AUIR3241SBOARDB2BTOBO1

Infineon Technologies
726-AUR3241SBOARDB2B
AUIR3241SBOARDB2BTOBO1

Gam.:

Aprašymas:
Power Management IC Development Tools IPD_OTHER

Prieinamumas: 2

Turime sandėlyje:
2 Galime išsiųsti iš karto
Gamintojo numatytas pristatymo laikas
26 Savaičių Apytikriai apskaičiuotas gamybos laikas gamykloje, jei dalių kiekis didesnis nei nurodyta.
Min. 1   Užsakoma po 1
Vieneto kaina:
-,-- €
Plėt. Kaina:
-,-- €
Numatomas Įkainis:
Šis Produktas Siunčiamas NEMOKAMAI

Kainodara (EUR)

Qty. Vieneto kaina
Plėt. Kaina
140,14 € 140,14 €

Produkto Požymis Atributo vertė Pasirinkite Požymį
Infineon
Gaminio kategorija: Power Management IC Development Tools
RoHS: N
Evaluation Boards
Gate Driver
12 V
AUIR3241S
Prekės Ženklas: Infineon Technologies
Pakavimas: Bulk
Gaminio tipas: Power Management IC Development Tools
Gamyklinės pakuotės kiekis: 1
Subkategorija: Development Tools
Dalies Nr., kitokios klasifikacijos numeriai: AUIR3241S BOARD B2B SP005448429
Rasta produktų:
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Pasirinkti atributai: 0

TARIC:
8473302000
USHTS:
8543709860
ECCN:
EAR99

Development Tools

Infineon Development Tools offer a wide selection to enable the engineer's unique design, regardless of the target application. These range from LED lighting, power management, sensors, analog & digital ICs, communication, optoelectronic, and embedded development tools.

AUIR3241S Demonstration Board

Infineon Technologies AUIR3241S Demonstration Board (AUIR3241SBOARDB2BTOBO1) provides a reference circuit based on the AUIR3241S High Side MOSFET Driver. The Demonstration Board features the AUIR3241S in a semiconductor-based solution of a fail-safe/fail operational power switch for 12V automotive applications. The reference design has a back-to-back, N-channel MOSFET common source structure and allows mechanical relays to be replaced by cutting the current flow in both directions. Additionally, the back-to-back structure blocks current in case of a reverse battery situation. The MOSFET is protected against linear mode by the UVLO (Under-voltage lock-out) feature integrated into the driver. Analog and digital circuits are implemented to monitor the driver’s boost converter activity and detect gate-source leakage.