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Description Specification
Polyvalent syringe (infusion) pump with extremely robust mechanics for high precision and pulse-free flow

 New fixing mechanism allows to use virtually all available metal, glass & plastic syringes on the market

Micro-liter up to over 150 ml syringes (without an adapter)

Programmable infusion and filling

 Optimized for high pressure & high speed applications

Type: LAMBDA VIT-FIT / VIT-FIT HP – microprocessor-controlled programmable syringe pump (infusion / withdrawal)
Programming: up to 99 steps of speed and time
Time resolution: 0 to 999 minutes in 1 minute steps or 0 to 99.9 minutes in 0.1 minute steps: time resolution can be selected individually for each program step
Accuracy: ± 1%
Reproducibility: ± 0.2% (electronics)
Syringes: glass, plastic, metal syringes from 5 μl to over 150 ml
Flow rate: depends on the inner syringe diameter
Non-volatile memory: storage of all settings
Maximum force: VIT-FIT: 300 N (reducible by a switch to 80 N); VIT-FIT HP: 600 N (reducible by a switch to 160 N)
Motor: microprocessor controlled brushless long life BLDC motor with neodymium magnets
Transmission: efficient force transmission by a ball screw with highest mechanical load capacity of 12’000 N
Pusher travel: 120 mm
Pusher travel rate:
Minimum: 0.08 mm/min
Maximum: 80 mm/min
Speed control range: 0 to 999
Interface: RS-232 or RS-485 (optional)
Power supply: 95–240 V/50–60 Hz AC plug-in power supply with DC 12V/50W output; possible field operation on 12 V accumulator
Dimensions: 26.5 cm x 12.5 cm × 13 cm (W × D × H)
Weight: 3.2 kg
Safety: CE, meets IEC 1010/1 norm for laboratory instruments
Operation temperature: 0-40 °C
Operation humidity: 0-90% RH, not condensing
Remote control: 0-10 V; (option 0-20 or 4-20 mA)

Polyvalent programmable syringe pump – LAMBDA VIT-FIT

These days there are so many different types of syringes and so many different volumes used…

Some users need a standard syringe from a certain producer; others use only glass, metal or plastic syringes. Volumes start from few microlitres to over 150 millilitres.

Is it possible to satisfy everybody with just a single syringe pump?

With our new VIT-FIT syringe pump we have tried to solve just this problem.

Our new syringe fixing system allows almost any syringe to be used, from micro syringes to large volume syringes, without the use of an adapter. The syringe is tightly held in both directions – infusion and filling.

In addition, the handling of the syringes is very easy.


Construction advantages and properties of the VIT-FIT (HP) syringe pumps

Construction advantages of the VIT-FIT and VIT-FIT HP laboratory syringe pumps

Precision mechanics for pulse-free operation

To move the pusher of the VIT-FIT syringe pumps and the VIT-FIT HP high-pressure syringe pumps, we have selected a Swiss made motor which uses new technology to ensure very high torque and ten times longer lifetime.

For the transformation of the rotation into a linear movement required for pushing the syringe plunger, we have introduced the Swiss made ball screws with highest mechanical load capacity. This is an expensive component in our instrument, but it offers decisive advantages to the user in terms of efficiency and mechanical yield/force of the system. This is crucial for a pulsation-free operation.


Metal chassis and protection

The precise mechanics is protected in the instrument casing and the pusher arm does not reach out from one side (as it is usual with existing syringe pumps), but is integrated into the rear of the instrument.

The casing and the main body of the syringe pump are made of metal with solvent resistant protection.


Programming flow profile (infusion and filling)

The microprocessor electronics allow control of the activity of the syringe pump in an easy but effective way. The movement of the new brushless neodymium magnet motor is constantly under the control of the microprocessor, which corrects immediately any deviation from the preset speed.

Up to 99 program steps can be memorized by the processor. The syringe pump can be programmed in both directions – delivery (infusion) and filling, locally on the syringe pump control display.

The program can be repeated in 1 to 99 cycles or endlessly.

  • Constant flow rate: In this standard application of the syringe pump – the flow rate will be kept constant during the pre-selected time period
  • Profile: Permits varying flow rates to be pre-programmed (including exponentially increasing flow rate as used for e.g. in feeding cultures during fermentation, etc.)
  • Increment: Stepwise increase of the flow rate over time (to make gradients)
  • Decrement: Stepwise decrease of the flow rate
  • Pause: Stops the syringe pump for a specified time before going on to the next step
  • Timer: By programming a required time interval with zero flow rate as the first step before the program the syringe pump can be automatically switched on or off
  • Stop: Stops the syringe pump after the program has finished.

Safe switching power supply

As the mechanical losses are so small, we can use a miniature plug-integrated switching power supply using line voltages (from 95 to 240 V AC, 50/60 Hz).

During field application the syringe pump can be powered by a 12 V accumulator or a 12 V battery.

Automatic switch OFF

The motor of the syringe pump will be switched off automatically when the syringe is empty or has been refilled.

Remote control (analog and digital)

Several remote control possibilities of the syringe pump are available:

  • Simple ON/OFF (with a 3 to 12 V DC signal or higher with resistor)
  • Progressive speed control over the whole range signal 0 to 10 V DC, (0 to 20 or 4 to 20 mA option)
  • RS-485 or RS-232 interface (option) for communication with a PC or similar device

Speed selection / syringe calibration

To be able to fit the many types of syringes used, the speed selection is made using speed numbers corresponding to the velocity of the rotation of the motor.

The selected syringe has to be calibrated. This means that the motor speed setting (000 to 999) has to be put into relation with the delivered volume as a function of time (flow rate). The flow rates and delivered volumes corresponding to each speed setting are then easily calculated.