Improved pulse processing instrument
A pulse processing and pulse technology, applied in the field of pulse processing instruments, can solve the problems of not changing the molecular structure of the irradiated object and the encoding of the radiation intensity.
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Embodiment 1
[0007] Embodiment 1, an improved pulse processor, includes a power converter 2, a drive circuit 3, a far-infrared radiator 4, and a pulse sequence generator 1. The pulse sequence generator 1 is composed of an oscillator 5, a pulse memory 6 and an address generator 7. The power converter 2 is composed of a transformer 8, a rectifier 9, 10, and a voltage stabilizer 11. The mains power is rectified after being stepped down by the transformer 8. The voltage output by the rectifier 9 is connected to one end of the far-infrared radiator 4, and the voltage output by the rectifier 10 provides energy for the pulse sequence generator 1 through the voltage stabilizer 11. The c pole of the combined amplifier tube in the driving circuit 3 is connected to the other end of the infrared radiator 4. The signal output by the pulse sequence generator is connected to the b pole of the combined amplifier tube. Its working principle is that the sequence pulse generated by the pulse sequence generator 1...
Embodiment 2
[0008] In Embodiment 2, on the basis of the first embodiment, the pulse width and interval are changed as follows: the four pulse widths of the first pulse sequence are all 2.9 μs, the first interval is 3.7 μs, and the second and third pulses have an interval of 3.7 μs. The intervals are both 1.3 μs, and the fourth interval is 2.4 μs. The four pulse widths of the second pulse sequence are all 8.6μs, and the four intervals are respectively 2.4μs, 2.4μs, 1.1μs, 1.1μs.
Embodiment 3
[0009] Embodiment 3, still based on the first embodiment, changes the pulse width and interval as follows: the four pulse widths of the first pulse sequence are all 2.6μs, the first interval is 3.2μs, the second and third The intervals are both 1.2μs, and the fourth interval is 2.3μs. The four pulse widths of the second pulse sequence are all 6.5 μs, and the four intervals are respectively 1.9 μs, 1.9 μs, 1.0 μs, and 1.0 μs.
[0010] The above embodiments illustrate the structure, working principle and circuit connection relationship of the present invention, and those skilled in the art can make pulse generators according to the embodiments. It can be seen from the above embodiments that the present invention realizes modulation and coding of radiation intensity, and achieves the purpose of the invention. The pulse processor made according to the present invention, because the radiator emits varying far-infrared radiation waves according to a specific pulse sequence, can change t...
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