ARMY MIL-T-48604-1977 TUBE LASER PLASMA HELIUM NEON 11746797《11746797氦氖等离子体激光管》.pdf
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1、WARNING EYE HAZARD MIL-T-48604 (e 1 March 1971 MILITARY SPECIFICATION TUBE, LASER, PLASkA, HELIUM NEON: 117467fi THE LASER BEN CAN BE DANGEROUS AND CAUSE BLINDNESS IF IT ENTERS THE EXES EITHER DIRETLY OR REFLECTE OFF OF A REFLECTED SURFACE. BEFORE FIRING THE LASER, OPERATOR SHOULD TAKE ADEQUATE PREC
2、AUTIONS TO ASSURE MAXIMUM smm. This Specification is approved for use by all Departments and Agencies of the Department of Defense. 1; SCOPE 1.1 Scope.- This specification covers a helium neon plasma laser tube consisting of a plasma tube, a ballast resistor, and high voltage plug-in connectors, enc
3、apsulated in an austenitic corrosion-resistant steel cylindrical case (see 6.1). 2. APPLICABLE DOCUMENTS 2.1 The following documents of the issue in effect on date of invitation for bids or request for proposal, form a part of this specification to the extent: specified herein. SPECIFICATIONS Mi lit
4、 ary MIL-E-7 5 Electron Tubes, Preparation for Delivery of MIL-F-13926 Fire Control Material, General Specification Governing the Manufacture and Inspection of MIL-T - 239 9 1 Training Devices, Military; General Specification for MIL-I -45607 Inspection Equipment; Acquisition Maint enance, and Dispo
5、sition of Beneficial comments (recommendations, additions, deletions) and any pertinent data which may be of use in improving this document should be addressed to: Commander, Frankford Arsenal, ATTN: SARFA-MDM, Phila., Pa. 19137 by using the self-addressed Standardization Docu- ment Improvhent Propo
6、sal (DD Form 1426) appearing at the end of this document or by letter. FSC 1240 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-* STANDARDS MILITARY MIL-STD- 105 MIL-STD-109 Sampling Procedures and Tables for Inspection Quality Assurance Tenns and De
7、finitions By Attributes e DRAWINGS B11739401 Gage, Interchangeability B11739402 Gage, Interchangeability F11739861 Power Supply Fu746 79 7 Tube, Laser, Plasma, Helium Neon (Copies of specifications, standards, drawings, and publications required by suppliers in connection with specific procurement f
8、unctions should be obtained from the procuring activity or as directed by the contracting officer). 3. REQUIREMENTS 3.1 Fabrication.- The tube shall be manufactured in accordance with Drawing F11746797 and related docments thereto. assembly design and final configuration shall also comply with the r
9、equirements specified in 3.1.1 through 3.1.8. The tube 3.1.1 Materials.- The materials shall be in accordance with MIL-T-23991 as applicable as well as material specifications, general specifications and figures forming a part of this specification. 3.1.2 Encapsulating compound.- The encapsulating c
10、ompound shall be a stable shock absorbing material capable of maintaining alignment between the plasma tube and the inside diameter of the cylindrical case for the specified life of the laser tube, under all specified conditions, or combinations thereof. encapsulating compound shall prevent arcing o
11、r corona between electrodes and between each electrode and the cylindrical case. compound shall be in accordance with impregnating, filling, potting, and encapsulating compounds of MIL-T-23991. c Dielectric strength of Encapsulating 3.1.3 Fungus - inert materials.- Only fungus-inert materials in acc
12、ordance with MIL-T-23991 shall be used. 3.1.4 Internal mirrors.- The plasma tube shall have permanent, factory-aligned, internal mirrors requiring no alignment or other maintenance. 3.1.5 Coaxial reservoir.- The plasma tube shall utilize a coaxial reservoir to reduce the space requirements and to im
13、prove ruggedness and life. 3.1.6 Cold cathode.- The plasma tube shall utilize a cold cathode. 2 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-T-48604 12 9999906 0427422 7 MIL-T-48604 (MU) 3.1.7 Ballast resistor,- A ballast resistor shall be pro
14、vided as part of the laser tube assembly. The value of the ballast resistor shall be selected to achieve the operating characteristics of Figure 2 when us- ing a power supply that has 70k f 10% ballast resistance. 3.1.8 Co however, the correction to the manufacturing process or procedure (et al) sha
15、ll be accomplished. 4.5.2.4 Unassignable cause.- If upon failure analysis no assignable cause is evident and the malfunction is considered random in nature, the malfunction shall be chargeable reliability failure and as such must be considered in the above demonstration. The decisions as to chargeab
16、le reliability failure must be coordinated with the procuring activity, Frankford .Arsenal Reliability 7 to determine comp1ianc;e with the re- quirements of 3.7, 3.8 and 3.9. Subsequent to the burn-in test the tube assembly shall be sub- 4.6 Environmental tests., To determine compliance with all of
17、the requirements of 3.6 the tube assembly shall be subjected to the tests specified in 4.6.1 through 4.6.5. There shall be no evidence of corona when the laser tube is subjected to each of the specified environmental tests. Data shall be recorded prior to operation, during operation and post operati
18、on in accordance with all of the environment test procedures specified herein. Available post-test data may be used as pretest data for the succeeding test. Complete environmental test data shall be re- corded and submitted as a part of reliability data. 4.6.1 Storage and operating temperature,- To
19、determine compliance with 3.6.1 and 3.6.2 this test shall be performed in accordance with MIL- STD-810, Method 501 and 502, Procedure I respectively. Prior to this test the tube assemblies shall have successfully passed the performance tests of 4.7.1 through 4.7.4. The tube assemblies shall be place
20、d in the temperature chamber. The chamber temperature shall be lowered to the storage temperature or d65OF and remain at this extreme temperature for at least 24 hours. The chamber temperature shall then be raised to th operating temperature of OOF and remain at this temperature for at least four ho
21、urs. While the tube assemblies are 0F they shall be subjected to performance tests of 4.7.1 through 4.7.4. After the tube assemblies have successfully passed the performance tests, they shall be energized and re- main on throughout the period that the chamber is raised from OF to 100F. During the pe
22、riod they are energized, power output of the laser beam shall be monitored to determine compliance with the requirement of 3.7.3. When the chamber temperature reaches the storage temperature of +155 OF, the chamber shall remain at this temperature for not less than 24 hours. The chamber temperature
23、shall then be lowered to the operating temperature of 100F and remain at this temperature for not less than four hours, tube assemblies shall again be subjected to the operational test 4.7.1 through 4.7.4. ber shall be returned to room ambient temperature while the tube assem- blies are energized an
24、d the output power shall be monitored. ambient temperature the tube assemblies shall be subjected to all of the performance tests of 4.7 to determine compliance with the requirements of 3.7. The After being subjected to these performance tests the cham- At room 4.6.2 Vibration.- To determine complia
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