Allicdata Part #: | 0011319232-ND |
Manufacturer Part#: |
0011319232 |
Price: | $ 374.22 |
Product Category: | Uncategorized |
Manufacturer: | Molex, LLC |
Short Description: | TRANSFORMER 10 KVA |
More Detail: | N/A |
DataSheet: | 0011319232 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 340.20000 |
Series: | * |
Part Status: | Active |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Today\'s technology is moving forward at an accelerated rate, and with it, there is an ever increasing need to understand the workings behind many of the new inventions and gadgets. 0011319232, which is a type of current transformer, is one such device that is necessary to comprehend in order to optimize modern projects. This article will explore the application field and working principle of the device.
In short, 0011319232 is a type of current transformer (CT) that can be used to measure current in places where direct current measurement is either impossible or unsafe. It performs this task by changing the shape of the current waveform without changing the magnitude or frequency of the current. Because of this, the device is most commonly found being used in ungrounded systems, which need to have their current measured in an isolated fashion.
The application field of 0011319232has a wide range of potential uses in any project that requires the safe and accurate detection of alternating current. In the power-generation industry, for example, these devices are useful for monitoring load and voltage levels, as well as for measuring the phase and frequency of the current. Similarly, in the automotive industry, 0011319232 can be used for diagnosing faults in wiring and alternator or starter motors. CTs are also frequently employed in medical imaging equipment, where they help to identify current inclusions that may be present in human tissues.
In terms of the working principle of 0011319232, this device utilizes the principle of electromagnetic induction to measure alternating current. When a conductor moves through a magnetic field, a voltage is produced in the conductor that is proportional to the rate at which the conductor is moving through the magnetic field. This technique of quantifying current is made possible by placing the current transformer\'s primary winding around the conductor to be measured. The ratio between the primary and secondary windings of the transformer determines the scale of the output voltage.
Another feature of 0011319232 is that its detection of alternating current is not instantaneous. In other words, when a change in current occurs, it will take a small amount of time for the secondary voltage to respond to the change. This is due to the inherent inductive nature of the winding, as inductive reactance typically increases with the frequency of the alternating current. The higher the frequency of the current, the greater the time lag.
Finally, the design of 0011319232 current transformers is also subject to important safety considerations. As these devices are commonly used in ungrounded electrical systems, it is critical that the transformer not be in any way compromised to prevent shocks or accidents. For this reason, CTs must be constructed in a manner that prevents arc-over between their windings and must conform to strict standards to ensure that they are both effective and secure.
In conclusion, 0011319232 is a type of current transformer that can be used to measure current in isolated or ungrounded systems. Its application field has a wide range of potential uses in both the power generation industry and the automotive industry, as well as in medical imaging equipment. Furthermore, the device uses the principle of electromagnetic induction and inductive reactance to produce a secondary voltage that is proportional to the primary current. Lastly, it is vital that 0011319232 be designed properly in order to prevent any shocks or accidents due to malfunction.
The specific data is subject to PDF, and the above content is for reference
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