METHOD AND DEVICE FOR AUTOMATED FUNCTIONAL TEST AND FAULT DIAGNOSTICS OF RADIOELECTRONIC EQUIPMENT Russian patent published in 2017 - IPC H04B17/00 

Abstract RU 2633530 C1

FIELD: radio engineering, communication.

SUBSTANCE: invention relates to methods and devices for performance monitoring and fault diagnostics of radioelectronic equipment (REE) of digital, analogue, digital-analogue electronic modules of the REE, such as radiolocation station (RLS). The PC forms a task to the bench device which feeds the test signals to the tested REE. The tested REE responds to the received input signals and sends the identification code of the tested REE to the bench device and then to the PC. After determining the type of the tested REE, an automated test is carried out, where, according to the established program in the PC, the bench device generates the input test signals for the tested REE and transmits the output signals to the PC which are compared in the PC with the reference ones to the tested REE. The device is made in the form of a PC, the input-output of which is connected to the bench device consisting of a coder-decoder of input-output signals, an input signal amplifier, a switch, a panel with indicators and control sockets, and, if necessary, a load device and a transition harness can be introduced.

EFFECT: improved accuracy of radioelectronic equipment control.

2 cl, 1 dwg

Similar patents RU2633530C1

Title Year Author Number
METHOD FOR AUTOMATED PERFORMANCE MONITORING AND TROUBLESHOOTING OF RADIO ELECTRONIC EQUIPMENT 2022
  • Kositsyna Svetlana Igorevna
  • Stepashkin Aleksej Vladimirovich
  • Tarasov Sergej Aleksandrovich
  • Filippov Konstantin Viktorovich
RU2797535C1
METHOD FOR AUTOMATIC PERFORMANCE MONITORING AND DIAGNOSING FAULTS IN COMMUNICATION ELECTRONIC EQUIPMENT 2012
  • Strakhov Aleksej Fedorovich
  • Komarov Mikhail Vjacheslavovich
  • Grushkin Sergej Vladimirovich
  • Belova Ekaterina L'Vovna
RU2488872C1
AUTOMATED SYSTEM FOR DIAGNOSING DIGITAL DEVICES 2009
  • Aleshin Vladimir Evgen'Evich
  • Spasskij Nikolaj Vladimirovich
  • Chakchir Sergej Jakovlevich
RU2430406C2
SYSTEM OF AUTOMATIC OPERABILITY CONTROL AND FAULT DIAGNOSTICS OF ELECTRONICS 2012
  • Strakhov Aleksej Fedorovich
  • Komarov Mikhail Vjacheslavovich
  • Grushkin Sergej Vladimirovich
  • Belova Ekaterina L'Vovna
RU2504828C1
AUTOMATED SYSTEM FOR MONITORING THE OPERABILITY AND MALFUNCTION DIAGNOSTICS OF RADIOELECTRONIC EQUIPMENT 2017
  • Strakhov Aleksej Fedorovich
  • Komarov Mikhail Vyacheslavovich
RU2653330C1
AUTOMATED SYSTEM FOR MONITORING AND DIAGNOSTICS OF RADIO-ELECTRONIC EQUIPMENT OF SPATIALLY DISTRIBUTED COMMUNICATION CENTRAL 2012
  • Omelchuk Aleksandr Vasilevich
  • Votinov Sergej Leonardovich
RU2599337C2
METHOD FOR AUTOMATIC PERFORMANCE MONITORING AND DIAGNOSING FAULTS IN COMMUNICATION ELECTRONIC EQUIPMENT 2017
  • Strakhov Aleksej Fedorovich
  • Komarov Mikhail Vyacheslavovich
RU2666979C1
AUTOMATED CONTROL SYSTEM FOR ELECTRICAL VALUES OF ELECTRONIC EQUIPMENT 2019
  • Egorov Leonid Borisovich
  • Kirsanov Konstantin Sergeevich
  • Tsetlin Igor Vladimirovich
RU2727334C1
AUTOMATED CONTROL AND DIAGNOSTIC COMPLEX (VARIANTS) 2003
  • Pal'Keev E.P.
  • Strakhov A.F.
  • Shevchenko V.F.
RU2257604C2
AUTOMATED DEVICE FOR MONITORING OPERABILITY AND DIAGNOSTICS OF FAULTS OF RADIOELECTRONIC EQUIPMENT 2019
  • Strakhov Aleksej Fedorovich
  • Kozlov Aleksandr Antonovich
RU2715425C1

RU 2 633 530 C1

Authors

Mardenskij Vladimir Nikolaevich

Dates

2017-10-13Published

2016-09-20Filed