Label:Yes
4. Typical Applications:Commonly used in applications such as negative ion generators, electronic instruments, and educational science experiments.
3. Ready-to-Use Transformer Module:This module is the finished module of transformer for small scientific production
5. Simple Connection & Strong Discharge:The peripheral circuit is simple, simply connect the switch and battery, and the discharge intensity is great
1. Efficient High-Voltage Output:This module can output a high-voltage pulse current. Its compact design offers efficient operations with a continuous working time of up to 1 minute.
2. Input & Output Specifications:With an input voltage of DC 6-12V, the module outputs a high-voltage pulse of up to 1000kV.
Specifications:
Working Voltage: 6V - 12V
Working Current: 1.5A - 3A
Output Current: 0.005A
Output Voltage: About 800KV~1000KV
Arc Discharge Distance: 10mm(0.39in)~20mm(0.79in)
Input Wire Length: 10CM(3.94in) (red is positive)
Output Wire Length: 10CM(3.94in)
Continuous Working Time: Up to one minute
Structure: Integrated shell
Color: Black
Size: 28*75MM(1.10*2.95in)
Instruction:
1.The module has an input end and an output end. The red and green wires are the input end, with red being positive and green being negative. The output end consists of two high - voltage wires of the same color. Connecting the input end to a battery can generate a high - voltage arc.
2. You can use two 3.7V lithium batteries in series, such as for 18650 batteries, idle mobile phone batteries (take out the protection board, the recommended capacity is more than 2000mAh) or nickels-metal hydride battery packs, 4V or 6V batteries.
3. This module is a high-voltage inverter for scientific small-scale production. The finished module of the transformer/booster can obtain tens of thousands of volts of DC high voltage at the output after inputting DC6V-12V voltage at the input end. It can be used as a high voltage source for middle school science popularization experiments, electronic instruments, negative ion generators, and scientific small-scale production
4. The way to judge whether the battery capacity can drive the maximum output power is to measure the battery voltage during arcing. The maximum power can be output if it is around 6V. Two small-capacity lithium batteries are connected in series to 7.2V, and the measured voltage has dropped to about 4V in the arcing state. The smaller the capacity, the lower the voltage will be. Therefore, it is recommended to use a lithium battery above 2000mA, and it is best to match a battery above 4000mA if possible.
Note:
1. The high-voltage module should avoid being powered on when there is no load on the high voltage. Before powering on, the appropriate distance of the high-voltage wire end must be adjusted. The arcing distance of the high-voltage wire is proportional to the voltage and capacity of the battery used.
2. When testing the arc distance, the experiment should be carried out from short to long. It is strictly forbidden to exceed the maximum arcing distance when powered on. Since the high-voltage energy cannot be released, it is very easy to damage the module.
3, The module has high power and inner heat is not easily dissipated, so it can not workcontinuously for long time
4, The way to judge if a battery capacity is enough to output maximum power is to measure the battery voltage when producing arc. It the measured voltage is about 6V, then it can output maximum power. Recommended battery capacity is above 2000mA, or above 4000mA if possible.
Package Includes:
1 xHigh VoltageGenerator