Portable high-voltage nanosecond squarer
A high-voltage nanosecond square wave and pulse generator technology, which is applied in biochemical instruments, biochemical equipment and methods, and stress-stimulated microbial growth methods, can solve the problem of pulse width adjustment that cannot include nanosecond pulse width parameters and output pulse width Problems such as limited range and inability to effectively control the dose of pulse therapy can achieve the effects of theoretical analysis, compact structure, convenient and quick increase or decrease
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Embodiment 1
[0024] Such as Figure 1~4 As shown, a portable high-voltage nanosecond square wave pulse generator includes a power supply system, a high-voltage DC module, a low-voltage power supply, a pulse forming system, and a pulse shaping and counting system. The power system is composed of power supply, power filter, fuse, power switch and so on. The power supply is 220V / 50Hz mains, and the power supply is connected to the input end of the power filter through wires to filter the input mains power; the output end of the power filter is connected to the input end of the fuse through wires, and the fuse The maximum passing current of the tube is 3A, which is used for overcurrent protection of the whole device; the output end of the fuse tube is connected to the power switch through wires to control the input power of the whole device; the live wire and neutral wire output ends of the power switch are respectively connected to the The low-voltage power supply and the power inlet termina...
Embodiment 2
[0030] A portable high-voltage nanosecond square-wave pulse generator, the same as embodiment 1, wherein: the L-C T-shaped network is a T-shaped circuit composed of 8 equal-value inductances L1-L8 and equivalent-value high-voltage capacitors C1-C8. High-voltage capacitors C1-C8 are commercially available non-inductive ceramic high-voltage capacitors, which are evenly distributed on a copper plate by common ground connection, and the low-voltage ends of high-voltage capacitors C1-C8 are tightly connected to the copper plate through screws. The inductors L1-L8 are commercially available high-precision inductors, and their two ends are respectively connected to the high-voltage ends of two adjacent high-voltage capacitors. One end of the last-stage inductor L8 is connected to the high-voltage end of the last-stage high-voltage capacitor C8.
[0031] The ball head 1-3, 2-3 is a hemisphere with a radius of 10mm, and the cylindrical body 1-2, 2-2 is a cylinder with a diameter of 20m...
Embodiment 3
[0034] A portable high-voltage nanosecond square-wave pulse generator, the same as embodiment 1, wherein: the L-C T-shaped network is a T-shaped circuit composed of 10 equal-value inductances L1-L10 and equivalent high-voltage capacitors C1-C10. The high-voltage capacitors C1-C10 are commercially available non-inductive ceramic high-voltage capacitors, which are evenly distributed on a copper plate by common ground connection, and the low-voltage ends of the high-voltage capacitors C1-C10 are tightly connected to the copper plate through screws. The inductors L1-L10 are commercially available high-precision inductors, and their two ends are respectively connected to the high-voltage ends of two adjacent high-voltage capacitors. One end of the last-stage inductor L10 is connected to the high-voltage end of the last-stage high-voltage capacitor C10.
[0035] The ball head 1-3, 2-3 is a hemisphere with a radius of 15mm, and the cylindrical body 1-2, 2-2 is a cylinder with a diame...
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