A successful install at TU-Dresden enabling the creation of 10µm res. high frequency wave guides for electromagnetic antenna systems, as well as custom fiber optic connectors. #tudresden_de#BMF#3Dprinting#microfabrication
John Kawola, our CEO of BMF Precision Inc. was showing samples of micro 3D printed parts such as connectors, electronics, microfluidics, and medical devices to @qualified3d during Formnext 2019 @formnext_expo #3Dprinting#BMF https://t.co/ajJS3Qctwi
Visit us at Formnext Hall 12.1 Booth G126 to see our latest ultra-high precision 3D printed parts. We look forward to see you at Messe Frankfurt, Germany during 19-22 November 2019! @formnext_expo #formnext#BMF#3Dprinting
Fabtech Chicago 2019 is just around the corner! Please join us Nov 11-14 at booth A4352. Be our guest using code 16536511. See you there! #Fabtech2019#Chicago#3Dprinting#BMF
2 more days to go! Join us at M-Tech Osaka 2019 from 2nd to 4th October. Welcome to our booth at Hall 2, 6-63, INTEX Osaka! #MTech#Osaka#3Dprinting#BMF
Come and join us at booth E107 Medtec China 2019 Exhibition during 25-27 September, 2019 at the Shanghai World Exhibition & Convention Center, China. We will meet you there! #Medtec#BMF#3dprinting
This is our new case study in new energy field published on Soft Matter. We would like to special thank Professor HongXia Li and Professor TieJun Zhang's recognition of our S130 printer. https://t.co/CXx2ZQWdb4 #3Dprinting#BMF
BMF is moving towards the world! Our ultra high precision 3D printer nanoArch S140 was successfully installed in Nanyang Technological University of Singapore (NTU). We wish all users successful researches with our powerful technology! #3dprinting#BMF
We have printed many different types of complicated connectors for our customers till today. Compared with normal molding, our printing technology can help customers to verify their products in a short period of time and it is very cost effective. #3dprinting#BMF
This is a buckyball-like structure that we printed for our customer for cells research usage in biomedical field. The diameter of the beam is only 10μm. It was printed by our S130 3D printer with the optical resolution of 2μm. #3dprinting#BMF
Make-up pen core is our newly developed area in cosmetic 3D printing. We can print these complex structures including thin wall, mini groove, screw threads etc with the resolution of 10μm. The wall thickness is between 0.2mm-0.4mm and the spacing is 0.3mm. #3dprinting#BMF
‘An interesting application of 4D printing, as shown in the video, after heating back to high temperature, the bent Eiffel tower gradually recovered its original straight shape.’ - Q. Ge, N. Fang, et al., Scientific Reports 2016, 6, 31110 #3Dprinting#BMF
A land grid array (LGA) is an integrated circuit design involving a square grid of contacts that are connected to other components of a printed circuit board. This is a 3D printed LGA which consists approximately 1700 trapezoidal hole arrays. #3Dprinting#BMF
Our micro 3D printing system can print a variety of complex microchannels including spiral, slope and chamfer. In addition, according to specific requirements, it can also print the transparent samples, which is convenient for real-time observation and detection. #3Dprinting#BMF
This is the capability demonstration part that we print to showcase our amazing technology. The cylinders' diameter inside are ranging from 500 μm to 50 μm. Micro tubes, channels and pillars were fabricated at the same time without any post-processing. #3Dprinting#BMF
Mechanical meta material is a kind of material with ultra-light weight and ultra-high strength. The lattice structure is impossible for traditional 2D fabrication. BMF's projection micro 3D printing could print this structure easily with high printing resolution. #3Dprinting#BMF
Our medical application case: Valve for Gene Sequencer printed by our InS140 3D printer with resolution of 10μm, with the smallest tube diameter of 0.2mm and complex internal channels. #3Dprinting#BMF
Drainage Nail for Glaucoma with the resolution of 10μm, is the smallest human body implant device to control the flow and pressure with micro tube shunts or stents.