1210L260SL
1210L260SL is Resettable PTCs manufactured by Littelfuse.
- Part of the 1210L175SL comparator family.
- Part of the 1210L175SL comparator family.
Description
Littelfuse Low Rho Surface Mount PPTC (Polymer Positive Temperature Coefficient) devices provide overcurrent protection for applications where ultra low internal resistance, ultra low voltage drop and automatic resettable protection are desired. This new series allows a higher hold current device in a smaller factor and lower profile as pared to a standard PPTC. It offers ultra low internal resistance while maintaining the high level electrical characteristics and performances of standard PPTC products. All devices are UL recognized and TUV approved and have maximum fault current of 50A. They are available in 0402 to 2920 sizes while the hold current ranges from 100m A to 9A.
Littelfuse 0402 size Low Rho SMD PPTC is the smallest size surface mounted PPTC device available in the market.
Applications
- USB peripherals including new USB 3.0 / 2.0 ports
- Li-ion / Li-Polymer battery packs
- Smart phones
- Tablet and Notebook PCs
- E-readers
- LCD / LED HDTV
- puter periperals
- Digital cameras and video cameras
- Hard disk drives
- Game consoles
Additional Information
Resources
Samples
Features
- Ultra low internal resistance
- Very thin profile
- Miniature size saves board space
- Allows a higher hold current dvice in a smaller factor and lower profile as pared to a standard PPTC
- Fast response to fault currents
- 0402 size available
- the smallest PPTC in the market
- patible with high temperature solders
- Broadest range of Hold Current ratings (100m A to 9A)
- Ro HS pliant, Lead Free and Halogen Free
- UL recognized and TUV approved
- 0603L150SL ideal for USB 3.0
WARNING
- Users shall independently assess the suitability of these devices for each of their applications
- Operation of these devices beyond the stated maximum ratings could result in damage to the devices and lead to electrical arcing and/or fire
- These devices are intended to protect against the effects of temporary over-current or over-temperature conditions and...