Claims
- 1. A precision fluid dispensing apparatus comprising:
- a substantially continuously-operating positive pressure pump providing pressurized air;
- a flow-through volume receiving said pressurized air;
- a gauge pressure sensor providing a first signal indicative of air pressure in said flow-through volume;
- a duty-cycle valve venting pressurized air from said flow-through volume in response to a control signal;
- and a controller by reference to a calibration standard and in response to said first signal providing said control signal to said duty-cycle valve to provide a precisely regulated air pressure said the flow-through volume.
- 2. The precision fluid dispensing apparatus of claim 1 wherein said pump communicates with said flow-through volume at a first location, said precisely regulated air pressure communicating from said flow-through volume at a second location spaced from said first location, and said gauge pressure sensor communicating with said flow-through volume adjacent said second location.
- 3. The precision fluid dispensing apparatus of claim 1 further including means for communicating said regulated air pressure to a source fluid which is to be dispensed to pressurize said source fluid, a normally closed dispensing valve in fluid communication with said pressurized source fluid, and said dispensing valve when open communicating said source fluid to a receptacle therefore at ambient pressure, whereby with precise regulation of said air pressure level and pressurization of said source fluid the latter is dispensed at a volume directly proportionate with the interval during which said dispensing valve is open.
- 4. The precision fluid dispensing apparatus of claim 3 further including a source fluid container having a chamber with an opening and a closure member closing said opening and carrying said dispensing valve in close proximity to said source fluid.
- 5. The precision fluid dispensing apparatus of claim 4 wherein said closure member includes a body carrying said dispensing valve, and said body both communicating said regulated air pressure into said chamber and sealingly cooperating with said container to provide substantially leak-free retention of said precisely regulated air pressure in said chamber to pressurize said source fluid therein.
- 6. The precision fluid dispensing apparatus of claim 5 wherein said fluid dispensing valve includes a pick up tube extending through said body and into said source fluid.
- 7. The precision fluid dispensing apparatus of claim 6 wherein said body includes a through bore through which said pick up tube extends, and said body further including passage means communicating said precisely regulated air pressure to said through bore.
- 8. The precision fluid dispensing apparatus of claim 7 wherein said container includes a bottle with a threaded neck portion, said body through bore including an enlarged diameter portion threadably receiving said threaded neck portion of said bottle to sealingly close one end of said through bore, and said dispensing valve sealingly closing an opposite end of said through bore.
- 9. The precision fluid dispensing apparatus of claim 8 wherein said closure member further includes resilient means for removably retaining said dispensing valve in sealing engagement with said closure member at said other end of said through bore.
- 10. The precision fluid dispensing apparatus of claim 9 wherein said resilient means for removably retaining said dispensing valve includes said closure member pivotally carrying a formed wire bail member in a first position embracing said dispensing valve in sealing cooperation with said closure member.
- 11. The precision fluid dispensing apparatus of claim 8 wherein said closure member defines a boss at said other end of said through bore, said dispensing valve setting upon said boss and sealingly cooperating therewith.
- 12. The precision fluid dispensing apparatus of claim 11 wherein said dispensing valve further defines a recess receiving said boss.
- 13. A method of precision fluid dispensing, said method including the steps of continuously pressurizing ambient air, flowing said pressurized air through a flow-through volume, utilizing said flow-through volume to abate any noncontinuous air flows and pressure flux of said continuously flowing pressurized air, sensing the pressure level of said pressurized air in said flow-through volume, producing a signal in response to said sensed air pressure level, using a controller to produce a venting control signal in response to said sensed air pressure signal and by reference to a calibration standard, using a duty cycle valve to vent pressurized air to ambient in response to said venting control signal to provide a precisely regulated dispensing air pressure level, and pressurizing fluid to be dispensed with said precisely regulated dispensing air pressure to dispense said fluid to ambient at a controlled rate.
- 14. The method of claim 13 further including the steps of communicating said pressurized air into said flow-through volume at a first location, and at a second location spaced from said first location flowing pressurized air from said flow-through volume to said fluid to be dispensed.
- 15. The method of claim 14 further including the steps of sensing said pressurized air pressure level at a third location intermediate said first and said second locations, and venting pressurized air from said flow-through volume via said duty cycle valve at a forth location also intermediate said first and second locations.
- 16. The method of claim 15 further including the step of disposing said forth location upstream of said third location with respect to flow of pressurized air through said flow-through volume from said first location to said second location.
- 17. A precision liquid reagent fluid dispensing apparatus comprising:
- a continuously operating pump inducting and pressurizing ambient air, said pump delivering said pressurized air to a flow-through volume at a first location thereof;
- said flow-through volume including a selected volume effective at a second location spaced from said first location to substantially abate flow instabilities and variations of pressure of said pressurized air received at said first location;
- a pressure sensor at a third location of said flow-through volume sensing a pressure level of said pressurized air and providing a pressure signal in response thereto;
- a controller providing a time-variant control signal in response to said pressure signal and by reference to a calibration standard for said sensor;
- a duty cycle valve receiving said time-variant control signal and venting pressurized air at a forth location of said flow-through volume in response thereto to provide at said second location of said flow-through volume a precisely regulated dispensing air pressure level; and
- means for applying said dispensing air pressure level to a liquid reagent fluid which is to be dispensed, thereby to pressurize said fluid to said precisely regulated level of said dispensing air pressure.
- 18. The precision fluid dispensing apparatus of claim 17 wherein said means for applying said dispensing air pressure to a liquid reagent fluid includes a chambered fluid container having a neck opening into said chamber and being provided with an external thread, a closure member defining a through bore and including at one end thereof an enlarged diameter bore portion threadably engageable on said neck and sealingly cooperating with said container to close said chamber, at an opposite end said closure member defining an upright boss upon which said through bore opens, a dispensing valve sealingly received on said boss, said dispensing valve including a liquid pickup tube depending into said liquid reagent in said chamber and an outlet port to which said pickup tube communicates said reagent liquid when said valve is open, said closure member further defining a dispensing air pressure inlet port communicating with said chamber and with said second location of said flow-through volume.
- 19. The precision liquid reagent fluid dispensing apparatus of claim 18 wherein said time-variant venting control signal is a pulse width modulated signal.
- 20. The precision liquid reagent fluid dispensing apparatus of claim 18 wherein said larger diameter bore portion substantially completely threadably receives said threaded container neck to sealingly engage therewith.
Parent Case Info
This is a continuation of application Ser. No. 08/089,131 filed on Jul. 9, 1993, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0351995 |
Jan 1990 |
EPX |
0477811A3 |
Apr 1992 |
EPX |
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FRX |
3531241A1 |
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Non-Patent Literature Citations (1)
Entry |
R. L. Jolley et al., "Nonpulsing Reagent Metering for Continuous Colorimetric Detection Systems", Analytical Biochemistry, 28:300-306, 1969. |
Continuations (1)
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Number |
Date |
Country |
Parent |
89131 |
Jul 1993 |
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