Micronit
Focused Flow Droplet Generator - topconnect (pack of 3)Delivery and duties paid, now live for the UK — local shopping experience, no surprise fees!
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Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Whereas standard ChipShop connectors only accept soft-walled tubing, this set of connectors allows connecting any 1/16" OD rigid tubing to a ChipShop chip.
Suitable for rigid tubing (PTFE, PEEK, etc.) with an OD of 1/16" (1.6 mm). Manufactured in blue TPE, max. pressure of 3.2 bar with a 1/16" OD PEEK tubing.
Plugs to block unused ports are also available in our shop.
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Based on a focused flow design, this droplet generator combines 8 nozzles on one chip to multiply your droplet production rate by eight times! This Micronit chip offers the following features:
Easily change the droplet size and frequency by tuning the flow rates of the dispersed and continuous phases.
We recommend that your first use a single nozzle droplet generator before using this parallel droplet generator in the following cases:
3x Parallel droplet generator - topconnect
| 00923 | 02067 | |
| Hydrophobic coating | No | Yes |
| Chip material | Borosilicate glass | |
| Interface type | Topconnect |
|
| Chip dimensions | Supplied in a black polymer cardtridge with an external dimension of 75 x 25mm. The functional glass element has a size of 45x15mm. | |
| Channels | The chips has 3 layers, each layer contains channels. Filters at the inlets and outlets (see technical drawing) | |
| Chip thickness | 1900 µm | |
| Inlets / outlets |
2 / 1 |
|
| Compatible holder | Fluidic Connect Pro | |
?Parallel droplet generator technical drawing
?Using the right surfactants in your droplet generator
?Finding the right flow rates in your droplet generator
Amoyav, B., & Benny, O. (2018). Controlled and tunable polymer particles’ production using a single microfluidic device. Applied Nanoscience, 8(4), 905-914. https://doi.org/10.1007/s13204-018-0790-0
Lucio, A. A., Mongera, A., Shelton, E., Chen, R., Doyle, A. M., & Campàs, O. (2017). Spatiotemporal variation of endogenous cell-generated stresses within 3D multicellular spheroids. Scientific reports, 7(1), 1-11. https://doi.org/10.1038/s41598-017-12363-x
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