.125 W Non-linear Resistors 61

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Part RoHS Manufacturer Resistor Type Mounting Type Resistance Rated Power Dissipation (P) Maximum Operating Temperature Tolerance Diameter (Lead) Spacing (Lead) Rated Temperature Thermistor Application Terminal Placement Technology Shape (Package) Construction Maximum Energy Absorbing Capacity Packing Method Size Code No. of Terminals Package Style (Meter) Rated AC Voltage (URac) Terminal Shape Sub-Category Dimensions Thermal Sensitivity Index Minimum Operating Temperature Temperature Coef (ppm/Cel) Terminal Finish Length (Lead) Height (Package) Manufacturer Series Maximum Circuit RMS Voltage Operating Voltage Additional Features Length (Package) JESD-609 Code Diameter (Package) Reference Standard Width (Package) Maximum Circuit DC Voltage

NTCS0603E3222JMT

Vishay Intertechnology

NTC THERMISTOR

SURFACE MOUNT

2200 ohm

.125 W

150 Cel

5 %

25 Cel

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

TR, PUNCHED PAPER

2

SMT

WRAPAROUND

3520 K

-40 Cel

TIN OVER NICKEL

.8 mm

1.6 mm

e3

AEC-Q200; CUL; UL

.8 mm

NTCS0603E3473HHT

Vishay Intertechnology

NTC THERMISTOR

SURFACE MOUNT

47000 ohm

.125 W

150 Cel

3 %

25 Cel

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

TR, PUNCHED PAPER

2

SMT

WRAPAROUND

3960 K

-40 Cel

TIN OVER NICKEL

.8 mm

1.6 mm

e3

AEC-Q200; CUL; UL

.8 mm

NTCS0603E3683HHT

Vishay Intertechnology

NTC THERMISTOR

SURFACE MOUNT

68000 ohm

.125 W

150 Cel

3 %

25 Cel

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

TR, PUNCHED PAPER

2

SMT

WRAPAROUND

3985 K

-40 Cel

TIN OVER NICKEL

.8 mm

1.6 mm

e3

AEC-Q200; CUL; UL

.8 mm

TFPT1206L1001FY

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

1000 ohm

.125 W

150 Cel

1 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

WRAPAROUND

-55 Cel

Tin/Lead (Sn/Pb) - with Nickel (Ni) barrier

e0

TFPT1206L1001FZ

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

1000 ohm

.125 W

150 Cel

1 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

50 V

WRAPAROUND

-55 Cel

Tin/Lead (Sn/Pb) - with Nickel (Ni) barrier

e0

TFPT1206L1002JM

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

10000 ohm

.125 W

150 Cel

5 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

50 V

WRAPAROUND

-55 Cel

MATTE TIN OVER NICKEL

e3

TFPT1206L1002JV

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

10000 ohm

.125 W

150 Cel

5 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

WRAPAROUND

-55 Cel

TIN OVER NICKEL

e3

TFPT1206L3900FV

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

390 ohm

.125 W

125 Cel

1 %

70 Cel

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

BULK

2

WRAPAROUND

-55 Cel

TIN OVER NICKEL

e3

TFPT1206L6800FM

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

680 ohm

.125 W

125 Cel

1 %

70 Cel

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

50 V

WRAPAROUND

-55 Cel

MATTE TIN OVER NICKEL

e3

TFPT1206L6800JF

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

680 ohm

.125 W

150 Cel

5 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

BULK

2

50 V

WRAPAROUND

Non-linear Resistors

-55 Cel

Matte Tin (Sn) - with Nickel (Ni) barrier

TFPT

e3

TFPT1206L6800JV

Vishay Intertechnology

PTC THERMISTOR

SURFACE MOUNT

680 ohm

.125 W

150 Cel

5 %

70 Cel

TEMPERATURE COMPENSATION

DUAL ENDED

RECTANGULAR PACKAGE

TR

2

WRAPAROUND

-55 Cel

TIN OVER NICKEL

e3

NTCSP163JF103FT1S

TDK

NTC THERMISTOR

SURFACE MOUNT

10000 ohm

.125 W

150 Cel

1 %

25 Cel

TEMPERATURE SENSING

DUAL ENDED

TR, 7 INCH

2

SMT

WRAPAROUND

3435 K

-55 Cel

.8 mm

1.6 mm

AEC-Q200

.8 mm

1624368-2

TE Connectivity

NTC THERMISTOR

SURFACE MOUNT

6800 ohm

.125 W

5 %

TEMPERATURE SENSING

DUAL ENDED

RECTANGULAR PACKAGE

TR

805

2

WRAPAROUND

2mm x 1.25 X.5mm

Non-linear Resistors

Non-linear resistors, also known as varistors or voltage-dependent resistors, are electronic components that exhibit a nonlinear resistance characteristic with respect to the applied voltage. They are primarily used for voltage clamping, surge protection, and transient suppression in electronic circuits.

The resistance of a varistor decreases with an increase in voltage, allowing it to provide a low resistance path for transient currents that exceed a specified threshold. When the voltage level drops below the threshold, the resistance increases, returning the varistor to its high impedance state. This property makes them useful for protecting sensitive electronic components from voltage surges and spikes.

Varistors are available in two types: metal oxide varistors (MOVs) and silicon carbide varistors (SiCVs). MOVs are the most common type, and they can handle a wider range of voltages than SiCVs. SiCVs, on the other hand, can handle higher temperatures and are more suitable for high power applications.

Non-linear resistors are widely used in power supplies, surge protectors, electronic ballasts, motor control circuits, and telecommunication systems. They are available in various package types, including through-hole, surface mount, and radial leaded packages.