Thermal Cutoffs (Thermal Fuses)

Results:
420
Manufacturer
Series
Rated Functioning Temperature
Holding Temperature
Approval Agency
Current Rating (Amps)
Maximum Temperature Limit
Package / Case
Voltage Rating - DC
Voltage Rating - AC
Reset Temperature
Type
Results remaining420
Select
ImageProduct DetailPriceAvailabilityECAD ModelVoltage Rating - DCPackage / CaseSeriesCurrent Rating (Amps)TypeRated Functioning TemperatureReset TemperatureVoltage Rating - ACApproval AgencyMaximum Temperature LimitHolding Temperature
T115
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Radial
T
15 A
Fuse
115°C (239°F)
-
250
CCC, cUL, PSE, UL, VDE
200°C (392°F)
85°C (185°F)
EYP-2BN127
TCO 250VAC 134C (273F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
N
-
Fuse
134°C (273°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
100°C (212°F)
EYP-2BN099L
TCO 250VAC 102C (216F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
N
-
Fuse
102°C (216°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
75°C (167°F)
EYP-2BH138
TCO 250VAC 139C (282F) RADIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Radial
H
-
Fuse
139°C (282°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
105°C (221°F)
EYP-2BH134
TCO 250VAC 134C (273F) RADIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Radial
H
-
Fuse
134°C (273°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
95°C (203°F)
EYP-1BF134
TCO 250VAC 134C (273F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
F
-
Fuse
134°C (273°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
105°C (221°F)
EYP-1BF101
TCO 250VAC 102C (216F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
F
-
Fuse
102°C (216°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
75°C (167°F)
EYP-05BE101L
TCO 250VAC 102C (216F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
E
-
Fuse
102°C (216°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
75°C (167°F)
EYP-05BE145
TCO 250VAC 145C (293F) AXIAL
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
E
-
Fuse
145°C (293°F)
-
250
BEAB, CCC, CSA,cUL, PSE, UL, VDE
200°C (392°F)
125°C (257°F)
SW70AAB
THERM TCO 70DEG C SPST-NC 4SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
-
4-SMD, Flat Leads
SW
1.5 A
Breaker
70°C (158°F)
49°C (120°F)
100
-
-
-
F7
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Radial
F
1 A
Fuse
150°C (302°F)
-
250
CCC, cUL, KC, PSE, TUV, UL, VDE
200°C (392°F)
126°C (259°F)
T136
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Radial
T
15 A
Fuse
136°C (277°F)
-
250
CCC, cUL, PSE, UL, VDE
200°C (392°F)
106°C (223°F)
XG18
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
60
Radial
XG
3 A
Fuse
86°C (187°F)
-
250
CCC, cUL, PSE, TUV, UL
200°C (392°F)
61°C (142°F)
Y2
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Radial
Y
5 A
Fuse
115°C (239°F)
-
250
CCC, Cul, KTL, PSE, UL, VDE
200°C (392°F)
89°C (192°F)
B18
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
B
3 A
Fuse
86°C (187°F)
-
250
CCC, KTL, PSE, TUV
200°C (392°F)
61°C (142°F)
B2
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
B
3 A
Fuse
115°C (239°F)
-
250
CCC, cUL, KTL, PSE, TUV, UL
200°C (392°F)
91°C (196°F)
B1
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
50
Axial
B
3 A
Fuse
102°C (216°F)
-
250
CCC, KTL, PSE, TUV
200°C (392°F)
79°C (174°F)
X6
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
60
Radial
X
4 A
Fuse
145°C (293°F)
-
250
CCC, cUL, KC, PSE, UL, VDE
200°C (392°F)
121°C (250°F)
X7
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Radial
X
3 A
Fuse
150°C (302°F)
-
250
CCC, cUL, KC, PSE, UL, VDE
200°C (392°F)
126°C (259°F)
F4
ALLOY THERMAL CUTOFF
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Quantity
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PCB Symbol, Footprint & 3D Model
60
Radial
F
3 A
Fuse
130°C (266°F)
-
250
CCC, cUL, KC, PSE, TUV, UL, VDE
200°C (392°F)
106°C (223°F)

Thermal Cutoffs (Thermal Fuses)

Thermal cutoffs, also known as thermal fuses, are engineered to protect components from excessive temperatures. In the event that the preset operating temperature is surpassed, the thermal cutoff will activate by opening up in the electrical circuit, thereby interrupting the current flow to prevent damage.