MIKROE-4479

Mikroe
932-MIKROE-4479
MIKROE-4479

Herst.:

Beschreibung:
IC-Entwicklungstools für Energieverwaltung UPS 3 Click

Verfügbarkeit

Lagerbestand:
Nicht auf Lager
Lieferzeit ab Hersteller:
Minimum: 1   Vielfache: 1
Stückpreis:
CHF -.--
Erw. Preis:
CHF -.--
Vorauss. Zolltarif:

Preis (CHF)

Menge Stückpreis
Erw. Preis
CHF 38.08 CHF 38.08

Produktattribut Attributwert Attribut auswählen
Mikroe
Produktkategorie: IC-Entwicklungstools für Energieverwaltung
RoHS:  
Add-On Boards
Power Management Specialized
1.8 V to 5.25 V
LTC3110
Marke: Mikroe
Produkt-Typ: Power Management IC Development Tools
Verpackung ab Werk: 1
Unterkategorie: Development Tools
Gewicht pro Stück: 23 g
Produkte gefunden:
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Ausgewählte Attribute: 0

Datenblatt

Product Catalogs

USHTS:
8504409580
JPHTS:
850440090
TARIC:
8504409590
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.

UPS 3 Click

Mikroe UPS 3 Click represents a bidirectional active charge/balancing solution, and features the Analog Devices LTC3110. The LTC3110 is a bidirectional buck-boost DC/DC regulator/charger combination with selectable operation modes for charging and system backup. It can autonomously transition from Charge to Backup mode or switch modes based on an external command. A proprietary low noise switching algorithm optimizes efficiency with capacitor/battery voltages above, below, or equal to the system output voltage. Additional features include voltage supervisors for direction control and end of a charge and a general-purpose comparator with open-collector output for interfacing with MCU.