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.
3 phases
380...500 V - 15...10 %
323...550 V
50...60 Hz - 5...5 %
47.5...63 Hz
0.55 kW 380...500 V
0.75 hp 380...500 V
Complementary
Line current
Apparent power
Prospective line Isc
Nominal output current
Maximum transient current
Speed drive output frequency
Nominal switching frequency
Switching frequency
Speed range
Speed accuracy
Torque accuracy
Transient overtorque
Braking torque
Asynchronous motor control profile
2.8 A 380 V 3 phases 0.55 kW 0.75 hp
2.2 A 500 V 3 phases 0.55 kW 0.75 hp
1.9 kVA 500 V 3 phases 0.55 kW 0.75 hp
<= 5 kA 3 phases
1.9 A 4 kHz 500 V 0.55 kW 0.75 hp
2.9 A 60 s 0.55 kW 0.75 hp
0.5...599 Hz
4 kHz
2...16 kHz adjustable
1...100 asynchronous motor in open-loop mode
+/- 10 % of nominal slip 0.2 Tn to Tn
+/- 15 %
170...200 %
< 170 % with braking resistor
Voltage/Frequency ratio, 2 points
Voltage/Frequency ratio, 5 points
Flux vector control without sensor - Energy Saving, NoLoad law
Flux vector control without sensor, standard
Voltage/Frequency ratio - Energy Saving, quadratic U/f
Vector control without sensor
Adjustable PID regulator
Automatic whatever the load
Not available in voltage/frequency ratio (2 or 5 points)
Adjustable 0...300 %
1 LED red drive fault
1 LED red CANopen error
1 LED green CANopen run
1 LED red drive voltage
<= power supply voltage
Synchronous motor control profile
Regulation loop
Motor slip compensation
Local signalling
Output voltage
Jun 15, 2015
1
Noise level
Insulation
Electrical connection
43 dB 86/188/EEC
Electrical between power and control
Screw terminal 1.5...4 mm² AWG 14...AWG 10 power supply
[i=s]This post was last edited by qwqwqw2088 on 2018-11-5 07:41[/i] [size=4][b]Question 1:[/b][/size] [size=4]Hello, TI engineer! I am working on a portable instrument recently and I am a little confu...
The isd1420 voice chip can be programmed to achieve segmented recording and playback, loop playback and other functions. I programmed it today, but only achieved the segmented recording function. How ...
When the WDP500-2A plane grating monochromator is used to test the emission wavelength of a high-power laser diode at different currents, the matching of the laser diode has the disadvantages of lo...[Details]
As LEDs continue to improve in almost every aspect of performance and cost, LED lighting is being used in an increasingly wide range of applications, among which LED street lights are a focus of in...[Details]
We know that microcontroller development tools generally include real-time online emulators and programmers. Among them, online emulators are very good tools, but they are also more expensive...[Details]
0 Introduction
With the rise and continuous improvement of the solid-state lighting industry, light-emitting diodes (LEDs) have become an alternative lighting technology and are gr...[Details]
D5026A is a driver IC designed by Shanghai Debei Electronics for energy-saving LED display screens. Its design concept is energy-saving and compatible with existing solutions, that is, it can be ...[Details]
Introduction
Nowadays, people pay more and more attention to the security alarm system, and people have higher and higher requirements for the functions and performance of the alarm. This paper prop...[Details]
introduction
At present, measuring instruments are developing towards networking, and each individual embedded instrument will become a node on the Internet. This system realizes the network...[Details]
1 Load Regulation
Changes in power supply load will cause changes in power supply output. When the load increases, the output decreases, and vice versa, when the load decreases, the output inc...[Details]
The power consumption of a switching power supply includes fixed losses caused by parasitic resistances such as semiconductor switches, magnetic components, and wiring, as well as switching losses ...[Details]
HL201A is a special thick film driver integrated circuit with a capacity of less than 75AGTR developed by Xi'an Power Electronics Technology Research Institute. The article explains the pin arrange...[Details]
Power supply is often the most easily overlooked link in the circuit design process. In fact, as an excellent design, power supply design should be very important, which greatly affects the perfor...[Details]
DigRF
is
poised to replace the two main forms of data communication paths between RF and baseband semiconductor devices:
analog
signaling, and proprietary digital signaling (paralle...[Details]
For a long time, my country has implemented "community-style collective heating" for hot water heating, and settled accounts based on the heating area, regardless of whether the user uses heat. Thi...[Details]
In recent years, the application of single-chip microcomputer systems in the field of industrial measurement and control has become more and more extensive. However, for industrial sites with harsh...[Details]