Datasheets
V575PA80A by:
Littelfuse Inc
General Electric Solid State
Intersil Corporation
Littelfuse Inc
Thomson Consumer Electronics
Not Found

RESISTOR, VOLTAGE DEPENDENT, 730V, 220J, CHASSIS MOUNT

Part Details for V575PA80A by Littelfuse Inc

Results Overview of V575PA80A by Littelfuse Inc

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V575PA80A Information

V575PA80A by Littelfuse Inc is a Non-linear Resistor.
Non-linear Resistors are under the broader part category of Resistors.

Resistors are passive components that work by limiting electron flow in a circuit. They are available as fixed or as variable (potentionmeters). Read more about Resistors on our Resistors part category page.

Part Details for V575PA80A

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V575PA80A Part Data Attributes

V575PA80A Littelfuse Inc
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V575PA80A Littelfuse Inc RESISTOR, VOLTAGE DEPENDENT, 730V, 220J, CHASSIS MOUNT
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Rohs Code No
Part Life Cycle Code Obsolete
Ihs Manufacturer LITTELFUSE INC
Package Description Flange-A,
Reach Compliance Code unknown
ECCN Code EAR99
HTS Code 8533.40.40.00
Circuit RMS Voltage-Max 575 V
Energy Absorbing Capacity-Max 220 J
Mounting Feature CHASSIS MOUNT
Number of Terminals 3
Operating Temperature-Max 85 °C
Operating Temperature-Min -55 °C
Package Shape CYLINDRICAL PACKAGE
Package Style Flange-A
Rated Power Dissipation (P) 1 W
Rated Temperature 85 °C
Resistor Type VARISTOR
Surface Mount NO
Technology METAL OXIDE FILM
Terminal Placement DUAL
Terminal Shape LUG
Working Voltage 730 V

Alternate Parts for V575PA80A

This table gives cross-reference parts and alternative options found for V575PA80A. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of V575PA80A, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
V575PA80A Intersil Corporation Check for Price RESISTOR, VOLTAGE DEPENDENT, 730V, 220J, CHASSIS MOUNT V575PA80A vs V575PA80A
V575PA80C Intersil Corporation Check for Price RESISTOR, VOLTAGE DEPENDENT, 730V, 220J, CHASSIS MOUNT V575PA80A vs V575PA80C
V571DA40 Intersil Corporation Check for Price METAL-OXIDE VARISTOR (MOV),575V V(RMS),40KA I(TM),MODULE-S V575PA80A vs V571DA40
B72232-B551-K1 TDK Corporation Check for Price Varistor, 745V, 620J, Chassis Mount, RADIAL LEADED V575PA80A vs B72232-B551-K1
Q69X3329 TDK Corporation Check for Price Varistor, 745V, 620J, Chassis Mount, V575PA80A vs Q69X3329

V575PA80A Related Parts

V575PA80A Frequently Asked Questions (FAQ)

  • The recommended PCB layout for the V575PA80A involves keeping the leads as short as possible, using a solid ground plane, and placing the varistor close to the circuit being protected. Additionally, it's recommended to use a layout that minimizes inductance and ensures good thermal conduction.

  • The V575PA80A is designed to operate in high-temperature environments, with a maximum operating temperature of 125°C. However, its performance may degrade at high temperatures, and its clamping voltage may increase. It's essential to consider the temperature derating factors when designing the circuit.

  • Yes, the V575PA80A can be used in a DC circuit, but it's essential to consider the DC voltage rating and the maximum allowable voltage stress. The varistor's DC voltage rating is 80V, and it's recommended to ensure that the DC voltage does not exceed this rating to prevent degradation or failure.

  • The V575PA80A is designed to withstand repetitive surges, but its performance may degrade over time. The varistor's lifespan may be affected by the frequency and amplitude of the surges, as well as the operating temperature. It's essential to consider the surge withstand capability and the expected surge environment when designing the circuit.

  • Yes, the V575PA80A can be used in a parallel configuration to increase the surge current rating or to provide redundancy. However, it's essential to ensure that the varistors are properly matched and that the circuit is designed to handle the increased capacitance and inductance of the parallel configuration.