PTSLR12066V400

Eaton Electronics
504-PTSLR12066V400
PTSLR12066V400

Fab. :

Description :
Fusibles réarmables - PPTC 6V 4.0A-HD 50A MAX

Modèle de ECAO:
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En stock: 2 727

Stock:
2 727 Expédition possible immédiatement
Délai usine :
19 Semaines Délai de production estimé en usine pour des quantités supérieures à celles indiquées.
Minimum : 1   Multiples : 1
Prix unitaire:
-,-- €
Ext. Prix:
-,-- €
Tarif est.:
Conditionnement:
Bobine complète(s) (commandez en multiples de 2500)

Prix (EUR)

Qté. Prix unitaire
Ext. Prix
Ruban à découper / MouseReel™
0,576 € 0,58 €
0,53 € 5,30 €
0,44 € 22,00 €
0,406 € 40,60 €
0,365 € 91,25 €
0,337 € 168,50 €
0,31 € 310,00 €
Bobine complète(s) (commandez en multiples de 2500)
0,257 € 642,50 €
† Les frais pour 5,00 € MouseReel™ seront calculés et ajoutés à votre panier. Les commandes MouseReel™ ne peuvent être ni annulées ni retournées.

Attribut de produit Valeur d'attribut Sélectionner l'attribut
Eaton
Catégorie du produit: Fusibles réarmables - PPTC
RoHS:  
PTSLR
SMD/SMT
SMD/SMT
4 A
6 VDC
8 A
50 A
14 mOhms
1206 (3216 metric)
- 40 C
+ 85 C
Reel
Cut Tape
MouseReel
Marque: Eaton Electronics
Pays d’assemblage: Not Available
Pays de diffusion: Not Available
Pays d'origine: CN
Hauteur: 1.2 mm
Longueur: 3.5 mm
Sensibles à l’humidité: Yes
Pd - Dissipation d’énergie : 800 mW
Type de produit: Resettable Fuses - PPTC
Nombre de pièces de l'usine: 2500
Sous-catégorie: PPTC Resettable Fuses
Largeur: 1.8 mm
Poids de l''unité: 5 g
Produits trouvés:
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Attributs sélectionnés: 0

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CNHTS:
8533400000
CAHTS:
8533400000
USHTS:
8533408070
JPHTS:
853340000
ECCN:
EAR99

Fuses & Fuse Holders

Bussmann / Eaton Fuses and Fuse Holders are designed to provide overcurrent protection against harmful surges that cause critical damage. These fuses are offered in various sizes and are suitable for a wide range of applications, including automotive, power conversion, EV charging stations, industrial control panels, and material handling systems. Bussmann / Eaton Fuses and Fuse Holders provide various mounting options and configurations, ensuring an ideal solution can be found for any project.

PTSLR PTC Resettable Fuses

Eaton Electronics PTSLR PTC Resettable Fuses provide overcurrent and overtemperature protection in various applications and come in 0805, 1206, 1210, and 1812 chip sizes. PTSLR PTC Resettable Fuses offer hold currents from 0.75A to 5A and can interrupt fault currents up to 50A at maximum rated voltage. During fault conditions, these fuses offer a high resistance to prevent current from flowing in the circuit until the cause of the fault is removed and the device cools. Unlike one-time fuses, PTSLR fuses do not need to be replaced immediately after a trip. PTSLR fuses offer lower initial resistance than other PTC fuses (as low as 1mΩ), which helps improve power loss across the device in normal operation. PTSLR fuses are ideal for rechargeable battery packs, USB ports, and small DC motors.

Battery Management Systems

Eaton provides a wide portfolio of products for Battery Management Systems (BMS), including terminal blocks, fuses, supercapacitors, chokes, inductors, and more. Battery Management Systems monitor individual cells, system voltage, current, and temperature. When monitoring individual cells, the BMS balances voltages and regulates the current flow, and if the upper or lower voltage, current, or temperature limit is exceeded, the BMS temporarily disconnects the load or source. Eaton Battery Management Systems estimate the State of Health (SoH), State of Charge (SoC), State of Energy (SoE), and State of Power (SoP) in batteries.

PTC Resettable Fuses

Eaton PTC Resettable Fuses are designed to protect sensitive components from overcurrent and overtemperature conditions that can occur due to power surges, electrical transients, high ambient temperatures, and more. The PTC fuses are based on a unique positive coefficient material whose internal resistance increases exponentially due to overcurrent conditions and higher temperatures. High resistance offered by the fuse during a trip prevents current from flowing through the circuit until the fault current/over-temperature source is removed and falls below the design current/temperature limit. Once the fault current is removed or the ambient temperature cools, the fuse re-enters its conducting state, allowing the current to flow through the circuit again. These components ensure constant uptime in applications where using one-time fuses would be impractical or expensive, including battery-powered devices, industrial controllers, medical devices, and I/O ports of consumer electronics.