Integrated Test Campaign 2025
Three burns in September 2025: a 7 s full-duration burn measured at 3.99 kN peak, and a 5.58 kN peak on the last.
The whole vehicle, horizontal
Astron Systems, 16 to 20 September 2025. Engine 1 had already proved itself on AEL's test cell in January; this time it fired as part of HyPower's complete 2025 launch vehicle stack, the flight tank standing vertical and the engine lying horizontal on the Astron stand. The point was the vehicle, not the engine: could the stack run its own engine for a full burn, and did the thrust curve get us off the rail fast enough for EuRoC? Three burns over the week answered both.



Built in Bristol, fired at Westcott
The fluid panel, the run panel and the harness were built and cold-flowed in Bristol, then driven to Westcott and rebuilt in Astron's high-thrust bay: tank up the back wall, engine on a plate at floor level, every line re-made and leak-checked in place. Two of the five days went on that.






Hotfire 1: one second on a part-empty tank
A nitrous leak during fuelling left the tank part-filled by the time we committed to the count. The engine lit off the sparkler and ran for about 1 s, peaking at 3.7 kN, before the oxidiser was gone. Chamber pressure got to 17.6 bar, close to the 20 bar design point, which said the engine was fine and the problem was upstream of it. Not the burn we wanted, but the first time the full stack had fired end to end.
Hotfire 1, frame by frame
Ignition, the plume forming, the second it ran, and the tail-off as the tank emptied.




Hotfire 2: seven seconds
Full duration. The load cell measured 3.99 kN at the peak about a second in, decaying to 3.0 kN as the tank blew down, 3.50 kN mean and 24.7 kN.s of impulse over the burn. This was the data the qualification rested on: with the measured thrust curve in OpenRocket the vehicle leaves the rail at 30.7 m/s, against the 30 m/s EuRoC requires, with a stability margin of 1.52.
Seven seconds, frame by frame
Stills from the Hotfire 2 burn in order, from the ignition sparks through the seven seconds as the evening light goes. The plume holds its shape to the end while the sky behind it goes from grey to dusk.












Hotfire 3: 5.58 kN
For the last burn we took the regulator up to 50 bar. Another partial fill, so it ran only 0.86 s, but it peaked at 5.58 kN, the highest thrust the stack produced all week, and it lit the whole cell. On that thrust the off-rail speed comes out at 34.9 m/s. The nitrous tank shows 52 bar at the count and chamber pressure spikes to 25.8 bar, well past the 20 bar design point, before the part-filled tank runs out from under it.




Measured, not just modelled
The stand gave us two independent records of the same burn: a load cell on the thrust structure, and ten pressure transducers on a Raspberry Pi. Feeding the measured injector pressure drops through an orifice model, incompressible on the IPA side and a Dyer non-homogeneous blend on the nitrous side, reproduces the load cell to within 3% at the peak and 8% on the mean, and puts the mixture ratio at 3.08 against a design 3.0. Two methods, one answer, which is the only reason to trust either. The load-cell log in the DAQ folder covers Hotfire 2 only; Hotfire 3's 5.58 kN is the report's own load-cell figure, and the model reads under it, which is what a 0.9 s start-up sampled at 10 Hz will do.
Every channel, second by second
Hotfire 2 and Hotfire 3 in full: thrust, propellant mass flows, mixture ratio, and the injector and tank pressures behind them. The shape of the week is in the bottom panels, a nitrous tank blowing down from 42 bar over seven seconds on one burn and from 52 bar in under one on the other.
Five cameras on one week
The bay was covered from inside and out: a fisheye at the back wall looking downrange, a camera at ground level across the gravel, two close on the engine, and a wide from outside. Between attempts the engine vents nitrous, cold and silent, which is most of what a test week actually looks like.
The week, cut together
The team's own edit of the campaign, every angle in order.