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相关概念视频

Elements of Block Diagrams01:25

Elements of Block Diagrams

241
Block diagrams serve as a visual representation of the input-output relationships within a system. An illustrative example is a heating system, where the set temperature activates the furnace to warm the room to the desired level. Block diagrams are versatile, modeling linear systems through Laplace transform variables and nonlinear systems using time domain variables.
A block diagram typically includes essential elements such as comparators, blocks, and feedback loops. Each of these elements...
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Multiple Voltage Sources01:25

Multiple Voltage Sources

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Generally, a single battery is not enough to power some devices. In such cases, batteries can be combined in two ways: in series or in parallel.
In series, the positive terminal of one battery is connected to the negative terminal of another battery. Hence, the voltage of each battery is added to give the net voltage, which is increased because each battery boosts the electrons that enter it. The same current flows through each battery because they are connected in series.
Batteries are...
1.1K
Multi-input and Multi-variable systems01:22

Multi-input and Multi-variable systems

96
Cruise control systems in cars are designed as multi-input systems to maintain a driver's desired speed while compensating for external disturbances such as changes in terrain. The block diagram for a cruise control system typically includes two main inputs: the desired speed set by the driver and any external disturbances, such as the incline of the road. By adjusting the engine throttle, the system maintains the vehicle's speed as close to the desired value as possible.
In the absence...
96
Block Diagram Reduction01:22

Block Diagram Reduction

155
The process of deriving the transfer function of a control system often involves reducing its block diagram to a single block. This simplification can be achieved through a series of strategic operations, including relocating branch points and comparators. These operations preserve the overall function of the system while allowing for easier manipulation and combination of blocks.
The first step in this process is the identification and relocation of a branch point. A branch point, where a...
155
Electro-mechanical Systems01:19

Electro-mechanical Systems

915
Electromechanical systems are intricate configurations that effectively combine electrical and mechanical elements to achieve a desired outcome. Central to many of these systems is the DC motor, a device that converts electrical energy into mechanical motion, enabling various applications ranging from simple fans to complex robotic mechanisms.
A key component of the DC motor is the armature, a rotating circuit positioned within a magnetic field. As an electric current passes through the...
915
LC Circuits01:21

LC Circuits

2.4K
An LC circuit consists of an inductor and a capacitor, either in series or parallel. Consider a charged capacitor connected with an inductor in series. Before the switch is closed, all the energy of the circuit is stored in the electric field of the capacitor. When the switch is closed, the capacitor begins to discharge, producing a current in the circuit. The current, in turn, creates a magnetic field in the inductor. Because of the induced emf in the inductor, the current cannot change...
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相关实验视频

Updated: Jun 3, 2025

Computational Modeling of Retinal Neurons for Visual Prosthesis Research - Fundamental Approaches
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包含多个Verilog-A模型的光电子设备库.

Guanliang Chen1,2, Zhigang Song3,4, Xinhe Zheng5

  • 1School of Mathematics and Physics, Beijing Key Laboratory for Magneto-Photoelectrical Composite and Interface Science, University of Science and Technology Beijing, Beijing, 100083, China.

Scientific reports
|January 8, 2025
PubMed
概括
此摘要是机器生成的。

开发了一个新的Verilog-A光电子设备模型库,以满足光电子融合行业的模拟需求. 该库通过减少工作量和开发成本来帮助芯片设计人员.

关键词:
闭环模拟的闭环模拟紧型模型 紧型模型光电子模拟光学电子模拟

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科学领域:

  • 光电学是指光电子产品.
  • 半导体设备物理 半导体设备物理
  • 集成电路设计 集成电路设计

背景情况:

  • 快速增长的光电子融合行业需要复杂的模拟工具.
  • 缺乏全面的光电子设备模型库阻碍了芯片设计人员.
  • 现有的模拟模型不能充分解决光电子设备的物理效应.

研究的目的:

  • 开发一个广泛和统一的光电子设备模型库.
  • 为芯片设计师提供模拟物理效应的工具.
  • 为了减少光电子芯片设计的工作量和开发成本.

主要方法:

  • 使用了硬件描述语言Verilog-A.
  • 开发了一个包含全方位光电子设备类型的图书馆.
  • 确保统一的接口,以实现无集成.

主要成果:

  • 创建了一个全面的光电子设备模型库.
  • 该图书馆为各种设备类型提供了统一的接口.
  • 模型模拟光电子设备的物理效应.

结论:

  • 开发的Verilog-A模型库解决了对光电子模拟工具的未满足需求.
  • 预计这一资源将大大减轻芯片设计师的工作量.
  • 该库的实施将导致光电子行业的开发成本降低.