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Bio 3D Printer LBP-01





Description:

Labotemp Bio 3D Printer LBP-01 is an advanced 3D bio printer designed for high-precision bioprinting in biomedical research, tissue engineering, regenerative medicine, and pharmaceutical laboratories. This professional 3D bio printer enables accurate deposition of bio-inks, hydrogels, and biomaterials to create complex biological structures and micro-scaffolds used in cell culture studies and drug development models. With repeatability accuracy of ±10 µm and a working area up to 250 × 150 × 100 mm, the Bio Architect platform delivers stable and reproducible bio print results for both single-head and dual-head printing configurations.

Engineered for research flexibility, the system integrates a direct ink writing 3D printing platform with automatic calibration, real-time pressure stabilization, and modular printhead architecture for quick replacement and multi-material printing. Optional modules such as UV curing, temperature-controlled platforms, electrospinning, and coaxial printing further expand its capabilities for advanced biomaterial fabrication and scaffold development. With integrated touchscreen control and compatibility with CAD and G-code models, this bioprinting system provides a versatile and scalable solution for modern life science laboratories.


Why Choose Labotemp Bio 3D Printer LBP-01
✓ High-Precision Bioprinting Platform: ±10 µm repeatability ensures accurate and consistent biological structure fabrication
✓ Flexible Modular Architecture: Supports multiple printheads, material cartridges, and optional modules for advanced bioprinting research
✓ Research-Focused Design: Compatible with well plates, petri dishes, and biomaterial inks for diverse laboratory and biomedical applications

Specifications:

Printing Technology Direct Ink Writing (DIW) 3D Bioprinting
Machine Dimensions 650 × 520 × 620 mm (XYZ)
Printing Platform Room temperature printing platform compatible with petri dishes and standard well plates
Platform Calibration Automatic calibration system
Working Volume (Single Head) ≥ 250 × 150 × 100 mm
Working Volume (Dual Head) 220 × 150 × 100 mm
Printhead System Modular printhead design with quick replacement
Mechanical Repeatability ±10 μm
Pressure Control Gas fluctuation range ±1 kPa with real-time pressure adjustment
Printhead Channels 1 channel or 2 channels
Nozzle Cartridge Options 10 cc, 30 cc, and 55 cc
Pipetting Function Minimum droplet size 10 μL (±5%)
Well Plate Compatibility 6, 12, 24, 48, and 96 well plates
Air Supply Matching silent air compressor
Working Pressure ≤ 0.8 MPa
Noise Level ≤ 55 dB
Package Size 1040 × 1190 × 1460 mm
Gross Weight 118kg
Features:
    • Dual Printhead System
    • Direct Ink Writing Bioprinting Technology enabling accurate deposition of bio-inks, hydrogels, and biomaterials for tissue engineering applications.
    • High Precision Motion System providing maximum repeatability accuracy of ±10 μm for reproducible biological structures.
    • Modular Dual Printhead Architecture allowing rapid switching between different cartridge capacities and printing functions.
    • Stable Pressure Control System with ±1 kPa pressure stability ensuring consistent extrusion during the bioprinting process.
    • Well Plate Compatible Printing Platform enabling automated pipetting and printing directly into 6, 12, 24, 48, and 96-well plates.
    • Automatic Platform Calibration simplifying setup and improving printing accuracy.
    • Integrated Pipetting Function capable of dispensing droplets as small as 10 μL for precise biological experiments.
    • Expandable Modular System supporting advanced modules such as electrospinning, coaxial printing, and temperature-controlled platforms.
    • Low Noise Operation with a silent air compressor system operating at ≤55 dB, suitable for laboratory environments.
    • Designed for Advanced Bioprinting Research including tissue engineering, drug screening, regenerative medicine, and biomaterial scaffold fabrication.

Optional Accessories

  • UV Curing Module: Supports UV curing lamps with multiple wavelengths (365 nm, 385 nm, 395 nm, and 405 nm) for rapid photopolymerization of photosensitive bio-inks and hydrogels used in bioprinting.
  • High Temperature Pneumatic Print Nozzle: Temperature-controlled extrusion nozzle capable of heating from room temperature up to 300°C, suitable for thermoplastic biomaterials and polymer-based bio-inks.
  • Low Temperature Pneumatic Print Nozzle: Cooling-enabled print nozzle operating from -5°C to room temperature, designed for temperature-sensitive biomaterials and hydrogel-based bio-inks.
  • Coaxial Printing Module: Dual-channel coaxial extrusion system that enables core-shell structure fabrication, ideal for vascular tissue models and advanced scaffold printing.
  • High Temperature Printing Platform: Modular heated platform with temperature control up to 100°C, improving material adhesion and stability during bioprinting of polymer materials.
  • Low Temperature Printing Platform: Cooling-enabled platform with an effective temperature range of -10°C to room temperature, suitable for temperature-sensitive bio-inks and cell-based materials.
  • Inline Mixing Module: Allows real-time mixing of multiple biomaterials during printing to create gradient structures and multi-material tissue scaffolds.
  • Solution-Based Near-Field Direct Writing / Electrospinning Module: Enables fabrication of micro and nano-structured models, supporting electrospinning of nanofiber membranes and scaffolds.
  • Melt Electro Writing (MEW) Module: High-precision electrospinning module designed for producing nano-scale fiber scaffolds, compatible with biomaterials such as PCL, PLA, and PLGA.
  • Rotary Axis Printing Platform: Specialized printing platform designed for cylindrical structures and tubular scaffolds, supporting multiple axis diameters.
  • Independent Secondary Platform: Additional motion-controlled printing platform that allows independent operation and expanded working area for advanced bioprinting experiments.

Labotemp Scientific

144 E, Midwest Avenue, Casper WY 82601, USA

Website: www.labotemp.com | Email: info@labotemp.com