Product Details
Sony UPP-110S Standard Thermal Print Media
Sony UPP-110S thermal print media is a Type I (normal density) black and white paper of premium quality, designed to print using Sony medical thermal printers like UP-X898MD, UP-D897, UP-897MD, UP-860, UP-890, UP-895 and other printers of the UP-8xx series. It is also completely compatible with Mitsubishi P93E, P93DW, and P95DE printers, offering a good alternative to Mitsubishi K61S / KP61S / KP61B-CE types of papers.
Manufactured in Japan, this delivers consistent and precise imaging results with a white matte surface, producing clear grayscale images ideal for ultrasound diagnostics, microscopy and medical records. The media supports 325 dpi resolution and 8-bit halftone (256 gray levels) for detailed and smooth image gradation.
Technical specifications:
Type: Type I (Standard)
Technology: Thermal paper
Surface: White matte
Image Resolution: 325 dpi
Halftone Transmission: 8 bits (256 gray shades)
Roll Dimensions: 110 mm × 20 m
Weight per roll: 0.175 kg
Rolls per carton: 10 pcs
Carton dimensions: 26.5 × 12.4 × 10.6 cm
Carton weight: 1.78 kg
Master carton (100 rolls): approx. 55 × 26 × 28 cm; 18 kg
Storage conditions: 5–30 °C, RH 30–50 %
Shelf life (paper): 3 years
Shelf life (printed image): at least 5 years
Production: Japan
Storage and handling:
For optimum performance, keep Sony UPP-110S paper in an environment with temperatures of 5 °C–30 °C and relative humidity of 30–50 %. Keep away from direct sunlight and moisture. With proper storage, the shelf life for unused paper is 3 years and the minimum 5-year image retention after printing.
Principal benefits:
Original Sony Japan manufacture assures consistency and reliability.
Smooth matte finish for high-contrast, smear-free prints.
Compatible with Sony and Mitsubishi medical printers.
Maintains image quality during years of storage.
Suitable for the clinic setting requiring diagnostic image sharpness and stable records.
Choose Sony UPP 110S Thermal Print Media for quality consistency, workflow productivity, and long-lasting print performance in all medical imaging modalities.




