Build Volume
Dimensions
Technology

Designed for Production
The HT1001P-2 CAMS system is built for continuous batch production with minimal downtime. It features an efficient powder handling system, a multi-laser scanning setup, and scalable design for industrial applications.
Enhanced capabilities
With a build chamber temperature of up to 220°C, the HT1001P-2 can process high-performance materials like PA6 and PAI2, opening new possibilities for polymer 3D printing, including nylon 3D printing and polypropylene 3D printing.
Open & Modular
The HT1001P-2 is fully open, offering customizable parameters and an open material model, ensuring compatibility with future enhancements and seamless integration into existing production lines.
Powder management
The HT1001 P 2 ־ has also been designed with a comprehensive powder handling system featuring a closed loop powder system with increased automation and little need for operator interaction with the powder supply. With the HT1001P-2 the additive industry is ready to take the next steps towards true manufacturing.
Industrial Applications with HT1001P-2
With the industrial scale build size and enhanced production capability, CAMS HT1001P-2 offers many new opportunities for the next level plastic AM production: over-sized end-use piece can be produced in one-piece without the need for assembly; large-volume series production can be operated in faster turn-over rates for a significant lower price per part.
SAPW HAVC Housing
Machine: HT1001P-2
Material: FS3300PA (PA12)
Size: 950 x 423 x 207 mm
Build Time: 10 Hours
Farsoon Technologies in collaboration with automotive partner SAPW has printed a single-piece polymer automotive HVAC (Heating Ventilating Air Conditioning) unit on the HT1001P-2 CAMS system. Compared to the traditional process including CNC and Silicone Molding, the additively manufactured HVAC features structural integration, improved performance, accelerated development cycle, and reduced manufacturing cost.
Static Firing Skirt on Long March-5 Rocket
Machine: HT1001P-2
Material: FS3300PA (PA12)
Size: 370 x 100 x 125 mm each
Build Time: 50 pieces produced in 48 hours
Scientists designed the optimized static firing skirt per operating conditions and manufactured the end-use parts using Farsoon HT1001P-2 laser sintering technology and high performance FS3300PA material. Assembled to a 5000mm-diameter cylinder structure, the additively produced static firing skirt features excellent strength and toughness, ease of assembly, good post-processability for water-proofing and salt spray to assess the extreme atmospheric corrosion resistance.
Qualcomm Automotive Grille
Machine: HT1001P-2
Material: FS3300PA (PA12)
Size: 900 x 370 x 160 mm
Build Time: 10 hours
This oversized front grille designed by Chongqing Qualcomm Automotive Group measures 900mm in length and featured many detailed structures with thin wall-thickness. Manufacturing with conventional machining process or standard sized SLS platform will require production in several pieces, assembly and polishing; which can cause issues including overall strength and structural integrity. Now at Farsoon, the front Grille can be produced with HT1001P-2 system in one single piece.

Rocket parts: Static firing skirts for China’s Long March‑5 rocket (50× parts, ~370 × 100 × 125 mm each) were produced within 48 hours and assembled to a 5 m cylinder, meeting strength, toughness, and salt‑spray specs
HVAC housing: A single-piece automotive heating‑ventilation‑air‑conditioning unit (950 × 423 × 207 mm), printed in PA12, in just ~10 hrs—replacing CNC+CIM with reduced cost, quicker prototyping, and integrated design.
Front grilles & spoilers: Oversized components (900 mm+) like car grilles and spoilers that usually require multi‑part assembly can be printed in one go, improving structural integrity and eliminating joints .

Large-volume batch builds: The continuous powder feed and automated build/cartridge/conveyor stations enable 24/7 batch production of either many small parts or single large components with minimal downtime.
Service bureaus and OEMs: Industrial manufacturers like Chuanglian 3D and BMW employ the HT1001P for series production of large-format parts
Ideal for rapid, high-fidelity prototyping of large parts—e.g., custom ventilation housings—cutting traditional machining cycles from ~62 hrs to under 10 hrs.
Open‑parameter and open‑material platform supports experimenters in material testing and process optimization