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6125 2410 1808 Wire In Air Time Delay Suface Mount Fuse 250V 2A Slow Blow Lead Gold Plated

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Aolittel Technology Co.,Ltd

6125 2410 1808 Wire In Air Time Delay Suface Mount Fuse 250V 2A Slow Blow Lead Gold Plated

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

 

6125 2410 1808 Wire In Air Time Delay Suface Mount Fuse 250V 2A

 

 

Overview

 

Ao littel surface mount fuses available for addressing a broad range of overcurrent protection applications. Helping to prevent costly damage and promote a safe environment for electronic and electrical equipment, our single-use chip fuses provide performance stability to support applications with current ratings from .5A up to 20A.

 

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Ao littel also offers the telecom FT600 fuse for telecommunications applications. This telecom fuse helps comply with North American overcurrent protection requirements,including Telcordia, GR-1089, TIA-968-A (formerly FCC Part 68), and UL60950 3rd edition

 

The multi-layer design 2410(6125) is a Wire-In-Air SMD Fuse which is very suitable for secondary level over current protection applications.
Compared our straight wire element design 2410SFV fuses with normal corrugating wire design fuse. The straight wire element in air performs consistent fusing and cutting
characteristics together with excellent inrush current withstanding capability.
Introduced PCB assembly technology into 2410 fuses design and manufacture, we achieved on lead free completely and no end cap falling off risk comparing with traditional ceramic body with end cap fuse.

 

Ao littel Surface Mount Fuse Family Member
No.SizeBlowVoltageSeires
10603Fast Blow32V06.000
20603Time Delay32V06.100
31206Fast Blow32V12.000
41206Time Delay32V12.100
56125Time Delay250VSET
66125Fast Blow250VSEF
72410Fast Blow125VSFE
82410Time Delay125VSTE
91808Fast Blow300VSSF
101808Time Delay300VSST
91032Time Delay125VR1032
101032Fast Blow125VR1032

 


 

Benefits

 

• Very fast acting at 200% overload current level
• Excellent inrush current withstanding capability
• High reliability and resilience
• Strong arc suppression characteristics
• Copper terminal with nickel and tin plated

 

 

Product features

• Time-delay surface mount fuse with Small 2410 Footprint
• Satisfies the EIA/IS-722 Standard
• Solder immersion compatible
• 250V Voltage Rating (200mA to 30A)
• High Interrupting Ratings
• Designed in accordance with IEC 60127-4 Universal Modular Fuse requirement
• Wide Operating temperature range of -55°C to 125°C
• IEC 61000-4-5 2 ed. Surge Immunity Test Compliant (1.2 x 50us/8x20us combination wave 500V/250A for <25W Lamp Category) – 3A and above ampere rating only

• Halogen free, RoHS compliant and 100% lead-free
• Copper or copper alloy composite fuse link

 

 

Application

 

• Industrial equipment
• LCD/PDP TV
• Backlight inverter 
• Power supplier
• Telecom system
• Networking
• Game systems
• White goods
• Automotive

 

 

Shape and Dimensions (mm)

 

 

 

Specification

 

Part No.Ampere RatingVoltage RatingBreaking CapacityNominal Cold Resistance (Ohms)I2TMelting Integral(A2.S)Agency Approvals
ULCUL
SET0200200mA250VAC50A@300VAC 50A@250VAC 200A@125VAC0.920.125
SET0250250mA0.860.145
SET0300300mA0.620.162
SET0315315mA0.550.189
SET0375375mA0.470.2
SET0400400mA0.380.238
SET0500500mA0.320.275
SET0600600mA0.2850.47
SET0630630mA0.2560.566
SET0700700mA0.2080.805
SET0750750mA0.1751.24
SET0800800mA0.1551.88
SET11001A0.1483.5
SET11251.25A0.1024.76
SET11501.5A0.0856.305
SET11601.6A0.0756.505
SET12002A0.0448.95
SET12502.5A0.04316.025
SET13003A0.03321.56
SET13153.15A0.02922.75
SET13503.5A0.02727.05
SET14004A0.02531.808
SET15005A0.01940.25
SET16006A0.01867.245
SET16306.3A0.01773.55
SET17007A0.01576.28
SET18008A80.75
SET210010A0.014110.38
SET212012A0.013158.08
SET215015A0.012160.68
SET220020A166.58
SET230030A0.011170.56
  • These part no. cold resistance and I2t value are pending due to fuse elements shall be customized;
  • DC Cold Resistance are measured at <10% of rated current in ambient temperature of 25℃;
  • Typical Pre-arching I2t are calculated at 10*In Current or 8ms;
  • Min Interrupting Rating: 1.35*In.

 

 

Product Characteristics

 

NO.

Item

Content

Reference standards

1

Product Marking

Brand, Ampere RatingAo littel marking standards
2

Operating Temperature

-55°C to 125°CIEC60068-2-1/2
3

Solderability

T=240°C±5°C , t=3sec±0.5sec, Coverage≥95%MIL-STD-202, Method 208
4

Resistance to Soldering Heat

10 sec at 260°CMIL-STD-202, Method 210, Test condition B
5

Insulation Resistance (after Opening)

10,000 ohms minimumMIL-STD-202, Method 302, Test Condition A
6

Thermal Shock

5 cycles, -65°C / +125°C, 15 minutes at each extremeMIL-STD-202, Method 107, Test Condition B
7

Mechanical Shock

100G’s peak for 6 milliseconds, 3cyclesMIL-STD-202, Method 213, Test I
8

Vibration

0.03”amplitude, 10-55 Hz in 1 min. 2hrs each XYZ=6hrsMIL-STD-202, Method 201
9

Moisture Resistance

10 cyclesMIL-STD-202, Method 106
10

Salt Spray

5% salt solution, 48hrsMIL-STD-202, Method 101, Test Condition B

 

 

Fusing Characteristics

 

% of Ampere Rating(In)Fusing Time
100% * In4 hours Min.
200% * In120 sec Max.
1000% * In10ms Min .

 

 

Packaging 

 

Tape in reel ; 1,000 pcs in 7 inches dia. reel, 12mm wide tape, EIA Standard 481

 

 

Surface Mount Fuse Selection Flowchart

 

However, the basic considerations for fuse selection are shown in the flowchart presented in Figure 6. Following this flow chart
will help you select a fuse best suited for your application conditions.

 

Step 1 – Determine Steady State Fuse Current Rating 

 

Apply Standard Steady State Derating (75%) [Ifuse ≥ Isys/0.75]  ⇒ Apply Temperature Derating [Ifuse ≥ Isys/0.75/Ktemp] ⇒ Steady State Fuse Current Rating ⇒ Step 2 –Determine Pulse Waveform by Calculating I2t ⇒  Step 3 –Apply Pulse Cycle Derating     ⇒   Step 4 –Apply Pulse Temperature
Derating     ⇒  Step 5 – Apply Derating for Variance in the Circuit  ⇒  Step 6 – Select Fuse Current
Rating for Pulse Environment ⇒ Step 7 – Select Fuse Current Rating (use higher value between Step 1 and Step 6)  ⇒  Step 8 – Check Voltage Rating  

 

 

Selecting Surface Mount Fuses

 

SMD Fuse selection seems straightforward, in that, you pick one which has a current rating just a bit higher than your worstcase system operating current. Unfortunately, it’s not that simple. There are derating considerations for operating current and application temperature. Turn-on and other system operations (like processor speed changes or motor start up) cause current surges or spikes that also require consideration when selecting a fuse. So selecting the right fuse for your application is not as simple as knowing the nominal current drawn by the system.

 

 

Surface Mount Fuse Temperature Derating Comparision

 

A SMD fuse is a temperature sensitive device. Therefore, operating temperature will have an effect on fuse performance and lifetime.Operating temperature should be taken into consideration when selecting the fuse current rating. The Thermal Derating Curve for surface mount fuses is presented in below Figure . Use it to determine the derating percentage based on operating temperature and apply it to the derated system current.

 

 

 

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