Patent classifications
B01L3/02
Method and Device for Laboratory Formulation and Chemical Vending
An automatic chemical solution formulating device combines and mixes stored solids and liquids into user specified formulations and dispenses those formulations into containers. Chemical solids are stored in cartridges of material separated into predetermined dosages (for example in reeled blister packs), avoiding the need for weighing during formulation. Elements include user interface, computer-controlled automated loading and unloading port for reagent-containing cartridges, cartridge conveyor system, reader for identifying cartridges, blister-pack strip drive system, punching mechanism to release reagents, portioning chamber to mix solvent with solids or liquids with optional portioning, accommodating formulation delivery port, position sensors, liquid flow measuring devices, liquid and gas pumps and valves, and label printer. The combination of these elements allows high-speed formulation and dispensing of user-specified formulations.
DISPENSER NOZZLE RESIDUE MITIGATION
The present disclosure is directed to methods and devices for reducing or otherwise mitigating accumulated reagent material and/or fluids within a dispense nozzle of a dispenser.
PIPETTE FOR USE WITH A PIPETTE TIP AND PIPETTE TIP LINE COMPRISING SEVERAL PIPETTE TIPS OF DIFFERENT TYPES FOR USE WITH A PIPETTE
A pipette comprises a pipette housing, a neck configured to clamp on a pipette tip, and a drive apparatus. The drive apparatus comprises a drive element configured to displace a displacement element to draw a liquid sample into the pipette tip and to eject the liquid sample from the pipette tip. A scanning apparatus comprises a scanning element positioned proximate the neck and configured to be displaced relative to the pipette housing by a collar of the pipette tip when clamping the pipette tip onto the neck. A mechanical display apparatus is coupled to the scanning apparatus and comprises a display. When the pipette tip is clamped to the neck the scanning apparatus is configured to adjust the display depending on a height of the collar of the pipette tip relative to the neck, and the neck is configured to accommodate different collar heights.
Dual Resolution Liquid Handling
The present disclosure provides better aspiration and dispensing of liquids by an innovative mechanism by (i) offsetting the diameter of a bottom tube with a narrower and tapered top piston when the two are moved together in the same chamber to give extremely fine resolution, thereby eliminating the need for any skinny or filamentous piston, (ii) using thick walled compliant O-rings to seal against the different diameters of the tapered piston to given an additional order of magnitude range of resolution, (iii) letting the bottom tube move in the chamber alone without offset to give high Row, and (iv) an at-the-ready space between the tube and piston in the chamber to permit contact-free blowoff, including viscous samples.
Object picking apparatus with imaging-based locating of pipette tip
An object such as a cell colony may be picked from a plurality of objects by acquiring an image of the objects and an image of a pipette tip. The image of the objects is analyzed to select an object of interest. The selected object is associated with a coordinate position. Based on the coordinate position, the pipette tip is positioned over the selected object. An image of the pipette tip is then acquired and analyzed. The pipette tip is associated with a coordinate position. A positional error between the coordinate position of the selected object and the coordinate position of the pipette tip is determined. Based on the positional error, the pipette tip and/or a sample holder supporting the objects is moved to align the pipette tip over the selected object, by matching the coordinate position of the pipette tip with the coordinate position of the selected object.
Object picking apparatus with imaging-based locating of pipette tip
An object such as a cell colony may be picked from a plurality of objects by acquiring an image of the objects and an image of a pipette tip. The image of the objects is analyzed to select an object of interest. The selected object is associated with a coordinate position. Based on the coordinate position, the pipette tip is positioned over the selected object. An image of the pipette tip is then acquired and analyzed. The pipette tip is associated with a coordinate position. A positional error between the coordinate position of the selected object and the coordinate position of the pipette tip is determined. Based on the positional error, the pipette tip and/or a sample holder supporting the objects is moved to align the pipette tip over the selected object, by matching the coordinate position of the pipette tip with the coordinate position of the selected object.
PIPETTING DEVICE AND A METHOD OF PROCESSING A FLUID SAMPLE
A pipetting device for processing a fluid sample includes a receiving element and a pipette tip detachably arranged on the receiving element, a displacement element flow-connected to the pipette tip for generating a flow for receiving or ejecting the fluid sample. The pipetting device includes an optically transparent extension detachably arranged on the pipette tip in such a way that the extension is flow-connected to the displacement element via the pipette tip, so that the fluid sample can be received into the extension or can be ejected from the extension by the flow that can be generated by the displacement element.
Quantitative transfer pipette structure
What is disclosed in the present invention is to provide a quantitative transfer pipette structure, wherein an anti-backflow compartment is configured in the first bulb. The dimensions and locations of the first bulb, the second bulb and the third bulb are specifically configured to aspirate and transfer a specific volume of the liquid to a container, mix the liquid with the substance in the container by pressing and releasing the specific bulbs, so as to achieve the effects of precise quantification and sufficient mixing.
Single piece droplet generation and injection device for serial crystallography
A single-piece hybrid droplet generator and nozzle component for serial crystallography. The single-piece hybrid droplet generator component including an internally-formed droplet-generation channel, an internally-formed sample channel, a nozzle, and a pair of electrode chambers. The droplet-generation channel extends from a first fluid inlet opening to the nozzle. The sample channel extends from a second fluid inlet opening to the droplet-generation channel and joins the droplet-generation channel at a junction. The nozzle is configured to eject a stream of segmented aqueous droplets in a carrier fluid from the droplet-generation channel through a nozzle opening of the single-piece component. The pair of electrode chambers are positioned adjacent to the droplet-generation channel near the junction between the droplet-generation channel and the sample channel. The timing of sample droplets in the stream of fluid ejected through the nozzle is controlled by applying a triggering signal to electrodes positioned in the electrode chambers of the single-piece component.
MICROPUMP HAVING A CAPILLARY STRUCTURE, AND USE
A micropump for exchanging liquid between a supply region and a working region is provided. An enclosed gas region is located above the working region. The micropump includes a capillary pipette having a closed pipette tip on a first end, an open pipette inlet disposed opposite the first end, and a pipette section enclosing the working region and disposed in a direction of the open pipette inlet from the closed pipette tip. The micropump further includes a liquid-permeable filter covering the open pipette inlet and connected to the supply region. The micropump additionally includes a capillary structure extending through the gas region between the closed pipette tip and the liquid-permeable filter.