TSC-P Series, Fuses

Results:
5
Manufacturer
Series
Melting I²t
Current Rating (Amps)
Breaking Capacity @ Rated Voltage
Operating Temperature
Response Time
Color
Approval Agency
Fuse Type
Mounting Type
Size / Dimension
Voltage Rating - DC
Package / Case
Voltage Rating - AC
Results remaining5
Applied Filters:
TSC-P
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ImageProduct DetailPriceAvailabilityECAD ModelColorVoltage Rating - DCMounting TypeOperating TemperatureResponse TimeVoltage Rating - ACCurrent Rating (Amps)SeriesFuse TypePackage / CaseBreaking Capacity @ Rated VoltageSize / DimensionMelting I²tApproval Agency
TSC-P-3.5A
GLASS - 5X20MM (UL), SLOW 3.5A
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Through Hole
-55°C ~ 125°C
Slow Blow
250 V
3.5 A
TSC-P
Cartridge, Glass
5mm x 20mm (Axial)
200A
0.217" Dia x 0.827" L (5.50mm x 21.00mm)
-
cULus, UL 248
TSC-P-200MA
FUSE GLASS 200MA 250VAC 5X20MM
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Through Hole
-55°C ~ 125°C
Slow Blow
250 V
200 mA
TSC-P
Cartridge, Glass
5mm x 20mm (Axial)
100A
0.217" Dia x 0.827" L (5.50mm x 21.00mm)
0.2224
cULus, UL 248
TSC-P-4A
FUSE GLASS 4A 250VAC 5X20MM
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Through Hole
-55°C ~ 125°C
Slow Blow
250 V
4 A
TSC-P
Cartridge, Glass
5mm x 20mm (Axial)
200A
0.217" Dia x 0.827" L (5.50mm x 21.00mm)
30.8
cULus, UL 248
TSC-P-5A
FUSE GLASS 5A 250VAC 5X20MM
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Through Hole
-55°C ~ 125°C
Slow Blow
250 V
5 A
TSC-P
Cartridge, Glass
5mm x 20mm (Axial)
200A
0.217" Dia x 0.827" L (5.50mm x 21.00mm)
46.97
cULus, UL 248
TSC-P-1A
FUSE GLASS 1A 250VAC 5X20MM
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
Through Hole
-55°C ~ 125°C
Slow Blow
250 V
1 A
TSC-P
Cartridge, Glass
5mm x 20mm (Axial)
100A
0.217" Dia x 0.827" L (5.50mm x 21.00mm)
2.242
cULus, UL 248

About  Fuses

Fuses are specialized devices designed to interrupt the flow of electrical current in a circuit when the current exceeds a specific threshold, providing protection against overcurrent conditions. They consist of a conductor that is intentionally designed to melt and open the circuit when exposed to excessive current, thereby preventing damage to the connected components or equipment. When the current flowing through a fuse surpasses its rated capacity, the heat generated within the fuse causes the conducting element to melt or blow, creating an open circuit and stopping the flow of electricity. This action effectively protects the circuit and connected devices from potential damage caused by excessive current flow. Fuses are available in various types and configurations, including fast-acting and slow-blow fuses, each with different response times to overcurrent conditions. Fast-acting fuses respond quickly to overloads, while slow-blow fuses offer a delayed response and can withstand temporary current surges without blowing. The selection of the appropriate fuse type depends on the specific requirements of the electrical circuit being protected. By using fuses with the correct characteristics, the risk of damage to equipment and hazards resulting from excessive current flow can be minimized, ensuring the safe and reliable operation of electrical systems.