Nova Patents
EP1520621A2

Microfluidic analyzer module

Abstract

A microfluidic analyzer module is constructed of a plurality of channel forming laminate layers that are directly bonded together without adhesive or other possible contaminant source located proximate the flow channels. The channel forming laminate layers define a network of fluid flow channels. A valve containing layer is directly, adhesivelessly bonded over the channel containing layers. A flexible valve member integral with the valve layer opens and closes communication between feed and sensor channels of the channel network.

EP1520621A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 20 July 2018, 8.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

10 claims: 3 independent, 7 dependent

  1. 1
    A microfluidic analyzer module (2) comprising:(a) a first sheet (4) of a polyimide material having a top surface and a bottom surface;(b) a second sheet (6) of an adhesiveless self-bondable polyamide having atop surface and a bottom surface, said first and second polyimide sheets being in superposed relation with said bottom surface of said first sheet of polyimide facing said top surface of said second sheet of polyimide, said sheets being directly bonded together at the interface of the sheets without an adhesive;and(c) at least one fluid flow channel (14, 16, 18, 20) at the interface of said first sheet and said second sheet.
  2. 4
    A microfluidic analyzer module as recited in any of Claims 1 to 3 wherein said feed channel comprises a feed channel bore (24) extending upwardly through said first sheet (4) of polyimide and terminating in said top surface of said first sheet of polyimide, said sensor channel comprising a sensor channel bore (26) extending upwardly through said first sheet (4) of polyimide and terminating in said top surface of said first sheet of polyimide proximate said feed channel bore (24), said valve means (22) comprising a flexible material positioned over said feed channel bore and said sensor channel bore, actuation means (30,V) connected to said valve means for pressing said flexible material over said feed channel bore (24) and said sensor channel bore (26) to block communication therebetween and for relaxing said flexible material in spaced relation over said top surface of said first sheet (4) of polyimide for opening communication therebetween.
  3. 8
    A microfluidic analyzer module according to any of Claims 1 to 7 comprising first (4), second (6) and third (8) layers of polymeric materials, constituting respectively said first sheet, said second sheet and a further layer, said first and second layers being interfacing layers of said adhesiveless self-bondable polyimide polymer which are directly bonded together. without adhesive to form a structure having a top surface and a bottom surface, said fluid flow channel (14, 28) being in communication with said top surface of said structure, a portion of said top surface being in operative association with said fluid flow channel and constituting a valve region, said third layer (8) of polymeric material being superposed over said top surface of said structure overlying said valve region, the portion of said third polymeric material (8) overlying said valve region constituting a valve (22), said third layer of polymeric material being flexible and being bonded over said top surface, of said structure except at said valve region, said third layer (8) of polymeric material retaining its flexibility at said valve region (22), and a valve actuator (30,V) operatively associated with said third layer (8) of polymeric material at said valve region (22) for selectively flexing said third layer and thereby closing and opening said valve (22).