• Title/Summary/Keyword: Squib Circuit

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The Design of Squib Circuit using Hybrid Interlock (하이브리드 인터락을 적용한 점화회로 설계)

  • Jang, Bu-Cheol;Cho, Kil-Seok;Shin, Jin-Beom;Koo, Bong-Joo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.17 no.4
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    • pp.404-412
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    • 2014
  • We proposed a design method for squib current supply & interlock circuits in guided-missile fire control systems. In order to design squib current supply circuits, various missile squib loads including line resistance and squib devices have to be considered in advance minimizing probability of redesign of circuits and reducing the development cost by implementing the most proper squib current supply circuit. Also, we presented a hardware interlock logic instead of the commonly used software safety logic to improve the safety of guided-missile fire control systems. The proposed squib interlock circuit enhances safety requirements of guided-missile fire control systems. We confirmed that simulation and measurement results of the proposed design method are the same as theoretical analysis results.

Selective Squib Activation and Check Circuit Design for Safeguarded Multi-Phase Missions (안전조치 포함 다단계 임무 수행을 위한 선택적 스퀴브 도화 및 점검 회로 설계)

  • Lee, Heoncheol;Kwon, Yongsung
    • Journal of the Korea Institute of Military Science and Technology
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    • v.21 no.5
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    • pp.684-696
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    • 2018
  • The mission in missile systems can be conducted with multiple phases according to the characteristics of the systems and the targets. The safeguarded multi-phase mission includes a safeguarded phase before launch for considering the safety of operators in unexpected squib activation. However, the safeguard function should be disabled after launch to complete the mission. Therefore, the squib system needs to be selectively activated according to the phases. This paper presents a selective squib activation and check circuit design for safeguarded multi-phase missions in missile systems. The presented circuit design was implemented with various electronic components including a field-programmable gate array(FPGA). Its functions and performance were validated by both many ground tests and several flight tests.

Pyro Squib Circuit Design with Stable Constant Current Driving Method (안정적인 정전류 구동 방식의 파이로 스퀴브 회로 설계)

  • Soh, KyoungJae
    • Journal of the Korea Institute of Military Science and Technology
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    • v.25 no.5
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    • pp.545-551
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    • 2022
  • We proposed a design method for constant current pyro squib circuit. The current method using N MOSFET for the stability problem has a weakness of the current change, requiring a new design. This paper identified the problem with conventional squib circuit where the current is reduced by 25 % when maximum resistance is 3 ohms. Thus, we proposed a stable constant current driving circuit using P MOSFET and PNP BJT. We confirmed stable constant circuit operation through simulations and measurements of the proposed circuit design where the current did not change until the resistance reached 3 ohms.

Squib Ignition and Status Check Circuits Design for Compact Embedded Systems in Guided Missiles (유도무기의 소형 임베디드 시스템을 위한 스퀴브 착화 및 상태 점검회로 설계)

  • Wonsop Kim;Keehyun Ahn;Minseok Lee
    • Journal of the Korea Institute of Military Science and Technology
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    • v.26 no.1
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    • pp.64-71
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    • 2023
  • In the recent defence industries, it is required to develop the small and low cost embedded systems for guided missiles. According to the characteristics of guided missiles, the mission is conducted with multiple phases, which include a squib activation phase. By considering the unexpected squib activation, the squib system should be disabled after the launch of a guided missile. Therefore, the squib system needs to include the functions of the safe ignition and status check. This paper presents the squib ignition and status check circuits design for the compact embedded systems in guided missiles. Validation results show that for the functions of the squib ignition and status check, the presented circuits design performs well. The designed circuits also were implemented with various electronic devices and validated by the ground and flight tests.