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Reference Designs

RGB LED Lighting Reference Design

The board is designed for RGB LED control and diagnostics in automotive and industrial applications. It features a microcontroller and integrated high-voltage analogue components. RGB...

Reference Design For Multi-String RGB LED Drivers

Ideal for automotive, entertainment, and architectural lighting, this solution offers enhanced brightness control, current protection, and easy customization for versatile lighting applications. RGB LED lighting...

Reference Design For Bidirectional Power Conversion With DAB

The reference design has silicon carbide (SiC) technology and high-frequency operation for optimal power management and energy regeneration. High-power bidirectional DC-DC power converters, particularly those...

Reference Design Of Phase-Shifted Full-Bridge Current-Doubler

The design converts 400V to 12V DC with up to 95.36% efficiency. It features advanced technology for high-frequency switching and is suitable for telecom...

250W Motor Inverter Reference Design

The design is a 250W motor inverter without a heat sink. It features low standby power and sensorless motor control for various household applications. Motor...

DC-DC Converter Reference Design With DAB Topology

The design uses SiC MOSFETs and dual active bridge topology, suitable for power applications like electric vehicle charging and solar inverters. Addressing environmental and energy...

Dual Active Bridge DC-DC Reference Design

Silicon carbide (SiC) MOSFETs are employed in this design, contributing to high efficiency and fast switching speeds, ideal for high-voltage applications like EV charging...

Bi-Directional, Dual Active Bridge Reference Design

The design is suitable for electric vehicle charging and energy storage, featuring advanced control, robust protection, and significant power output. The Dual Active Bridge (DAB)...

Radar Reference Design

The design features a high-performance SoC with advanced processing capabilities for enhanced vehicle safety applications, including automatic cruise control and obstacle detection. Radar (Radio Detection...

Supercapacitor-Based Backup Reference Design

The reference design features a 4.5V to 40V input range and 1A to 20A output. It uses a supercapacitor and buck-boost operation for efficient...

GSM Module Backup Power Reference Design

The reference design features a boost converter, linear charger, and supercapacitor optimized for minimal space, ensuring reliable power in metering devices during outages. Smart meters...

USB Type-C Power Bank Reference Design by Texas Instruments

This reference design is ideal for various applications, including industrial systems, appliance battery chargers, personal electronics, digital still cameras, and power banks.  The USB Type-C...

Dual Output Power Bank Reference Design

The power solution for Li-ion power banks offers dual USB output, smart charging, protection features, and a 4-LED battery status indicator in a compact...

USB Type-C Power Bank Reference Design from Renesas

The power bank reference design supports 2-4 cell configurations and features Dual Role Power functionality for versatile applications. The reference design from Renesas introduces a...

MCU-Based 6-Channel Power Sequencer Reference Design

The Flexible 6-Channel Power Sequencer Reference Design, centered around the microcontroller and discrete DC/DC regulators, provides a powerful, scalable, and reliable solution for managing...

Power Bank Reference Design

The power bank design features USB Type-C and Type-A ports, supports fast charging, and includes system-level protection for reliable performance. Power banks are indispensable portable...

PD Power Bank Reference Design

The design has advanced charging technology, works with PD3.0 and BC1.2, and has a USB Type-C port that can switch roles. It's suitable for...

Reference Design For Power Sequencing With Load Switches

Using integrated load switches simplifies the design and ensures safe and reliable power sequencing while maintaining a compact footprint compared to traditional discrete MOSFET...

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