TFT-Based Life Sciences Product Line
TFT-DNA synthesis solutions balancing throughput, yield, and length
TruSynthTM
Oligo Microarray Synthesizer
World's first oligonucleotide microarray synthesizer based on TFT semiconductor technology
High-Throughput oligo microarray and oligo pool production tools integrate TFT semiconductor technology with electrochemical technology
Why Choose TFT Semiconductor?
Low Cost
Mainland China holds approximately 80% of global TFT semiconductor production capacity, with world-leading design and fabrication capabilities, serving as a vital engine for the rapid iteration of TFT-based life science tools
High Precision
Array density reaches single-cell and subcellular resolution, perfectly adapted for single-cell and picoliter-to-microliter molecular experiments
High Throughput
Leveraging mature display technology, pixel arrays ranging from thousands to tens of millions can be easily achieved

Industrial Chain Advantage
Leveraging established processes and production capacity to break the stereotype of “expensive semiconductor consumables”
Integration
TFT enables the accomplishment of successive tasks in multi-step workflows, involving varying throughput and sample load, on a single chip, which includes reaction system construction, reaction process control, and in situ result detection
Large-Area Scalability
Mass-produced chips can reach square-meter scale, overcoming the capacity limits of silicon-based semiconductors and traditional microfluidics
Three Fundamental Capabilities of TFT Biochips
Microarray Reaction Control
Realize various synthesis Schemes (e.g. electronic, photonic, temperature, and enzymatic catalyst) with high throughput and capacity

Picoliter Droplet Manipulation
Realize high-throughput mixing, moving, splitting, and other precise manipulations of biological sample droplets from picoliter to microliter

In-situ Signal Sensing
Realize high-throughput, accurate, fast, and sensitive real-time sensing of in situ biological signals by integrating various advanced solutions
