Advanced imaging, intelligent analytics, and high-throughput automation—designed to help scientists see what matters most
Redefining the Future of
Plant Phenotyping
Where plant science meets pure clarity. Explore the applications.
Genetic Breeding & Germplasm Evaluation
Accurate trait measurement is essential for identifying superior genotypes and accelerating breeding progress. Our phenotyping solutions support population-scale trials, multi-environment testing, and advanced genetic analyses.
Plant Growth & Development Monitoring
Continuous monitoring of plant growth provides critical insights into biomass accumulation, plant vigor, and developmental timing. Our platforms quantify structural and physiological changes across the life cycle.
https://www.phenotypingsystem.com/applications/#A-3
Abiotic Stress Phenotyping
Understanding plant responses to environmental stress is essential for climate-resilient agriculture. Our controlled-environment systems quantify stress responses with high precision.
Biotic Stress & Plant Health Assessment
Our imaging and spectral systems capture disease symptoms and pest damage with high sensitivity, enabling early detection and quantitative assessment of plant health.
Root System Architecture & Below-ground Phenotyping
Root traits play a central role in water uptake, nutrient efficiency, and stress resilience. Our root imaging platform provides accurate and non-destructive analysis of complex below-ground structures.
Reproductive Traits, Flowers & Seeds
Across all applications, our unified hardware–software ecosystem ensures consistent data quality—now explore the systems behind it.
Potted Plant Phenotyping System
From single pots to high-throughput pipelines—2D, 3D, hyperspectral, and thermal imaging for complete plant characterization.
High-Throughput Track-Based Phenotyping System
From single pots to high-throughput pipelines—2D, 3D, hyperspectral, and thermal imaging for complete plant characterization.
Horizontal Push-Scan Phenotyping Analysis System
Large-area gantry imaging for canopy structure, growth dynamics, and multi-sensor plant monitoring.
High Throughput Root Analysis System
High-resolution imaging and automated analysis for root morphology, distribution, and below-ground traits.
Portable Benchtop Flower Phenotyping System
Automated imaging of flower morphology, color, symmetry, and developmental stages for precision breeding.
Seed Phenotyping System
High-speed imaging and AI-driven classification for seed size, purity, vigor, and germination performance.
Beneath every instrument lies a deep engineering ecosystem.
Our R&D Capabilities
— Engineered for Scientific
- International Patents
- SCI Papers
- International Research Institutions
R&D Highlights
— What Makes Us Stand Out
Multimodal Imaging Expertise
AI-Driven Analysis
High-Throughput Automation
Customizable Models
Reliable & Repeatable Testing
Designed for Science. Built for Results.
A Complete Phenotyping Engineering Ecosystem
From optical architecture to AI-powered analytics, every component of our systems is engineered around the real workflows of plant scientists. Our unified hardware–software platform supports diverse imaging modalities—including visible light, 3D, hyperspectral, thermal, and macro imaging—ensuring research-grade data across a wide range of applications.
Customizable to Any Crop, Trait, or Research Scenario
Whether analyzing seedlings, mature crops, roots, flowers, or seeds, our engineering framework adapts to your scientific objectives. Every system supports customization—from imaging angles and spectral ranges to trait extraction models and automated workflows—ensuring precise measurement for any phenotype target.
Built for Long-Term Scientific Workflows
Our systems support continuous operation for multi-season experiments and large cohorts with modular upgrades for imaging units, software functions, or AI models—future-proofing your phenotyping workflow.
Seamless Integration with Scientific Data Ecosystems
Standardized data formats, API capabilities, and LIMS connectivity allow our systems to plug directly into existing research and breeding pipelines. Export, analyze, integrate—without friction.