Flow Resistor

The Flow Resistor F0.3 provides the capability to insert a high flow resistance into a system. It enables the Mitos P-Pump to be used with very low viscosity fluids (e.g. gases) and at very low flow rates. The Flow Resistor F0.3 is supplied with attached 2 µm filter to prevent blockage of the 25 µm bore. The correct fittings are supplied for in-line connection or for direct connection to the microfluidic chip.

The Flow Resistor F0.1 provides the capability to insert a high flow resistance into a system. It enables the Mitos P-Pump to be used with very low viscosity fluids (e.g. gases) and at very low flow rates. The Flow Resistor F0.1 is supplied with attached 2 µm filter to prevent blockage of the 25 µm bore. The correct fittings are supplied for in-line connection or for direct connection to the microfluidic chip.

The Flow Resistor F1 can be used to insert additional flow resistance into a system and is designed for use with the Mitos P-Pump. The flow resistor enables very low flow rates to be achieved when connecting the P-Pump to systems of low fluidic resistance. For applications such as droplet generation, a flow resistor can be used to prevent flow rate instability due to the varying back pressure generated by using immiscible fluids of different viscosities.

The Flow Resistor F4.5 can be used to insert additional flow resistance into a system and is designed for use with the Mitos P-Pump. The flow resistor enables very low flow rates to be achieved when connecting the P-Pump to systems of low fluidic resistance. For applications such as droplet generation, a flow resistor can be used to prevent flow rate instability due to the varying back pressure generated by using immiscible fluids of different viscosities.

The Flow Resistor F10 can be used to insert additional flow resistance into a system and is designed for use with the Mitos P-Pump. The flow resistor enables very low flow rates to be achieved when connecting the P-Pump to systems of low fluidic resistance. For applications such as droplet generation, a flow resistor can be used to prevent flow rate instability due to the varying back pressure generated by using immiscible fluids of different viscosities.

The Flow Resistor F30 can be used to insert additional flow resistance into a system and is designed for use with the Mitos P-Pump. The flow resistor enables very low flow rates to be achieved when connecting the P-Pump to systems of low fluidic resistance. For applications such as droplet generation, a flow resistor can be used to prevent flow rate instability due to the varying back pressure generated by using immiscible fluids of different viscosities.

The Flow Resistor F100 can be used to insert additional flow resistance into a system and is designed for use with the Mitos P-Pump. The flow resistor enables very low flow rates to be achieved when connecting the P-Pump to systems of low fluidic resistance. For applications such as droplet generation, a flow resistor can be used to prevent flow rate instability due to the varying back pressure generated by using immiscible fluids of different viscosities.

Part number 3200266Part number 3200265Part number 3200267Part number 3200268Part number 3200269Part number 3200270Part number 3200271
Flow Resistor Type
Quantity
Unit Price
$240.00
$240.00
$220.00
$180.00
$250.00
$140.00
$170.00
  • Overview
FEATURES & BENEFITS
Generic
  • Allows the flow rate range of the Mitos P-Pump (Part No. 3200016) to be maximised
  • Enables low flow rate performance for systems of low fluidic resistance
  • Prevents flow rate instability when using fluids of different viscosities
  • Quick and easy to connect and release
  • Excellent chemical compatibility
F0.1
  • Min. flow rate: 0.002 µl/min
  • Max. flow rate: 1 µl/min
F0.3
  • Min. flow rate: 0.006 µl/min
  • Max. flow rate: 3 µl/min
F1
  • Min flow rate: 0.02 µl/min
  • Max flow rate: 10 µl/min
F4.5
  • Min flow rate: 0.09 µl/min
  • Max flow rate: 45 µl/min

F10

  • Min flow rate: 0.2 µl/min
  • Max flow rate: 100 µl/min
F30
  • Min flow rate: 0.6 µl/min
  • Max flow rate: 300 µl/min
F100
  • Min flow rate: 2 µl/min
  • Max flow rate: 1000 µl/min

 

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