Allicdata Part #: | V201HF34-ND |
Manufacturer Part#: |
V201HF34 |
Price: | $ 4.35 |
Product Category: | Circuit Protection |
Manufacturer: | Littelfuse Inc. |
Short Description: | VARISTOR 314V 40KA SQUARE 34MM |
More Detail: | 314V 40kA Varistor 1 Circuit Bolt Mount Square 34m... |
DataSheet: | V201HF34 Datasheet/PDF |
Quantity: | 1000 |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
180 +: | $ 3.95455 |
Varistor Voltage (Typ): | 314V |
Package / Case: | Square 34mm, Tabs |
Mounting Type: | Bolt Mount |
Operating Temperature: | -55°C ~ 85°C (TA) |
Capacitance @ Frequency: | 6350pF @ 1MHz |
Number of Circuits: | 1 |
Energy: | 350J |
Current - Surge: | 40kA |
Varistor Voltage (Max): | 345V |
Series: | HF34 |
Varistor Voltage (Min): | 283V |
Maximum DC Volts: | 265V |
Maximum AC Volts: | 200V |
Moisture Sensitivity Level (MSL): | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Packaging: | Bulk |
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TVS (Transient Voltage Suppressors) are devices designed to protect against electrical transients, such as induced electrical spikes, lightning, electrostatic discharges (ESD) and events of the like which can cause severe damage to delicate electronic components. Varistors, MOVs (Metal Oxide Varistors) and Surge Arresters are all types of TVS components, and the V201HF34 is a particular varistor product. This article will provide a brief overview of the application fields and working principles of the V201HF34.
The V201HF34 is a zinc oxide (ZnO) non-linear varistor, with a standard operating voltage of 140VAC. It is designed for use in electrostatic discharge (ESD) and transients protection in telecommunications, and it can be used in a range of applications from lightning protection to high-frequency applications. It has a wide operating temperature range, from -40°C up to 125°C, and its low maximum leakage current ensures a low-leakage current surge capability. It also has a low capacitance and a high-energy absorption capability. These characteristics make it ideal for a variety of ESD and lightning protection applications, as well as for high-frequency operations.
In terms of its operation, the V201HF34\'s limiting peak currents are usually specified by its Markings codes. It works by clamped clamping the peak voltage and current spikes that occur when the varistor is exposed to transient events. The V201HF34 is able to clamp the voltage to the specified rating, and it is designed to prevent any further catastrophic damage from occurring. As such, the V201HF34 is invaluable for protecting sensitive electronic components from damage caused by high-voltage or high-current transient events.
In terms of its construction, the V201HF34 features a zinc oxide (ZnO) element enclosed in a plastic case, with two conductive plates mounted on the ends. The intrinsic high impedance of the varistor diode ensures that it does not dissipate its clamping voltage until the zener voltage is reached, and, when the transient or surge voltage is reached, the diode begins clamping the voltage and current simultaneously. This ensures that the varistor does not become overloaded and damaged during the clamping process.
The V201HF34 is typically used in telecommunications applications, such as ESD protection and lightning protection systems. It has very low conduction and capacitive loss, and it has a very high surge capability. As an added bonus, it is capable of providing overvoltage protection against high-voltage transients, such as induced surges and lightning strikes. This makes it a great choice for protecting sensitive components used in telecommunication networks.
In conclusion, the V201HF34 is a zinc oxide (ZnO) based non-linear varistor that is designed for use in ESD and transient protection applications in telecommunications. It has a wide operating temperature range and low maximum leakage current. It is capable of clamping overvoltage and peak current events to its specified rating, and this makes it an ideal option for protecting sensitive electronic equipment from damage caused by high voltage or current transients.
The specific data is subject to PDF, and the above content is for reference
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