Difference between revisions of "3D-printable micropipette"

From OHO - search engine for sustainable open hardware projects
(Created page with "{{Projekt |projectname=3D-printable micropipette |projectnameES=Micropipeta imprimible en 3D |projectnameDE=3D-bedruckbare Mikropipette |kewords= |subcat=Projects |Images= |fi...")
 
 
(6 intermediate revisions by 2 users not shown)
Line 1: Line 1:
{{Projekt
{{Projekt
|Images={{ProjektImages
|projectimage=TUB.2.1.png
}}{{ProjektImages
|projectimage=TUB.2.2.png
}}{{ProjektImages
|projectimage=TUB.2.3.png
}}
|subcat=Laboratory equipment
|projectname=3D-printable micropipette
|projectname=3D-printable micropipette
|projectnameES=Micropipeta imprimible en 3D
|projectnameES=Micropipeta imprimible en 3D
|projectnameDE=3D-bedruckbare Mikropipette
|projectnameDE=3D-bedruckbare Mikropipette
|kewords=
|subcat=Projects
|Images=
|firstin=https://www.biorxiv.org/content/early/2017/02/20/109231
|firstin=https://www.biorxiv.org/content/early/2017/02/20/109231
|desc=We present our design of a micropipette that is assembled from 3D-printable parts and some hardware that works by actuating a disposable syringe to a user adjustable limit. Graduations on the syringe are used to accurately adjust the set point to the desired volume. Our open design printed micropipette is assessed in comparison to a commercial pipette and meets ISO 8655 standards.
|desc=We present our design of a micropipette that is assembled from 3D-printable parts and some hardware that works by actuating a disposable syringe to a user adjustable limit. Graduations on the syringe are used to accurately adjust the set point to the desired volume. Our open design printed micropipette is assessed in comparison to a commercial pipette and meets ISO 8655 standards.
|typeproject=TUBerlin
|typeproject=TUBerlin
|project_status=Active
|project_status=active
|maturity=production / DIY
|maturity=PDIY
|open_o_meter=6
|product_category=Electronics
|design_files_pub=yes
|design_files_pub=yes
|cad_link=https://github.com/Biological-Microsystems-Laboratory/micropipette/tree/master/…
|cad_files_editable=yes
|assembly_inst_pub=yes
|assembly_inst_pub=yes
|assembly_instructions_link=http://biorxiv.org/content/biorxiv/early/2017/02/20/109231.full.pdf
|assembly_instructions_editable=yes
|bill_materials_pub=yes
|bill_materials_pub=yes
|bill_materials_link=https://github.com/Biological-Microsystems-Laboratory/micropipette
|bill_materials_editable=yes
|contributing_guide_pub=yes
|contributing_guide_pub=yes
|contrubuting_guide_link=https://github.com/Biological-Microsystems-Laboratory/micropipette/tree/master/…
|issue_management_system=yes
|versioning_system=yes
|versioning_system=yes
|versioning_system_link=https://github.com/Biological-Microsystems-Laboratory/micropipette/tree/master/CAD-working-files
|contains_pdf_drawings=yes
|certificate_requested=No
|product_category=Electronics
}}
}}

Latest revision as of 17:12, 10 November 2021


3D-printable micropipette

Basic Data

Category: Laboratory equipment

URL (first publication): https://www.biorxiv.org/content/early/2017/02/20/109231


Project status: Active


Technical documentation

Maturity of the project: production / DIY


Contains PDF-drawings: Yes

CAD files are editable: Yes

Assembly instructions are published: Yes

Bill of materials is published: Yes







yes

yes yes



Project management


Open-o-meter: 7

Product category: Electronics


TUB.2.1.png

Description

We present our design of a micropipette that is assembled from 3D-printable parts and some hardware that works by actuating a disposable syringe to a user adjustable limit. Graduations on the syringe are used to accurately adjust the set point to the desired volume. Our open design printed micropipette is assessed in comparison to a commercial pipette and meets ISO 8655 standards.


+ General Reviews General Reviews


Report this page


OPEN HARDWARE OBSERVATORY 2020
| |
|||