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Power Supply Design: Load Step Response with a SIGLENT DC Electronic Load

Power Supply Design: Load Step Response with a SIGLENT DC Electronic Load

In this application note, a DC electronic load is used to provide a current load that steps from a low current draw to a higher value in a short period of time. By directly measuring the voltage and current output of the supply with the stepped load, one can visually observe the recovery of the power supply feedback loop and make changes to the design to optimize the response.


Measuring Power Supply Control Loop Response with Bode Plot II

Measuring Power Supply Control Loop Response with Bode Plot II

The Siglent Bode Plot Ⅱ features to the SIGLENT SDS1104X-E, SDS1204X-E, SDS2000X-E, SDS2000X Plus, and SDS5000X series of oscilloscopes. When combined with a Siglent arbitrary waveform generator (SDG or SAG) and an injection transformer, quick frequency response curves can be created.


Easy DC Power Supply Efficiency Measurements

Easy DC Power Supply Efficiency Measurements

This white paper describes the basic theory for DC power supply efficiency calculations, presents a physical setup for accurately measuring the important parameters, and provides an example program that coordinates measurements and automatically calculates power supply efficiency quickly.


Efficiently and Easily Test Fuel Cells: Supporting Advances in Climate-Neutral Energy

Efficiently and Easily Test Fuel Cells: Supporting Advances in Climate-Neutral Energy

This white paper provides a breakdown of the wide range of features and regenerative electronic loads from EA Elektro-Automatik that help simplify the test procedure for users. This resource also explains the benefits of a built-in waveform generator, true autoranging, efficient mains feedback and the EA Power Control software.


Renewables: The Energy of the Future and its Efficient Implementation Together with Energy Storage Systems

Renewables: The Energy of the Future and its Efficient Implementation Together with Energy Storage Systems

Explore the ways reliable alternative energy sources could be efficiently implemented with energy storage solutions.


Tackling the Challenges of Electric Vehicle Fast Charging

Tackling the Challenges of Electric Vehicle Fast Charging

Explore the growing electric vehicle market and the demands it is placing on society to deliver battery-charging solutions that attempt to emulate the ease of traditional refueling.


CoolSiC™ Automotive Discrete Schottky Diodes

CoolSiC™ Automotive Discrete Schottky Diodes

Explore the features and application benefits of Automotive CoolSiC™ Discrete Schottky Diodes.


Residential Energy Storage Systems (ESS) and Multi-Modular Topology for Second Life Batteries

Residential Energy Storage Systems (ESS) and Multi-Modular Topology for Second Life Batteries

Explore energy storage system solutions that reduce design effort, improve system performance, empower fast time-to-market, and optimize system costs.


Optimizing Embedded Systems Power Requirements with Hybrid PMIC Design

Optimizing Embedded Systems Power Requirements with Hybrid PMIC Design

Building blocks of modern embedded systems, including processors, SoCs, system DRAM, non-volatile memories, sensors, and connectivity modules, have varied power requirements. On one extreme, a system power management IC (PMIC) integrates all or almost all of the required power rails. On the other hand, individual power rails are implemented using discrete dc/dc and LDOs.


Connecting the Future of Flight

Connecting the Future of Flight

Read and gain expert insight on the toughest challenges in eVTOL


Comparing Trench and Planar Schottky Rectifiers

Comparing Trench and Planar Schottky Rectifiers

This white paper offers a closer look at the structure and the benefits of Trench Schottky rectifiers. This resource covers topics such as, why Trench rectifiers are typically the correct choice when a better trade-off between forwarding voltage drop and the leakage current is required, why they should also be selected in high power density applications where the ambient temperature is elevated, and what makes them ideal for applications with switching speeds above 100 kHz.


Solutions for Urban Air Mobility

Solutions for Urban Air Mobility

Watch your eVTOL Design take flight when you learn to address the size, weight, and power (SWaP) challenges that keep you from delivering high-bandwidth and high-speed flight control and navigation systems.


Powering the Future of Flight

Powering the Future of Flight

Discover how to optimize power and meet SWaP challenges head on with the TE Connectivity eVTOL Application Pack.


Data Acquisition: The Complete Guide to Better Measurements

Data Acquisition: The Complete Guide to Better Measurements

This guide covers why data acquisition is so important, how signal integrity and enhanced synchronization lead to higher quality data, and what kinds of equipment are best for improving data acquisition.


How to Select the Right Power Solution for Your Application

How to Select the Right Power Solution for Your Application

This handbook details modern advancements in power supplies, the importance of power systems and how to choose the right solution based on your specific application.


Demystifying Fast DC Charging: From Top to Bottom

Demystifying Fast DC Charging: From Top to Bottom

This white paper takes a closer look at fast EV charging infrastructure, AC vs. DC charging, charging rates and times, standards and protocols for DC charging, combined charging systems, use cases and configurations, and much more.


Supercapacitor Technical Guide

Supercapacitor Technical Guide

Supercapacitors, also known ultracapacitors and electric double layer capacitors (EDLC), are capacitors with capacitance values greater than any other capacitor type available today. Supercapacitors are breakthrough energy storage and delivery devices that offer millions of times more capacitance than traditional capacitors.


ON Semiconductor Gen 1 1200 V SiC MOSFETs & Modules: Characteristics and Driving Recommendations

ON Semiconductor Gen 1 1200 V SiC MOSFETs & Modules: Characteristics and Driving Recommendations

This paper provides an overview of the key characteristics of ON Semiconductor Gen 1 1200 V SiC MOSFETs and how they can be influenced by the driving conditions. This resource also provides a guideline on the usage of the NCP51705 an isolated gate driver for SiC MOSFETs.


Battery Simulation with DC Power Supply R&S®NGM200

Battery Simulation with DC Power Supply R&S®NGM200

This application note is about creating your own battery model for the R&S®NGM200, beyond the standard models provided within the battery simulation option NGM-K106.


Power Integrity - Pocket eGuide

Power Integrity - Pocket eGuide

Clean and stable power rail voltages are the basis for proper performance of any electronic design. The continuing demand for higher performance, higher level of integration and lower power consumption drives supply voltages down, making voltage tolerances tighter and power rail qualification a challenging task.