GE AKTA Pilot FPLC System
Flow Rate Range
4 to 400 ml/min (Up to 800 ml/min in Dual-Pump Mode)
Pressure Range
0 to 2 MPa (20 bar, 290 psi)
Wavelength Range
190 to 700 nm
- Supports pilot-scale purification, process development, and small-scale cGMP manufacturing
- Biocompatible, hygienic, and sterilizable to meet GLP and cGMP requirements
- Dual-module system pump enables accurate binary gradient formation
- Integrated air trap and air sensors protect columns by removing bubbles
- In-line UV, pH, and conductivity detectors with self-calibration for reliable monitoring
- UNICORN software offers method development, real-time control, and data analysis
- Stepper-motor-actuated valves provide precise fluid routing throughout the system
- Ideal for scaling lab processes to clinical and early production environments
- Compatible with a wide range of chromatography columns and media types
- Temperature-compensated pH monitoring ensures accurate readings during runs
- Detector flow cells are positioned to minimize band broadening and signal delay
- Pre-programmed method templates streamline media scouting and optimization
At the heart of the system are two high-precision peristaltic pumps: the P-907 system pump and the P-908 sample pump. The P-907 pump features dual modules (A and B) to enable highly accurate binary gradient formation, while the P-908 sample pump is a single-module configuration ideal for sample loading. Both pumps incorporate pressure sensors that continuously monitor pressure levels in the flow path to ensure optimal system performance and prevent overpressure events. The system accommodates flow rates ranging from 4 to 400 ml/min in standard operation, and up to 800 ml/min in dual-pump mode, supporting a wide range of scale-up scenarios. With a maximum operating pressure of 2 MPa (20 bar or 290 psi), the system is compatible with both low- and high-pressure chromatography columns, offering exceptional flexibility for diverse purification strategies.
The AKTA Pilot includes a network of stepper-motor-actuated membrane valves housed within nine individually configured valve blocks, each precisely controlling liquid routing through various stages of the purification process. A sample valve enables flexible inlet selection for loading, while inlet valves guide buffer solutions through a system of pressure sensors and air management components, including an air trap and dual air sensors, to eliminate air bubbles and protect sensitive downstream components such as chromatography columns. These built-in air management features are especially useful for preventing column damage and ensuring reproducibility during scale-up operations.
Downstream of the separation column(s), the system is equipped with an integrated array of detectors that provide continuous in-line monitoring of critical parameters. These include a sanitary pH electrode (range 0 to 14, validated between pH 2 and 12), a conductivity cell (range 1 uS/cm to 999.9 mS/cm), and a UV absorbance detector capable of monitoring up to three wavelengths simultaneously in the 190 to 700 nm range with 1 nm resolution. All detectors are self-calibrating and self-testing to ensure reliable and accurate performance. The pH and conductivity detectors are positioned in close proximity to one another, minimizing dead volume and reducing band broadening, while the conductivity cell includes a temperature sensor to enable real-time temperature compensation for pH readings. The UV cell, placed immediately downstream, enables detection of target molecules with high sensitivity and minimal delay.
System control and data acquisition are managed through UNICORN software, a comprehensive platform that enables method development, gradient control, detector monitoring, and data analysis in a single intuitive interface. The software includes pre-configured templates for common procedures such as media scouting and pH gradient optimization, allowing users to streamline the development of purification protocols. Fraction collection is handled by outlet valves that direct purified product or waste streams based on real-time signal data, enabling highly automated workflows. The system also allows for external device integration and advanced customization for specific bioprocessing needs.
With its sanitary design, rugged construction, and advanced fluid handling capabilities, the GE AKTA Pilot FPLC System is widely regarded as the gold standard for bridging research and production. It enables rapid scale-up of laboratory-developed methods into reproducible, scalable processes for the biopharmaceutical industry. Whether you're performing purification for clinical trial batches or developing robust manufacturing protocols, the AKTA Pilot delivers the precision, control, and compliance needed for demanding bioprocess environments.
All of our equipment is fully tested to perform at factory specifications before being shipped.
The GE AKTA Pilot FPLC System includes:
- > P-907 System Pump A
- > P-907 System Pump B
- > P-908 Sample Pump
- > In-line UV Detector
- > In-line Conductivity Detector
- > In-line pH Detector
- > Inlet Valve V1
- > Inlet Valve V2
- > Sample Valve V3
- > Air Trap Valve V4
- > Flow Direction Valve V5
- > Column Valve V6
- > Column Valve V7
- > Outlet Valve V8
- > Outlet Valve V9
- > Mixer w/ 5ml Chamber
- > 4 x Pressure Sensors
- > 2 x Air Sensors
- > Air Trap
- > Windows 11 Professional 64-Bit Data Station with Installed UNICORN Version 5.31 Software
- > Installation Calibration Report
- > Communication Cables
- > Tubing, Power Cords
- > Full 180 Day Parts and Labor Warranty
GE AKTA Pilot FPLC System Specifications
| Flow Rate Range | 4 to 400 ml/min |
| Dual-Pump Mode Maximum Flow Rate | Up to 800 ml/min |
| Pressure Range | 0 to 2 MPa (20 bar, 290 psi) |
| Wavelength Range | 190 to 700 nm in steps of 1 nm, 3 wavelengths simultaneously |
| Conductivity Range | 1 uS/cm to 999.9 mS/cm |
| pH Range | 0 to 14 (specifications valid between 2 and 12) |
| Maximum Viscosity | 5 cP |
| Dimensions (W x D x H) | 29.5 x 21.3 x 35 in. (75 x 54 x 90 cm) |
| Weight | 251 lb. (114 kg) |
| Electrical Requirements | 100-240V, 50/60Hz, 800VA |
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Computer Specifications |
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| Processor | Intel Core I5-8500 CPU |
| RAM | 32.0 GB |
| Hard Drive | 500GB Internal SSD |
| Operating System | Windows 11 Professional, 64-bit |
- Inspect all displays, replacing any dim or dead pixels to ensure optimal visual feedback
- Verify connections of all components via Uni-Net 1 & 2 interfaces for secure and reliable communication
- Check Uni-Net cables, replacing any faulty ones to ensure uninterrupted data transmission
- Replace all PEEK tubing with new OEM tubing and inspect all components within the flow path for potential clogs
- Confirm successful software interfacing with the FPLC system for seamless operation
- Replace pump piston seals, wash seals, and seal wash tubing, performing ultrasonic cleaning on each check valve in the pump flow path
- Replace UV lamp and perform internal inspection tests to confirm complete functionality
- Install a new pH probe and verify the conductivity cell for accurate readings
- Calculate and adjust delay volume in software to reflect system configuration
- Verify fraction collector alignment and calibration with 15mL, 50mL, and microplate receptacles to ensure accuracy
- Run installation tests and thoroughly document all findings for comprehensive record-keeping
Technician Inspection and Recertification Checklist: FPLC Systems
The Following Checklist Is to Be Performed on All Incoming and Outgoing Equipment| Task | Completed? | Remarks? |
| Inspect all displays and replace dim/dead pixels | Completed | |
| Verify connections via Uni-Net 1 & 2 interfaces | Completed | |
| Check and replace any malfunctioning Uni-Net cables | Completed | |
| Replace PEEK tubing with OEM tubing and check for clogs | Completed | |
| Confirm software interfacing with FPLC system | Completed | |
| Replace pump seals and wash tubing; clean check valves | Completed | |
| Replace UV lamp and confirm full functionality | Completed | |
| Install new pH probe and verify conductivity cell | Completed | |
| Calculate delay volume and update in software | Completed | |
| Verify fraction collector alignment with 15mL, 50mL, and microplate receptacles | Completed | |
| Run installation tests and document all findings | Completed |


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