Electrospinning
Machine
LS-325
Advanced Lab-Scale
Electrospinning Machine LS-325

Overview
Our advanced lab-scale nanofiber electrospinning machine is designed for sophisticated applications while maintaining a compact footprint. Ideal for researchers and small-scale manufacturers, it offers precise control and versatility in a lab-friendly design. This electrospinning setup is perfect for those who require high precision and reliability in their work.
Key Features
Up to 16
Needles / Convergent-Divergent Nozzles for High Productivity
Supports multiple needle and nozzle configurations, allowing enhanced throughput and precise control over fiber formation.
Benchtop
Variety Collector
Compatible with drum, flat, funnel, and mandrel collectors, offering flexibility for different electrospinning applications.
Bottom-Up
Spinning
Provides better fiber deposition control and uniformity, making it suitable for advanced research and development.
Machine Features
- Compact system with a small footprint
- Bottom-up spinning
- Up to 50 kV applied voltage
- Adjustable spinning distance
- Various collectors (drum, flat, funnel, mandrel)
- Homogeneity system for uniform fiber distribution
- Dual syringe pumps for enhanced control
- Climate control system
- User-friendly interface
- Integrated safety functions and sealed chamber
Optional Custom Features
- Heater and dehumidifier
- Mandrel collector
- Up-bottom spinning
- Needleless spinning
- HEPA filter and gas shield
- Bicomponent and triaxial nozzle
- Robot arm needle holder
- External environment climate controller
- Taylor cone visualization camera
- Nano yarn funnel collector
- Disk collector
- Bipolar voltages
Tissue Engineering
Fabrication of biocompatible scaffolds for regenerative medicine.
Drug Delivery
Controlled release of pharmaceuticals using nanofiber carriers
Bio Textiles
Development of functional textiles with enhanced properties.
Cosmetics
Nanofiber-based skincare and cosmetic applications.
Batteries & Fuel Cells
Research and development of novel energy materials.