Cambridge Scientific
Used Lab Equipment

Used Lab Equipment

We offer an assortment of used and refurbished Incubators ranging from General purpose Incubators, C02 Incubators, C02 water-jacketed Incubators, Refrigerated Incubators, and Shaking Incubators to Environmental Incubators and Humidity Incubators. Some of our popular manufacturers include Fisher, VWR, Thermo Forma, Precision, Sanyo and Hereaus.

Incubators: 46-60 of 170

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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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Fisher Scientific 11-680-626M BOD Incubator

Fisher Scientific 11-680-626M BOD Incubator

Cambridge ID #: 6231
  • Isotemp refrigerated, 27.3 cu ft, w/chart recorder
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    Fisher Scientific 11-690- 550D Gravity IncubatorImage Coming Soon

    Fisher Scientific 11-690- 550D Gravity Incubator

    Cambridge ID #: 8921
  • Fisher Scientific Isotemp Incubator Model 550D
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    Fisher Scientific 11-690-650F Forced Air Incubator

    Fisher Scientific 11-690-650F Forced Air Incubator

    Cambridge ID #: 16177

    Specifications:

    • Capacity:5.0 cu. ft. (141.6L)
    • Temperature Range: 30° to 75°C (86° to 167°F)
    • Average Uniformity: ±0.7°C at 37°C
    • Resolution:1°C
    • Control Sensitivity: ±0.1°C
    • Recovery: 2 min
    • Air Changes per Hour: 3
    • BTU per Hour (75°C): 430
    • Exterior L x W x H:5 x 26 x 39 in. (60 x 66 x 99cm)
    • Interior D x W x H: 18 x 18 x 26.5 in. (46 x 46 x 67cm)
    • Electrical Requirements: 120V 60Hz, 320w, 2.7A
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    Fisher Scientific 11-715-145D Dry Bath Incubator

    Fisher Scientific 11-715-145D Dry Bath Incubator

    Cambridge Scientific ID #'s: 15152, 16235

    Provide controlled dry heat for a wide variety of clinical and general chemistry applications.

    Specifications:

    • Temperature Range: 5°C - 130°C
    • Power Requirements: 120V, 50/60Hz
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    Fisher Scientific 11-718-2 Dry Bath Incubator

    Fisher Scientific 11-718-2 Dry Bath Incubator

    Cambridge ID #: 17351

    The Fisher Scientific dry bath incubator 11-718-2 features low and high temperature settings with exceptional temperature control and uniformity. The power coated steel body construction provides durability for demanding applications and the compact design saves valuable bench space.

    Specifications:

    • Power Requirements: 115V, 2.3A, 50/60Hz
    • Temperature Range: 5°C above ambient to 130°C
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    Fisher Scientific 11-718-4 Dry Bath Incubator

    Fisher Scientific 11-718-4 Dry Bath Incubator

    Cambridge Scientific ID #'s: 16897, 16244

    The Fisher Scientific dry bath incubator 11-718-4 features low and high temperature settings with exceptional temperature control and uniformity. The power coated steel body construction provides durability for demanding applications and the compact design saves valuable bench space.

    Specifications:

    • Power Requirements: 115V, 2.3A, 50/60Hz
    • Temperature Range: 5°C above ambient to 130°C
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    Fisher Scientific 125D Dry Bath IncubatorImage Coming Soon

    Fisher Scientific 125D Dry Bath Incubator

    Cambridge ID #: 13475
  • Temperature range: 5°C above ambient to 130°C
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    Fisher Scientific 13-247-10 Hybridization Incubator

    Fisher Scientific 13-247-10 Hybridization Incubator

    Cambridge ID #: 13713

    Safe and Precise

    • Prevent overheating: cut heater power in case of temperature runaway
    • Heat from ambient to 65°C in <20 min.
    • Recovery time at 37°C, <2 min. (door open 30 sec.)
    • Forced-draft convection achieves ±0.5°C uniformity at 55°C
    • Sample-to-sample uniformity is ±0.25°C


    Program with menu-driven controls

    • Microprocessor-based PID controller guides programming
    • Set temperature from ambient +7.0°C to 85.0°C via simple keypad; digital display shows your selection
    • Simple menu option lets you access temperature setpoint deviation during run
    • Easy to calibrate: offset feature lets you manually adjust display to match actual temperature

    Innovative Rotisserie

    • Easy to load; accommodates tubes from 35 I.D. x 100 to 300mm long
    • Patented Gentle-Clip grips hold tubes securely, open easily
    • Variable speeds from <5 to 15rpm ±1rpm
    • Accessory rotisserie holds 70 x 300mm I.D. tubes

    Built to Last

    • Durable, light gray painted steel exterior; interior is stainless steel
    • Tempered low-beta-emission glass window

     

    Specifications:

    • Controller Type: PID microprocessor
    • Speed: <5 to 15rpm
    • Width (English) Interior: 15 in.
    • Includes: Line cord and plug
    • Width (Metric): 46cm
    • Display: Digital
    • Temperature Range (Metric): Ambient 7 to 85°C
    • Width (Metric) Interior: 38cm
    • Material: Steel
    • Width (Metric) Window: 36cm
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    Fisher Scientific 13687708 Microplate Shaker

    Fisher Scientific 13687708 Microplate Shaker

    Cambridge ID #: 16749

    These compact, horizontal shakers deliver reliable and regulated shaking of two or four microplates.

    • Variable shaking speed: 150 to 1000rpm
    • Quick and easy fitting or any standard-depth multiwall plates
    • Continuous or timed operation, with automatic switch off
    • Operating temperature 4° to 40°C allows for use in cold rooms or incubators
    • Holds two or four microplates
    • Easy-to-use electronic timer ensures accurate count-down and repeatability of time sensitive incubations

    Specifications:

    • For Use With: 2 microplates
    • Speed: 150 to 1000rpm
    • Temperature Operating: 4° to 40°C
    • Voltage: 12V
    • For Use With (Application): Immunoassay, shaking ELISA plates, staining cells for flow cytometry, shaking plates in cold room, food and beverage, histamine in cheese, vitamins in milk testing
    • Orbit: 0.1 in.
    • Timer: 59 min.
    • Display: LED
    • Time Range: 1 min. to 23 hr. 59 min.
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    Fisher Scientific 625D Gravity Incubator

    Fisher Scientific 625D Gravity Incubator

    Cambridge ID #: 15648

     

    Specifications:

    • Volume: 2.5 cu ft
    • Chamber Dimensions: 18 x 18 x 13.5 in
    • Case Material: Enamel coated Steel
    • Controller Type: Microprocessor
    • Temperature Range (Metric): 30 to 75°C
    • Material (Internal): Stainless Steel
    • Temperature Uniformity: ±0.7 at 37°C
    • Display: LED
    • Insulation: 3 in. Thick Fiberglass
    • Material: Steel
    • Resolution: 0.1°C

     

    Description:

    Incubators with gravity flow circulation provide accurate, efficient heating for routine laboratory procedures: drying and staining of slides, paraffin embedding, tissue culture work, incubation of antibody tests, microbiological determinations, crystallization studies and more. Electrical receptacle inside (5A at 120V) to plug in a stirrer, shaker or other apparatus.

    Easy to operate

    • Microprocessor control
    • Controls are conveniently located at the top of the incubator chamber
    • Keypad with arrow keys to increase or decrease set point temperature in 0.1°C increments
    • Overtemperature value is automatically set at 3°C above setpoint
    • PID controller comes with fixed parameters so no tuning is required
    • Circuit breaker protects incubator from power surges; battery backup
    • Designed to stack two units

    Big three-character LED display
    • Digits display actual temperature to nearest 0.1°C
    • Display shows current value for set point temperature
    • HEAT indicator light cycles on and off to show when incubator heaters are on
    • ALARM indicator lights up if temperature exceeds overtemperature limit; backup controller maintains temperature at 3°C above setpoint; safety backup built into software

    Small, medium and large workload capacities
    • Available in three chamber capacities
    • Mounting holes at 2 in. (5cm) intervals on the chamber walls for shelf placement
    • Small incubator holds a maximum of five shelves, medium incubator holds eight, and large incubator holds eleven

    Low-maintenance incubators with inner and outer doors
    • Cabinet has durable, enamel-coated steel exterior
    • Extruded aluminum trim has acrylic powder coating
    • Chamber is easy-to-clean stainless steel
    • Low-watt-density heater elements are designed for long life
    • Silicone gasket on outer door and 3 in. thick (7.6cm) fiberglass insulation throughout prevent heat loss
    • Outer door opens to 180° for unhindered access and features two grabber-type latches
    • Inner door is tempered glass
    • Steel shelves are 17.37 in. wide and 16.75 in. front-to-back (44 x 42.5cm)
    • Black synthetic rubber feet keep incubator from slipping and maintain a space between incubator and benchtop for ventilation
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    Fisher Scientific 625F Forced Air Incubator

    Fisher Scientific 625F Forced Air Incubator

    Cambridge ID #: 15654

     

    Specifications:

    • Temperature range: 5 to 75°C
    • Capacity: 2.2 cu ft, 62.6L
    • Material: Steel/aluminum
    • Interior Dimensions: 17 x 18 x 12.5 in.
    • Exterior Dimensions: 26 x 23.5 x 26 in.

     

    Description:

    • With average temperature uniformity of ±0.3°C (±0.5°C absolute), these incubators operate within much tighter tolerances than gravity convection incubators.
    • Built-in PID microprocessor-based controller for close uniformity with set temperatures
    • Can set temperatures up to 75°C in 0.1°C increments using the keys on the control panel
    • Actual temperature is displayed (to the nearest 0.1°C) on the bright, three-digit LED display
    • If actual temperature exceeds setpoint by 3°C, a visual alarm will signal on the control panel
    • Tempered glass inner door to view samples
    • Temperature recovery is within two minutes
    • Heavy-duty steel/aluminum exterior; stainless-steel interior surrounded by 3 in. thick (7.6cm) insulation in the walls and 1.5 in. (3.8cm) in the door
    • 5-amp electrical outlet to support other apparatus
     
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    Fisher Scientific 637D Gravity Incubator

    Fisher Scientific 637D Gravity Incubator

    Cambridge Scientific ID #'s: 14176, 15649, 15424, 6736, 4192, 4471

     

    Specifications:

    • Volume: 3.8 cu ft
    • Chamber Dimensions: 18 x 18 x 20 in
    • Case Material: Enamel coated Steel
    • Controller Type: Microprocessor
    • Temperature Range (Metric): 30 to 75°C
    • Material (Internal): Stainless Steel
    • Temperature Uniformity: ±0.7 at 37°C
    • Display: LED
    • Insulation: 3 in. Thick Fiberglass
    • Material: Steel
    • Resolution: 0.1°C

     

    Description:

    Incubators with gravity flow circulation provide accurate, efficient heating for routine laboratory procedures: drying and staining of slides, paraffin embedding, tissue culture work, incubation of antibody tests, microbiological determinations, crystallization studies and more. Electrical receptacle inside (5A at 120V) to plug in a stirrer, shaker or other apparatus.

    Easy to operate

    • Microprocessor control
    • Controls are conveniently located at the top of the incubator chamber
    • Keypad with arrow keys to increase or decrease set point temperature in 0.1°C increments
    • Overtemperature value is automatically set at 3°C above setpoint
    • PID controller comes with fixed parameters so no tuning is required
    • Circuit breaker protects incubator from power surges; battery backup
    • Designed to stack two units

    Big three-character LED display
    • Digits display actual temperature to nearest 0.1°C
    • Display shows current value for set point temperature
    • HEAT indicator light cycles on and off to show when incubator heaters are on
    • ALARM indicator lights up if temperature exceeds overtemperature limit; backup controller maintains temperature at 3°C above setpoint; safety backup built into software

    Small, medium and large workload capacities
    • Available in three chamber capacities
    • Mounting holes at 2 in. (5cm) intervals on the chamber walls for shelf placement
    • Small incubator holds a maximum of five shelves, medium incubator holds eight, and large incubator holds eleven

    Low-maintenance incubators with inner and outer doors
    • Cabinet has durable, enamel-coated steel exterior
    • Extruded aluminum trim has acrylic powder coating
    • Chamber is easy-to-clean stainless steel
    • Low-watt-density heater elements are designed for long life
    • Silicone gasket on outer door and 3 in. thick (7.6cm) fiberglass insulation throughout prevent heat loss
    • Outer door opens to 180° for unhindered access and features two grabber-type latches
    • Inner door is tempered glass
    • Steel shelves are 17.37 in. wide and 16.75 in. front-to-back (44 x 42.5cm)
    • Black synthetic rubber feet keep incubator from slipping and maintain a space between incubator and benchtop for ventilation
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    Fisher-Scientific-637D-Gravity-Incubator-14176
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    Fisher Scientific 637F Forced Air Incubator

    Fisher Scientific 637F Forced Air Incubator

    Cambridge ID #: 15655

     

    Specifications:

    • Temperature range: 5 to 75°C
    • Capacity: 3.4 cu ft, 96.3L
    • Material: Steel/aluminum
    • Interior Dimensions: 17 x 18 x 19 in.
    • Exterior Dimensions: 26 x 23.5 x 33 in.

     

    Description:

    • With average temperature uniformity of ±0.3°C (±0.5°C absolute), these incubators operate within much tighter tolerances than gravity convection incubators.
    • Built-in PID microprocessor-based controller for close uniformity with set temperatures
    • Can set temperatures up to 75°C in 0.1°C increments using the keys on the control panel
    • Actual temperature is displayed (to the nearest 0.1°C) on the bright, three-digit LED display
    • If actual temperature exceeds setpoint by 3°C, a visual alarm will signal on the control panel
    • Tempered glass inner door to view samples
    • Temperature recovery is within two minutes
    • Heavy-duty steel/aluminum exterior; stainless-steel interior surrounded by 3 in. thick (7.6cm) insulation in the walls and 1.5 in. (3.8cm) in the door
    • 5-amp electrical outlet to support other apparatus
     
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    Fisher Scientific 650D Gravity Incubator

    Fisher Scientific 650D Gravity Incubator

    Cambridge ID #: 15650

     

    Specifications:

    • Volume: 5.0 cu ft
    • Chamber Dimensions: 18 x 18 x 26.5 in
    • Case Material: Enamel coated Steel
    • Controller Type: Microprocessor
    • Temperature Range (Metric): 30 to 75°C
    • Material (Internal): Stainless Steel
    • Temperature Uniformity: ±0.7 at 37°C
    • Display: LED
    • Insulation: 3 in. Thick Fiberglass
    • Material: Steel
    • Resolution: 0.1°C

     

    Description:

    Incubators with gravity flow circulation provide accurate, efficient heating for routine laboratory procedures: drying and staining of slides, paraffin embedding, tissue culture work, incubation of antibody tests, microbiological determinations, crystallization studies and more. Electrical receptacle inside (5A at 120V) to plug in a stirrer, shaker or other apparatus.

    Easy to operate

    • Microprocessor control
    • Controls are conveniently located at the top of the incubator chamber
    • Keypad with arrow keys to increase or decrease set point temperature in 0.1°C increments
    • Overtemperature value is automatically set at 3°C above setpoint
    • PID controller comes with fixed parameters so no tuning is required
    • Circuit breaker protects incubator from power surges; battery backup
    • Designed to stack two units

    Big three-character LED display
    • Digits display actual temperature to nearest 0.1°C
    • Display shows current value for set point temperature
    • HEAT indicator light cycles on and off to show when incubator heaters are on
    • ALARM indicator lights up if temperature exceeds overtemperature limit; backup controller maintains temperature at 3°C above setpoint; safety backup built into software

    Small, medium and large workload capacities
    • Available in three chamber capacities
    • Mounting holes at 2 in. (5cm) intervals on the chamber walls for shelf placement
    • Small incubator holds a maximum of five shelves, medium incubator holds eight, and large incubator holds eleven

    Low-maintenance incubators with inner and outer doors
    • Cabinet has durable, enamel-coated steel exterior
    • Extruded aluminum trim has acrylic powder coating
    • Chamber is easy-to-clean stainless steel
    • Low-watt-density heater elements are designed for long life
    • Silicone gasket on outer door and 3 in. thick (7.6cm) fiberglass insulation throughout prevent heat loss
    • Outer door opens to 180° for unhindered access and features two grabber-type latches
    • Inner door is tempered glass
    • Steel shelves are 17.37 in. wide and 16.75 in. front-to-back (44 x 42.5cm)
    • Black synthetic rubber feet keep incubator from slipping and maintain a space between incubator and benchtop for ventilation
    Learn More
    Fisher-Scientific-650D-Gravity-Incubator-15650
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