X-On Electronics has gained recognition as a prominent supplier of 70107080 Fuses with Leads - Through Hole across the USA, India, Europe, Australia, and various other global locations. 70107080 Fuses with Leads - Through Hole are a product manufactured by Schurter. We provide cost-effective solutions for Fuses with Leads - Through Hole, ensuring timely deliveries around the world.

70107080 Schurter

70107080 electronic component of Schurter
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See Product Specifications
Part No.70107080
Manufacturer: Schurter
Category: Fuses with Leads - Through Hole
Description: FUSE, WIRE ENDED, 1.5A
Datasheet: 70107080 Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 1.1907 ea
Line Total: USD 1.19 
Availability - 0
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
0
Ship by Mon. 02 Dec to Fri. 06 Dec
MOQ : 1
Multiples : 1
1 : USD 1.1907
10 : USD 1.122
100 : USD 1.1056
500 : USD 1.0159
1000 : USD 1.008
2000 : USD 0.9923

   
Manufacturer
Product Category
Series
Voltage Rating AC
Fuse Type
Voltage Rating DC
Termination Style
Fuse Current
Breaking Capacity Current Ac
Breaking Capacity Current Dc
Blow Characteristic
Product Range
Svhc
Approval Bodies
Approval Category
Body Diameter
Body Length
Breaking Capacity
Case Material
Fuse Mounting
Fuse Size Imperial
Lead Diameter
Lead Length
Mounting Type
Operating Temperature Max
Operating Temperature Min
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Notes:- Show Stocked Products With Similar Attributes.

We are delighted to provide the 70107080 from our Fuses with Leads - Through Hole category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the 70107080 and other electronic components in the Fuses with Leads - Through Hole category and beyond.

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White Paper Fuse Selection www.schurter.com/downloads Find the Right Fuse Criteria for Correct Fuse Selection Circuitry overcurrent protection rarely receives the attention it deserves. An inadequately thought out selection of fuses can lead to the breakdown of equipment and installation, resulting in high replacement costs and dissatisfied customers. This technical article focuses on the correct selection criteria for fuses and fuseholders, and should help you take the more important aspects into consideration. Normal operation after switching ON is ex- plained under point 1. This point should always be taken into consideration. Point 2 is only necessary with capacitive loads, present when the charging of capacitors after switching ON, leads to high in-rush current peaks and the rated current of the fuse is ex- ceeded by many multiples. Important facts with regard to fuseholders are given under point 3, where the correct selec- tion of fuse and fuseholder combinations is explained. 40% 30% 20% 10% 0 -10% -20% -30% -40% -40C -20C 0C 20C 40C 60C 80C 100C Ambient Temperature Ta C Fig. 1: shows the de-rating curve of the time-lag SMD fuse UMT 250. Point 1: Normal Operation After Switching ON Under normal operating conditions, a fuse is subjected to a maximum operating cur- rent and a maximum operating temperature. A derating of the rated current is therefore usually necessary since a fuse is rarely oper- The function of a fuse is to interrupt an uncon- With overcurrents up to 2x or 3x the rated cur- ated at the set ambient temperature of 23 C. trolled fault current or overcurrent before seri- rent, a fuse becomes less accurate and, as As an example, lets look at a scenario using a ous damage can occur, such as the overheat- such, not so well suited for these conditions. time-lag SMD fuse such as the UMT 250 from ing of equipment. Because a fuse is designed Other overcurrent protection measures such SCHURTER. With an operating temperature of using a fusing element, it is particularly suited as electronic protection, thermal overload ele- 60 C, in accordance with fig. 1 the fuse needs for reliable interruption of short-circuits. ments or additional fuses are then necessary. to be derated by 17%, i.e., when the operat- Fuses 01 Derating of rated current in %White Paper Fuse Selection www.schurter.com/downloads Pre-Arcing Time ing current is 1 A 60 C, a rounded-up fuse ON. These pulses can be many multiples of the value of 1.25A (1A / 0.83) is necessary. rated current of the fuse, but are mostly of a very Rated Current In 1.0 x In min. 2.0 x In max. Fuses can be in accordance with IEC 60127 or short duration. UL 248-14. Because of the different definitions The area beneath the curve is called the melt- 2 2 0.375 A - 5 A 4 h 60 s between the two standards, fuses are not ing integral or I t value. The I t value is defined directly interchangeable as follows: fuses in as that amount of energy necessary to heat accordance with IEC 60127 may be operated Table 1: Pre-arcing time of a fuse continually at 100% of the rated current value, according to UL 248-14. whereas fuses in accordance with UL 248-14 Inrush Current only at 75%. UL 248-14 specifies a minimum 13A of 4h operating time at rated current (table 1). a certain temperature has been reached when the fuse element melts (opens) and interrupts The self-heating effect of time-lag fuses is less the circuit. I RMS than that of quick-acting. This can be seen All measures for cooling such as ventilation, from the typical values of voltage drop. For heat sinks, large solder surfaces or heat ac- example, a 2 A 5x20 mm glass time-lag fuse cumulators (fig. 2) change the time/current has a typical voltage drop of 60 mV, whereas a characteristic of the fuse and thus should be 5.4 A typical quick-acting version is 90 mV. This dif- avoided. 2 I t ference is evident by the thicker fuse element 2.6 A 2 (higher melting value I t, see point 2) that is Point 2: In-Rush Current Peaks 1.6 A Operating Current 1 A 1 A necessary for time-lag fuses. It should also be In-rush current peaks (fig. 3) arise through ca- Time 0.006 s 0.012 s 0.018 s 0.024 s 0.03 s noted that fuses are heated by the current until pacitors that are initially charged when switched 1 2 3 4 5 Fig. 3: Typical switch-on curve of a SMPS when capacitors need to be charged. up and melt a wire or fuse element. Generally this is an exponential curve having a peak cur- rent value of Ip over a period of time called , at which point the current has reached 37% of the peak current value. As an example, lets take the time-lag SMD fuse UMT 250, 1 A. The 2 I t-value can be calculated with the following formula using a peak current of Ip = 13 A and a = 6 ms: 2 2 I tApplication =0.5*Ip * 2 2 2 I tApplication =0.5*(13 A) *6 ms=0.507 A s In addition to the start-up current, the number of pulses over the life of the equipment must be taken into account since premature ageing of the fuese needs to be considered. A factor of 0.29 is used for 10 000 pulses with time-lag fuses (see table 2). 2 2 I tmin Fuse T =I tApplication/F 2 2 2 I tmin Fuse T =0.507 A s/0.29=1.748 A s Manufacturers provide the melting integral val- ue in the catalog for each fuse type and rated current. For example, (table 3) with the IEC time-lag SMD fuse UMT 250. The 1 A rated Fig. 2: Fuses mounted in holders can influence 2 2 current fuse has an I t value of 2.8 A s, that is, each other with regard to temperature. with an over-current (short-circuit) or an inrush Fuses 02

Tariff Desc

8536.1 TC 8734467 FUSE LINKS, having ALL of the following:
(a) dimensions NOT exceeding 6.35mm x 32.0mm;
(b) current rating NOT exceeding 50 A
(c) voltage rating NOT exceeding 250 V

8536.1 TC 8533840 FUSE CARTRIDGES, glass tube, rated voltage less than 500V, being EITHER of the following:
(a) slow blow type NOT exceeding 200mA
(b) fast acting type NOT exceeding 30mA

8536.1 TC 8804148 FUSE LINKS, having a current rating of 1000 A or greater, but NOT including parts therefor

8536.1 TC 8903315 FUSES, subminiature, plug-in or pigtail with mating fuse holders, body dimensions NOT exceeding 10mm x 10mm x 10mm

8536.1 TC 8438455 FUSES, blade terminal type, having a voltage rating NOT exceeding 32V

8536.10.00 TC 9511052 POWER SEMICONDUCTOR FUSES, rated voltage 660V or 1250V, current rating of 10A or greater but NOT exceeding 7500A

8536.10.00 TC 9511051 FUSE LINKS, HRC, having ALL of the following:
(a) voltage rating of 415V or greater but NOT exceeding 600V
(b) current rating of 2A or greater but NOT exceeding 1250A
(c) breaking capacity of NOT less than 80kA

8536.2 TC 8531177 OVER CURRENT PROTECTION DEVICES, having ALL of the following:
(a) manually resettable
(b) trip free
(c) maximum current NOT exceeding 15A
(d) maximum breaking capacity NOT exceeding 150A
(e) tripping characteristic 137.5% within 2h
(f) size NOT exceeding ANY of the dimensions 60mm x 20mm x 20mm

8541.50.00 - Other semiconductor devices
42 No Other discrete (not IC) semiconductor devices
(PTC resettable fuses used to protect against overcurrent. Also known as a multifuse or polyfuse or polyswitch)

8536.10 FUSES AND FUSE HOLDERS, subminiature, plug in or pigtail type known as picofuses or microfuses, dimensions NOT exceeding 6mm x 18mm TC 8530773
SCHURTER
Schurter Inc
Schurter Inc.
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