NTE1V035 Metal Oxide Varistor Data Sheet

Download PDF datasheet for NTE Electronics NTE1V035 Metal Oxide Varistor (EN) 3 pages 2001 zip

SKU: NTE1V035DS2001 Category: Brand:

Description

This PDF datasheet is for the NTE1V035 Varistor.

About the Item

NTE Electronics NTE1V035 Metal Oxide Varistor

The NTE Metal Oxide Varistors feature a barrier layer that gives the user fast response time. These devices have a high transient current handling capability when high voltage is applied. Static resistance is, however, very high under low voltage conditions, permitting low standby drain currents.

FEATURES
– High Transient Current Capability – up to 6500A
– Fast Response Time – less than 35ns
– Excellent Voltage Clamping Characteristics
– Very Low Temperature Coefficient
– Low Standby Current
– High Energy Capability
– The Value for “n” is Greater
– Very Low Leakage Current
– Low Capacitance
– Low Overshoot Characteristics

(PDF) DATASHEET (ENGLISH)

SUMMARY OF CONTENTS

ELECTRICAL RATINGS
– Varistor Voltage
– Energy
– Peak Current

– Operating Ambient Temperature
– Response Time
– Voltage Temperature Coefficient
– Maximum Leakage Current

ELECTRICAL CHARACTERISTICS
– Case Diameter
– Maximum Ratings (Continuous) – RMS Voltage (Volts)
– Maximum Ratings (Continuous) – DC Voltage (Volts)
– Maximum Ratings (Transient) – Energy (10/1000us) (Joules)
– Maximum Ratings (Transient) – Peak Current (8/20us) (Amps)
– Nominal Varistor Voltage
– Maximum Clamping Voltage
– Transient Power Dissipation (Watts)

NTE varistors short–circuit when subjected to surges beyond their peak current and energy ratings. NTE varistors short–circuit when operated at steady–state voltages well beyond their voltage ratings, which may eventually result in open–circuiting leaving the circuit without protection.
The following precautions should be taken to minimize this potential hazard:
– Fusing the varistor to limit high fault currents.
– Protecting the surrounding circuitry by physical shielding.
– Locating the varistor away from other components.

TYPICAL POWER SUPPLY CIRCUIT

DIMENSIONS

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