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相关概念视频

Voltage Dividers01:14

Voltage Dividers

550
In electrical circuits, resistors can be connected in series, sequentially linked one after the other. In a series configuration, the same current flows through each resistor. Ohm's law is a fundamental principle to understand the behavior of resistors in series. It expresses the voltage across these resistors in terms of the current and resistance.
Kirchhoff's voltage law implies that the sum of the voltages across the resistors in series equals the source voltage. This means that the...
550
Power Factor Correction01:20

Power Factor Correction

207
The power transmission to a factory involves the transfer of apparent power, a combination of active and reactive power. The power factor measures how effectively electrical power is converted into useful work output. The ratio of the real power (KW) that does the work to the apparent power (KVA) supplied to the circuit.
207
Instrument Transformers01:23

Instrument Transformers

106
Instrument transformers, comprising voltage transformers (VTs) and current transformers (CTs), play crucial roles in power substations by providing isolated replicas of current or voltage for measurement and protection purposes. Voltage transformers reduce the primary voltage to levels suitable for relay operation and measurement, while current transformers scale down the primary current. The primary winding of a current transformer often consists of a single turn, achieved by threading the...
106
Bridge rectifier01:24

Bridge rectifier

682
The bridge rectifier is essential in electronics for efficiently converting alternating current (AC) to direct current (DC). Comprised of four diodes configured in a bridge layout, this rectifier effectively processes both the positive and negative halves of the AC waveform, making it superior to half-wave and full-wave center-tapped rectifiers in terms of voltage regulation and output stability.
Operationally, the bridge rectifier allows current flow through two of its diodes during each...
682
Design Example: Strain Gauge Bridge or Wheatstone Bridge01:15

Design Example: Strain Gauge Bridge or Wheatstone Bridge

445
The utilization of strain gauges as transducers for converting mechanical strain into electrical signals is a common practice in various engineering applications. These strain gauges are frequently integrated into Wheatstone bridge circuits to accurately measure parameters such as force or pressure. Within this context, each element within the circuit exhibits a resistance that undergoes subtle variations when subjected to mechanical strain. The primary objective is to convert minuscule...
445
Integrator and Differentiator01:13

Integrator and Differentiator

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Op-amp circuits have significant applications in various fields, including automotive engineering. One such application is cruise control systems in cars, where op-amp circuits are integral for maintaining a constant speed. In these systems, op-amps function as both integrators and differentiators.
An integrator within an op-amp circuit produces an output directly proportional to the integral of the input signal. This is achieved by replacing the feedback resistor in a typical inverting...
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Fabrication of Carbon Nanotube High-Frequency Nanoelectronic Biosensor for Sensing in High Ionic Strength Solutions
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当前的传感器集成问题与宽带间隔功率转换器.

Ali Parsa Sirat1, Babak Parkhideh1

  • 1Photovoltaic Integration Lab (PIL), Electrical and Computer Engineering (ECE) Department, Energy Production and Infrastructure Center (EPIC), University of North Carolina (UNC) at Charlotte, Charlotte, NC 28223, USA.

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概括
此摘要是机器生成的。

精确的电流传感对于功率电子非常重要. 然而,宽带间隙 (WBG) 转换器由于尺寸,速度和电磁干扰 (EMI) 而面临单一电流传感方案的挑战,这促使人们探索新的解决方案.

关键词:
在WBG的功率转换器.目前的传感器传感电流.整合挑战 整合挑战 整合挑战一个单一的系统传感器.

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科学领域:

  • 电力电子 电力电子 电力电子
  • 电气工程 电气工程
  • 材料科学 材料科学 材料科学

背景情况:

  • 精确的电流传感对于功率电子的保护,控制和可靠性至关重要.
  • 宽带间隙 (WBG) 功率转换器为电流传感带来了独特的集成挑战.
  • 空间有限,高速要求和显著的电磁干扰 (EMI) 阻碍了传统方法.

研究的目的:

  • 分析现有的电流传感器及其在WBG功率转换器中的集成挑战.
  • 了解与不同电流传感要求相关的设计权衡.
  • 在WBG应用中探索改进单一方案电流传感器性能的新方法.

主要方法:

  • 审查和分析当前的传感技术.
  • 对传感器性能与WBG转换器约束 (大小,速度,EMI) 的评估.
  • 探索潜在的设计修改和新的传感原理.

主要成果:

  • 当前的电流传感器在集成到WBG功率转换器中时面临着重大限制.
  • 由于固有的设计权衡,没有一种单一的电流传感方法可以完美地满足所有WBG转换器的要求.
  • 该研究强调了需要创新的方法来克服这些局限性.

结论:

  • 开发WBG转换器的通用电流传感方案是一项挑战.
  • 需要新的方法来提高单一方案电流传感器的性能和适用性.
  • 对先进的传感技术的进一步研究对于未来的WBG电源转换器设计至关重要.