150…700 %
Rated current pwr loss specification
17 A
Power loss static current independent
19 W
Power loss per device current dependent
2 W
Power loss during starting
133 W during starting at 40 °C at 400% In
Standards
EN/IEC 60947-4-2 UL 60947-4-2 IEC 60664-1
Product certifications
cULus CE UKCA CCC RCM
Marking
CULus CE UKCA CCC RCM
[Uc] control circuit voltage
24 V DC
Discrete input number
4
Discrete input type
(STOP) digital input, 4.4 kOhm (RUN) digital input, 4.4 kOhm (DI3) digital input, 4.4 kOhm (DI4) digital input, 4.4 kOhm
Input compatibility
STOP: digital input level 1 PLC conforming to EN/IEC 61131-2 RUN: digital input level 1 PLC conforming to EN/IEC 61131-2 DI3: digital input level 1 PLC conforming to EN/IEC 61131-2 DI4: digital input level 1 PLC conforming to EN/IEC 61131-2
Discrete input logic
Digital input STOP at State 0: 0…< 5 V and <= 2 mA at State 1: > 11 V, >= 5 mA Digital input RUN at State 0: 0…< 5 V and <= 2 mA at State 1: > 11 V, >= 5 mA Digital input DI3 at State 0: 0…< 5 V and <= 2 mA at State 1: > 11 V, >= 5 mA Digital input DI4 at State 0: 0…< 5 V and <= 2 mA at State 1: > 11 V, >= 5 mA
Relay output number
2
Relay output type
Relay outputs R1A, R1C NO Relay outputs R1B, R1C NC Relay outputs R2A, R2C NO
Minimum switching current
100 mA at 12 V DC for relay outputs
Maximum switching current
Relay outputs 2 A / 250 V AC for AC-15 100000 cycles following IEC 60947-5-1 Relay outputs 2 A / 30 V DC for DC-13 150000 cycles following IEC 60947-5-1
Analogue input number
1
Analogue input type
PTC1 : PTC temperature probe PTC2 : PTC temperature probe
Analogue output number
1
Analogue output type
Current output AQ1 : 0…20 mA/4…20 mA , impedance< 500 Ohm Voltage output AQ1 : 0…10 V , impedance> 470 Ohm
Communication port protocol
Modbus serial RJ45 Modbus serial open style (DO, D1, PE, COM)
4.8…38.4 kbps for Modbus serial RJ45 0.3…115.2 kbps for Modbus serial open style (DO, D1, PE, COM)
Data format
8 bits, odd, even or no parity, 1 or 2 bits to stop for Modbus serial RJ45 8 bits, configurable odd, even or no parity for Modbus serial open style (DO, D1, PE, COM)
Number of addresses
0…247 for Modbus serial
Method of access
Slave Modbus serial
Type of polarization
No impedance for Modbus serial
Display screen available
True
Operating position
Vertical +/- 10 degree
Height
273 mm
Width
130 mm
Depth
169 mm
Net weight
2.90 kg
internal bypass
True
Function available
Single direction Pre-heating Power monitoring Condition monitoring User management Ports and services hardening Security event logging Cybersecure firmware update Small motor test
material declaration
True
Electromagnetic compatibility
Conducted and radiated emissions level A conforming to IEC 60947-4-2 Damped oscillating waves level 3 conforming to IEC 61000-4-18 Electrostatic discharge level 3 conforming to IEC 61000-4-2 Immunity to electrical transients level 4 conforming to IEC 61000-4-4 Immunity to radiated radio-electrical interference level 3 conforming to IEC 61000-4-3 Voltage/current impulse level 3 conforming to IEC 61000-4-5 Immunity to conducted disturbances radio-frequency level 3 conforming to IEC 61000-4-6
pollution degree
Level 3
[Uimp] rated impulse withstand voltage
6 kV
[Ui] rated insulation voltage
600 V
Environmental class (during operation)
Class 3C3 according to IEC 60721-3-3 Class 3S3 according to IEC 60721-3-3
Ambient air temperature for operation
-25…40 °C (without derating) 40…60 °C (with current derating of 1 % per °C above 40 °C)
Ambient air temperature for storage
-40…70 °C
Ambient air transport temperature
-40…70 °C
Operating altitude
<= 2000 m without derating > 2000…4800 m with current derating 1 % per 100 m above 2000 m
Relative humidity
5…95 % without condensation or dripping water conforming to EN/IEC 60068-2-3
Maximum deflection under vibratory load (during operation)
1.5 mm at 2…13 Hz
Maximum deflection under vibratory load (during storage)
1.75 mm at 2…9 Hz
Maximum deflection under vibratory load (during transport)
1.75 mm at 2…9 Hz
Maximum acceleration under vibrational stress (during operation)
1 gn at 13…200 Hz
Maximum acceleration under vibratory load (during storage)
1 gn at 9…200 Hz 1.5 gn at 200…500 Hz
Maximum acceleration under vibratory load (during transport)
1 gn at 9…200 Hz 1.5 gn at 200…500 Hz
Maximum acceleration under shock impact (during operation)
15 gn at 11 ms
Maximum acceleration under shock load (during storage)
10 gn at 11 ms
Maximum acceleration under shock load (during transport)
10 gn at 11 ms
Unit Type of Package 1
PCE
Number of Units in Package 1
1
Package 1 Height
22.500 cm
Package 1 Width
24.000 cm
Package 1 Length
34.500 cm
Package 1 Weight
4.018 kg
Unit Type of Package 2
S06
Number of Units in Package 2
10
Package 2 Height
75.000 cm
Package 2 Width
60.000 cm
Package 2 Length
80.000 cm
Package 2 Weight
48.600 kg
Dimensions Drawings
Dimensions
(1) : Front
(2) : Side
(3) : Rear
Mounting and Clearance
Mounting Position
The soft starter is designed to be mounted inside cabinets vertically at ± 10° for cooling purposes.Respect the minimum clearances so that the cooling air can circulate from the bottom to the top of the soft starter. The minimum clearances apply to any device close to the soft starter such as circuit breakers, fuses and contactors.Do not install the soft starter above heating elements.
Connections and Schema
Wiring
Wiring the Power Part
Use class C cables for the power connections.
1/L1, 3/L2, 5/L3 : Mains supply inputs
2/T1, 4/T2, 6/T3 : Outputs to motor
(1) : Mains side
(2) : Motor side (bottom)
(3) : Ground connection
Connection In Line, With Line Contactor, Type 1 or 2 Coordination, 2-wire control or 3–wire control
Line contactor controlled based on RUN & STOP or on detected error.
Use relay output R1 set to [Mains Contactor]
(1) : Installation of additional fast-acting fuses is mandatory to upgrade to type 2 coordination according to IEC 60947–4–2.
(2) : Take into account the electrical characteristics of the relays.
(3) : The transformer must supply 110…230 Vac –15%…+10%, 50/60Hz.
(4) : 3–wire control or 2–wire control.
(5) : Select the appropriate voltage surge suppressor.
Designation
Component
Description
Q1
Circuit breaker
Short circuit protection device for the motor
Q2
Circuit breaker
Short circuit protection device for the primary of the transformer
Q3
Fast acting fuses
Short circuit protection device of the soft starter to be used only when type 2 coordination according to IEC 60947-4-2 is required
Q4
Circuit breaker
Short circuit protection device for the secondary of the transformer
Q5
Circuit breaker
Short circuit protection device for the control part of the soft starter
KM1
Contactor
Line contactor
S1
Emergency Stop push-button
Emergency Stop to de-energized KM1 line contactor
S4
Normally close contact push- button
STOP command for 3-wire control
S5
Normally open contact push- button
RUN command for 3-wire control
S6
Selector switch, 2 positions, stay–put, normally open contact
RUN/STOP. command for 2–wire control
Connection In Line, With Line Contactor, Type 1 or 2 Coordination, 2-wire or 3-wire
Line contactor controlled by Power ON and Power OFF push-buttons or detected error.
Use relay output R1 set to [Operating State Fault] (factory setting)
(1) : Installation of additional fast-acting fuses is mandatory to upgrade to type 2 coordination according to IEC 60947–4–2.
(2) : Take into account the electrical characteristics of the relays.
(3) : The transformer must supply 110…230 Vac –15%…+10%, 50/60Hz.
(4) : 3–wire control and 2–wire control.
(5) : Select the appropriate voltage surge suppressor.
Designation
Component
Description
Q1
Circuit breaker
Short circuit protection device for the motor
Q2
Circuit breaker
Short circuit protection device for the primary of the transformer
Q3
Fast acting fuses
Short circuit protection device of the soft starter to be used only when type 2 coordination
Q4
Circuit breaker
Short circuit protection device for the secondary of the transformer
Q5
Circuit breaker
Short circuit protection device for the control part of the soft starter
KM1
Contactor
Line contactor
S1
Emergency Stop push-button
Emergency Stop to de-energized KM1 line contactor
S2
Normally close push-button
Power OFF
S3
Normally open push-button
Power ON
S4
Normally close contact push-button
STOP command for 3-wire control
S5
Normally open contact push-button
RUN command for 3-wire control
S6
Selector switch, 2 positions, stay–put, normally open contact
RUN/STOP command for 2-wire control
Control Block Wiring Diagram
R1A, R1B, R1C : Programmable relay R1
R2A, R2C : Relay assigned to End of starting
STOP, RUN, DI3, DI4 : Digital inputs
AQ1: Analogue output
PTC1, PTC2 : PTC connection
D0, D1 : Serial link based on 2-wire Modbus over serial line electrical interface
(1) : 2 wire PTC
(2) : Optional, in case of +24 External Supply usage