| 2025 | ||||
|---|---|---|---|---|
#73 | Complete | | Custom MIPI to USB SoM baseboard | Joe Pater, Toby Lane |
#72 | In progress | | Low-cost force feedback linear actuator | Lydia Hall |
#71 | Complete | | Automated force-feedback rig for characterising robotic skin | Lydia Hall, Aran Dasan, Amanda Matthes |
#70 | Complete | | 64-channel electrical impedance tomography hardware | Toby Lane, Phil Bladen |
#69 | In progress | | Testing high performance DIY air filters for biohardening | Miriam Eley, Tom Mullock, Matt Hall |
#68 | In progress | | Training supervisor hardware for analog machine learning system | Tom Searle, Amanda Matthes |
#67 | In progress | | GPU performance tracking at scale | Sam Maxwell, Sam Reynolds, Phil Bladen |
#66 | In progress | | Receiver side scintillometer electronics for Arctic heat flux measurement | Emily Hunt, Sam Maxwell, Toby Lane |
#65 | In progress | | High-Bandwidth Subsea Data Acquisition System | Thom Cousins, Phil Bladen, Sam Reynolds |
#64 | Complete | | Baseboard for Arctic unmanned surface vehicle | Sam Bailie, Toby Lane, Phil Bladen |
#63 | Complete | | Bioprocess switching and injection valves | Tom Green, Andy Graham, Lydia Hall |
#62 | Complete | | In-line magnetic stir mixer | Miriam Eley, Lydia Hall |
#61 | Complete | | Benchtop holographic imager | Alex Welbourne, Gwillym Rowbottom, Thom Cousins, Aran Dasan |
#60 | Complete | | High pressure syringe pump | Gwilym Rowbottom, Tom Green, Sam Reynolds, Charlie de Beaux |
#59 | Complete | | Electronics and control system for a colon phantom | Aran Dasan, Joe Pater, Oliver Enrico, Miriam Eley |
#58 | Complete | | Laser drivers for mass photometry | Thom Cousins, Sam Maxwell, Oliver Enrico |
#57 | Complete | | Ultrasound brain imaging system | Tom Searle, Joe Pater |
#56 | In progress | | Study on the performance of respiratory PPE. 100 public tests and counting | Mikey Vrieling van Tuijl, Thomas Milton, Nan Smart, Max Halliday, Tom Mullock, Andy Graham |
#55 | In progress | | In-line GMP compatible pressure sensor | Tom Green, Alex Petersen, Charlie de Beaux, Thom Cousins, Paddy Appelqvist |
#54 | Complete | | State of the art brain stimulation and recording system. | Thom Cousins, Alex Welbourne, Sam Maxwell, Emily Hunt |
#53 | Complete | | Prototype system for improving the welfare of shrimp slaughter | Amanda Matthes, Tom Green, Alex Petersen |
#52 | Complete | | AI Hardware [REDACTED] | Sam Reynolds, Phil Bladen, Tom Green, Andy Graham |
#51 | Complete | | [REDACTED] AI Datacenter [REDACTED] | Phil Bladen, Sam Reynolds |
#50 | Complete | | Advanced manufacturing system for [REDACTED] | Matt Farrow, Aran Dasan, Paddy Appelqvist |
#49 | Complete | | Scale-up bioreactor control electronics. | Tom Searle |
#48 | Complete | | RNA production [REDACTED] subsystem [REDACTED] | Lydia Hall, Amanda Matthes, Tom Green, Tom Searle, Paddy Appelqvist |
#47 | Complete | | In-line pH sensor for bioprocess | Lydia Hall, Toby Lane, Sam Reynolds, Charlie de Beaux, Emily Hunt |
#46 | Complete | | Micron precision electrostatic actuator. This invention will replace the stepper motor. | Paddy Appelqvist, Andy Graham |
#45 | Complete | | Electronics to mux both send and receive signals for ultrasound transducers. | Tom Searle |
#44 | Complete | | Power supply ripple injector board designed for measuring PSRR. | Thom Cousins |
#43 | In progress | | Powered air purifying respirator testing for The University of Oxford | Mikey Vrieling van Tuijl, Tom Milton, Andy Graham |
#42 | Complete | | RNA production [REDACTED] subsystem [REDACTED] | Lydia Hall, Amanda Matthes, Tom Green |
#41 | Complete | | Simulation suite for next-gen micro-hydraulic/electrostatic actuator. | Paddy Appelqvist, Andy Graham |
#40 | Complete | | 2kV arbitrary waveform power supply | Toby Lane, Amanda Matthes |
#39 | In progress | | Tamper responsive AI server tray | Phil Bladen, Sam Reynolds, Emily Hunt, Mikey Vrieling van Tuijl |
#38 | Complete | | 10kV Automated test rig for electrostatic artificial muscles | Tom Green, Tom Searle, Sam Reynolds |
| 2024 | ||||
#37 | Complete | | RNA production [REDACTED] subsystem [REDACTED] | Lydia Hall, Amanda Matthes, Paddy Appelqvist, Thom cousins, Tom Searle, Sam Reynolds |
#36 | Complete | | Chemical production plant electronics, GUI, and system control | Toby Lane, Sam Reynolds, Andy Graham |
#35 | Complete | | Pressurised bioreactor lid. | Andy Graham |
#34 | Complete | | Low-RTD continuous flow bioreactor. | Lydia Hall, Paddy Appelqvist |
#33 | Complete | | Low-cost air purifier. | Matt Farrow, Tom Green, Mikey Vrieling van Tuijl |
#32 | Complete | | FlexHEG demo box. Demo’d at the White House, Capitol Hill,[REDACTED], Samsung, UK AISI. | Phil Bladen, Andy Graham, Toby Lane, Ulyssean Inc. |
#31 | Complete | | Power supply for microbial electrolysis cells. | Toby Lane, Sam Reynolds |
#30 | Complete | | Modelling interventions to retrofit buildings for bioresilience. | Thomas Milton, Andy Graham, Sam Reynolds |
#29 | Complete | | Pilot plant for mesoporous silica production | Matt Farrow, Sam Reynolds, Toby Lane, Andy Graham |
#28 | Complete | | Upstream equipment for hydrogen electrolysis. | Andy Graham, Thom Cousins |
#27 | Complete | | Science and tech policy proposals. | Thomas Milton |
#26 | Complete | | 300L Reaction tank with closed loop PH control | Matt Farrow, Andy Graham, Toby Lane |
#25 | Complete | | 20 bar hydraulic filter press | Andy Graham, Matt Farrow |
#24 | Complete | | Internal PLC developed for use across projects | Thom Cousins, Amanda Matthes |
#23 | Complete | | 5 litre hand cranked filter press | Andy Graham, Matt Farrow |
#22 | Complete | | Power supply for a hydrogen electrolysis pilot plant. | Sud Sivanaswaren, Thom Cousins |
#21 | Complete | | Designing inflatable _____ __________ structures. | Thomas Milton, Andy Graham |
#21 | Complete | | Web platform for tracking industrial line performance anywhere in the world. | Phil Bladen |
#20 | Complete | | Automated system for adaptive laboratory evolution | Matt Farrow, Oliver Martin, Toby Lane, Sam Reynolds |
#19 | Complete | | A model for evaluating the impact of installing Far-UV lamps to suppress pandemics. | Sam Reynolds, Thomas Milton |
#18 | Complete | | Rotational bioreactor [REDACTED] and sealing system. | Andy Graham |
#17 | Complete | | 20kV handheld electrospinner. | Andy Graham, Toby Lane, Phil Bladen |
#16 | Complete | | Medical device software, zero to clinical trial in four weeks. | Phil Bladen |
#15 | Complete | | A [REDACTED] bioreactor for continuous RNA production. | Lydia Hall |
#14 | Complete | | RSTROB – A strobe driver for imaging railway tracks. | Phil Bladen, Oliver Martin |
| 2023 | ||||
#13 | Complete | | Design and custom electronics for a [REDACTED] [REDACTED] [REDACTED]. | Phil Bladen |
#12 | Complete | | High-speed DAC for [REDACTED] [REDACTED] [REDACTED]. | Phil Bladen |
#11 | Complete | | Spectrophotometry test-bed for bioprocess analytics | Matt Farrow, Oliver Martin |
#10 | Complete | | A continuous flow bioreactor for RNA production | Andy Graham |
#9 | Complete | | An autopassaging bioreactor that keeps cells in their exponential growth phase. | Andy Graham, Phil Bladen, Sam Reynolds, Thomas Milton |
#8 | Complete | | Pandemic transmission model to evaluate PPE performance. | Sam Reynolds, Andy Graham |
#7 | Complete | | In-line optical density meter. | Phil Bladen, Andy Graham |
#6 | Complete | | Industrial IoT system deployed in Belgium. | Phil Bladen |
#5 | Complete | | Portable 64 channel [REDACTED] for [REDACTED] [REDACTED] [REDACTED] [REDACTED]. | Andy Graham, Phil Bladen, Sam Reynolds |
#4 | Complete | | 100ml stirred tank bioreactor, developed in a week | Andy Graham, Phil Bladen, Sam Reynolds |
#3 | Complete | | A 660 and 850nm spectrophotometer. | Phil Bladen, Andy Graham, Thomas Milton |
#2 | Complete | | Custom wireless charger for an industrial IoT tracker. | Phil Bladen, Andy Graham |
#1 | Complete | | A proof-of-concept IoT tracker for f&b lines. | Phil Bladen, Andy Graham, Thomas Milton |