MULTICHANNEL DIGITAL RECEIVING MODULE WITH OPTICAL CHANNELS OF INFORMATION EXCHANGE, CONTROL AND CHRONIZATION Russian patent published in 2017 - IPC H04J1/00 

Abstract RU 2626623 C1

FIELD: radio engineering, communication.

SUBSTANCE: implemented the multichannel digital device of the information packaging, the optical transmitting-receiving device, simulator signal and heterodyne signal synthesizers and synchronization system, at that each receiving channel contains the protective device connected in series, the first and the second inputs of which are respectively the first and the second inputs of each receiving channel, the low-noise amplifier (LNA), n-bit stepped attenuator, mixer, the second entrance of which is the third entrance of each receiving channel, intermediate-frequency section (IF), analog-to-digital converter, the second entry of which is the fourth entrance of each receiving channel, the digital phase detector and digital filter, which output is the output of each receiving channel.

EFFECT: improvement of RADAR anti-jamming by using the high-speed optical communication lines for the transmission from the information module and supply to the module of complex timing signal and control and clocking frequency signal.

2 dwg

Similar patents RU2626623C1

Title Year Author Number
METHOD OF CONSTRUCTING AN ACTIVE PHASED ANTENNA ARRAY 2020
  • Zadorozhnyj Vladimir Vladimirovich
  • Kosogor Aleksej Aleksandrovich
  • Larin Aleksandr Yurevich
  • Litvinov Aleksej Vadimovich
  • Omelchuk Ivan Stepanovich
RU2730120C1
METHOD OF CONSTRUCTING AN ACTIVE PHASED ANTENNA ARRAY 2019
  • Kosogor Aleksej Aleksandrovich
  • Zadorozhnyj Vladimir Vladimirovich
  • Larin Aleksandr Yurevich
  • Omelchuk Ivan Stepanovich
RU2697194C1
METHOD OF CONSTRUCTING AN ACTIVE PHASED ANTENNA ARRAY 2019
  • Zadorozhnyj Vladimir Vladimirovich
  • Kosogor Aleksej Aleksandrovich
  • Larin Aleksandr Yurevich
  • Omelchuk Ivan Stepanovich
RU2717258C1
SIMULATOR OF RADIO NAVIGATION SIGNALS 2018
  • Grebennikov Andrej Vladimirovich
  • Krasnenko Sergej Sergeevich
  • Pichkalev Aleksandr Valerevich
  • Khazagarov Yurij Gennadevich
RU2697811C2
MULTIFUNCTIONAL SMALL-SIZED RADAR SYSTEM FOR AIRCRAFTS 2016
  • Alekseev Aleksandr Stanislavovich
  • Kudashev Vladimir Sergeevich
  • Savostyanov Vladimir Yurevich
  • Samarin Oleg Fedorovich
  • Rovkin Mikhail Evgenevich
  • Russkov Dmitrij Anatolevich
RU2630278C1
METHOD OF CONSTRUCTING A RADAR STATION 2019
  • Zadorozhnyj Vladimir Vladimirovich
  • Kosogor Aleksej Aleksandrovich
  • Larin Aleksandr Yurevich
  • Litvinov Aleksej Vadimovich
  • Musaev Maksud Murad Ogly
  • Omelchuk Ivan Stepanovich
  • Trekin Aleksej Sergeevich
RU2723299C1
SPACE SCANNING METHOD 2015
  • Zadorozhnyj Vladimir Vladimirovich
  • Larin Aleksandr Yurevich
  • Litvinov Aleksej Vladimirovich
  • Omelchuk Ivan Stepanovich
  • Pomysov Andrej Sergeevich
RU2610833C1
METHOD OF CONSTRUCTING A RADAR INTERROGATOR 2019
  • Zadorozhnyj Vladimir Vladimirovich
  • Karabutov Sergej Igorevich
  • Kosogor Aleksej Aleksandrovich
  • Larin Aleksandr Yurevich
  • Litvinov Aleksej Vadimovich
  • Trekin Aleksej Sergeevich
  • Chikov Nikolaj Ivanovich
RU2713621C1
SPACE OBSERVATION METHOD 2016
  • Zadorozhnyj Vladimir Vladimirovich
  • Larin Aleksandr Yurevich
  • Litvinov Aleksej Vladimirovich
  • Pomysov Andrej Sergeevich
RU2621680C1
ACTIVE PHASED ARRAY 2010
  • Kireev Sergej Nikolaevich
  • Krest'Jannikov Pavel Valer'Evich
  • Valov Sergej Veniaminovich
  • Sirazitdinov Kamil' Shajkhullovich
  • Nesterov Jurij Grigor'Evich
  • Ponomarev Leonid Ivanovich
RU2451373C1

RU 2 626 623 C1

Authors

Bomshtejn Aleksandr Davidovich

Spirin Vladimir Viktorovich

Baranov Vladislav Vladislavovich

Dates

2017-07-31Published

2016-05-24Filed