At the executive meeting of the State Council in early September 2022, it was decided to provide phased financial subsidies for equipment renewal and renovation in some fields. On September 28, the central bank clarified the special project for equipment renewal and renovationSupporting 10 fields including education, health, culture, tourism, and sports, with the education field covering key areas such as the purchase and renovation of major equipment for vocational colleges, higher education teaching and research, experimental training, and other fields.
The significant progress in basic research in agricultural science is the driving force behind agricultural technological innovation, and a solid foundation for China's agricultural technology to seize the world's high ground and achieve high-level self-reliance and self-improvement. The purchase and renovation of major equipment is a strong support for strengthening basic research conditions and building a technology platform that matches the disciplinary system.
Beijing BoPu Te Technology Co., Ltd. was established in 2008 and is a high-tech company specializing in research and development, production, system integration, sales, and technical services integration. Beijing BoPu Te Technology Co., Ltd. has rapidly developed with high-quality products, effective services, and a strong team. Currently, it has reached strategic partnerships with multiple European and American instrument brands to jointly serve Chinese customers.
Beijing BoPu Te Technology Co., Ltd. provides professional technical support and after-sales service for the brand products of the general agent. The products are distributed in the fields of plants, ecology, food, biology, soil, environment, meteorology, remote sensing, etc. It has a comprehensive product line and system solutions in the fields of plant phenotype omics, seeds, and germplasm resources.
BaupteFive major solutions
Indoor plant phenotype imaging system
Field Plant Phenotype Imaging System
Seed phenotype imaging system
Root phenotype imaging system
Microscopic phenotype imaging system
1、 Indoor plant phenotype imaging system
WIWAM Plant Phenotype Imaging Analysis System

Indoor Plant Phenotype Imaging System WIWAM XY
High throughput reproducible phenotype robot for precise and uniform irrigation of seedlings and small plants (such as Arabidopsis): integrated weighing/irrigation platform, rotating during plant irrigation to achieve optimal water distribution, high-precision irrigation up to 1mL.
Customization: Provides a fully customized system with high-performance standard chlorophyll fluorescence imaging module
Software data processing: equipped with PIPPA dedicated software, featuring an intuitive interface and an open database structure
Other: Can be paired with environmental sensors

Indoor Plant Phenotype Imaging System WIWAM Line
High throughput reproducible phenotype robots are used for studying small plants, such as corn plants.
Accurate and uniform irrigation: The weighing/irrigation platform is integrated, and the plants rotate during irrigation to obtain better water distribution. High precision irrigation can reach 1mL
Customization: Provides a fully customized system that can integrate various imaging modules.
Software data processing: equipped with PIPPA dedicated software, featuring an intuitive interface and an open database structure
Other: Can be paired with environmental sensors

Indoor Plant Phenotype Imaging System WIWAM Conveyor
Integrated robot solution for high-throughput reproducible phenotype platform, used for large plants. This robot is capable of automatic irrigation and allows for regular measurement of various plant growth parameters.
Accurate and uniform irrigation: The weighing/irrigation platform is integrated, and the plants rotate during irrigation to obtain better water distribution,
High precision irrigation can reach 1mL
Customization: Provide a fully customized system
Software data processing: equipped with PIPPA dedicated software, featuring an intuitive interface and an open database structure
Product optional modules: visible light RGB imaging module, chlorophyll fluorescence imaging module, long-term monitoring module for group plant photosynthesis, near-infrared imaging module, infrared thermal imaging module, hyperspectral imaging module, laser 3D scanning multispectral imaging module
Other: Can be paired with environmental sensors

Indoor self-propelled phenotype robot

Indoor overhead crane track phenotype imaging system
Plantarray high-throughput plant biology monitoring system


Plantarray is a high-throughput, multi-sensor plant functional physiological phenotype platform based on weighing, as well as a universal platform for plant stress biology research. It is widely used in biotic and abiotic stress, accelerated breeding research in plant cultivation, and precise identification and evaluation of plant germplasm resources.
Videometer Lab500 multispectral imaging system

The Videometer Lab 500 multispectral imaging measurement system is widely used in plant germplasm resources, phenotype trait analysis/mining, genotype phenotype correlation, agricultural breeding, horticulture, agricultural informatics, fruit quality analysis, plant pathology research, biomass analysis, seed germination research, stress resistance research, etc
The Videometer Lab 500 can be used for measuring large samples, as well as for high-throughput phenotype imaging measurements of bacteria, fungi, etc., for toxicology or other research purposes.
HAIP hyperspectral imaging cabinet

The HAIP hyperspectral imaging cabinet is used in laboratories to quickly obtain hyperspectral image data of observation targets within 500-1000nm, and is a high-resolution hyperspectral system. The HAIP hyperspectral imaging cabinet can be used for stress research, variety classification, plant science, fruit and seed quality analysis, component analysis, and other research.
2、 Outdoor plant phenotype imaging system
PhenoMobile Plant Phenotype Imaging Analysis Platform

The mobile plant phenotype imaging analysis platform facilitates the movement and use between different areas in large greenhouses or outdoors, greatly improving the convenience and efficiency of sample loading,The standard configuration includes four functional modules: multispectral imaging module, 3D laser scanning triangulation, RGB3D imaging measurement, and hyperspectral imaging module, to provide complete 3D modeling and imaging measurement analysis of crop phenotypes.
Hiphen gantry plant phenotype imaging system

Airphen remote sensing plant phenotype analysis platform

AIRPHEN is a multi spectral camera system developed by HI-PHEN for unmanned aerial vehicles (UAVs), which is used for measuring mobile spectral growth index in the UAV field. Can be operated wirelessly and used in conjunction with auxiliary thermal imaging IR cameras and high-resolution RGB cameras. Used for measuring plants, environment, etc., suitable for research in ecological environment, plant phenotype, precision agriculture, near earth agriculture remote sensing, agricultural insurance and other fields.
Airphen LITERAL Field Portable Plant Phenotype Imaging System

This system is designed for obtaining ground sampling distance (GSD) images or for simple data acquisition without the need for UAVs. It can measure plant heights up to 3m. The system has multiple alternative sensors and comes standard with RGB visible light and multispectral phenotype imaging modules, making it suitable for extracting and analyzing crop phenotype features in the field.
HAIP hyperspectral phenotype imaging platform

The HAIP hyperspectral imaging system is equipped with a high-performance computer, a multifunctional and multi task research grade camera system, and comes standard with a DJI camera interface. It is designed specifically for the DJI M300 series unmanned aerial vehicles; Optional field measurement tripod, suitable for mobile measurement or long-term observation in the field. Can be used for research in environmental remote sensing, agricultural and forestry remote sensing, precision agriculture, species classification, plant science, component analysis, etc.
Videometer Lite portable multispectral phenotype imaging system

The Videometer Lite portable multispectral phenotype imaging system obtains useful information by measuring the imaging of samples under 7 different wavelengths of LED flash light. It can perform high-throughput imaging of bacteria, fungi, insect eggs, etc., as well as precise detection of toxicology, food grains, crops, meat quality, etc.
Videometer Field Field Multi Spectral Phenotype Imaging System

This system is a field multispectral phenotype imaging system that is not affected by wind and different spectral radiations. It can be used to measure the spectral and geometric characteristics of vegetation canopy, and can be applied to field phenotype trait analysis and mining, agricultural field breeding, horticulture, agronomic informatics, plant disease and pest research, and field crop stress resistance research.
Portable hyperspectral imaging system

The Black Hyperspectral Imaging System is an intelligent handheld hyperspectral imaging system that covers the visible and near-infrared wavelength ranges, allowing for easy and fast acquisition of spectral data for on-site analysis. The camera is integratedThe broadband LED lighting unit does not require an external light source and is suitable for various environments.
The system is equipped with a large touch screen and a simple user interface, ensuring practical application. No in-depth professional knowledge is required to use the camera or interpret the results. The system adopts a ready to use design, and the processing results can be displayed on the screen. It can be used for research on adversity and stress, variety classification, plant science, fruit and seed quality analysis, and component analysis.
3、 Seed phenotype imaging system
Seed morphology and physiological phenotype - Videometer Lab4 multispectral imaging measurement system

The Videometer seed phenotype imaging system can measure seed parameters such as size, color, shape, etc., indirectly determining seed parameters such as seed purity, germination percentage, germination rate, seed health, seed maturity, lifespan, etc.
Videometer SeedLab Multispectral Seed Testing and Phenotype Laboratory

Videometer SeedLab is an AI driven system that can automatically perform complete analysis and classification of target seeds and grains. Using spectral imaging technology and machine learning algorithms, guide the robotic arm to automatically extract and sort seeds.
Videometer Lab XY High Throughput Seed Analysis System

VideometerXY is a customized system for seed analysis. VideometerXY is used for rapid and effective measurement of large quantities of samples. The system is an automated system that integrates lighting, cameras, and computer technology, utilizing digital analysis and statistics.
Comprehensive analysis of seed morphology, physiological phenotype, and structural phenotype - SeQso seed phenotype sowing integrated system

The SeQso integrated seed phenotype sowing system utilizes multiple devices to measure seed phenotypes with high throughput and analyze seed big data. It can also sow seeds and associate germinating seedlings with corresponding seeds. The seed phenotype sowing integrated system is a multifunctional seed measurement and analysis platform.
Seed Structure Microscopic Phenotype Research System - Fraunhofer Computerized Tomography Phenotype Imaging System

Fraunhofer portable CT scanner
Portable tomography can be applied to study the internal structural changes of plant seeds and small fruits. It can explore the changes in seed chambers, embryos, and endosperms of different plants without damage, measure the three-dimensional structure inside seeds, and observe the internal changes of small fruits.

Fraunhofer desktop CT scanner
Desktop tomography can be used not only for analyzing plant roots, stems, fruits, seeds, leaves, but also for geology, archaeology, and soil particle structure research.
4、 Root phenotype imaging system
Videometer MR multispectral root phenotype imaging system

The Videometer MR multispectral root phenotype imaging system can be used to capture full HD images of living roots and mycorrhizal hyphae in soil, monitoring their growth and behavior in multiple seasons. It can be applied to the determination of root season and spatial distribution, root development related to stress, phenotype research, crop growth model research, pathological analysis, and insect behavioral ecology research.
Plantarray root physiological phenotype measurement system

Plantarray is a high-throughput, multi-sensor physiological phenotype platform based on weighing, as well as a universal platform for plant stress biology research, which can also be used for root physiological phenotype measurement. The system can sustainably and real-time measure the real-time water flow in the soil plant air (SPAC) of each plant in the array, directly measuring the water balance and biomass increase of the root and stem leaf systems, calculating plant physiological parameters, and plant feedback to the dynamic environment. Widely used in biotic and abiotic stress, as well as accelerated breeding research in plant cultivation.
Frauhofer CT computed tomography system for plant root systems

The Fraunhofer laboratory plant CT imaging system is widely used in the study of internal structural changes in plant roots and stems. It can explore the root system changes of different plants in potted plants without damage, and also measure the 3D structure of stems and stems.
5、 Microscopic phenotype imaging system
Videometer Mic Microscopic Multispectral Measurement System

The multispectral microscopy phenotype imaging system is an instrument that can achieve multispectral image acquisition of micro scale objects. It not only maintains the real-time imaging characteristics of microscopes for small areas, but also has the ability to acquire spectra and RGB images of objects in the 280-1050nm wavelength band in that area. It can be widely applied in fields such as micro nano optics, materials science, biotechnology, etc.
Fraunhofer High Resolution Nanomicroscopic Computed Tomography System (NanoCT)

The Fraunhofer high-resolution nano CT micro computed tomography system has a spatial resolution of up to 150nm and voxel sampling of up to 50nm. It can measure the internal three-dimensional structure (3D) of samples with high spatial resolution and is widely used in fields such as biology, materials, and semiconductor science to achieve non-destructive measurement and evaluation. This system is a device for studying organisms at the microscopic scale and can be regarded as a high-resolution microscopic phenotype structure imaging system, such as microscopic cell, tissue seed and other microscopic structure studies. It is used for detailed 3D information collection of hidden internal structures in biological research to understand the morphology of various organisms. The resolution of another nano CT system can reach 40nm.
Others:
Chlorophyll fluorescence system, etc
