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High Breaking Capacity 6.35x32mm Time Delay Cylindrical Ceramic Tube Fuse Link 10A 250V 6x30mm Slow Blow For Lighting

Aolittel Technology Co.,Ltd
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Address: NO.27,Jinlanling Street,Taigongling Village Dongguan 523829,Guangdong,China

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Aolittel Technology Co.,Ltd

High Breaking Capacity 6.35x32mm Time Delay Cylindrical Ceramic Tube Fuse Link 10A 250V 6x30mm Slow Blow For Lighting

Country/Region china
City & Province dongguan guangdong
Categories Power Accessories
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Product Details

 

High Breaking Capacity 6.35x32mm Time Delay Cylindrical Ceramic Tube Fuse Link 10A 250V 6x30mm Slow Blow For Lighting

 

 

Main Features

 

In accordance with UL 248 -1 / -14.

UL   file number JDYX2.E365879

cUL file number JDYX8.E365879

High Breaking Capacity reach 1000A

Compact design 

Axial leaded and Cartridge Fuse available

Rated voltage 250VAC 

Wide current range 100mA~50A

Customized lead forming/90 degree angle available

Non-Transparent Ceramic Tube, sand inside option available

 

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Performances

 

A=250VAC

 

P/N

Ampere

Rating

Voltage

Rating

Breaking

Capacity

Agency Approvals
ULcUL
BMT0100A100mA250V

35A@250V AC (100mA~1A);

 

100A@250V AC (1.25A~3.5A);

 

200A@250V AC (4A~10A).

 

750A@250V AC (12A~30A).

 

 

1000A@250V AC (32A~50A)

BMT0160A160mA250V
BMT0200A200mA250V
BMT0250A250mA250V
BMT0300A300mA250V
BMT0315A315mA250V
BMT0350A350mA250V
BMT0400A400mA250V
BMT0500A500mA250V
BMT0630A630mA250V
BMT0750A750mA250V
BMT0800A800mA250V
BMT1100A1A250V
BMT1125A1.25A250V
BMT1150A1.5A250V
BMT1160A1.6A250V
BMT1200A2A250V
BMT1250A2.5A250V
BMT1300A3A250V
BMT1315A3.15A250V
BMT1350A3.5A250V
BMT1400A4A250V
BMT1500A5A250V
BMT1600A6A250V
BMT1630A6.3A250V
BMT1800A8A250V
BMT2100A10A250V
BMT2120A12A250V
BMT2150A15A250V
BMT2200A20A250V
BMT2250A25A250V
BMT2300A30A250V
BMT2320A32A250V
BMT2500A50A250V

 

 

Product Characteristics

 

Lead Pull Strength

5N for 10±1 Seconds

Lead Thrust Strength

2N for 10±1 Seconds

Solder ability

Wave : 260℃,≤3s;

Soldering Iron: 350±10℃,≤3s.

Soldering Heat Resistance

Wave : 260℃,10s;

Soldering Iron: 350℃,5s.

 

 

Electrical Characteristics

 

Test Condition

All electrical test is to be conducted with the ambient air at a temperature of 25±5℃.
Load capacityWhen the fuse loads through 100% of rated current, should blow within 4 hours.

Interrupting Rating

Breaking Capacity:
35A at 250V AC (BMT In range 100mA~1A);
100A at 250V AC (BMT In range 1.25A~3.5A);
200A at 250V AC (BMT In range 4A~10A);
750A at 250V AC (BMT In range 12A~30A)
1000A at 250V AC (BMT In range 32A~50A).

Rising Temperature Test

When the 100% times of Ampere Rating passes the fuse, after reaching thermal balance , the temperature on the fuse surface rising shall not be higher than 75℃. Note: Rising temperature = the Surface temperature - Ambient temperature.

 

 

Operating Characteristics

 

% of Ampere Rating(In)

Blowing Time

100%* In4 hours Min
200%* In120 sec Max

 

 

Dimension  (mm)

 

Axial leaded

 

Cartridge Fuse

 

 

Does a fuse resistor work the same as a fuse?

 

A resistor is available for a certain load. If the current flowing through the resistor goes beyond the limit, it will be burned and the circuit will be open. At this point, a resistor is similar to a fuse, i.e., the current can be interrupted upon overcurrent. This seems like a fuse function. In this way, some manufacturers change the fuse in its original design to cheap fuse resistors to keep cost down, presenting customers with superficial security.

However, is a fuse resistor able to substitute a fuse to have the same function? The answer is obviously no.

As we know, a good fuse must possess three essential functions: protection, load bearing and safety, while a fuse resistor may not be able to work well in all three aspects.

The protection function covers overload protection and short circuit protection. Specifically, a fuse must operate within the specified time when an unexpected overcurrent, even an extremely short overcurrent, occurs in the circuit, so as to protect the circuit and parts. A fuse resistor may not be as accurate as the fuse in terms of technical parameters like starting time and operation duration, and thus cannot ensure overcurrent protection. It only works to some extent for short current.

The load bearing function of a fuse is ensured by the I2t value, which enables a fuse to withstand pulse shocks of a certain energy from switching operations. We should calculate and evaluate this value before fuse selection. Nevertheless, a fuse resistor has no similar technical indexes, so it may be blown by a pulse if the value is small or fail to protect the circuit if it is large.

As for safety, a fuse can be assured through rated voltage, interrupting capacity and other indexes, especially safety compliance certification by an authorized third party. A fuse resistor is not a safety component, so it does not need certification. Its safety is therefore questionable. Furthermore, it has insufficient protection, and its hard to ensure no hazards occur during the breaking process.

In conclusion, a fuse resistor may blow upon overcurrent, but it cannot work the same as a fuse. In most applications, it will not be appropriate to replace a fuse with a fuse resistor to cut cost.

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