UL cUL Fast Acting Ceramic Fuse 2.5A 250V 5x20mm Quick Blow Cartridge Tube Fuse 5.250BFC
Product description
Ceramic fuse of timed type of the series 5.250BFC. Its dimensions are 5 x 20 mm and has a current of 2.5 A and a power through a power 250V. Complies with applicable European standards EN 60127-2: 2003 + A1: 2003 + A2: 2010 + EN 50581: 2015 and is made of ceramic. The series 5.250BFC has become a symbol, thanks to its timeless and functional design that, however, updated any type of ambience. This series is a sure bet as it is a series of great creditworthiness, simple lines and that integrates perfectly into any type of project. In addition, 5.250BFC stands out because it is a range in which include the finishes white, ivory (two finishes that adapt to any state) and the metallized in champagne and aluminium (that are per day with the new trends in decoration). Standards:In accordance with UL 248 -1 / -14.
Agency Approvals
Voltage Rating | Agency | Ampere Range | Agency File Number |
125V/250V | UL | 200mA ~ 10A | E340427(JDYX) |
C-UL | 200mA ~ 10A | E340427( JDYX7) | |
PSE | 200mA ~ 10A | Pending | |
KTL | 200mA ~ 10A | Pending |
Specification
Catalog | Ampere | Voltage | Breaking | I2TMelting |
No. | Rating | Rating | Capacity | Integral(A2.S) |
5.250BFC0100A/B | 100mA | 250V/125V | 10000A@125 V AC (200mA~10A); 35A@250V AC (200mA~1A); 100A@250V AC (1.25A~3.5A); 200A@250V AC (4A~10A). | 0.002 |
5.250BFC 0125A/B | 125mA | 250V/125V | 0.003 | |
5.250 BFC0160A/B | 160mA | 250V/125V | 0.005 | |
5.250BFC0200A/B | 200mA | 250V/125V | 0.01 | |
5.250BFC0250A/B | 250mA | 250V/125V | 0.02 | |
5.250BFC0300A/B | 300mA | 250V/125V | 0.04 | |
5.250BFC0315A/B | 315mA | 250V/125V | 0.045 | |
5.250BFC0350A/B | 350mA | 250V/125V | 0.055 | |
5.250BFC0400A/B | 400mA | 250V/125V | 0.07 | |
5.250BFC0500A/B | 500mA | 250V/125V | 0.1 | |
5.250BFC0630A/B | 630mA | 250V/125V | 0.2 | |
5.250BFC0750A/B | 750mA | 250V/125V | 0.35 | |
5.250BFC0800A/B | 800mA | 250V/125V | 0.45 | |
5.250BFC1100A/B | 1A | 250V/125V | 0.9 | |
5.250BFC1125A/B | 1.25A | 250V/125V | 1.3 | |
5.250BFC1150A/B | 1.5A | 250V/125V | 1.6 | |
5.250BFC1160A/B | 1.6A | 250V/125V | 2.5 | |
5.250BFC1200A/B | 2A | 250V/125V | 5.8 | |
5.250BFC1250A/B | 2.5A | 250V/125V | 7.6 | |
5.250BFC1300A/B | 3A | 250V/125V | 8.1 | |
5.250BFC1315A/B | 3.15A | 250V/125V | 11 | |
5.250BFC1350A/B | 3.5A | 250V/125V | 19 | |
5.250BFC1400A/B | 4A | 250V/125V | 28 | |
5.250BFC1500A/B | 5A | 250V/125V | 40 | |
5.250BFC1600A/B | 6A | 250V/125V | 50 | |
5.250BFC1630A/B | 6.3A | 250V/125V | 64 | |
5.250BFC1700A/B | 7A | 250V/125V | 107 | |
5.250BFC1800A/B | 8A | 250V/125V | 133 | |
5.250BFC2100A/B | 10A | 250V/125V | 242 | |
5.250BFC2150A/B | 15A | 250V/125V | 368 | |
5.250BFC2200A/B | 20A | 250V/125V | 442 | |
5.250BFC2250A/B | 25A | 250V/125V | 568 | |
5.250BFC2300A/B | 30A | 250V/125V | 715 |
Dimensions and Structure
Axial leaded | ![]() |
Leadless | ![]() |
NO. | Part Name | Material |
1 | Cap | Nickel Plated Brass |
2 | Body | Ceramic Tube |
3 | Fuse element | Alloy |
4 | lead | Nickel Plated Brass |
Operating Characteristics
% of Ampere Rating(In) | Blowing Time |
100%* In | 4 hours Min |
135%* In | 1 hour Max |
200%* In | 120 sec Max |
Electrical Characteristics
1) Lead Pull Strength : 5N for 10±1 Seconds
2) Lead Thrust Strength : 2N for 10±1 Seconds
3) Solder ability : Wave : 260℃,≤3s;Soldering Iron: 350±10℃,≤3s.
4) Soldering Heat Resistance : Wave : 260℃,10s;Soldering Iron: 350℃,5s.
5) Test Condition : All electrical test is to be conducted with the ambient air at a temperature of 25±5℃.
6) Load capacity:When the fuse loads through 100% of rated current, should blow within 4 hours.
7) Interrupting Rating:
Breaking Capacity:
10000A at125 V AC (5.250BFC In range 200mA~10A);
35A at 250V AC (5.250BFC In range 200mA~1A);
100A at 250V AC 5.250BFC In range 1.25A~3.5A);
200A at 250V AC (5.250BFC In range 4A~10A).
8) 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.