FM-HL霍爾效應(yīng)實驗儀/FMHL
FM-HL霍爾效應(yīng)實驗儀產(chǎn)品介紹
FM-HL霍爾效應(yīng)實驗儀是一款專為教學(xué)和科研設(shè)計的實驗設(shè)備,用于探究霍爾效應(yīng)及其相關(guān)物理現(xiàn)象。該儀器采用優(yōu)質(zhì)材料和精密工藝制造,具有操作簡便、測量準(zhǔn)確、性能穩(wěn)定等特點。實驗儀主要由兩維移動尺、電磁鐵、霍爾元件和換向閘刀開關(guān)等部件組成。電磁鐵采用倒向安裝設(shè)計,使得霍爾元件運行情況可直接觀察,便于實驗教學(xué)。兩維移動尺允許用戶在水平和垂直方向進(jìn)行精確位移調(diào)節(jié),確保測量過程的靈活性和準(zhǔn)確性。霍爾效應(yīng)實驗儀可用于測定材料的霍爾系數(shù)、電導(dǎo)率、導(dǎo)電類型、載流子濃度及遷移率等參數(shù),還可用于測量磁感應(yīng)強(qiáng)度及磁場分布情況。1
FM-HL Hall Effect Experiment Apparatus Introduction
The FM-HL Hall Effect Experiment Apparatus is a specialized equipment designed for teaching and scientific research purposes to investigate the Hall effect and related physical phenomena. This apparatus features a two-dimensional moving ruler, electromagnet, Hall element, and reversing knife switch as its main components. The electromagnet is installed in an inverted manner, allowing direct observation of the Hall element s operation during experiments, which facilitates teaching demonstrations. The two-dimensional moving ruler enables precise horizontal and vertical displacement adjustments, ensuring measurement flexibility and accuracy. The apparatus can be utilized to determine material parameters such as Hall coefficient, conductivity, conduction type, carrier concentration and mobility. It is also capable of measuring magnetic induction intensity and magnetic field distribution.1
產(chǎn)品特點與優(yōu)勢
該實驗儀采用精心設(shè)計的結(jié)構(gòu)布局,注重實驗教學(xué)效果和應(yīng)用價值。電磁鐵與霍爾元件的可視化設(shè)計讓學(xué)生能夠直觀理解實驗原理,換向閘刀開關(guān)的特別設(shè)計確保了電流方向轉(zhuǎn)換的便捷性和安全性。儀器工作電流范圍適中,適合教學(xué)使用,數(shù)據(jù)穩(wěn)定性良好;魻栐哂休^高靈敏度和較寬的線性工作范圍,能夠滿足多種半導(dǎo)體材料的測量需求。實驗儀采用模塊化設(shè)計,便于維護(hù)和升級,使用壽命較長,適合高等院校、研究所等教育科研機(jī)構(gòu)的基礎(chǔ)物理實驗課程和專題研究項目使用。117
Product Features and Advantages
This experiment apparatus adopts a well-designed structural layout that emphasizes teaching effectiveness and application value. The visual design of the electromagnet and Hall element helps students intuitively understand the experimental principles, while the specially designed reversing knife switch ensures convenient and safe current direction switching. With moderate operating current range suitable for teaching purposes, the apparatus provides good data stability. The Hall element features relatively high sensitivity and wide linear working range, meeting measurement requirements for various semiconductor materials. The modular design facilitates maintenance and upgrades, and the long service life makes it suitable for basic physics experiments and research projects in higher education institutions and research organizations.117
應(yīng)用領(lǐng)域與實驗內(nèi)容
FM-HL霍爾效應(yīng)實驗儀適用于物理學(xué)、材料科學(xué)、電子工程等多個學(xué)科領(lǐng)域的教學(xué)與研究工作。通過該儀器可以開展多項實驗研究,包括研究霍爾電壓與工作電流的關(guān)系、霍爾電壓與勵磁電流的關(guān)系、電磁鐵氣隙處X/Y方向磁場強(qiáng)度的分布規(guī)律等。實驗儀還支持對不同半導(dǎo)體材料的電學(xué)特性進(jìn)行比較研究,幫助學(xué)生深入理解載流子在電磁場中的運動規(guī)律。儀器的直觀設(shè)計和易于操作的特性使其成為理解霍爾效應(yīng)原理和應(yīng)用的理想教學(xué)工具,在培養(yǎng)學(xué)生實驗技能和科學(xué)研究能力方面具有重要價值。715
Application Fields and Experiment Contents
The FM-HL Hall Effect Experiment Apparatus is suitable for teaching and research in various disciplines including physics, materials science, and electronic engineering. It supports multiple experimental investigations such as studying the relationship between Hall voltage and working current, the correlation between Hall voltage and excitation current, as well as the distribution patterns of magnetic field intensity in X/Y directions at electromagnet gaps. The apparatus also enables comparative studies on electrical properties of different semiconductor materials, helping students deeply understand the motion laws of carriers in electromagnetic fields. With its intuitive design and user-friendly features, this apparatus serves as an ideal teaching tool for comprehending the principles and applications of Hall effect, playing a significant role in cultivating students experimental skills and scientific research capabilities.715
FM-HL霍爾效應(yīng)實驗儀
的詳細(xì)介紹FM-HL霍爾效應(yīng)實驗儀/FMHL
1. 兩維移動尺;
2. 電磁鐵(倒向安裝,霍爾元件運行情況可直視);
3. 霍爾元件;
4. 換向閘刀開關(guān)(特制)
與磁場測試儀配合完成以下實驗:
1. 測定材料霍爾系數(shù)、電導(dǎo)率、導(dǎo)電類型
2. 測定材料載流子濃度和遷移率
3. 測定磁感應(yīng)強(qiáng)度及磁場不均勻分布情況
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