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Researcher UCL, Institute of Ophthalmology

I am really impressed by your very high level of customer service. I got a problem of our pump recently and contacted the service. Julian Williams replied me immediately and tried to resolve the issue with good suggestions. Meanwhile, she loaned me a pump which enabled me to carry out my experime...
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AL-8000

AL-8000

Aladdin SyringeONE:200 High Pressure (200 lb) Programmable Syringe Pump



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  • Specifications
  • Accessories
  • Citations
  • Related Products

Overview

AL-8000 Aladdin SyringeONE:200 High Pressure (200 lb) Programmable Syringe Pump

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AL-8000 Aladdin Pump Instruction Manual
/ Download as PDF

Built for Strength  

  • Fast prime and purge

  • Adjustable force dial

  • Program end points with two adjustable limit switches

  • Center Acme Leadscrew with a solid nut

  • Clamp lock holds syringe tightly in channel

  • Designed to hold large syringes up to 200mL

  • Dispensing accuracy to ± 1%

  • Easy-to-use keypad interface

  • Infusion and withdrawal

  • Fully programmable; automation capable

  • Operates stand-alone or computer controllable

  • Accepts external inputs to trigger events

  • Foot Switch  (optional) for hands-freeoperation

  • Network, control and monitor up to 100 pumps from one computer port

Channels 1
Type Infusion / Withdrawal
Flow Range 0.001 µL/hr (0.5 µL syringe) to 472.3 mL/min (200 mL syringe)
Dispensing Accuracy ±1%
Syringe Sizes Accepted 0.5 µL to 140 mL or 200 mL partially filled
Linear Force Ultra High (200 lb at low speed; 100 lb at maximum speed)

 

To meet the demands of a busy lab Aladdin Pumps offer exceptional value providing versatility and reliability for accurately dispensing media down into the nanoliter range.

The AL-8000 SyringeONE:200 High Pressure Programmable Syringe Pump is designed with stainless steel syringes in mind for applications with strong back pressure or higher fluid viscosity, such as emulsification processes. The syringe pump holds one syringe from 0.5μL to 140mL and up to 200mL when syringe is partially filled. The AL-8000 operates independently and is programmable through its keypad. It can be configured with complex programs with up to 41 pumping phases set to change pumping rates; set dispensing volumes; insert pauses; control and respond to external signals; sound the buzzer. (For Linear/Gradient programs use AL-8000X)

Pumping programs can be uploaded and controlled from a computer via an RS-232 Serial Port (RS-232 Pump-to-PC Primary Network Cable –purchase CBL-PC-PUMP-7). An RS-232 to USB Converter Cable is available (purchase CBL-USB232). A pumping program generator and terminal emulator software are available as freedownloads from our website. For advanced control, consider the SyringePumpPro software for configuration and control of multiple pumps, logging pump activity and sending commands to selected pumps.

Example flow rates

Syringe Size Maximum Rate Minimum Rate
0.5 µL 150.1 µL/hr 0.001 µL/hr
1 mL 311.3 mL/hr 1.726 µL/hr
3 mL 1317 mL/hr 7.306 µL/hr
5 mL 2193 mL/hr 12.17 µL/hr
10 mL 3577 mL/hr 19.84 µL/hr
20 mL 5689 mL/hr 31.54 µL/hr
30 mL 7421 mL/hr 41.15 µL/hr
50 mL 201.1 mL/min 66.9 µL/hr
140 mL 340.6 mL/min 113.3 µL/hr

Specifications

Syringe Size Maximum Rate Minimum Rate
0.5 µL 150.1 µL/hr 0.001 µL/hr
1 mL 311.3 mL/hr 1.726 µL/hr
3 mL 1317 mL/hr 7.306 µL/hr
5 mL 2193 mL/hr 12.17 µL/hr
10 mL 3577 mL/hr 19.84 µL/hr
20 mL 5689 mL/hr 31.54 µL/hr
30 mL 7421 mL/hr 41.15 µL/hr
50 mL 201.1 mL/min 66.9 µL/hr
140 mL 340.6 mL/min 113.3 µL/hr

Accessories

Citations

Camargo, C. de, & Shiroma, L. (2016). Turbulence in microfluidics: Cleanroom-free, fast, solventless, and bondless fabrication and application in high throughput liquid-liquid extraction. Analytica Chimica  …. Retrieved from https://www.sciencedirect.com/science/article/pii/S0003267016310492

Daulton, R., & Hintze, P. (2016). Instrument for Analysis of Organic Compounds on Other Planets. Retrieved from https://ntrs.nasa.gov/search.jsp?R=20160006046

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Our Clients Include:

GlaxoSmithKline
University College London
Novartis
Imperial College
University of Cambridge
University of Oxford

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