B72540V0600K062 Allicdata Electronics

B72540V0600K062 Circuit Protection

Allicdata Part #:

495-76124-2-ND

Manufacturer Part#:

B72540V0600K062

Price: $ 0.00
Product Category:

Circuit Protection

Manufacturer: EPCOS (TDK)
Short Description: VARISTOR 100V 800A 2220
More Detail: 100V 800A Varistor 1 Circuit Surface Mount, MLCV 2...
DataSheet: B72540V0600K062 datasheetB72540V0600K062 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Maximum AC Volts: 60V
Maximum DC Volts: 85V
Varistor Voltage (Min): 90V
Varistor Voltage (Typ): 100V
Varistor Voltage (Max): 110V
Current - Surge: 800A
Energy: 6.8J
Number of Circuits: 1
Operating Temperature: --
Mounting Type: Surface Mount, MLCV
Package / Case: 2220 (5750 Metric)
Description

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B72540V0600K062 is a type of high temperature sensitive Voltage-dependent Resistor (VDR). These components can be categorized as Transient Voltage Suppressors (TVSs), Metal Oxide Varistors (MOVs), or PTCs (positive temperature coefficient). When used in conjunction with other circuit components, these components can be used for a variety of purposes, such as protection from current, voltage, or temperature surges, overvoltage protection, reverse polarity protection, and even as lightening protection.

Application Field of B72540V0600K062

B72540V0600K062 TVS devices are primarily designed for transient-overvoltage and ESD protection. They provide protection to circuits and components from such high-voltage transients as lightning, electrostatic discharge, and induction currents. A typical application of the B72540V0600K062 includes protection of power supplies, converters, and motor drivers from the ESD pulse, and protection of computer systems from power failure due to electrical transients. Furthermore, B72540V0600K062 MOVs are also used in a wide range of industries, like automotive, consumer electronics, and industrial electronics applications.

Working Principle of B72540V0600K062

The working principle of B72540V0600K062 is based on the voltage-dependent resistor\'s properties, which allows the resistance to decrease with an increase in the voltage applied to the device. The device works by diverting the high voltage surge away from the sensitive parts of the circuit or other components in the same application. The device is designed such that when the voltage exceeds a certain threshold, a low impedance path is formed through the device, effectively redirecting the voltage surge away from the sensitive components in the circuit. This function allows the device to absorb high voltage transients before they reach the sensitive parts of the circuit.

This protection mechanism is known as clamping and is based on avalanche breakdown phenomenon, where the device\'s resistance drops significantly when the applied voltage is increased beyond a certain level. It is important to note that the device\'s characteristics are nonlinear, meaning that as the voltage increases, the device\'s current will also increase, causing the device to dissipate energy as heat. Therefore, the B72540V0600K062 should always be mounted on a PCB or other substrate for effective heat dissipation.

Conclusion

In conclusion, B72540V0600K062 is a thermal sensitive Voltage-dependent Resistor (VDR) that falls under the Transient Voltage Suppressors (TVSs), Metal Oxide Varistors (MOVs) category. It is mainly used for transient-overvoltage and ESD protection. Its working principle is based on its voltage-dependent properties which allow it to form a low-impedance path upon reaching a certain voltage level, thus diverting the voltage surge away from sensitive parts of the circuit. The device can absorb high voltage transients before they reach the sensitive components. It is important to note that the device\'s current increases when the voltage increases, which will cause it to dissipate energy as heat. Therefore, the device should always be mounted on a PCB or other substrate for effective heat dissipation.

The specific data is subject to PDF, and the above content is for reference

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