Dispensing device and dispensing method
In order to increase the accuracy of dispensing liquid from a sealed liquid holding container without increasing device complexity, pressures inside and outside the sealed liquid holding container are measured with a pressure sensor connected to a dispensing probe, and the amount of discharge operation of a pump is corrected in accordance with the measured pressures. The amount of operation of the pump is corrected by calculating the amount of deformation of a dispensing flow passageway due to pressure change.
1. A dispensing device comprising:
a pump;
a probe connected to the pump via a piping;
a pressure sensor that measures a pressure in the piping; and
a control unit configured to control the pump and the probe and to read a signal from the pressure sensor,
wherein the control unit is programmed to:
read a first signal from the pressure sensor to measure a first pressure while the probe is outside of a sealed container containing a liquid,
control the probe to insert the probe into the sealed container containing the liquid,
read a second signal from the pressure sensor to measure a second pressure inside of the sealed container while the probe is inserted in the sealed container,
calculate a correction amount of operation of the pump based on the measured first pressure and measured second pressure,
control the pump to suction the liquid from the sealed container, and
control the pump to discharge the suctioned liquid into a reaction container by operating the pump based on the calculated correction amount.
2. The dispensing device according to claim 1 ,
wherein the control unit is programmed to:
control the pump to discharge air by operating the pump based on the calculated correction amount, and
control the pump to suction air by operating the pump based on the calculated correction amount.
3. The dispensing device according to claim 1 , wherein the control unit is programmed to:
calculate an amount of deformation of the piping due to a pressure change, and corrects the amount of operation of the pump based on the amount of deformation.
4. An automatic analyzer, comprising:
a reaction cell;
a sealed container containing a liquid;
a pump;
a probe connected to the pump via a piping;
a pressure sensor configured to measure a pressure in the piping;
a control unit configured to control the pump and the probe and to read a signal from the pressure sensor,
wherein the control unit is programmed to:
read a first signal from the pressure sensor to measure a first pressure while the probe is outside of the sealed container containing the liquid,
control the probe to insert the probe into the sealed container containing the liquid,
read a second signal from the pressure sensor to measure a second pressure inside of the sealed container while the probe is inserted in the sealed container,
calculate a correction amount of operation of the pump based on the measured first pressure and measured second pressure,
control the pump to suction the liquid from the sealed container,
control the pump to discharge the suctioned liquid into a reaction container by operating the pump based on the calculated correction amount.