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Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved

    Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers
     
    Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers
    • Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers
    • Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers
    • Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers
    • Buy cheap Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved from wholesalers

    Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved

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    Brand Name : AOLITTEL
    Model Number : HTP1160A
    Certification : UL,cUL
    Price : Contact us
    Payment Terms : T/T, MoneyGram
    Supply Ability : 1,000,000 Pieces Per Month
    Delivery Time : 7-10 days
    • Product Details
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    Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved


    Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved


    Applications


    Primary circuit protection:
    • Power supplies
    • LED and general lighting
    • Consumer electronics
    • Desktop, laptop and notebook
    • Test equipment


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    Product description


    • Time-delay
    • Designed to IEC60127-3
    • Nickel-plated brass single end cap construction
    • 3.6 mm x 10 mm compact design utilizes less
    board space
    • Halogen free, lead free, RoHS compliant


    Dimension (mm)


    Without lead
    Axial lead

    Electrical Performances (A=250V,B=125V)


    Part

    No.

    Ampere

    Rating

    Voltage

    Rating

    Breaking

    Capacity

    I2TMelting

    Integral(A2.S)

    Agency Approvals

    ULcUL

    PSE

    HTP0100A/B100mA250V/125V50A@125V/250VAC0.0042
    HTP0125A/B125mA250V/125V50A@125V/250VAC0.010
    HTP0160A/B160mA250V/125V50A@125V/250VAC0.025
    HTP0200A/B200mA250V/125V50A@125V/250VAC0.035
    HTP0250A/B250mA250V/125V50A@125V/250VAC0.056
    HTP0300A/B300mA250V/125V50A@125V/250VAC0.10
    HTP0315A/B315mA250V/125V50A@125V/250VAC0.12
    HTP0350A/B350mA250V/125V50A@125V/250VAC0.15
    HTP0400A/B400mA250V/125V50A@125V/250VAC0.25
    HTP0500A/B500mA250V/125V50A@125V/250VAC0.35
    HTP0630A/B630mA250V/125V50A@125V/250VAC0.55
    HTP0750A/B750mA250V/125V50A@125V/250VAC0.70
    HTP0800A/B800mA250V/125V50A@125V/250VAC1.1
    HTP1100A/B1A250V/125V50A@125V/250VAC2
    HTP1125A/B1.25A250V/125V50A@125V/250VAC3.8
    HTP1150A/B1.5A250V/125V50A@125V/250VAC4.2
    HTP1160A/B1.6A250V/125V50A@125V/250VAC6.2
    HTP1200A/B2A250V/125V50A@125V/250VAC13
    HTP1250A/B2.5A250V/125V50A@125V/250VAC18
    HTP1300A/B3A250V/125V50A@125V/250VAC28
    HTP1315A/B3.15A250V/125V50A@125V/250VAC32
    HTP1350A/B3.5A250V/125V50A@125V/250VAC39
    HTP1400A/B4A250V/125V50A@125V/250VAC43
    HTP1500A/B5A250V/125V50A@125V/250VAC54
    HTP1600A/B6A250V/125V50A@125V/250VAC58
    HTP1630A/B6.3A250V/125V50A@125V/250VAC59
    HTP1700A/B7A250V/125V50A@125V/250VAC63
    HTP1800A/B8A250V/125V50A@125V/250VAC65
    HTP2100A/B10A250V/125V50A@125V/250VAC68
    HTP2100A/B12A250V/125V50A@125V/250VAC72

    Electrical characteristics


    % of Ampere Rating(In)

    Blowing Time

    100% * In4 hours Min
    200% * In60 sec Max

    Environmental data


    Operating temperature-55 °C to +125 °C (with derating)
    Thermal shock

    MIL-STD- 202G, Method 107G,

    test condition B (5 cycles -65 °C to +125 °C)

    VibrationMIL-STD- 202G, Method 201A
    HumidityMIL-STD- 202G, Method 103B, test condition A
    Salt sprayMIL-STD- 202G, Method 101D, Test condition B

    What are the similarities and differences between a disposable fuse and a resettable fuse?


    A restorable fuse is essentially a PTC thermistor. It is totally different from a fuse because of its operating principle: it protects a circuit as the resistance of the PTC material is positively correlated to temperature and jump at Curie point.

    For the similarities: they both can be used for circuits for overcurrent protection and applied to a number of similar fields and circumstances. Both can be used or replaced in some circumstances. For example, both products are outstanding for battery protection applications where overcurrent protection requirement is not so strict. For protection of certain ICs and important components or at power input/output ends, only the disposable fuse may be competent. The impedance requirement is also higher for these parts. However, the PTC thermistor will be the best choice for the circumstances when products should avoid being damaged from overheat or overcurrent protection at interfaces where hot-swapping is frequent. Yet in most circumstances, the two products are greatly different or cannot replace one another. The following table shows the primary differences between the two.

    Owing to the similarities and differences, the two products are available in the market for different purposes.


    One Time fuseResettable PTC fuse
    Internal resistanceSmallLarge
    Current sensitivityHighLow
    Response timeFastLow
    Ageing rateSlowFast
    Leakage currentNoneYes
    Safety performanceStrongWeak
    Application scopeWideNarrow
    Quality Nickel Plated Brass Cap 3x10mm Cylindrical Leaded Time Lag Ceramic Tube Fuse 1.6A 250VAC Board Mount With UL Approved for sale
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