Torque characteristics of inverters in low or high frequency under V/F control mode - News - Global IC Trade Starts Here Free

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1. Why is the frequency low in the ultra-low frequency torque?
Because the frequency is too low, the voltage value of the inverter output in V/F mode will be very low, so the output torque value is too low.
At low frequencies, the voltage is also low, and the voltage drop caused by the impedance of the stator circuit is highly influential and not a complete ratio.
2. The start-up phase must pass through the low-frequency region. If the torque is low at low frequencies, how can the load be started?
If the load is no-load start-up and the moment of inertia is not large, the required starting torque value is actually not very large, so it can be started; otherwise, if the load is started with load, or the moment of inertia is large, then The required starting torque value may be relatively large, then the inverter's low-frequency voltage boosting function should be used to increase the output torque value of the inverter at low frequencies to ensure the load can start smoothly.
3. When the long-term operation phase is in the low frequency range, the boost function can be used to increase the torque output, which will cause the output current to be too large –
When the long-term operation phase is in the low frequency range, the boost function can be used to increase the torque output, and the output current will also increase correspondingly within the safe operating range, but it will not be said to be too large (as long as the parameters are set properly).

Metal Male SCSI Cover Section

Small computer system interface (SCSI) is an independent processor standard for system level interfaces between computers and intelligent devices (hard disks, floppy drives, optical drives, printers, scanners, etc.). SCSI is an intelligent universal interface standard.

The maximum synchronous transmission rate of the original SCSI standard was 5MB / S (scsi-1, also known as narrowscsi, in 1986, the maximum support for seven devices, the clock frequency was 5MHz), and the later SCSI II specified two options for increasing the speed. One is to increase the frequency of data transmission, namely fast SCSI (in 1994, the maximum support for 7 devices) is 10 Mb / S (10 MHz) because the frequency is doubled; the other is to double the transmission frequency and increase the width of the data path from 8 bits to 16 bits. The maximum synchronous transmission speed of widescsi is 20MB / S (the clock frequency is 10MHz, in 1996, the maximum support for 15 devices).

The third generation of SCSI appeared around 1995, but there was no unified standard


1. Ultra SCSI with maximum synchronous transmission speed of 20MB / S (also known as FAST-20 SCSI, clock frequency of 20MHz);


2. Ultra wide SCSI with maximum synchronous transmission speed of 40MB / S (same as 1);

3. Ultra2 SCSI with maximum synchronous transmission speed of 40MB / S (also known as fast-40 SCSI, clock frequency of 40MHz, 1997).


Later, some newer SCSI standards appeared

1. Ultra2 widescsi with maxmum synchronous transmission speed of 80mb / S (clock frequency of 40MHz);

2. Ultra 3 SCSI with maximum synchronous transmission speed of 160MB / S (also known as ultra-160 or fast-80 wide SCSI, clock frequency of 40MHz plus double data rate, 1999);

3. Ultra 320 SCSI with maximum synchronous transmission speed of 320mb / S (also known as ultra 4 SCSI, clock frequency of 80MHz plus double data rate, 2002); 4. Ultra 640 SCSI with maximum synchronous transmission speed of 640MB / S (clock frequency of 160MHz plus double data rate, 2003, is the latest SCSI standard)

This interface is a convenient interface standard for system integration, cost reduction and efficiency improvement. More and more devices will use the SCSI interface standard. Therefore, there are many hard disks and SCSI CD-ROM drives with SCSI interface. However, due to the cost problem, they are mainly used on medium and high-end servers and workstations.

Metal Male SCSI Cover Section

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