ATS01N232RT soft starter for asynchronous motor - ATS01-32 A V

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Transcription:

Characteristics soft starter for asynchronous motor - ATS01-32 A - 460..480 V Complementary Assembly style Function available Power supply voltage limits Main Range of product Altistart 01 Product or component type Product destination Product specific application Component name Network number of phases Soft starter Asynchronous motors Simple machine ATS01 3 phases Power supply voltage 460...480 V (- 10...10 %) Motor power hp Icl nominal current 20 hp at 460...480 V 3 phases 32 A Utilisation category AC-53B conforming to EN/IEC 60947-4-2 Current at nominal load Type of start Power dissipation in W With heat sink Integrated bypass 414...528 V Power supply frequency 50...60 Hz (- 5...5 %) Power supply frequency limits Output voltage Control circuit voltage Starting time Deceleration time symb Starting torque 47.5...63 Hz <= power supply voltage Built into the starter Adjustable from 1 to 10 s 5 s / 10 start(s) per hour 10 s / 5 start(s) per hour 1 s / 50 start(s) per hour Adjustable from 1 to 10 s 160 A at nominal load Start with voltage ramp 4.5 W at full load and at end of starting 324.5 W in transient state 30...80 % of starting torque of motor connected directly on the line supply Discrete input type (LI1, LI2, BOOST) stop, run and boost on start-up functions logic <= 8 ma 27 kohm Discrete input voltage 24...40 V Discrete input logic (LI1, LI2, BOOST) positive state 0 < 5 V and < 0.2 ma, state 1 > 13 V and > 0.5 ma Discrete output current Discrete output type Discrete output voltage Minimum switching current Maximum switching current Display type Tightening torque 3 A AC-15 2 A DC-13 (R1A, R1C) relay outputs NO (LO1) open collector logic end of starting signal 24 V (6...30 V) open collector logic Relay outputs 10 ma 6 V DC Relay outputs 2 A 30 V DC inductive load, cos phi = 0.5 L/R = 20 ms Relay outputs 2 A 250 V AC inductive load, cos phi = 0.5 L/R = 20 ms 1 LED (yellow) for nominal voltage reached 1 LED (green) for starter powered up 0.5 N.m 1.9...2.5 N.m The information provided in this documentation contains general descriptions and/or technical characteristics of the performance of the products contained herein. This documentation is not intended as a substitute for and is not to be used for determining suitability or reliability of these products for specific user applications. It is the duty of any such user or integrator to perform the appropriate and complete risk analysis, evaluation and testing of the products with respect to the relevant specific application or use thereof. Neither Schneider Electric Industries SAS nor any of its affiliates or subsidiaries shall be responsible or liable for misuse of the information contained herein. Jun 14, 2016 1

Electrical connection Marking Operating position Height Width Depth Product weight 2 conductor(s) flexible cable without cable end, connection via screw connector 0.5...1.5 mm² / AWG 16 for control circuit 2 conductor(s) flexible cable without cable end, connection via 4 mm screw clamp terminal 1.5...6 mm² / AWG 10 for power circuit 2 conductor(s) flexible cable with cable end, connection via 4 mm screw clamp terminal 1...6 mm² / AWG 10 for power circuit 1 conductor(s) flexible cable without cable end, connection via screw connector 0.5...2.5 mm² / AWG 14 for control circuit 1 conductor(s) flexible cable without cable end, connection via 4 mm screw clamp terminal 1.5...10 mm² / AWG 8 for power circuit 1 conductor(s) flexible cable with cable end, connection via screw connector 0.5...1.5 mm² / AWG 16 for control circuit 2 conductor(s) rigid cable, connection via screw connector 0.5...1 mm² / AWG 17 for control circuit 2 conductor(s) rigid cable, connection via 4 mm screw clamp terminal 1...6 mm² / AWG 10 for power circuit 1 conductor(s) rigid cable, connection via screw connector 0.5...2.5 mm² / AWG 14 for control circuit 1 conductor(s) rigid cable, connection via 4 mm screw clamp terminal 1...10 mm² / AWG 8 for power circuit CE Vertical +/- 10 degree 154 mm 45 mm 131 mm 0.56 kg Environment Electromagnetic compatibility Voltage/Current impulse conforming to IEC 61000-4-5 level 3 Micro-cuts and voltage fluctuation conforming to IEC 61000-4-11 Immunity to radiated radio-electrical interference conforming to IEC 61000-4-3 level 3 Immunity to electrical transients conforming to IEC 61000-4-4 level 4 Immunity to conducted interference caused by radio-electrical fields conforming to IEC 61000-4-6 level 3 Harmonics conforming to IEC 1000-3-4 Harmonics conforming to IEC 1000-3-2 EMC immunity conforming to EN 50082-2 EMC immunity conforming to EN 50082-1 Electrostatic discharge conforming to IEC 61000-4-2 level 3 Damped oscillating waves conforming to IEC 61000-4-12 level 3 Conducted and radiated emissions conforming to IEC 60947-4-2 level B Conducted and radiated emissions conforming to CISPR 11 level B Standards EN/IEC 60947-4-2 Product certifications IP degree of protection B44.1-96/ASME A17.5 for starter wired to the motor delta terminal CCC CSA C-Tick GOST UL IP20 Pollution degree 2 conforming to EN/IEC 60947-4-2 Vibration resistance 1.5 mm peak to peak (f = 3...13 Hz) conforming to EN/IEC 60068-2-6 1 gn (f = 13...150 Hz) conforming to EN/IEC 60068-2-6 Shock resistance 15 gn for 11 ms conforming to EN/IEC 60068-2-27 Relative humidity 5...95 % without condensation or dripping water conforming to EN/IEC 60068-2-3 Ambient air temperature for operation 40...50 C with current derating of 2 % per C -10...40 C without derating Ambient air temperature for storage -25...70 C conforming to EN/IEC 60947-4-2 Operating altitude > 1000 m with current derating of 2.2 % per additional 100 m <= 1000 m without derating 2

Dimensions Drawings Dimensions Mounting on Symetrical (35 mm) Rail Screw Fixing (1) Retractable fixings 3

Connections and Schema Example of Manual Control A1 : Soft start/soft stop unit (1) For type 2 coordination Q1 : Motor circuit-breaker F3 : 3 fast-acting fuses 4

Technical Description Function Diagram 2-wire Control with Deceleration Us : Power supply voltage LED Green LED 1 : LI2 : Logic input R1 : Relay output LO1 :Logic output LED Yellow LED 2 : 3-wire Control with Deceleration Us : Power supply voltage LED Green LED 1 : LI2, Logic inputs LI1 : R1 : Relay output LO1 :Logic output Um : Motor voltage LED Yellow LED 2 : 5