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Goals and Tasks of Instrument Development in Chongqing
Release time:2020-11-21
chongqing instrument of development goals:
Chongqing Instrument pays attention to industrial transformation and upgrading, develops strategic emerging industries, guarantees and improves people's livelihood, and pays attention to the systematic promotion of the entire industrial chain; Solve key issues such as intelligence, networking, reliability and safety of industrial backbone products; complete the independent design, research and development and industrialization of a number of high-precision instruments and new sensors; focus on meeting the needs of emerging industries such as the Internet of Things, environmental protection, and food safety And the strategic needs of cultural relics protection and inheritance; establish an industrial general technology service platform to provide support for industrial independent innovation and sustainable high-quality development. The overall level of development of the industry has improved significantly.
the focus of the task of chongqing instrument:
(I) key basic materials
Applications for high-end instrumentation industry, aerospace, marine, medical, automotive, consumer electronics and other high-performance special functional materialsChongqing Instrument will carry out basic theoretical research on new sensitive materials such as piezoelectric thin films and ceramic materials, thermoelectric sensitive materials, temperature sensitive materials, gas sensitive materials, metal oxide materials, polymer materials and photoelectric materials. Carry out research on key technologies such as microstructure, principle analysis, material modification, performance evaluation, service performance and influencing factor analysis. Overcoming the key technical foundation for the preparation of silicon and other materials, scintillation crystals, silicon carbide single crystal, piezoelectric single crystal, high temperature insulation materials, sputtering target materials, alloy materials, precious metal precision resistance, strain resistance and other manufacturing technologies, to carry out research on high purity alloy, metallurgy, heat treatment process, electrical and mechanical properties, alloy rolling plastic deformation and high precision cold rolling process; research and development of new materials such as magnetorheological elastic materials, nanomaterials, superconducting materials, smart materials, catalytic materials, anisotropic multilayer composites, and heterostructure materials.
(II) core devices
Chongqing Instrument develops high-performance core key source components such as light, sound, electricity, frequency and clock. The design of high-power semiconductor laser chips, the research of narrow bandwidth external cavity locking technology, and the development of high-performance semiconductor laser light sources have broken through the sound.-Key technologies such as new structural design of electro-acoustic conversion and directional focusing control of sound beam have developed a series of ultrasonic power supplies with high precision, high power and integration. Focus on the research and development of key technologies such as multi-source heterogeneous energy acquisition, adaptive impedance matching, efficient, stable and reliable special power supply, etc. Research and development of key technologies such as ultra-wideband high frequency synthesis and ultra-wideband agility; R & D of frequency sources such as 5g band, millimeter wave band and terahertz band; breakthrough in atomic time three-dimensional integration, servo control and other key technologies, the development of chip-scale atomic clocks.
Chongqing instrumentation to develop high-performance miniaturized hydrophones,Acoustic sensors such as MEMS microphones, MEMS ultrasonic flow sensors, ultrasonic wind speed and direction sensors, and photoelectric sensors and detectors such as CCD image sensors, CMOS image sensors, balanced photoelectric detectors, InGaAs avalanche photoelectric detectors, uncooled infrared detectors, graphene MEMS image sensors, deep ultraviolet solar blind image sensors, etc. Develop miniaturized high-precision inertial sensors such as gyroscopes, accelerometers and attitude sensors, develop high-precision MEMS resonance, piezoresistive and high-temperature pressure sensors, and develop high-precision gas sensors, ion sensors, human body signs sensors and other biochemical sensors.
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