MIKROE-4630

Mikroe
932-MIKROE-4630
MIKROE-4630

Herst.:

Beschreibung:
IC-Entwicklungstools für Energieverwaltung eFuse 3 Click

Auf Lager: 4

Lagerbestand:
4 sofort lieferbar
Minimum: 1   Vielfache: 1
Stückpreis:
-,-- €
Erw. Preis:
-,-- €
Vorauss. Zolltarif:

Preis (EUR)

Menge Stückpreis
Erw. Preis
21,50 € 21,50 €

Produktattribut Attributwert Attribut auswählen
Mikroe
Produktkategorie: IC-Entwicklungstools für Energieverwaltung
RoHS:  
Add-On Boards
eFuse
3.3 V to 5 V
6.1 V
NIS6150
Marke: Mikroe
Abmessungen: 42.9 mm x 25.4 mm
Schnittstellen-Typ: SPI
Maximale Betriebstemperatur: + 150 C
Minimale Betriebstemperatur: - 40 C
Produkt-Typ: Power Management IC Development Tools
Verpackung ab Werk: 1
Unterkategorie: Development Tools
Produkte gefunden:
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Um ähnliche Produkte in dieser Kategorie anzuzeigen, wählen Sie mindestens ein Kontrollkästchen oben aus.
Ausgewählte Attribute: 0

TARIC:
8473302000
USHTS:
8536308000
JPHTS:
853630000
KRHTS:
8536300000
ECCN:
EAR99

Click Boards™

MikroElektronika MikroBUS™ Adapter click boards™ are designed to revolutionize the way users add new functionality to development boards. The user can push a click board into the innovative new MikroBUS™ standard socket and use it with zero hardware configuration. Categories of MikroElektronika mikroBUS™ Adapter click boards include Wireless Communication Modules, Wired Communication Modules, Sensor Modules, and Miscellaneous Modules & Accessories.

Power Management Click Boards

Mikroe Power Management Click Boards are used to add power management solutions for various applications. Mikroe Click Boards are based around the mikroBUS™ interface standard and easily add incredible system capabilities. The devices are ideal for any type of power applications, including medical, industrial, and automation.

eFuse 3 Click

Mikroe eFuse 3 Click features the ON Semiconductor NIS6150 resettable fuse that can significantly enhance the reliability of a USB application from both catastrophic and shutdown failures. It's designed to buffer the load device from the excessive input voltage, which can damage sensitive circuits and protect the input side from reverse currents. It includes an over-voltage clamp circuit that limits the output voltage during transients but doesn’t shut the unit down. This allows the load circuit to continue its operation.