Combining advanced materials science, polymer chemistry, and artificial intelligence, we create green, sustainable, and highly efficient solutions for smart agriculture and precision reworking.
Fort RD Tech was founded on a deep love for the land and a passion for scientific research. We observed that modern precision agriculture and electronic materials industries often face a dilemma between production and environmental protection. Traditional agriculture relies on high-pollution chemical fertilizers and fungicides, while high-precision optical and sensing component reworking uses large amounts of harmful chlorinated solvents, damaging human health and the environment.
To this end, Fort RD Tech is composed of crop physiologists & breeding experts, polymer material chemists, optoelectronic MEMS semiconductor experts, and automation R&D engineers. We focus on advanced agricultural technology and special chemical materials development, aiming to "bring revolutionary changes in production efficiency using gentle, sustainable, and pollution-free scientific formulas and tools."
Bringing together top scientists and engineers to build cross-disciplinary core technologies from smart control and semiconductor chips to precision agriculture.
Focused on the development of advanced materials for liquid crystal panels (LCD), advanced semiconductors, and multi-layer PCBs, mastering key surface-active formulations to provide high-precision packaging rework and non-destructive debonding processes.
Using molecular biology to optimize crop breeding, and formulating green natural antimicrobial agents and photosynthetic physiological catalysts to achieve eco-friendly yield increases.
Designing multi-spectral/hyper-spectral transmissive optics and high-frequency ultrasonic dual-mode sensor lens systems, combining near-infrared and acoustic wave analysis to enable millisecond-level non-destructive inspection instruments for internal defects.
We follow the twin principles of green chemistry and digital empowerment to drive modern agriculture and advanced manufacturing upgrades.
Technology should never come at the cost of the environment. All agricultural inputs and antimicrobials we develop adhere to food-grade safety standards to ensure complete safety for humans and ecosystems like bees.
We develop non-destructive debonding solvents to allow high-value lenses, BGA chips, and CIS sensor substrates to be reworked and recycled without damage, driving a circular economy in electronics.
Through advanced multi-spectral cameras and AI analysis, we convert traditional "weather-dependent" agriculture into precise non-destructive inspection data to safeguard quality at every step.