Product image for Littelfuse SLC015 15 Amp 600 VAC 170 VDC Class G Medium Time Lag Fuse

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Littelfuse SLC015 15 Amp 600 VAC 170 VDC Class G Medium Time Lag Fuse

Manufacturer: Littelfuse | Catalog # SLC015 | Cooper Electric Part # 10016

$29.25/ea
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CA Prop65 Warning CA Prop65 Warning Product Spec Sheet
The unique design of Littelfuse.s compact SLC series Class G fuses provide additional time-delay over competitive products which increases system reliability. Compact Class G fuses were the first fuse series to approach midget fuse dimensions and meet NEC requirements for branch-circuit protection. The unique dimensions of SLC series Class G fuses prevents insertion of lower voltage fuses in Class G fuse holders. The fuse.s varying length prevents insertion of higher ampere rated fuses in fuse holders designed for lower ampere ratings. Class CC fuses are replacing Class G fuses in many new designs. Class CC fuses. superior time delay plus higher voltage and interrupting ratings meet the needs of modern circuits. Littelfuse.s introduction of POWR-PRO® CCMR series fuses, with ratings up to 60 Amperes for providing branch circuit protection, are accelerating this trend.

Technical Information

Amperage
15 Amp
Applications
Branch Circuit
Type
Class G
Voltage
170 Volt

Manufacturer Information

Brand
Littelfuse
Sub Brand
POWR-GARD SLC Series

General Product Info

12-Digit UPC
079458420685
GTiN
00079458420685
Product UPC
07945842068

Certifications and Compliance

CA Prop65 Warning
WARNING: This product can expose you to chemicals including nickel, which is known to the State of California to cause cancer.
Safety
  • 100,000 A.I.R. Reliable interruption of all overcurrents up to 100,000 amperes.
  • Current limiting design reduces damage to equipment caused by heating and magnetic effects of short circuit currents.
  • Medium time-delay allows fuses to be sized closer to actual equipment requirements no need to greatly oversize to withstand harmless equipment or system surges.
Reduced Downtime
  • Medium time-delay may reduce downtime caused by power surges or equipment demands.



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