Allicdata Part #: | V07E130PL2T7-ND |
Manufacturer Part#: |
V07E130PL2T7 |
Price: | $ 0.09 |
Product Category: | Circuit Protection |
Manufacturer: | Littelfuse Inc. |
Short Description: | VARISTOR 205V 1.75KA DISC 7MM |
More Detail: | 205V 1.75kA Varistor 1 Circuit Through Hole Disc 7... |
DataSheet: | V07E130PL2T7 Datasheet/PDF |
Quantity: | 1000 |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
10000 +: | $ 0.08420 |
Varistor Voltage (Typ): | 205V |
Package / Case: | Disc 7mm |
Mounting Type: | Through Hole |
Operating Temperature: | -55°C ~ 85°C (TA) |
Capacitance @ Frequency: | 180pF @ 1MHz |
Number of Circuits: | 1 |
Energy: | 12.5J |
Current - Surge: | 1.75kA |
Varistor Voltage (Max): | 225.5V |
Series: | UltraMOV™ |
Varistor Voltage (Min): | 184.5V |
Maximum DC Volts: | 170V |
Maximum AC Volts: | 130V |
Moisture Sensitivity Level (MSL): | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Packaging: | Tape & Reel (TR) |
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Transient Voltage Suppressors (TVS) are a class of voltage surge protection devices used in different industries for overvoltage protection. TVS includes a variety of components, including Varistors, MOVs (Metal-Oxide Varistors), Zener diodes, Suppressors, and more. Of these, Metal-Oxide Varistors (MOVs) are especially common. MOVs are solid-state nonlinear devices consisting of a metal oxide structure, which helps protect electronics from transients or spikes in voltage.
V07E130PL2T7 is one such MOV designed for overvoltage protection in industrial or electronic systems. This particular device is a non-polarized mov with a maximum voltage of 130V. It is designed to have a low leakage after the peak pulse voltage passes and comes in a 1206 surface mount package.
V07E130PL2T7 Application Field
V07E130PL2T7 is typically used in industrial or electronic systems to provide protection against transient overvoltage from lightning strikes, electrical surges, or electrostatic discharge. It is commonly used in telecommunications equipment, computers, industrial equipment, and automotive electronics. It is also used in other applications such as DC-DC converters, solar power plants, and even building wiring. Because it is a non-polarized device, it can essentially be used in any system where protection from transients or overvoltage is desirable.
V07E130PL2T7 Working Principle
The working principle for the V07E130PL2T7 MOV involves the device\'s ability to create an “open-circuit” when a voltage spike that exceeds its specified maximum voltage is applied. Because of the device\'s low capacitance, the spike is rapidly transferred to the MOV without damaging the protected circuit. The device has a very low leakage after the peak voltage has passed, thus providing protection for the connected system.
The MOV’s working principle is based on the metal-oxide varistor (MOV) disk that creates a barrier between high and low voltage levels. When the MOV is connected to a circuit, low voltage levels can pass through normally. On the contrary, when a high voltage is applied, the MOV creates a resistance in the circuit, connecting the device to ground and thus helping to dissipate the energy to protect the equipment from the transient.
V07E130PL2T7 also uses a unique design that has a low inductance, providing fast response times and improved protection from transients. This enhances the device\'s ability to perform high-current protection. The device\'s non-polarized nature also makes it suitable for use in any circuit, no matter the polarity of the voltage applied.
In conclusion, the V07E130PL2T7 is a non-polarized mov designed for industrial use in systems where protection from transient signals is necessary. Its working principle involves the dissipation of energy to ground when a peak voltage that exceeds its specified maximum voltage is applied. Its low capacitance and unique design provide fast response times and improved protection from transients. It is thus suitable for use in applications such as telecommunications equipment, computers, industrial equipment, automotive electronics, DC-DC converters, solar power plants, and buildings.
The specific data is subject to PDF, and the above content is for reference
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