S-8337AADB-P8T1G Allicdata Electronics
Allicdata Part #:

S-8337AADB-P8T1G-ND

Manufacturer Part#:

S-8337AADB-P8T1G

Price: $ 0.46
Product Category:

Integrated Circuits (ICs)

Manufacturer: ABLIC U.S.A. Inc.
Short Description: IC REG CTRLR BOOST 8SON
More Detail: Boost Regulator Positive Output Step-Up DC-DC Con...
DataSheet: S-8337AADB-P8T1G datasheetS-8337AADB-P8T1G Datasheet/PDF
Quantity: 1000
3000 +: $ 0.40748
Stock 1000Can Ship Immediately
$ 0.46
Specifications
Voltage - Supply (Vcc/Vdd): 1.8 V ~ 6 V
Supplier Device Package: 8-SON (A) (2.9x2.8)
Package / Case: 8-SMD, Flat Lead
Operating Temperature: -40°C ~ 85°C (TA)
Control Features: Current Limit, Enable, Frequency Control
Serial Interfaces: --
Clock Sync: No
Synchronous Rectifier: No
Duty Cycle (Max): 89%
Frequency - Switching: 257.4kHz ~ 1.134MHz
Series: --
Output Phases: 1
Number of Outputs: 1
Topology: Boost
Output Configuration: Positive
Function: Step-Up
Output Type: Transistor Driver
Part Status: Not For New Designs
Packaging: Tape & Reel (TR) 
Description

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    The S-8337AADB-P8T1G is a silicon carbide system-in-package (SiC SIP) module that integrates a wide bandgap (SiC) power semiconductor and a multi-level voltage regulator with switching controllers. It is specifically designed to enable higher efficiency and higher power density in distributed power architectures.

    The S-8337AADB-P8T1G offers many advantages in applications where high efficiency, small size and low cost are essential design criteria. This system-in-package module simplifies circuit design by incorporating the SiC power semiconductor, the voltage regulator and the switching controllers in a single module. The combination of these components in a single package reduces the amount of external components needed, reducing the size and cost of the system.

    S-8337AADB-P8T1G is classified as a PMIC (Power Management Integrated Circuit) Voltage Regulator and DC DC Switching Controller. PMICs are designed for a range of applications, from low power to higher power, depending on the nature of the application. The S-8337AADB-P8T1G is specifically designed for power applications with higher loads where switching and voltage regulation is needed. In these applications, the integrated SiC power semiconductor reduces power losses and significantly increases efficiency than in conventional systems.

    The S-8337AADB-P8T1G works by first switching the SiC power semiconductor, which enables it to absorb high voltage and then regulate the voltage according to requirements. This ensures that the output voltage stays within the desired range. The integrated voltage regulator then manages the output voltage, by dissipating or reinforcing the power delivered to the load. The switching controllers on the S-8337AADB-P8T1G also help to reduce losses by controlling the switching cycle and ensuring that power losses associated with switching are minimized.

    The S-8337AADB-P8T1G offers a wide range of applications, from automotive, robotics, industrial and distributed power architecture. This module is suitable for applications that require very efficient and high-power density at a significantly lower cost than its competitors. In automotive applications, this integrated module allows the design of more power efficient and lighter electric vehicles, while in robotics applications, it allows the design of complex robots with more power and less thermal dissipation. Industrial and distributed power architectures benefit from the high efficiency, reduction of external components and small size of the S-8337AADB-P8T1G. This makes it suitable for many applications and designs.

    In conclusion, the S-8337AADB-P8T1G is an excellent choice for applications that require high efficiency and higher power density, due to its integrated system-in-package components. It achieves higher power efficiency with lower costs than alternative solutions. This module is classified as a PMIC Voltage Regulator and DC-DC Switching Controller and is suitable for a wide variety of applications from automotive to distributed power architectures, where its high efficiency and low power dissipation make it a perfect choice.

The specific data is subject to PDF, and the above content is for reference

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