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- Overview
- Specifications
- Accessories
- Citations
- Related Products
Overview
Now DISCONTINUED. Ask about the dual LEGATO 110 as an alternative.
This unique pump is really two pumps in one. Each side of the Gemini 88 has its own syringe rack, motor and leadscrew. The pump can infuse simultaneously at different rates, or infuse with one syringe and withdraw with the other. When combined with a valve box it provides continuous delivery.
The Gemini Syringe Pump offers continuous infusion or withdrawal, 24 hours a day, 365 days a year with the accuracy and low flow of a KD Scientific syringe pump.
Features
- Continuous delivery 24/7
- RS232 computer interface
- Daisy chain up to 100 pumps
- Wide variety of syringes from 0.5ul – 140ml
- High or low pressure
- CE certification
- TTL interface
- 57 lbs of linear force
- 12 month warranty
Specifications
#of Syringes: | 2 |
Accuracy | 0.35% |
Average Linear Force | 57 lbs |
Communications | RS-232, TTL |
Communications Level | 2 |
Depth English | 11.25 in |
Depth Metric | 28.6 cm |
Display | LED, 5 digit, numeric |
Flow Rate Maximum | 106.6 ml/min |
Flow Rate Minimum | 0.0004 μl/hr |
Height English | 6 in. |
Height Metric | 15.2 cm |
Input Power Connection | 36 VDC 1.4 Amps |
Motor | 2 motors, 1/2 to 1/4 microstepping, microprocessor controlled, 0.9° step angle |
Motor Stepping 1 | 1,600 at 1/2 stepping; 3,200 at 1/4 stepping Revolution of Lead Screw |
Net Weight English | 15lb |
Net Weight Metric | 6.8 kg |
Non Volatile Memory | Storage of all settings |
Pusher Travel Rate Maximum | 95.25 mm/min |
Pusher Travel Rate Minimum | 0.726699 μm/min |
RS-232 | RJ11-4 Connector |
Step Rate Maximum | 416.7 μsec/step |
Step Rate Minimum | 27.3 sec/step |
Step Resolution | 0.33 μm/step |
Syringe Size Maximum | 140 ml |
Syringe Size Minimum | 0.5 μl |
TTL | 9-pin connector |
Voltage Range | Selectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 Hz |
Width English | 12.5 in |
Width Metric | 31.1 cm |
Accessories
Citations
Huang, X. (2014). Evaluation of a polymethylpentene fiber mat formed directly on an anode as a battery separator. Journal of Membrane Science. Retrieved from https://www.sciencedirect.com/science/article/pii/S0376738814003779
Huang, X., Bahroloomi, D., & Xiao, X. (2014). A multilayer composite separator consisting of non-woven mats and ceramic particles for use in lithium ion batteries. Journal of Solid State Electrochemistry. Retrieved from https://link.springer.com/article/10.1007/s10008-013-2254-5
Huang, Y., Zhang, W., Xie, W., & Tang, D. (2013). Influence of ions on dynamic response of surface plasmon resonance fiber optic sensor. Sensors and Actuators B: …. Retrieved from https://www.sciencedirect.com/science/article/pii/S0925400513006886
Jin, B., Ko, E., Namkung, W., & Verkman, A. (2013). Microfluidics platform for single-shot dose–response analysis of chloride channel-modulating compounds. Lab on a Chip. Retrieved from https://pubs.rsc.org/EN/content/articlehtml/2013/lc/c3lc50821h
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