Cambridge Scientific
Used Lab Equipment

Used Lab Equipment

We offer an assortment of used and refurbished Hoods ranging from Biosafety Cabinets, Laminar Flow Hoods and Fume Hoods to Glove Boxes. Some of our popular manufacturers include Baker, Labconco, Thermo Forma, Nuaire, Plas-Labs and Sheldon.

Hoods: 16-30 of 74

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Baker SG-603A Biosafety Cabinet

Baker SG-603A Biosafety Cabinet

Cambridge ID #: 17265

Total Exhaust Edition

Features:

  • Class II, Type A2
  • Stainless Steel Work Area
  • Sliding Glass Door
  • Lighted Work Area
  • Magnehelic Gauge
  • Internal Blower
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Baker SG-603M Biosafety Cabinet

Baker SG-603M Biosafety Cabinet

Cambridge ID #: 15306

Total Exhaust Edition

Features:

  • Class II, Type A2
  • Stainless Steel Work Area
  • Sliding Glass Door
  • Lighted Work Area
  • Magnehelic Gauge
  • Internal Blower
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Baker SG-603TX Biosafety Cabinet

Baker SG-603TX Biosafety Cabinet

Cambridge ID #: 4398

Total Exhaust Edition

Features:

  • Class II, Type A2
  • Stainless Steel Work Area
  • Sliding Glass Door
  • Lighted Work Area
  • Magnehelic Gauge
  • Internal Blower
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Benchmark Scientific H4000-HS Hot Plate/Stirring Hot Plate

Benchmark Scientific H4000-HS Hot Plate/Stirring Hot Plate

Cambridge ID #: 17135

Features an exceptionally durable, chemical resistant white ceramic work surface. The space-efficient design (8” x 9” in. footprint) is ideal for use on crowded benchtops and bio-hoods. Advanced microprocessor controls with convenient turn knobs allow quick, precise adjustment and maintenance of speed and temperature. Compatible with a wide variety of popular sizes of borosilicate glass beakers, flasks, bottles and other vessels

Specifications:

 

  • Temperature Range: 4° to 65°C
  • Temperature Control Range: 80° to 380°C
  • Speed Range: 60 to 1,500 RPM
  • Dimensions: 8.5” x 10” x 4.5” in. (W x D x H)
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BioExpress GeneMate  Magnetic Stirrer

BioExpress GeneMate Magnetic Stirrer

Cambridge Scientific ID #'s: 17134, 17130

Ideal for clinical, research, and other everyday laboratory applications. Space efficient and featuring an exceptionally durable, chemical resistant white ceramic work surface, perfect for use on crowded bench tops and inside of bio-hoods. Advanced microprocessor controls with convenient turn knobs allow quick, precise adjustment and maintenance of speed and temperature.

Specifications:

  • Temperature Range: Up to 380°C
  • Speed: 60 to 1500 RPM
  • Ceramic Work Surface: 7.5” x 7.5” in.
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BioTek 405TSUVS Microplate Washer

BioTek 405TSUVS Microplate Washer

Cambridge ID #: 17117

The 405 TS Microplate Washer is the gold standard in microplate washing. It features the patented Verify technology, which runs an automated QC check for manifold tube blockage, and visually reports any failed wells. The patented Ultrasonic Advantage can then be used to automatically and thoroughly clean the aspirate and dispense manifold. The 405 TS is the first self-checking, self-maintaining microplate washer available! Cell-based assays and microsphere-based assays are easily run with the 405 TS's unique set of available features and modules for gentle washing vacuum filtration and biomagnetic separation.

 

Features:

  • 96- and 384-well microplates
  • Optimized Cell Washing
  • 4 Buffer Switching
  • Ultrasonic Advantage
  • Biomagnetic Speration
  • Vacuum Filtratiion
  • Resistive touch screen display works with gloves
  • Onboard computer with extensive, intuitive software
  • Context-sensitive help, instructional videos and pre-defined
  • sample programs for easy operation
  • Automated internal 4-buffer switching option
  • Quick change manifold design
  • Gentle dispense for non-disruptive cell washing
  • Patented Dual-Action manifold for overfill washing
  • Available patented Verify Technology for clog detection
  • Patented Ultrasonic Advantage automated manifold cleaning
  • Pre-programmed maintenance routines ensure trouble-free operation

 

Specifications

 

  • Wash Cycles: 1 to 250
  • Washing Speed: Solid bottom plates: 3 asp./disp/ cycles, 300 uL/well, 96 wells, 96 tube manifold, final aspirate: <30s; 3 asp./disp/ cycles, 100 uL/well, 384 wells, 96 tube manifold, final aspirate: <80s; 1 asp./disp/ cycles, 40 uL/well, 384 wells, 192 tube manifold
  • USB Connections: 2
  • Width (Metric): 35.6cm
  • Depth (Metric): 43.2cm
  • Height (Metric) 25.4cm
  • Weight (Metric): With Internal Buffer Switching: 16.5kg; Without Internal Buffer Switching: 13.5kg
  • Hertz: 50/60Hz
  • Voltage: 100 to 240V
  • For Use With (Application): ELISA, MSD assays, HCS immune cytochemistry, FLIPR Ca2+ flux, Cell-based assays, Magnetic and polystyrene bead processing (gene expression assays, cytokine assays), ELISPOT assays
  • Assays: ELISA, Cell-based assays (model dependent), Magnetic and polystyrene bead, Multiplex assays, Bead-based ELISAs, Filtration-to-waste processes
  • Fluid Delivery Type: Internal positive displacement pump
  • Electrical Requirements: 100 to 240V 50/60Hz
  • Soak Time: Programmable in minutes and seconds, up to 60 min.
  • Display: LED
  • Automation Interface: High res LED backlit touch screen for instrument control
  • Width (English): 14 in.
  • Depth (English): 17 in.
  • Height (English): 10 in.
  • Weight (English): With Internal Buffer Switching: 36 lb.; Without Internal Buffer Switching: 30 lb.
  • Type: Microplate Washer w/4-Buffer switching, ultrasonic advantage, optimized cell washing
  • Volume (Metric) Residual: ≤2μL/well
  • Volume (Metric) Wash: 25 to 3000μL/well
  • Flow Rate: 1 to 11
  • Well Count: 96/384

 

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BioTek Biostack Automated Microplate Stacker

BioTek Biostack Automated Microplate Stacker

Cambridge Scientific ID #'s: 17138, 11887

Performance

  • Restacking feature allows plates to be returned to the input stack in their original order
  • Can be operated without an external computer when used with the ELx405 Microplate Washer, MicroFill Microplate Dispenser, NanoQuot Microplate Dispenser, or MicroFlo Select Microplate Dispenser
  • 30 or 50 standard height microplates (96- or 384-well) per interchangeable stack Optional rotational wrist allows users to integrate both landscape and portrait orientation microplate carriers with the instrument remaining in its optimal, ergonomic-friendly position
  • Variable microplate input Small footprint conserves precious benchtop space; fits easily in most standard laboratory hoods

 

Design

  • Universal design compatible with most supported BioTek instrumentation Designed for heavy use with aluminum precision-ground base Linear mechanisms built around proven BioTek technology Quiet operation with cams activated by stepper motors No moving parts to wear within motors Gripper incorporates rack and pinion drive for synchronistic movement Reliable transport with microplate gripped from below Onboard self-diagnostics ensure trouble-free operation

 

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BioTek BioStack 2 Automated Microplate Stacker

BioTek BioStack 2 Automated Microplate Stacker

Cambridge ID #: 15606

Specifications:

 

Performance:

  • Restacking feature allows plates to be returned to the input stack in their original order
  • Can be operated without an external computer when used with the ELx405 Microplate Washer, MicroFill Microplate Dispenser, NanoQuot Microplate Dispenser, or MicroFlo Select Microplate Dispenser
  • 30 or 50 standard height microplates (96- or 384-well) per interchangeable stack Optional rotational wrist allows users to integrate both landscape and portrait orientation microplate carriers with the instrument remaining in its optimal, ergonomic-friendly position
  • Variable microplate input Small footprint conserves precious benchtop space; fits easily in most standard laboratory hoods

 

Design:

  • Universal design compatible with most supported BioTek instrumentation Designed for heavy use with aluminum precision-ground base Linear mechanisms built around proven BioTek technology Quiet operation with cams activated by stepper motors No moving parts to wear within motors Gripper incorporates rack and pinion drive for synchronistic movement Reliable transport with microplate gripped from below Onboard self-diagnostics ensure trouble-free operation

Features:

  • <10 seconds plate exchange time
  • Range of formats including 24-, 48-, 96-, 384- and 1536-well
  • 10, 30, or 50 standard height microplates per interchangeable stack
  • De-lidding and re-lidding capability with patented BioStack 4
  • Rotational gripper for ergonomic  and compact integration
  • Restacking capability
  • Optional barcode scanner
  • Direct control through washer and dispenser interface or via LHC or Gen5 PC software
  • Small footprint conserves precious bench top space
  • Walk away automation
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Carlisle Barrier System AMP2000 Glove BoxImage Coming Soon

Carlisle Barrier System AMP2000 Glove Box

Cambridge ID #: 11525

Features:

  • 4 glove isolator
  • highly aseptic environment for transfer of sterility test materials
  • The isolator has been designed with an emphasis on ergonomics and PLC control
  • Size of the isolator: 60”W x 26”D
  • Enclosure height: 30”
  • The operator will access storage shelves via three glove ports
  • Isolator construction is of 316L stainless steel with laminated safety glass windows, in silicone channel gaskets
  • An inlet and outlet blower system will exhaust hydrogen peroxide vapors through 2” automatic ball valves, controlled by the PLC for fully automated decontamination cycle with a VHP-1000 generator by Steris Corporation. Under normal operations, the inlet blower will slightly pressurize the isolator through HEPA filters, providing a minimum Class 100 environment.
  • Product and test materials are entered into the isolator via the large hatch back window and stored on shelves
  • After the window is sealed, the VHP decontamination cycle can be initiated.
  • Upon completion of the decontamination cycle, the operator docks the 350mm RTP beta flange to the alpha flange found on the work center (testing) isolator. The door is opened from the work center isolator. After the door is opened, the operator enters the glove ports and passes the required materials into the work center isolator for testing.
  • After testing, the operator passes media samples into the transfer isolator.
  • The transfer isolator is taken to incubators, where sealed media containers are removed from the isolator and placed into Amgen’s incubators.
  • Other waste material can be removed from the isolator and any cleaning can take place. The isolator will need to be decontaminated again for the next sterility test.

 Chamber Differential Pressure (DP) Controls

  • Sampling Method: Chamber pressure is sampled using  .250"OD X .125" ID polyurethane tubing. One pressure port on the transducer is terminated to a dedicated sense port penetrating the isolator chamber. The second pressure port is left open to the room. The pressure transducer is located to facilitate short tubing runs to decrease pressure drops and signal latency.
  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is the numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's DP Set Point (DP SP).
  • Process Variable (PV): An appropriately ranged pressure transducer continuously senses the differential between the isolator chamber and the ambient or room air pressure. The transducer converts and transmits the air pressure signal to an electrical signal. The electrical signal format is typically a 4-20ma analog signal.  The 4-20ma signal is routed to an analog input at the PLC. The program will translate the electrical signal to a raw decimal value. This raw decimal value is considered the chamber's Differential Pressure Process Variable (DP PV).
  • Control Variables (CV): The PLC program will scale the process variable to appropriate units of pressure (typically INCHES of H2O). Each individual operating phase will use the scaled PV values & SP values for enabling pressure control logic & adjustment of outputs to associated devices, numeric or graphical displays at the HMI, and conditional logic for alarms.

Chamber Oxygen (O2) Controls:

  • Sampling Methhods: Two different methods of oxygen sampling are used by Carlisle Barrier Systems.The first and simplest method is continuous sampling.  With this method the oxygen sensor is directly located within the isolator chamber.  The transducer is then exposed to, and sampling, the isolator atmosphere at all times.The second method of oxygen sampling is to employ a sampling pump. With this method the pump pulls an air sample from the isolator chamber and passes the atmosphere sample past the oxygen sensor. The pump can then be enabled/disabled  for different phases of operation
  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is the numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's O2 Set Point (O2 SP).
  • Process Variable (PV):  The O2 transducer continuously senses the chamber O2 level. The transducer converts and transmits the oxygen signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is considered the chamber's O2 Process Variable (O2 PV).
  • Control Variables (CV): The program will scale the process variable to appropriate units of oxygen (typically % O2). Each individual operating phase will use the scaled PV & SP values for enabling control logic & outputs to associated devices, numeric or graphical displays at the HMI, and conditional logic for alarms.

 Chamber Relative Humidity (RH) Controls:

Sampling Method:The transducer is typically inserted directly into the isolator chamber. Unless otherwise capped off the transducer is continuously exposed to chamber atmosphere.

  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is a numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's RH Set Point (RH SP).
  • Process Variable (PV): The RH transducer continuously senses the chamber RH level. The transducer converts and transmits the oxygen signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is considered the chamber's RH Process Variable (RH PV).
  • Chamber Temperature  (Deg F) Control: The Chamber temperature is continuously sensed, translated to a 4-20ma analog signal, and input into the PLC thru an analog input. The temperature signal is then scaled accordingly, posted to the HMI screen, and compared to the appropriate temperature set point. If the controls and alarms are enabled, appropriate modifications are made to the temperature control signal, and alarm indications.

Chamber Temperature (Deg F) Control:

Sampling Method:The temperature transducer is inserted directly into the isolator chamber. Unless otherwise capped off the temperature sensor is continuously exposed to the isolator atmosphere. When RH sensing is present on the isolator, the temperature sensor is typically combined with this sensor. If there is no RH sensing present then an independent temperature-sensing probe is used. Without RH sensing present, the sensing transducer is typically an industrial RTD. With RH sensing present the sensing transducer is typically an integrated chip (IC).

  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is a numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's RH Set Point (RH SP).
  • Process Variable (PV):  The RH transducer continuously senses the chamber RH level. The transducer converts and transmits the RH signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is considered the chamber's RH Process Variable (RH PV).

Chamber Vaporized Hydrogen Peroxide (VHP) Level

Sampling Methods: Sampling pumps are used to pull a small portion of the isolator's atmosphere past the VHP sensor(s). The sampled atmosphere is pumped through .250"OD X .125" ID VITON or TEFLON tubing passed by the VHP sensor and returned to the chamber.  The sample pump(s) are configured to run based on different the different conditional requirements for each phase of operation.

  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is the numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's VHP Set Point (VHP SP).
  • Process Variable (PV):  The VHP transducer continuously senses the VHP level present in the sampling system. The transducer converts and transmits the VHP signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is considered the chamber's VHP Process Variable (VHP PV).

 

Chamber HEPA Pressure Level

Sampling Method: Chamber inlet and exhaust HEPA filter pressure is sampled using  .250"OD X .125" ID polyurethane tubing. The pressure transducers are continuously exposed to chamber atmosphere.

  • One pressure port on the each respective pressure transducer will be terminated to a dedicated pressure sense port on the "non-chamber side" of the inlet or exhaust port HEPA filter. The second pressure sense port on each respective transducer will be tee'd together and terminated to a dedicated pressure port penetrating the isolator chamber. This tubing method generates a differential pressure measurement acrossed the HEPA relative to chamber pressure.
  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is the numeric value entered into a Phase Parameter Screen accessible from the HMI. The set point variable associated with the HEPA filter pressures used only for alarm functions.
  • Process Variable (PV):An appropriately ranged pressure transducer senses the resulting differential pressure. The transducer converts and transmits the air pressure signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is  the HEPA filter Differential Pressure Process Variable (HEPA DP PV).

Control and Indications Variables

As stated above control function associated with HEPA filter pressure variables is limited to alarm. 

Chamber Vapor Level

  • Sampling Methods: The vapor sensor is directly located within the isolator chamber.  Unless otherwise capped off, the transducer is exposed to, and sampling, the chamber atmosphere at all times.
  • Set Point Variable (SPV): The operator is responsible for entry of the set point variable. This variable is the numeric value entered into the Phase Parameter Screen at the HMI. This value is considered the chamber's Vapor Set Point (VPR SP).
  • Process Variable (PV):  The vapor transducer continuously senses the vapor level. The transducer converts and transmits the vapor signal to an electrical signal. The electrical signal format used is typically a 4-20ma analog signal.  The 4-20ma signal is then routed to an analog input, at the PLC, where the program then translates the electrical signal to a raw decimal value. This raw decimal value is considered the Vapor Process Variable (VPR PV).
  • Control  and Indication Variables (CV): The program will scale the process variable to appropriate units of vapor (typically % vapor). Each individual operating phase will use the scaled PV & SP values for enabling control logic & outputs to associated devices, numeric or graphical displays at the HMI, and conditional logic for alarms

Specifications:

  • Chamber Exterior Size: Length x Width x Height: Approx. 60”L X 26” W X 30” H
  • Overall Equipment Size: Length x Width x Height: Approx. 65”L X 33” W X 86” H
  • Shell: 316 L S.S
  • Stand: 304 S.S
  • Finishing: 304 S.S
  • Windows: Glass windows
  • HVAC Piping: 316 L S.S
  • Filters: HEPA
  • Gas: CDA(type of gas); regulator;
  • Humidity chamber: monitor
  • Utility Panel Compression Fitting: 2, teflon, 3”/8” Compression
  • Power: 125V, 60 Hz
  • Compressed air : Yes
  • Pressure: 90 Psi
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Corning PC-400 Hot Plate/Stirring Hot Plate

Corning PC-400 Hot Plate/Stirring Hot Plate

Cambridge ID #: 16912

Corning brings innovation to its hot plates and stirrers for temperature and stir speed settings. Contain small footprints and low profiles to conserve lab space, easily fit inside hoods or storage cabinets. Ceramic tops provide uniform heating and better contrast during applications that require color-change monitoring.

Specifications:

  • Temperature Range: 5° to 550°C
  • Top Size: 5” x 7" in. (W x D)
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Erlab Captair 321 Smart (New) Ductless Fume Hood

Erlab Captair 321 Smart (New) Ductless Fume Hood

Cambridge ID #: 15611

Options include 48", 32", 39", and 63" models.

**All units come as a shell without work surface or stand, as these are all options.**

 

Filters Options:

  • Pre-Filter: Pre-Filter cleansing
  • AS : Organic
  • BE+: Acids, inorganics, organics, and solvents
  • HP (HEPA): Particulates
  • F: Formaldehyde
  • K: Amines (Ammonia)

 

Benefits:

  • Handle your chemicals safely through the power of Erlab’s filtration – maximum protection, and guaranteed safety through validations performed by Erlab’s PhD chemist’s
  • SMART technology provides you with real-time communication to ensure optimal performance 24/7
  • Completely independent, NO HVAC required, providing flexibility for the changes and growth in your lab
  • Life-time warranty on all technology components
  • End up saving 60% on energy when going Green with ErLab!

 

Features:

  • Smart-Light: When the light is pulsing: indicates that containment is compromised, or there is filter breakthrough, or there is a fan failure
  • Filtration technology: 1 column that can be configured to handle liquids, powders, or both
  • Carbon filter for gases and vapors: Depending on the filtration column configuration (see table above)
  • Particulate filtration for powders: Depending on the filtration column configuration (see table above)
  • eGuard app (Android or iOS): For remote control to monitor the hood status, change the settings, and deliver safety alerts immediately to your devices (mobile, tablet and PC)
  • Internal lighting: LED lighting > 650 Lux
  • Anemometer: Hot-wire anemometer will alarm if the face velocity decreases
  • Chemical Listing: List of most commonly used chemicals (NIOSH) and their retention capacity by our filters

 

Specifications:

  • Safety Standards: AFNOR NF X 15-211:2009: France - BS 7989: England
  • DIN 12 927: Germany - EN 1822:1998 (HEPA H14 & ULPA U17 Filters) - CE Marking
  • Air Flow: 220 m3/h / 135 CFM
  • Air Face Velocity: 0.4 to 0.6 m/s / 79 fpm to 118 fpm
  • Voltage/Fequency: 90 - 220V / 50-60Hz
  • Power consumption: 65 W
  • Sash openings: The oblong shape allows for proper containment and ergonomic mobility
  • Structure: Corrosion resistant electro-galvanized steel coated with anti-acid polymer
  • Side and front panels: Chemical resistant acrylic
  • Filtration module: Polypropylenemodel

 

Manufacturer Warranty

  • 2 year warranty on structure
  • 1-2 year Life on filters depending on usage
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Erlab Captair 391 Smart (New) Ductless Fume Hood

Erlab Captair 391 Smart (New) Ductless Fume Hood

Cambridge ID #: 15612

Options include 48", 32", 39", and 63" models.

**All units come as a shell without work surface or stand, as these are all options.**

 

Filters Options:

  • Pre-Filter: Pre-Filter cleansing
  • AS : Organic
  • BE+: Acids, inorganics, organics, and solvents
  • HP (HEPA): Particulates
  • F: Formaldehyde
  • K: Amines (Ammonia)

 

Benefits:

  • Handle your chemicals safely through the power of Erlab’s filtration – maximum protection, and guaranteed safety through validations performed by Erlab’s PhD chemist’s
  • SMART technology provides you with real-time communication to ensure optimal performance 24/7
  • Completely independent, NO HVAC required, providing flexibility for the changes and growth in your lab
  • Life-time warranty on all technology components
  • End up saving 60% on energy when going Green with ErLab!

 

Features:

  • Smart-Light: When the light is pulsing: indicates that containment is compromised, or there is filter breakthrough, or there is a fan failure
  • Filtration technology: 1 column that can be configured to handle liquids, powders, or both
  • Carbon filter for gases and vapors: Depending on the filtration column configuration (see table above)
  • Particulate filtration for powders: Depending on the filtration column configuration (see table above)
  • eGuard app (Android or iOS): For remote control to monitor the hood status, change the settings, and deliver safety alerts immediately to your devices (mobile, tablet and PC)
  • Internal lighting: LED lighting > 650 Lux
  • Anemometer: Hot-wire anemometer will alarm if the face velocity decreases
  • Chemical Listing: List of most commonly used chemicals (NIOSH) and their retention capacity by our filters

 

Specifications:

  • Safety Standards: AFNOR NF X 15-211:2009: France - BS 7989: England
  • DIN 12 927: Germany - EN 1822:1998 (HEPA H14 & ULPA U17 Filters) - CE Marking
  • Air Flow: 220 m3/h / 135 CFM
  • Air Face Velocity: 0.4 to 0.6 m/s / 79 fpm to 118 fpm
  • Voltage/Fequency: 90 - 220V / 50-60Hz
  • Power consumption: 65 W
  • Sash openings: The oblong shape allows for proper containment and ergonomic mobility
  • Structure: Corrosion resistant electro-galvanized steel coated with anti-acid polymer
  • Side and front panels: Chemical resistant acrylic
  • Filtration module: Polypropylenemodel

 

Manufacturer Warranty

  • 2 year warranty on structure
  • 1-2 year Life on filters depending on usage
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Erlab Captair 392 Smart (New) Ductless Fume Hood

Erlab Captair 392 Smart (New) Ductless Fume Hood

Cambridge ID #: 15614

Options include 48", 32", 39", and 63" models.

**All units come as a shell without work surface or stand, as these are all options.**

 

Filters Options:

  • Pre-Filter: Pre-Filter cleansing
  • AS : Organic
  • BE+: Acids, inorganics, organics, and solvents
  • HP (HEPA): Particulates
  • F: Formaldehyde
  • K: Amines (Ammonia)

 

Benefits:

  • Handle your chemicals safely through the power of Erlab’s filtration – maximum protection, and guaranteed safety through validations performed by Erlab’s PhD chemist’s
  • SMART technology provides you with real-time communication to ensure optimal performance 24/7
  • Completely independent, NO HVAC required, providing flexibility for the changes and growth in your lab
  • Life-time warranty on all technology components
  • End up saving 60% on energy when going Green with ErLab!

 

Features:

  • Smart-Light: When the light is pulsing: indicates that containment is compromised, or there is filter breakthrough, or there is a fan failure
  • Filtration technology: 2 columns that can be configured to handle liquids, powders, or both
  • Carbon filter for gases and vapors: Depending on the filtration column configuration (see table above)
  • Particulate filtration for powders: Depending on the filtration column configuration (see table above)
  • eGuard app (Android or iOS): For remote control to monitor the hood status, change the settings, and deliver safety alerts immediately to your devices (mobile, tablet and PC)
  • Internal lighting: LED lighting > 650 Lux
  • Anemometer: Hot-wire anemometer will alarm if the face velocity decreases
  • Chemical Listing: List of most commonly used chemicals (NIOSH) and their retention capacity by our filters

 

Specifications:

  • Safety Standards: AFNOR NF X 15-211:2009: France - BS 7989: England
  • DIN 12 927: Germany - EN 1822:1998 (HEPA H14 & ULPA U17 Filters) - CE Marking
  • Air Flow: 440 m3/h / 135 CFM
  • Air Face Velocity: 0.4 to 0.6 m/s / 79 fpm to 118 fpm
  • Voltage/Fequency: 90 - 220V / 50-60Hz
  • Power consumption: 105 W
  • Sash openings: Total openings or new reverso sash
  • Structure: Corrosion resistant electro-galvanized steel coated with anti-acid polymer
  • Side and front panels: Chemical resistant acrylic
  • Filtration module: Polypropylenemodel

 

Manufacturer Warranty

  • 2 year warranty on structure
  • 1-2 year Life on filters depending on usage
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Erlab Captair 481 Smart (New) Ductless Fume Hood

Erlab Captair 481 Smart (New) Ductless Fume Hood

Cambridge ID #: 15601

Options include 48", 32", 39", and 63" models.

**All units come as a shell without work surface or stand, as these are all options.**

 

Filters Options:

  • Pre-Filter: Pre-Filter cleansing
  • AS : Organic
  • BE+: Acids, inorganics, organics, and solvents
  • HP (HEPA): Particulates
  • F: Formaldehyde
  • K: Amines (Ammonia)

 

Benefits:

  • Handle your chemicals safely through the power of Erlab’s filtration – maximum protection, and guaranteed safety through validations performed by Erlab’s PhD chemist’s
  • SMART technology provides you with real-time communication to ensure optimal performance 24/7
  • Completely independent, NO HVAC required, providing flexibility for the changes and growth in your lab
  • Life-time warranty on all technology components
  • End up saving 60% on energy when going Green with ErLab!

 

Features:

  • Smart-Light: When the light is pulsing: indicates that containment is compromised, or there is filter breakthrough, or there is a fan failure
  • Filtration technology: 1 column that can be configured to handle liquids, powders, or both
  • Carbon filter for gases and vapors: Depending on the filtration column configuration (see table above)
  • Particulate filtration for powders: Depending on the filtration column configuration (see table above)
  • eGuard app (Android or iOS): For remote control to monitor the hood status, change the settings, and deliver safety alerts immediately to your devices (mobile, tablet and PC)
  • Internal lighting: LED lighting > 650 Lux
  • Anemometer: Hot-wire anemometer will alarm if the face velocity decreases
  • Chemical Listing: List of most commonly used chemicals (NIOSH) and their retention capacity by our filters

 

Specifications:

  • Safety Standards: AFNOR NF X 15-211:2009: France - BS 7989: England
  • DIN 12 927: Germany - EN 1822:1998 (HEPA H14 & ULPA U17 Filters) - CE Marking
  • Air Flow: 220 m3/h / 129 CFM
  • Air Face Velocity: 0.4 to 0.6 m/s / 79 fpm to 118 fpm
  • Voltage/Fequency: 90 - 220V / 50-60Hz
  • Power consumption: 65 W
  • Sash openings: The oblong shape allows for proper containment and ergonomic mobility
  • Structure: Corrosion resistant electro-galvanized steel coated with anti-acid polymer
  • Side and front panels: Chemical resistant acrylic
  • Filtration module: Polypropylenemodel

 

Manufacturer Warranty

  • 2 year warranty on structure
  • 1-2 year Life on filters depending on usage
Learn More
Erlab-Captair-481-Smart-(New)-Ductless-Fume-Hood-15601
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Erlab Captair 483 Smart (New) Ductless Fume Hood

Erlab Captair 483 Smart (New) Ductless Fume Hood

Cambridge ID #: 15616

Options include 48", 32", 39", and 63" models.

**All units come as a shell without work surface or stand, as these are all options.**

 

Filters Options:

  • Pre-Filter: Pre-Filter cleansing
  • AS : Organic
  • BE+: Acids, inorganics, organics, and solvents
  • HP (HEPA): Particulates
  • F: Formaldehyde
  • K: Amines (Ammonia)

 

Benefits:

  • Handle your chemicals safely through the power of Erlab’s filtration – maximum protection, and guaranteed safety through validations performed by Erlab’s PhD chemist’s
  • SMART technology provides you with real-time communication to ensure optimal performance 24/7
  • Completely independent, NO HVAC required, providing flexibility for the changes and growth in your lab
  • Life-time warranty on all technology components
  • End up saving 60% on energy when going Green with ErLab!

 

Features:

  • Smart-Light: When the light is pulsing: indicates that containment is compromised, or there is filter breakthrough, or there is a fan failure
  • Filtration technology: 3 columns that can be configured to handle liquids, powders, or both
  • Carbon filter for gases and vapors: Depending on the filtration column configuration (see table above)
  • Particulate filtration for powders: Depending on the filtration column configuration (see table above)
  • eGuard app (Android or iOS): For remote control to monitor the hood status, change the settings, and deliver safety alerts immediately to your devices (mobile, tablet and PC)
  • Internal lighting: LED lighting > 650 Lux
  • Anemometer: Hot-wire anemometer will alarm if the face velocity decreases
  • Chemical Listing: List of most commonly used chemicals (NIOSH) and their retention capacity by our filters

 

Specifications:

  • Safety Standards: AFNOR NF X 15-211:2009: France - BS 7989: England
  • DIN 12 927: Germany - EN 1822:1998 (HEPA H14 & ULPA U17 Filters) - CE Marking
  • Air Flow: 660 m3/h / 388 CFM
  • Air Face Velocity: 0.4 to 0.6 m/s / 79 fpm to 118 fpm
  • Voltage/Fequency: 90 - 220V / 50-60Hz
  • Power consumption: 160 W
  • Sash openings: The oblong shape allows for proper containment and ergonomic mobility
  • Structure: Corrosion resistant electro-galvanized steel coated with anti-acid polymer
  • Side and front panels: Chemical resistant acrylic
  • Filtration module: Polypropylenemodel

 

Manufacturer Warranty

  • 2 year warranty on structure
  • 1-2 year Life on filters depending on usage
Learn More
Erlab-Captair-483-Smart-(New)-Ductless-Fume-Hood-15616
By clicking below we can further assist you with your inquiry. Inquire 1 In Stock Worldwide Shipping