Nova Patents
EP0346548B1

Empty container detector

Abstract

This record has no abstract on file.

EP0346548B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 30 November 2008, 17.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

11 claims: 6 independent, 5 dependent

  1. 1
    A device for detecting the presence of air in hollow cylindrical tubing (12) comprising a housing (14) including a recessed groove (24) for receiving a portion of the tubing (12); a light source (38) located on one side of the groove (24), light from the light source (38) being directed onto the tubing (12) when the tubing (12) is located in the groove (24); first detecting means (46) for detecting the presence of light passing across the groove (24) ; and second detecting means (50) for detecting light from the light source which enters the tubing (12) located in the groove (24) and is reflected off the inside of the tubing and directed onto the second detecting means (50), characterised in that:the first detecting means (46) is a tube/no tube light sensor located in the housing (14) on the other side of the groove (24) from the light source (38), the tube/no tube light sensor (46) receiving light from the light source when tubing (12) is not located in the groove (24), the tube/no tube light sensor (46) receiving substantially no light from the light source (38) when tubing (12) is located in the groove (24);and the second detecting means (50) is a liquid-in-tube light sensor located in the housing (14) and in such a geometrical relation with respect to the portion of tubing (12) located in the groove (24) so that light from the light source (38) which enters tubing (12) located in the groove (24) is reflected off the inside of the tubing (12) and directed onto the liquid-in-tube light sensor (50) when air is contained in the tubing (12), while substantially no light entering tubing (12) located in the groove (12) is reflected off the inside of the tubing (12)and onto the liquid-in-tube light sensor (50) when liquid is contained in the tubing (12), instead, any light which enters the tubing (12) enters the liquid contained in the tubing (12).
  2. 2
    A device as claimed in Claim 1, characterised by an operating characteristic light sensor (42) for monitoring and for producing an output signal indicative of the light produced by the light source (38), the operating characteristic light sensor (42) preferably monitoring the light source (38) to ensure that the light source (38) is operating properly.
  3. 3
    A device as claimed in Claim 2, characterised in that the system additionally includes means for providing an alarm if the light source (38) is substantially inoperative.
  4. 4
    A device as claimed in Claim 2 or Claim 3, characterised by means for monitoring the output signal from the operating characteristic light sensor (42), the monitoring means being arranged to measure the relative amounts of light detected by the tube/no tube sensor (46) and the liquid-in-tube sensor (50) when the level of light output from the light source is at a preselected level, which is preferably below the maximum level of light generated by the light source (38), and occurs when the level of light generated by the light source (38) has fallen from a higher level to the preselected level.
  5. 5
    A device as claimed in any preceding claim, characterised in that the recessed groove is essentially V-shaped, the light source (38) generates infrared (IR) light, and the tube/no tube light sensor (46) and the liquid-in-tube light sensor (50) sense IR light, and a V-shaped filter (54) is located in the groove (24), the filter allowing only (IR) light to pass, the filter (54) optionally being a polysulphone filter.
  6. 6
    A device as claimed in Claim 5, characterised in that the V-shaped filter (54) is so geometrically arranged and configured as to allow the device to work identically for two different predetermined sizes of tubing (12A, 12B) optionally by the outer diameters of the two different predetermined sizes of tubing (12A,12B) generally coinciding at the point at which light would enter the tubing from the filter (54) and at the point at which light would leave tubing containing air and enter the filter (54) on its path to the liquid-in-tube light sensor (50), and the inner diameters of the two different predetermined sizes of tubing (12A,12B) being relatively located so as to reflect light off their inner walls at the same critical angle to direct the light onto the liquid-in-tube light sensor (50).
  7. 7
    A device as claimed in any preceding claim characterised by the means for retaining tubing in the groove (24) optionally comprising a clamping arm (16) pivotally mounted on the housing (14), the clamping arm (16) including a clamping segment (26) located over the groove (24);and means for biasing (28) the clamping segment (26) towards the recessed groove (24), the biasing means (28) optionally comprising a spring.
  8. 8
    A device as claimed in Claim 7, characterised in that the clamping arm (16) also includes a grip portion (20) at the end opposite the clamping segment (26) for opening the clamping arm (16) to allow tubing (12) to be installed into or removed from the groove (24).
  9. 9
    A device as claimed in any preceding claim characterised by first alarm means for generating an alarm signal when the tube/no tube light sensor (46) receives substantial light from the light source (38) to indicate that tubing (12) is not located in the groove (24), and second alarm means for generating an alarm signal when the liquid-in-tube sensor (505) receives substantial light from the inside of the tubing (12).
  10. 10
    A device as claimed ina ny preceding claim, characterised by means for identifying the device to a main pump unit (64) to which the device is connected, the identifying means optionally comprising a preselected resistance which may be sensed by the main pump unit (64) to identify the device.
  11. 11
    A method of using the device of Claims 1 to 10 for detecting the presence of air in hollow cylindrical tubing (12) which comprises the steps of:directing light from the light source (38) located in the housing (14) to one side of the recessed groove (24) in the housing (14), in which groove the tubing (12) may be located, detecting whether or not tubing (12) is properly located in the groove (24) with the tube/no tube light sensor (36) the tube/no tube light sensor receiving light from the light source (38) when tubing (12) is not located in the groove (24) the tube/no tube light sensor receiving substantially no light from the light source (38) when tubing (12) is located in the recessed groove;and detecting whether or not air is contained in the tubing (12) with a liquid-in-tube light sensor (50), light from the light source (38) which enters tubing (12) located in the groove (24) being reflected off the inside of the tubing (12) and directed onto the liquid-in-tube light sensor (50) when air is contained in the tubing (12), while substantially no light entering tubing (12) located in the groove (24) is reflected off the inside of the tubing (12) and onto the liquid-in-tube light sensor (50) when fluid is contained in the tubing (12), instead, any light which enters the tubing (12) located in the groove (24) enters the fluid contained in the tubing (12).