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There is a large assortment of scientific facilities and equipment that is used for scientific research and industrial purposes. Besides the major well-known brands producing their models in high volume, there are many innovative companies and organisations designing and manufacturing exciting new instruments for chemical, physical and biological applications and analysis. At the same time, many suppliers and re-sell (more)ers increasingly focus on the re-use of existing used laboratory equipment. This drive towards a more circular economy offers unique opportunities for institutes and organisations to obtain valuable scientific instruments at a discount.

Olympus OLA2500 Lab Automation System-cover
Olympus OLA2500 Lab Automation System

Save precious time and gain efficiency in the lab with the OLA2500 Lab Automation System (LAS), the  (more)high-throughput aliquotting solution with pre- and post-analytical sample-processing capabilities. The Olympus OLA2500 LAS is an advanced modular automation system designed for medium- to high-volume laboratories. As a front-end sample-processor the OLA2500 LAS automates sample aliquotting – saving time, labor, and eliminating sample handling errors. The system also selectively decaps and sorts tubes to any analyzer sample rack. The Olympus OLA2500 LAS is a Olympus Lab Automation solution to increase productivity and efficiency in medium- to high-volume laboratories. It automates labor-intensive tasks such as sample identification, decapping, aliquotting, out sorting, and archive preparation of sample tubes. Typical aliquotting throughput of up to 650 total tubes per hour and sorting throughput of up to 800 tubes per hour to reduce your sample preparation for better test turn-around time Minimize your staff’s biohazard exposure, reduce errors, and reduce repetitive motion injuries associated with manual sample-processing User-defined applications for aliquotting priority, sorting, decapping, and archiving. Identifies sample tube size, cap type and color, and sample volume using an on board digital image analysis system Processes most primary tubes (including conventional, BD Hemoguard or screw top closures in parallel, foil top closures with optional decapping unit) Builds personality racks for Olympus, Hitachi, Beckman-Coulter and others Automatically generate secondary tubes with user defined barcode labels No carryover with disposable, conductive aliquot tips Clot detection to ensure valid sample distribution Prioritized aliquotting when there is insufficient amount of sample in the primary tube Load up to as many as 300 samples in the input area Sort to any number of user defined sorting targets with up to 1,080 tube capacity at the destination area Holds bulk on-board consumable inventory Sort and speed primary and/or secondary samples to workstations in specific analyzer racks Access samples without interrupting the instrument with electronically controlled drawer bays Sorts primary and secondary sample tubes at high speeds to meet peak load demands Archive samples in parallel with sorting or separately in batch User defined sorting areas that accommodates any analyzer sample rack Reduces the number of “problem tubes” at the analytical workstations by sorting out the tubes with bar code label, test order and decapping problems Decap screw cap and conventional rubber closures in parallel with a standard decapper; an optional decapper handles foil top closures

€9,999.00 ex VAT
Netherlands
automated liquid handling
Sartorius Biostat B-DCU Bioreactor System-cover
Sartorius Biostat B-DCU Bioreactor System

System consists of: 1x Sartorius Stedim BioPAT DCU Control Tower 4x Sartorius Stedim Biostat B-DCU B (more)ioreactor Unit 4x Sartorius Stedim Univessel SU Reactor Holder 8x Sartorius PMA7501 Scale 4x Sartorius BB Reactor Heating Blanket 4x Sartorius Filter Heater The Biostat B-DCU is a fermenter/bioreactor specifically designed to accommodate the requirements of process optimization and characterization in the biotech and biopharmaceutical industry. It provides enhanced functionality and an unrivalled level of options for cell culture and microbial processes making it the ideal scale-down model for your large scale process. Supply Tower Gases – Gas supply pressure 1.5 bar (Gasses must be dry, oil and dust-free), connection of gas hoses with d external 6 mm Water – Water supply pressure: 2 – 4 bar, Flow rate up to 20 l/min, Temperature minimum 4°C, Degree of hardness: 12° dH max. Integrated water pressure reduction down to: 1.5 bar Interfaces – 3+ external signal inputs 0–10 V 3+ external signal inputs 4–20 mA Fieldbus for serial or ethernet devices Digital output 24 V for on/off control of external devices Up to 4 analoge outputs for external pumps Connection for control of external drive motor (0–10 V) Dimensions (WxHxD): 360 x 768 x 432 mm Weight: 45 kg Motor drive Rotation speed: 20 – 400 rpm Process Control Temperature: Pt100 0 – 150°C (temperature control 0 – 80°C) Dissolved oxygen: single-use DO sensor patch 0–100% pH: single-use pH sensor patch 6.5 – 8.5 pH Redox: Combined measurement with pH sensor –1,000 –1,000 mV Balance substrate: 7 kg / 1 g Gravimetric flow controller: Accuracy for 7 kg balance 5 g/h O2 offgas: Zirconium dioxide 0–50 vol% CO2 offgas: Infrared 0–10 vol% Temperature control module for UniVessel SU Single-use Culture Vessel With Heating Blanket Electrical heating blanket Temperature control up to 50°C Heating capacity 2 L : 200 W

Netherlands
fermenters or bioreactors
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