High-g sensor technology

Technical Difficulties: Design of explosion impact sensor structure strength;

Technical Indicators: Meets the use of 118000g explosion impact measurement, linearity deviation 0.13% per 10000m/s2;

Technical Advancements: Completion of a 100,000g range impact accelerometer, and successful application; Successful application in explosion separation, cutting separation, underwater explosion and other fields has obtained ideal test data. The sensor solves the common problem of impact testing—the problem of zero drift in the time domain of sensor output. It has been consistently praised in the national defense and military industry field. As an impact sensor used in ground testing experiments for the Long March 7 rocket, Long March 5 rocket, and XX weapon model, there is no similar domestic alternative product.

Product Features: High strength, lightweight titanium structure; Fast response, sealed, suitable for harsh environments; Bulletproof vest, impact detection, metal collision;

Miniaturized sensor technology

Technical Difficulties: Miniaturization of sensors; integration of sensor and transducer;

Technical Specifications: 5.8X5.8X5.8mm triaxial vibration, mass 0.7g; 3x4x6mm uniaxial, mass 0.13g;

Technical Advantages: Successfully developed a smaller triaxial vibration sensor and the world's smallest uniaxial voltage output vibration sensor. In the mass production process of miniaturized sensors, the company's miniaturized design capabilities and integrated sensor design capabilities have been enhanced. The company has the ability to produce a range of miniaturized sensors, providing lightweight sensor products for fields with strict requirements on sensor size and weight, such as vibration testing of precision instruments, vibration testing of optical devices, and vibration testing of mobile phones.

Product Features: Small size, light weight; wide frequency band; high sensitivity, high signal-to-noise ratio;

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