Stahls' Hotronix Stampinator 480 Heat Press
Stahls' Hotronix Stampinator 480 Heat Press
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- DESCRIPTION
- Specifications:
- REVIEWS
The Hotronix Stampinator is a revolutionary inline heat press made to level up your apparel printing quality and efficiency. The Stampinator transforms your existing automatic screen printing press into an automatic heat transfer machine capable of applying up to 480 transfers per hour. The Stampinator also improves the quality of your screen prints by flash curing and smoothing out underbases, creating the perfect surface for ink, making prints that look sharper and feel smoother.
Features:
- In-line heat press integration for increased effeciency
- Digital temperature control for consistent heat application
- Compatible with plastisol and water-based inks for flash curing
- Compression function smooths fibers for improved print quality
- Processes up to 480 transfers per hour for high-volume production
- Compatable with specialty materials, including HTV, foil and rinestones.
Performance:
- USA-made, award-winning Hotronix digital technology
- Digital temperature control for precise heat application
- Quick and easy installation on automatic screen printing presses
- Designed for long-lasting durability and high-volume production
Package Includes:
- Stampinator 480 Universal
- Extra Teflon Sheet
- Heat Conductive Green Rubber Insert
- 12' Pigtail Power Cord for wiring in a plug
- Make your prints better and automate your transfers by
- Stamp Flashing The Underbase (replaces first flash, roller, or iron which saves a printhead)
- Matting down fibers prior to printing
- In-Line Heat Transfer
- In-Line Screen Numbers
- In-Line Specialty Applications like Foil and Rhinestones
- In-line Stamp Curing completing a final cure on press
- And much more
- Flash speeds range between 2-5 seconds.
Capability of producing over 480 transfers per hour.
Technical FAQ: Choosing the Right Screen Printing Mesh Count
What mesh count is best for printing glitter and shimmer inks?
Use a low mesh count between 24 and 86 for glitter and shimmer inks. Larger glitter flakes require very open meshes such as 24/25, 38/40, or 60/61 to allow particles to pass through without clogging. For finer shimmer inks or foil adhesives, an 85/86 mesh provides better control while still allowing adequate ink flow.
Why is 110 mesh commonly used in garment screen printing?
A 110 mesh count is widely used because it delivers a heavy ink deposit, making it ideal for bold graphics, block text, and high-viscosity plastisol inks. It is especially effective for white underbases, allowing printers to achieve strong opacity in a single pass and improve production efficiency.
What mesh count should I use for thick white plastisol ink?
A 125 mesh count is a strong choice for thick white plastisol inks. It balances ink flow and detail, offering slightly finer resolution than 110 mesh while still maintaining enough openness to prevent clogging or poor ink release.
What is the best all-purpose mesh count for t-shirt printing?
A 156/160 mesh count is considered the best general-purpose option for screen printing on garments. It works well with both plastisol and water-based inks, providing good detail retention while maintaining consistent ink coverage across most designs.
How can I achieve a soft-hand feel when printing with plastisol ink?
To create a softer print with plastisol ink, use a higher mesh count such as 196/200. This reduces the amount of ink deposited on the garment, resulting in a lighter, smoother feel. Keep in mind that higher mesh counts may reduce opacity, making this approach best for lighter fabrics or fashion prints.
What mesh count is ideal for halftones and fine detail printing?
A 230 mesh count is ideal for halftones, fine lines, and detailed artwork. It allows for precise stencil definition and clean ink transfer. For very fine detail or thinner inks, a 280 mesh count can further improve sharpness and control.
When should I use a 305 mesh screen for screen printing?
A 305 mesh count is best for ultra-fine detail, including small halftone dots, CMYK process printing, and simulated process designs. The higher thread count ensures accurate dot reproduction and prevents distortion, resulting in sharper, more professional prints.