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Introduction
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The EFL-BP9601 features ultra-fast printing speeds, enabling rapid formation of hydrogel models while maintaining the viability of cells and biological components. The self-supporting nature of the ink allows for the quick formation of suspended structures with good printing accuracy, making it suitable for applications such as cell-laden printing and rapid construction of fine hydrogel structures.
1. Ultra-Rapid Fabrication
Enables formation within tens of seconds
effectively preventing the inactivation of cells and biofactors
2. Cell-Friendly
Contact-free printing avoids contamination, with a cell survival rate exceeding 95%
Compatible with various cell types, including embryonic cells, mesenchymal stem cells, etc.
3. Self-Supporting Printing
Enables direct printing of complex overhanging structures
Facilitates gelation even with low-concentration bioink
4. High-Precision Optical Engine
Resolution: 3840 × 2160
Pixel Accuracy: 15 µm
High-Precision DMD Chip
Real-Time Light Intensity Monitoring
5. In-Process Monitoring Module
High-resolution camera
Real-time observation of projection and solidification
6. Proprietary 3D Printing Software
High-performance control system
Built-in printer software (online/offline capable)
Extensive tissue model library
Multi-sample parallel printing
7. Material Preprocessing Module
Supports rapid preheating and precooling of hydrogels to ensure they remain in a printable state
Application:
· Organoids:
Constructing centimeter-scale biological tissues for applications in tissue repair, personalized drug screening, and in vitro pathophysiological research.
· Flexible Electronics
Fabricating hydrogel-based actuators for flexible sensors, soft robotics, and related fields.
· Bionic Tissues
Creating high-resolution tubular structures suitable for simulating natural tissue microenvironments, developing in vitro models, or aiding in tissue regeneration.
· Drug Research
Enabling rapid drug manufacturing to facilitate research on drug formulation, loading capacity, and related parameters.
· Multi-Process Integration
Supporting multi-process integration with techniques such as near-field electrospinning and embedded printing to achieve the fabrication of complex, multi-material structures.
· Mainframe
Main Unit Dimensions: 580×440×385 mm
Rotation Speed: ≤120°/s
Printing Dimensions: Φ12H25mm, Φ15H25mm (container diameter × height)
Container: Glass sample bottle
Wavelength: 405nm
Resolution: 3840*2160
Projection Accuracy: 15μm
Light Intensity: 0~30mW/cm²
· Other Functions
Printing Materials: PEGDA, GelMA, SilMA, F127DA, HAMA, etc.
Camera: Printing progress monitoring, resolution 720×540
Temperature Control Chamber: Facilitates material pre- and post-processing, 4~50℃
Touchscreen: 11.6 inches, resolution 1920×1080
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Introduction
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Manual