A fuze safety system was designed after analyzing the structure characteristics of the system based on dual microcontroller.
引信安全性设计是引信的核心技术之一,引信安全系统是引信安全性设计的主要体现形式。
A state transformation method is applied to analyze quantitatively several logical structures of fuze safety systems.
采用状态转移法对引信安全系统的几种逻辑结构进行了定量的安全性分析。
Stepping motor is applied to fuze safety and arming system as a low power motor at low frequency.
步进电机在引信安全系统中是一种小功率的低频应用。
Presents a series of new concepts and design ideas about the fuze safety system and aims at establishing a proposed theory and mathematical descriptions.
在提出一系列有关引信安全系统新的概念和思想的基础之上,初步建立起引信安全系统的基本理论及其数学描述方法。
The significance and prospect of the application of redundancy design in fuze safety systems is discussed.
论述了冗余设计技术在引信安全系统中应用的重要意义和前景。
According to the requirements of basic shape fuze and the standards of fuze safety design, an effective way to realize the delay arming of small-caliber fuze was researched.
根据基型引信要求和引信安全性设计準则,探索实现小口径引信延期解除保险的有效途径。
The result shows that FTBSS is a more advanced concept of fuze safety system, covering the functions of current fuze safety system.
研究结果表明,FTBSS是一种覆盖了现行安全系统功能的更先进的引信安全系统概念。
The fuze safety system is not just an absolute sub-system in fuze, and is not equivalent to safety and arming device.
引信安全性设计是引信的核心技术之一,引信安全系统是引信安全性设计的主要体现形式。
In this paper, the characteristics of function, performance of planar microspring in MEMS fuze safety system are analyzed.
分析了在MEMS引信安全系统中平面微弹簧的作用、性能等特点。
The concept of maturity safety system is bring forward for high safety of fuzes, and fuze environment is expended to the inner and outer factors which affecting fuze safety situation.
从提高引信安全性的角度提出了完备引信安全系统的概念,并提出引信安全系统环境是影响安全系统状态的外在、内在因素的总和。
The schemes suitable for use in fuze safety systems is proposed by comparing several different redundancy design methods.
分析对比了几种不同的冗余设计方法,提出了适合引信安全系统特点的冗余设计方案。