High power and high capacity pulse dummy lamp

A high-load, high-power technology, applied in the field of analog lights, can solve the problems of increased force, chain fried lights, fried lights, etc., to achieve the effect of increasing working life, good safety performance, and improving safety

Inactive Publication Date: 2005-09-21
SHANGHAI INST OF OPTICS & FINE MECHANICS CHINESE ACAD OF SCI
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  • Claims
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Problems solved by technology

And the arrangement of each group of discharge lamps is that several lamps are arranged side by side—two lamps are installed in series. Since the lamps are adjacent to the lamps in the middle part, the Lorentz force generated by the array arrangement of the lamps just cancels each other out, but The lamps at both ends of the array are only subjected to the one-way action of the Lorentz force. Due to the safety reasons of the device shell must be well grounded and the effect of the Lorentz force of the lamps on both sides cannot be eliminated, so the force on the outermost lamps at both ends increases. , It is easy to cause damage to the lamp or even blow up the lamp, which will cause chain blown lamps, which will cause huge losses and seriously affect the progress of scientific experiments

Method used

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  • High power and high capacity pulse dummy lamp

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Embodiment Construction

[0019] Below, the present invention will be further described through the embodiments in conjunction with the accompanying drawings, so as to understand the present invention, but the protection scope of the present invention should not be limited thereby.

[0020] see first figure 1 , figure 1 It is a schematic diagram of the overall structure of the present invention. Have figure 1 It can be seen that the high-power and high-load pulse simulation lamp of the present invention includes a lamp tube 5 and two lamp holders 1 with the same structure symmetrically arranged at both ends. A solid copper rod 4 is pierced inside the hollow ring 3 and the lamp tube 5, and two identical quartz tubes 2 are set between the two ends of the hollow ring 3, the outside of the solid copper rod 4 and the lamp tube 5, The outer layer of the lamp cap 1 is a metal sleeve 16, and the center of the lamp cap 1 is provided with an electrode lead 14 with a copper connector at one end, and the copper...

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Abstract

A high power high load pulse imitation lamp, which contains lamp tube and two symmetrically set same lamp adapters, wherein a hollow ring set in center of lamp tube penetrated with solid copper bar, two same quartz tubes set between solid copper bar and lamp tube, the outer layer of lamp adapter is metal sleeve, electrode lead wire with copper connector set in lamp adapter center position, they are all adopted the multi-layer structure. Said invention has advantages of simple structure, low cost, easy installation, safety and long service life.

Description

technical field [0001] The invention relates to an analog lamp, in particular to a high-power and high-load pulse analog lamp. It is mainly used for high-power and high-load pulse simulation lamps of high-power solid-state laser pump source lamp arrays. Background technique [0002] At present, large-scale solid-state lasers must have megajoules of pulsed laser energy output. During operation, thousands of high-power pulsed xenon lamps are ignited synchronously to emit light, and effectively pump the laser working material neodymium glass, thereby outputting a powerful pulsed laser. And the arrangement of each group of discharge lamps is that several lamps are arranged side by side—two lamps are installed in series. Since the lamps are adjacent to the lamps in the middle part, the Lorentz force generated by the array arrangement of the lamps just cancels each other out, but The lamps at both ends of the array are only subjected to the one-way action of the Lorentz force. Du...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01J61/00H01S3/091
Inventor 蒋宝财胡永飞唐贤忠俞建华胡礼俊毛伊荣于阿春
Owner SHANGHAI INST OF OPTICS & FINE MECHANICS CHINESE ACAD OF SCI
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