Fuses

Image Part Number Description / PDF Quantity Rfq
APR58-15A

APR58-15A

OptiFuse

FUSE AUTO 15A 58VDC BLAD ATO/ATC

0

ANR58-UL-500MA

ANR58-UL-500MA

OptiFuse

FUSE AUTO 500MA 250VAC 58VDC

0

APS-4A

APS-4A

OptiFuse

FUSE AUTO 4A 32VDC BLADE MINI

0

ANR80-UL-20A

ANR80-UL-20A

OptiFuse

FUSE AUTO 20A 80VDC BLADE

0

TMS-125MA

TMS-125MA

OptiFuse

THRU HOLE FUSE, TIME DELAY 125MA

1797

APR58-UL-1A

APR58-UL-1A

OptiFuse

FUSE AUTO 1A 58VDC BLADE

13356

FXG-2A

FXG-2A

OptiFuse

THRU HOLE FUSE 2.7X7.3MM,FAST 2A

2000

ANR80-25A

ANR80-25A

OptiFuse

REGULAR (ATO/ATC), 80V 25A - UL

0

FSF-2.5A

FSF-2.5A

OptiFuse

GLASS FUSE - 3.6X10MM, FAST 2.5A

3670

MSC-1.25A

MSC-1.25A

OptiFuse

GLASS-5X20MM (UL), MEDIUM 1.25A

1784

TMS-2A

TMS-2A

OptiFuse

THRU HOLE FUSE, TIME DELAY 2A

1084

TCM-3A

TCM-3A

OptiFuse

SMD FUSE - 2410, TIME DELAY 3A

0

APR58-UL-2A

APR58-UL-2A

OptiFuse

FUSE AUTO 2A 58VDC BLADE

3984

ANR80-UL-16A

ANR80-UL-16A

OptiFuse

FUSE AUTO 16A 80VDC BLADE

0

TSE-125MA

TSE-125MA

OptiFuse

GLASS FUSE - 5X15MM, SLOW 125MA

283

APS-I-3A

APS-I-3A

OptiFuse

FUSE AUTO 3A 32VDC BLADE MINI

1799

TMS-1A

TMS-1A

OptiFuse

THRU HOLE FUSE, TIME DELAY 1A

1527

APR-UL-20A

APR-UL-20A

OptiFuse

FUSE AUTO 20A 32VDC BLADE

1852

ANR-I-10A

ANR-I-10A

OptiFuse

FUSE AUTO 10A 32VDC BLADE

0

ANT58-1A

ANT58-1A

OptiFuse

FUSE AUTO 1A 58VDC BLADE MICRO

0

Fuses

Fuses are electrical safety devices that protect circuits from overcurrent conditions. As the oldest and most widely used circuit protection technology, fuses operate by breaking the circuit when current exceeds specified limits. Their importance in modern electronics spans from consumer devices to industrial machinery, preventing damage from short circuits, overloads, and fault conditions while ensuring system reliability and safety.

TypeFunctional FeaturesApplication Examples
Miniature Cartridge FusesCompact glass/ceramic body, fast-acting responsePower supplies, consumer electronics
Time-Delay FusesWithstands temporary current surges, slow-blow characteristicsMotors, transformers, switch-mode power supplies
High-Breaker FusesHandles extreme fault currents (>10kA), ceramic constructionIndustrial equipment, HVAC systems
Surface-Mount FusesMiniaturized SMD packaging for PCB integrationSmartphones, medical devices
Resettable Fuses (PTC)Polymer-based self-resetting functionalityUSB ports, battery protection circuits

Typical fuse construction includes: - Enclosure: Glass, ceramic, or plastic housing (dimensions standardized as 5x20mm, 6.3x32mm) - Fusible Element: Calibrated wire or etched metal strip (silver, copper, or alloy materials) - Filling Material: Sand/quartz for arc suppression in high-current models - Contact Terminals: Metal caps or surface-mount pads for electrical connection Modern designs incorporate laser-welded elements and precision-calibrated response mechanisms.

ParameterDescriptionImportance
Rated Current (In)Max normal operating current (0.1-250A range)Determines circuit protection threshold
Voltage RatingMax circuit voltage (32V-1000V DC/AC)Ensures safe arc interruption
Breaking CapacityFault current interruption capability (10A-300kA)Prevents catastrophic failure
Response Time0.1ms (fast-acting) to 10s (time-delay)Matches load characteristics
Trip Characteristic CurveI2t let-through energy ratingCoordinates with upstream devices

Key industries include: - Consumer Electronics: Mobile devices, home appliances - Automotive: Battery management systems, EV charging circuits - Industrial: Motor drives, PLC systems - Telecommunications: Base station power supplies, data center infrastructure - Renewable Energy: Solar inverters, wind turbine converters

ManufacturerRepresentative ProductKey Features
Littelfuse440 Series Ceramic Fuses1000V rating, 300kA breaking capacity
BussmannFWS-6 Class CCTime-delay protection for industrial motors
TE ConnectivityMini5FuseSMD 5x10mm package for space-constrained designs
Mitsubishi ElectricBF Series High-Rupture3-phase power system protection

Key considerations: 1. Match rated current/voltage with circuit parameters 2. Coordinate breaking capacity with system fault levels 3. Select response time per load type (e.g., inrush current in motors) 4. Consider environmental factors (temperature, vibration) 5. Verify regulatory certifications (UL/IEC standards) Example: Selecting a 5x20mm F1A 250V fuse with 1500A breaking capacity for a 120W power supply.

Emerging developments include: - Miniaturization: Sub-2mm SMD fuses for wearable devices - Smart integration: IoT-enabled fuses with real-time monitoring - Material innovation: Biodegradable polymer enclosures - High-voltage specialization: 1500V DC fuses for photovoltaic systems - Hybrid solutions: Combined fuse-circuit breaker architectures

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