LB-VEM Visualized Electromagnetic Field Experiment Apparatus

LB-VEM Visualized Electromagnetic Field Experiment Apparatus

The LB-VEM Visualized Electromagnetic Field Experiment Apparatus is used in laboratory experiments for courses such as "Electromagnetic Fields and Waves." By applying engineering technologies based on Maxwell's equations and employing specialized passive luminescent electromagnetic wave sensors, it makes abstract "electromagnetic waves" not only measurable and analyzable but also visible and tangible, thereby helping students build spatial intuition.

Description

 

See Waves with This Tool

The LB-VEM Visualized Electromagnetic Field Experiment Apparatus is used in laboratory experiments for courses such as "Electromagnetic Fields and Waves." By applying engineering technologies based on Maxwell's equations and employing specialized passive luminescent electromagnetic wave sensors, it makes abstract "electromagnetic waves" not only measurable and analyzable but also visible and tangible, thereby helping students build spatial intuition.

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Clear Display and Sensitive Components

 

This apparatus features a passive detector with an LED indicator. The LED lights up at a sensitivity of 4 dBm. Available LED colors include red, yellow, blue, green, white, and others. The receiver antenna has a gain greater than 10 dBi. The detection capability extends beyond 3.2 GHz, with a dynamic range of 70 dB. The maximum transmission distance is 170 cm. 

 

Rich Experimental Content

 

‌Experiment 1: Experiment on Electromagnetic Wave and Its Propagation Characteristics‌

‌Experiment 2: Experiment on Polarization Characteristics of Electromagnetic Waves‌

‌Experiment 3: Experiment on Reflection and Traveling-Standing Wave Characteristics of Electromagnetic Waves‌

‌Experiment 4: Experiment on Reflection Characteristics of Electromagnetic Waves‌

‌Experiment 5: Experiment on Boundary Conditions of Electromagnetic Waves‌

‌Experiment 6: Experiment on Mutual Coupling of Receiving Antennas‌

‌Experiment 7: Experiment on Transmission of Electromagnetic Waves Through Different Substances‌

‌Experiment 8: Experiment on Principles of Electromagnetic Field Radiation and Reception‌

‌Experiment 9: Experiment on Plotting of Antenna Radiation Pattern‌

‌Experiment 10: Experiment on Multipath Interference of Vertically Polarized Electromagnetic Waves‌

‌Experiment 11: Experiment on Phased Array Antennas (Optional)‌

‌Experiment 12: Charging Supercapacitor via Wireless Power Transmission System‌

‌Experiment 13: Experiment on Coaxial Slotted Line‌

‌Experiment 14: Charge and Discharge Experiment of Supercapacitor via Microwave Wireless Power Transmission System

 

Key Parameters

 

Parameter Value
Working Frequency Range 2–3 GHz
Max Output Power <27 dBm
Transmitter Antennas 3 Yagi + 1 helical (gain >10 dBi)
LED Sensitivity 4 dBm
Max Transmission Distance 170 cm

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