ROQ Digital | Blog

Unleashing the Power of Fujifilm Dimatix Starfire SG-1024: High-Performance Industrial Printheads

Written by Cristen Sousa | Apr 10, 2025 10:43:39 PM

The Future of Industrial Inkjet Printing is Here

The Fujifilm Dimatix Starfire SG-1024 printhead is a high-speed, high-quality inkjet solution designed for industrial printing applications. Engineered for durability and efficiency, this printhead features advanced recirculation technology and a repairable design, making it a cost-effective and long-lasting choice for businesses looking to optimize their printing operations.

 

Precision in Hybrid Printing:
A Game-Changer for Industrial Applications

In cutting-edge printing systems like the ROQ NOW, ROQ HYBRID, and ROQ GO, the SG-1024 series excels in precision and efficiency:

  • 80pL printheads are used for white ink applications.
  • 32pL printheads handle color ink, delivering vibrant, high-quality prints.

With 1024 nozzles per printhead, these solutions offer exceptional resolution and reliability, ensuring top-tier results across ceramic, textile, and packaging industries.


Advanced Printhead Cleaning for Maximum Longevity
Effortless Printhead Maintenance for Optimal Performance

To ensure consistent, high-quality printing, the SG-1024 printhead undergoes a meticulous cleaning process:

  1. Initial Flush and Test: Removes residual ink and verifies printhead functionality.
  2. Deep Cleaning Cycles: Utilizes digital ink solvents for thorough cleaning.
  3. Nozzle Performance Evaluation: Determines if further cleaning or disassembly is necessary.
  4. Storage Optimization: Filled with shipping fluid to preserve quality. This fluid should be replaced every six months, and the printhead must be stored in an air-conditioned environment.

 

Next-Level Performance with Fujifilm Dimatix SG-1024
Cutting-Edge Technology for Industrial Printing

The SG-1024 printhead is designed to maximize efficiency and output, featuring:

  • 400dpi resolution for superior print quality.
  • Variable drop sizes from 6pL to 200pL, optimizing ink usage.
  • 1024 individually addressable jets, ensuring precise ink deposition.
  • Versadrop binary and grayscale jetting, allowing customized print solutions.
  • Single and two-channel configurations to meet diverse printing needs.

Boosting Productivity with High-Speed Inkjet Technology
Maximize Uptime, Efficiency, and ROI

Built for high-performance printing, the SG-1024 printhead ensures:

  • Ink jetting speeds up to 50kHz, reaching over 190m/min at 400dpi.
  • REDIJET® dual ink recirculation for consistent ink flow and rapid system startup.
  • High productivity and return on investment (ROI) with minimal downtime and maintenance costs.


Industrial-Grade Durability for Demanding Environments
Built to Last – Engineered for Versatility

The SG-1024 printhead is designed for rugged industrial use, offering:

  • A fully repairable design, reducing operational costs.
  • Compatibility with solvent, UV-curable, and aqueous inks, ensuring versatility.
  • A replaceable metal nozzle plate, resistant to abrasion and damage, for long-term reliability.


Fujifilm's Global Support Network: Ensuring Your Success
Expert Technical Assistance and Customer Support

The FUJIFILM Dimatix support team provides comprehensive global assistance, including:

  • Dedicated field technicians for seamless printhead integration and troubleshooting.
  • Quality assurance teams to maintain high-performance standards.
  • Research and engineering support to ensure long-term product optimization.

 

Optimize Your Industrial Printing with Fujifilm Dimatix SG-1024

The Fujifilm Dimatix Starfire SG-1024 printhead is the ultimate high-speed, high-quality, and durable solution for industrial printing. With its advanced recirculation technology, repairable components, and robust design, it delivers exceptional performance for ceramic, textile, and packaging applications. Whether you need single-pass or scanning print solutions, the SG-1024 printhead is built to elevate your printing efficiency and productivity.