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 |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
Murata Manufacturing |
PTC THERMISTOR |
THROUGH HOLE MOUNT |
470 ohm |
80 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
BULK |
2 |
Radial |
16 V |
WIRE |
-10 Cel |
5 mm |
16 V |
5 mm |
CUL, UL |
4 mm |
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|
Vishay Intertechnology |
PTC THERMISTOR |
CHASSIS MOUNT |
20 ohm |
9 W |
80 Cel |
30 % |
25 Cel |
MOTOR START |
DUAL ENDED |
CERAMIC |
TUBULAR PACKAGE |
2 |
Chassis Mount |
500 V |
LUG |
Non-linear Resistors |
-10 Cel |
TIN |
500 V |
69.9 mm |
e3 |
38.1 mm |
CUL; UL |
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|
Vishay Intertechnology |
PTC THERMISTOR |
CHASSIS MOUNT |
85 ohm |
7 W |
80 Cel |
30 % |
25 Cel |
MOTOR START |
DUAL ENDED |
CERAMIC |
TUBULAR PACKAGE |
2 |
Chassis Mount |
500 V |
LUG |
-10 Cel |
TIN |
500 V |
60.2 mm |
e3 |
38.1 mm |
CUL; UL |
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Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
20000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
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Littelfuse |
NTC THERMISTOR |
CHASSIS MOUNT |
2500 ohm |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
2 |
Chassis Mount |
FLEXIBLE WIRE |
3892 K |
-55 Cel |
6.35 mm |
1.524 mm |
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Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
2252 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
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Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
10000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
||||||||||||||||||||||||||
Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
3000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
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Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
5000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
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|
Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
30000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
Tin (Sn) |
e3 |
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Littelfuse |
NTC THERMISTOR |
THROUGH HOLE MOUNT |
50000 ohm |
.03 W |
80 Cel |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
DISK PACKAGE |
2 |
WIRE |
3890 K |
-55 Cel |
TIN |
e3 |
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|
Littelfuse |
PTC RESETTABLE FUSE |
SURFACE MOUNT |
1 W |
80 Cel |
TEMPERATURE SENSING |
DUAL ENDED |
RECTANGULAR PACKAGE |
TR, EMBOSSED, 7 INCH |
2 |
SMT |
WRAPAROUND |
-40 Cel |
Gold (Au) - with Nickel (Ni) barrier |
1 mm |
6 V |
MINIMUM RESISTANCE 0.004 OHM |
3.43 mm |
e4 |
1.85 mm |
|||||||||||||||||||||
Littelfuse |
NTC THERMISTOR |
CHASSIS MOUNT |
10000 ohm |
80 Cel |
1 % |
25 Cel |
TEMPERATURE SENSING |
RADIAL |
2 |
Chassis Mount |
FLEXIBLE WIRE |
3892 K |
8.636 mm |
2.2606 mm |
|||||||||||||||||||||||||||
|
Littelfuse |
PTC RESETTABLE FUSE |
SURFACE MOUNT |
1 W |
80 Cel |
TEMPERATURE SENSING |
DUAL ENDED |
RECTANGULAR PACKAGE |
TR, EMBOSSED, 7 INCH |
2 |
SMT |
WRAPAROUND |
-40 Cel |
Gold (Au) - with Nickel (Ni) barrier |
.8 mm |
6 V |
MINIMUM RESISTANCE 0.002 OHM |
3.43 mm |
e4 |
1.85 mm |
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.