Brief: Join a quick walkthrough that focuses on what matters to users and operators. This video provides a detailed explanation and demonstration of the XHCC635, 35kv 6UF Pulse Energy Storage Capacitor. You will see how this capacitor stores energy from a low-power supply and rapidly releases it to generate high-impact currents and power, with insights into its application in high-voltage impulse discharge testing, high-energy physics, and geological prospecting.
Related Product Features:
Stores charging energy from a low-power supply and releases it rapidly to generate strong impact currents and power.
Designed for applications in high-voltage impulse discharge tests, high-energy physics, and geological prospecting.
Operates within an ambient temperature range of -20 to +50°C and at altitudes up to 2000 meters.
Features a capacitance tolerance of ±5% and a low loss tangent of ≤0.01 at 1kHz.
Provides high insulation resistance with RC ≥ 7500 MΩ*uF for reliable performance.
Withstands interpolar voltage of 1.1 to 1.5 times the rated voltage for 2 seconds and pole-to-shell voltage of 2 times the rated voltage for 60 seconds.
Constructed with a robust design, weighing 27kg and shipped in a secure wooden case for protection.
Includes clear model specifications for various rated voltages and capacitances to suit different impulse discharge needs.
Faqs:
What are the primary applications of the 35kv 6UF Pulse Energy Storage Capacitor?
This capacitor is primarily used in high-voltage impulse discharge tests, high-energy physics experiments, oscillation circuits, and geological prospecting, where rapid energy release for strong impact currents is required.
What are the key operational parameters and tolerances for this capacitor?
Key parameters include an ambient temperature range of -20 to +50°C, altitude up to 2000 meters, capacitance tolerance of ±5%, insulation resistance of RC ≥ 7500 MΩ*uF, and a loss tangent of ≤0.01 at 1kHz.
What precautions should be taken when using this pulse energy storage capacitor?
Avoid physical impact to prevent internal film damage, always read the instructions and label to prevent overvoltage, ensure proper withstand voltage and safety distance for connecting wires, fully discharge the high voltage end after tests, and stop use if abnormal sounds or bulges appear on the shell.