Molded flow channel
A nanopore based sequencing system includes a plurality of nanopore sensors. Each nanopore sensor has a portion for receiving a fluid. The nanopore based sequencing system includes a fluid chamber configured to guide the fluid over the plurality of nanopore sensors and an inlet configured to deliver the fluid into the fluid chamber. At least a portion of the fluid chamber is made of a material that has been molded around at least a portion of an electrode.
1. A nanopore based sequencing system, comprising:
a nanopore sensor array comprising a plurality of nanopore sensors, each nanopore sensor comprising a working electrode;
a counter electrode insert;
a molded flow channel configured to be disposed over the nanopore sensor array, the molded flow channel comprising at least one fluid guide and a molded portion that has been molded around at least a portion of the counter electrode insert;
wherein the molded flow channel is configured to form a fluid chamber over the nanopore sensor array when the molded flow channel is disposed over the nanopore sensor array, wherein the at least one fluid guide is configured to form a fluid path within fluid chamber; and
an inlet configured to deliver the fluid into the fluid chamber.
2. The nanopore based sequencing system of claim 1 , further comprising an outlet configured to deliver the fluid out of the fluid chamber.
3. The nanopore based sequencing system of claim 1 , wherein the fluid path is linear.
4. The nanopore based sequencing system of claim 1 , wherein the fluid path is serpentine.
5. The nanopore based sequencing system of claim 1 , wherein the molded portion is formed by injection molding.
6. The nanopore based sequencing system of claim 1 , wherein the molded portion is formed by transfer molding.
7. The nanopore based sequencing system of claim 1 , wherein the molded portion is formed by compression molding.