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相关概念视频

MOSFET Amplifiers01:17

MOSFET Amplifiers

598
The MOSFET, when operating in its active region, functions as a voltage-controlled current source. In this region, the gate-to-source voltage controls the drain current. This principle underlies the operation of the transconductance MOSFET amplifier. The output current is directed through a load resistor to convert this amplifier into a voltage amplifier. The output voltage is then obtained by subtracting the voltage drop across the load resistance from the supply voltage. This process results...
598
BJT Amplifiers01:14

BJT Amplifiers

1.1K
Bipolar Junction Transistors (BJTs) are pivotal components in amplifier circuits, functioning as voltage-controlled current sources in their active region. This characteristic allows them to efficiently control the collector current through variations in the base-emitter voltage. Essentially, BJTs amplify power due to their ability to take a weak input signal and output a much stronger signal.
In BJT amplifier configurations, particularly in common-emitter setups, the transistor's role...
1.1K
Small-Signal Analysis of MOSFET Amplifiers01:23

Small-Signal Analysis of MOSFET Amplifiers

1.2K
In small-signal analysis, a MOSFET transistor amplifier acts as a linear amplifier when operating in its saturation region. The gate-to-source voltage (VGS) of the MOSFET is the sum of the DC biasing voltage and the small time-varying input signal. This combination sets up the operating point and modulates the drain current (ID) that flows from the drain to the source. When a small AC signal is superimposed on the DC bias voltage at the gate, the instantaneous drain current comprises three...
1.2K
Cascaded Op Amps01:16

Cascaded Op Amps

1.2K
Operational amplifiers (op-amps) are versatile electronic components that can be interconnected in a cascade - one after another in a linear sequence. This cascading is possible due to their infinite input resistance and zero output resistance, allowing them to maintain their input-output relationships even when connected in series.
In a cascaded system, each op-amp is referred to as a stage. The output of one stage drives the input of the subsequent stage. As the input signal passes through...
1.2K
Small-Signal Analysis of BJT Amplifiers01:21

Small-Signal Analysis of BJT Amplifiers

1.9K
Small signal analysis is a fundamental approach used in electronics to understand how a Bipolar Junction Transistor (BJT) amplifier processes signals. In the active region, the BJT is designed for linear amplification. The transistor's behavior under these conditions is governed by its instantaneous base-emitter voltage VBE, a sum of the DC bias VBE, and a small AC signal VBE, resulting in the collector current iC. Here, the collector current has a DC component and an AC component.
1.9K

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相关实验视频

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20 mJ, 1 ps Yb:YAG Thin-disk Regenerative Amplifier
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101 W,sub-400 fs Yb:Lu2O3 薄盘再生放大器

Ranyou Zhao, Weiting Shen, Guangzhi Zhu

    Optics letters
    |February 27, 2026
    PubMed
    概括

    研究人员开发了一种Yb:Lu2O3薄盘再生放大器,在400fs以下的脉冲下实现了101W的平均功率. 这一突破使得使用超快激光器的先进工业和科学应用成为可能.

    科学领域:

    • 激光物理 激光物理
    • 材料科学 材料科学 材料科学

    背景情况:

    • 薄盘再生放大器对于高功率超快激光系统至关重要.
    • Yb:Lu2O3陶为激光应用提供了有前途的性能.

    研究的目的:

    • 为了展示第一个Yb:Lu2O3薄盘再生放大器.
    • 为了实现超短脉冲持续时间的高平均功率.

    主要方法:

    • 使用Yb:Lu2O3陶增益介质在薄盘配置.
    • 采用再生放大来实现高脉冲能量和平均功率.
    • 实施了脉冲压缩技术,以达到400 fs以下的持续时间.

    主要成果:

    • 产生了363 fs脉冲,中心在1033 nm.
    • 实现了101W的压缩平均功率.
    • 在96.5 kHz的重复率下运行.
    • 证明同时具有高平均功率 (>100 W) 和超短脉冲持续时间 (<400 fs).

    结论:

    • Yb:Lu2O3薄盘再生放大器代表了超快激光技术的重大进步.
    • 该系统超过了以前用于薄盘再生放大器的性能基准.

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  • 展示的功能为工业加工和科学研究开辟了新的途径,需要高功率的超短激光脉冲.