MaxQ 6000 Orbital Shakers available in incubated or incubated/refrigerated models include two adjustable shelves for increased storage capacity; requires universal (without clamps) or dedicated platforms (pre-installed clamps)
Large viewing window and internal light for sample visibility minimizes need for frequent door openings
Platform: 18" x 18" stainless steel; stackable with adapter set (sold separately)
Speed Range: 15 to 500 rpm, ±1 rpm
Temperature Range: −5°F to +140°F (Incubated/Refrigerated models); 50°F to 140°F (Incubated models)
Voltage: 120 V, 240 V
Type: Incubated, Incubated/Refrigerated
Temperature Range: Ambient +10 to 80°C, Ambient -15 to 80°C
Barnstead GenPure xCAD Plus Ultrapure Water Purification Systems in benchtop and wall mount models simultaneously dispenses up to 3 remote dispensers
Water purifier delivers up to 200 liters a day of ultrapure Type 1 water
Available in Ultrafiltration (UF), Ultraviolet (UV) Intensity Monitoring and Total Organic Compound Monitoring (TOC) systems
GLP-Compliant model exceed ASTM Type I, ISO 3696 Grade 1, ASTM D1193 and CLSI-CLRW international standards
Includes Extended Control and Dispenser (xCAD) with an action radius of 32 inches delivers precise volume dosing at the press of a button for fully automatic volume control
Scalable and economical Barnstead Pacific RO Water Purification by Thermo Fisher Scientific with permeate flow options in 3, 7, 12, 20, or 40 liters per hour
Features: integrated feed water monitor, customizable required filling level of reservoir, stagnant water recirculated with automatic return to operating mode, microprocessor control with automatic operation, wall mounting bracket, backlit control panel shows status of operating mode and shows percentage of reservoir fill-level
GLP-compliant documentation: Real-time clock records system errors and faults, data storage collects 4 weeks of information, code-protected operating system prevents unauthorized changes, RS-232 interface able to customize timing of data transmission, cell constant of 0.16 cm-1 ensures precise conductivity measurement
One-Year Manufacturer Warranty for Parts and Labor
Voltage: 230 V
Water Production Rate: 1.6 Gal/hr, 3.2 Gal/hr, 5.2 Gal/hr
Incubating shakers control temperature during shaking procedures. Select models are stackable and feature a HEPA filter.
Incubated/Refrigerated
Incubated/Refrigerated shakers, for use in eukaryotic applications, are available in benchtop and upright models. Select models combine orbital shaking with general-purpose temperature controlled processing.
Reserved for the most sensitive processes, such as High Performance Liquid Chromatography (HPLC); very low levels of biological and ionic contaminants.
Reverse Osmosis
Effectively removes organic and bacterial contaminants, but not ionic impurities or dissolved gases; use as a feed source for producing ultrapure laboratory water
Arctic Express Cryogenic Dry Shippers by Thermo Fisher Scientific use absorbent material to prevent LN2 spills during shipment; models have an 8-, 14- or 23-day static holding times.
Bio-Cane
Bio-Cane Cryogenic Storage Systems by Thermo Fisher Scientific are durable aluminum Dewars that use a system of color-coded canes loaded with cryogenic vials. Units store up to 2000 vials in liquid nitrogen.
Compact Digital Mini Rotator
Compact Digital Mini Rotators with a 9.8” x 9.8” platform provides smooth, quiet horizontal mixing of various size tubes; models fit inside non-CO2 incubators, chambers and refrigerators (up to 60°C).
Locator
Locator Cryogenic Storage Systems by Thermo Fisher Scientific maximize long-term storage and simplify sample retrieval by indexing samples into racks; available in four LN2 capacity sizes.
Thermo Flask
Thermo-Flask Benchtop Liquid Nitrogen Containers are designed for easy pouring during workbench applications such as cold traps; Capacities up to 4.5L.
Medifuge
Thermo Fisher's Medifuge is designed to perform routine clinical spin-downs with the flexibility to handle life science separations. Four customizable programs with three selectable deceleration profiles optimize separation.