Harvard Apparatus
Harvard Apparatus 11 Pico Plus Elite Syringe PumpDelivery and duties paid, now live for the UK — local shopping experience, no surprise fees!
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Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Support by a team of engineers & PhDs
Whereas standard ChipShop connectors only accept soft-walled tubing, this set of connectors allows connecting any 1/16" OD rigid tubing to a ChipShop chip.
Suitable for rigid tubing (PTFE, PEEK, etc.) with an OD of 1/16" (1.6 mm). Manufactured in blue TPE, max. pressure of 3.2 bar with a 1/16" OD PEEK tubing.
Plugs to block unused ports are also available in our shop.
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The Harvard Apparatus 11 Elite syringe pump delivers a flow from 1.28 pl/min to 88.28 ml/min (single syringe version) or 1.26 pl/min to 26.02 ml/min (dual syringe version) at high accuracy (± 0.5%) and reproducibility (± 0.05%). This precision syringe pump offers unparalleled ease of use with a high-resolution color touchscreen.
The Harvard Apparatus 11 Elite syringe pump is available in two versions:
The single syringe rack holds 1 glass or plastic syringe from 0.5 μl to 50/60 ml, while the dual syringe rack holds 2 glass or plastic syringes from 0.5 μl to 10 ml.

The pumps are versatile and can be interconnected through the RS-485 interface. Up to 99 pumps can be linked together! This interface is easy to use provided each pump is assigned its own unique pump address.
For limited laboratory space, the Harvard Apparatus 11 Elite syringe pump can be placed on its side to reduce the footprint by 55%. The display can also be tilted to allow the user to operate the pump vertically.
Advanced micro-stepping techniques reduce the step angle and eliminate flow pulsation.
The high-resolution LCD touch screen with an intuitive icon interface grants users unparalleled ease of use. You can create, save and run both simple and complex multi-step pumping methods without a PC then clearly monitor all key parameters displayed directly on the touch screen interface.
These programmable models offer maximum flexibility and capability for configuring and running different Methods. Methods can be configured and stored in the unit, and recalled quickly with the touch of the screen.
Extensive programming options allow the user to duplicate configurations, append one configuration to another, rename Methods, delete Methods, export Methods to a PC or export a Method to another pump. This feature can ensure consistency and accuracy of multiple pumps.
The Harvard Apparatus Existing Methods and User Defined Methods consist in Pump Operation Profiles that can be selected along with a syringe selection, commands, and I/O triggers to create a Method. There are four Pump Operation Profiles available for selection:
These pre-programmed profiles can be selected for quick and easy configuration of the pumps. If more complexity is needed a User Defined Method can be made up of the pump operation profiles with up to 50 individual steps consisting of the following commands:
Methods can be named with a 15-character alphanumeric name for easy identification and stored on a computer for later retrieval. Methods can be edited, renamed, deleted, appended to one another, and exported to other pumps, giving maximum flexibility and control to the syringe pump users.
Pump status
Quickly and easily monitor the status of whether each of your pumps is ready, off-line or detecting an error, notifying you to check the connections.
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The Harvard Apparatus Pump 11 Elite series offers a multitude of connection options for controlling and programming the syringe pumps. It has a USB serial port for computer control, a footswitch input port, RS-485 ports for daisy chaining pumps, and a digital input/output for external control through a computer or other device. Pumps can also be daisy-chained using the optional RS-232 (RJ-11) ports (inquire about this option!).
| Type | Microprocessor Dual Syringe, Infusion/Withdrawal Programmable |
| Accuracy | ± 0.5% |
| Reproducibility | ± 0.05% |
| Syringe |
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| Flow Rate |
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| Display | 4.3” WQVGA TFT color display with touchscreen |
| Drive Motor | 0.9° Stepper Motor |
| Motor Drive Control | Microprocessor with 1/16 microstepping |
| Number of Microsteps per one rev. of Lead Screw | 15360 |
| Step Rate |
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| Pusher Travel Rate |
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| Connectors | RS-485: IEEE-1394, 6 position |
| USB | Type B |
| I/O & TTL | 15-Pin D-Sub Connector |
| Footswitch | Mini Phono Jack |
| Average Linear Force | 16 kg (35 lbs) @ 100% Force |
| Step Resolution | 0.069 μm/μstep |
| Input Power Connection | 2.5 mm ID x 5.5 mm OD male plug |
| Input Power | 12-30 VDC |
| Power Supply | 100 to 240 VAC, 50/60 Hz, 18 Watts Universal Power Supply, Use Only a Harvard Apparatus Approved Power Supply and Line Cord |
| Dimensions (H x W x D) | 22.6 x 17.78 x 15 cm (9 x 7 x 6 in) |
| Weight | 2.1 kg (4.6 lb) |
| Regulatory Certifications | CE, ETL (UL, CSA), WEEE, EU, RoHS & CB Scheme |
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