PCA9420HUKZ

NXP Semiconductors
771-PCA9420HUKZ
PCA9420HUKZ

Mfr.:

Description:
Power Management Specialised - PMIC Power management IC for low-power MCU

Lifecycle:
New Product:
New from this manufacturer.
ECAD Model:
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Availability

Stock:
Non-Stocked
Factory Lead Time:
24 Weeks Estimated factory production time.
Minimum: 3000   Multiples: 3000
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:
This Product Ships FREE

Pricing (EUR)

Qty. Unit Price
Ext. Price
Full Reel (Order in multiples of 3000)
1,40 € 4.200,00 €
1,38 € 8.280,00 €

Product Attribute Attribute Value Select Attribute
NXP
Product Category: Power Management Specialised - PMIC
RoHS:  
PCA9420
Reel
Brand: NXP Semiconductors
Country of Assembly: Not Available
Country of Diffusion: Not Available
Country of Origin: SG
Product Type: Power Management Specialized - PMIC
Factory Pack Quantity: 3000
Subcategory: PMIC - Power Management ICs
Part # Aliases: 935464359012
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Attributes selected: 0

TARIC:
8542399000
USHTS:
8542390090

Power Management Integrated Circuits (PMICs)

NXP Semiconductors Power Management Integrated Circuits (PMICs) optimize power efficiency and simplify supply sequencing for application processors across diverse applications. These NXP Semiconductors PMICs offer a comprehensive system solution by integrating switching/linear regulators and optional battery management features like a battery charger, coin cell charger, and power path selection. Configurable via OTP, our PMICs can be tailored to meet specific needs, supporting ASIL B/D functional safety requirements for enhanced reliability in safety-critical systems.

PCA9420/PCA9421 Power Management ICs (PMICs)

NXP Semiconductors PCA9420/PCA9421 Power Management ICs (PMICs) are targeted to provide a complete power management solution for low-power microcontrollers or similar applications. These devices integrate two step-down (buck) DC-DC converters with I2C programmable output voltage. Both buck regulators have integrated high-side and low-side switches and related control circuitry to minimize the external component counts; a Pulse-Frequency Modulation (PFM) approach is utilized to achieve better efficiency under light load conditions.