- New
zł39,837.40 tax excl.
Industrial FDM / FFF 3D printer featuring delta kinematics, a cylindrical build volume of Ø300 × 400 mm, and an actively heated chamber reaching up to 90°C. The machine supports both high-speed prototyping with PLA and PETG as well as printing advanced engineering materials such as ABS, ASA, PA, PC, PCCF, PEEK, PEKK, PPS, PSU, PES, and PEI / Ultem. The package includes two interchangeable direct drive print heads: a High-flow head for materials up to 300°C and a High-temp head with nozzle temperatures up to 500°C. The printer utilizes Klipper firmware, Input Shaper, Pressure Advance, HEPA and carbon filtration, and supports both online and offline operation.
The Prusa Pro HT90 3D printer does not use the standard design found in most FDM 3D printers. The machine has been developed primarily for manufacturing tall cylindrical objects and technical components requiring high dimensional accuracy and stable operating conditions, making it particularly suitable for industrial environments, R&D departments, and production of functional engineering parts.
The printer utilizes delta kinematics combined with a cylindrical build volume of Ø300 × 400 mm, delivering high printing speeds while maintaining compatibility with engineering-grade materials requiring stable thermal conditions. The actively heated chamber reaches temperatures up to 90°C, while the heated bed can reach 155°C, reducing warping, layer delamination, and adhesion issues during printing with ABS, ASA, PA, PC, PCCF, and other technical filaments. The design is well suited for manufacturing functional prototypes, tooling, machine parts, chemically resistant components, and parts intended for high-temperature environments.
The printer is equipped with two interchangeable direct drive print heads designed for operation with a wide range of engineering-grade materials. The High-flow print head with a quick-swap Revo nozzle reaches temperatures up to 300°C and is intended for high-speed prototyping and efficient printing with materials such as PLA, PETG, ASA, ABS, PA, PC, PCCF, PP, as well as flexible TPU and TPE. The design ensures high material flow performance, precise filament feeding, and stable operation during long production print jobs. A separate High-temp print head reaches temperatures up to 500°C and enables printing with high-performance polymers such as PEEK, PEKK, PPSU, PSU, PPS, PES, and PEI / Ultem, commonly used in the aerospace, automotive, and industrial sectors. The magnetic mounting system simplifies print head replacement, while compatibility with Revo nozzles allows easy adjustment of nozzle diameter to match model geometry and filament type.


The HT90 cooling system utilizes a high-pressure turbine and a flap controlled by a fast-response servo mechanism that directs airflow to selected areas of the model. This solution enables effective cooling of overhangs without excessively cooling the entire print, which is particularly important when working with materials sensitive to thermal stress. A closed-loop air recirculation system with HEPA and carbon filtration purifies the air inside the chamber, while automatic airflow control simplifies printing materials such as PLA and PETG even with the chamber fully enclosed.
Klipper firmware, Input Shaper and Pressure Advance technologies, combined with a lightweight print head driven by three delta kinematics arms, enable high printing speeds while maintaining dimensional accuracy. The maximum travel speed reaches 600 mm/s, maximum print speed 250 mm/s, and acceleration up to 20000 mm/s². Three precise load cell sensors handle automatic calibration and first-layer preparation without manual nozzle distance adjustment. Technical documentation, firmware updates, and configuration guides are available on the official Prusa Research support website.


The Prusa Pro HT90 supports both fully offline operation and network-based management. The printer features Ethernet RJ45 connectivity, a detachable Wi-Fi module, an integrated camera, chamber lighting, and support for Prusa Connect integration. Local mode enables operation within an internal network, while fully offline mode is suitable for environments requiring strict control over data flow. The machine is designed for R&D departments, laboratories, manufacturing facilities, and engineering teams working with high-temperature materials.
The Prusa Pro HT90 has been designed for easy operation and fast setup even in demanding industrial environments. Automatic calibration and three precise load cell sensors prepare the printer for operation without manual first-layer adjustment. Control is handled through a large 7″ touchscreen interface that enables convenient configuration of print parameters, material management, and printer operation monitoring. The machine meets the high operational standards required in R&D departments, laboratories, and production environments utilizing advanced engineering-grade materials.
Data sheet
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