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Bio 3D Printer LBP-01
Labotemp Bio 3D Printer

Bio 3D Printer LBP-01

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

$34718
Datasheet

Specifications Bio 3D Printer LBP-01

Printing Technology : Direct Ink Writing (DIW) 3D Bioprinting

Printing Technology
Direct Ink Writing (DIW) 3D Bioprinting

Machine Dimensions : 650 × 520 × 620 mm (XYZ)

Machine Dimensions
650 × 520 × 620 mm (XYZ)

Printing Platform : Room temperature printing platform compatible with petri dishes and standard well plates

Printing Platform
Room temperature printing platform compatible with petri dishes and standard well plates

Platform Calibration : Automatic calibration system

Platform Calibration
Automatic calibration system

Working Volume (Single Head) : ≥ 250 × 150 × 100 mm

Working Volume (Single Head)
≥ 250 × 150 × 100 mm

Working Volume (Dual Head) : 220 × 150 × 100 mm

Working Volume (Dual Head)
220 × 150 × 100 mm

Printhead System : Modular printhead design with quick replacement

Printhead System
Modular printhead design with quick replacement

Mechanical Repeatability : ±10 μm

Mechanical Repeatability
±10 μm

Pressure Control : Gas fluctuation range ±1 kPa with real-time pressure adjustment

Pressure Control
Gas fluctuation range ±1 kPa with real-time pressure adjustment

Printhead Channels : 1 channel or 2 channels

Printhead Channels
1 channel or 2 channels

Nozzle Cartridge Options : 10 cc, 30 cc, and 55 cc

Nozzle Cartridge Options
10 cc, 30 cc, and 55 cc

Pipetting Function : Minimum droplet size 10 μL (±5%)

Pipetting Function
Minimum droplet size 10 μL (±5%)

Well Plate Compatibility : 6, 12, 24, 48, and 96 well plates

Well Plate Compatibility
6, 12, 24, 48, and 96 well plates

Air Supply : Matching silent air compressor

Air Supply
Matching silent air compressor

Working Pressure : ≤ 0.8 MPa

Working Pressure
≤ 0.8 MPa

Noise Level : ≤ 55 dB

Noise Level
≤ 55 dB

Package Size : 1040 × 1190 × 1460 mm

Package Size
1040 × 1190 × 1460 mm

Gross Weight : 118kg

Gross Weight
118kg

Features Bio 3D Printer LBP-01

  • Dual Printhead System ➤ Dual Printhead System
  • Direct Ink Writing Bioprinting Technology enabling accurate deposition of bio-inks, hydrogels, and biomaterials for tissue engineering applications. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. ➤ 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. 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. 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. 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. 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. 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. 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. 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. 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. 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. 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. Independent Secondary Platform
    Additional motion-controlled printing platform that allows independent operation and expanded working area for advanced bioprinting experiments.