A two stage system, or a dual pulse system can have time of flight or time to target advantages in some specific use cases over a more traditional ramjet set up. But if powered flight duration is the driving factor (maximizing supersonic flight time above M 2 for example) then a throttleable ramjet is an excellent options though you are also going to be dealing with weight and drag penalties compared to something like a AIM-260 with a very clean configuration.Seems to me with a 2-stage missile (rocket) you could toss the 2nd stage up and over and it might still get there before the ramjet while having fuel in the 2nd stage for the endgame.
maybe it has trust vector ?Which was what led me to believe that the Aim 260 might not be as maneuverable as the Aim 120.
usually they dont put TVC on long range missilesmaybe it has trust vector ?
Thrust vectoring in missiles works essentially works in 2 steps, first the thrust vectoring is used to make the whole missile point in a direction and then thrust is used to accelerate in that direction.maybe it has trust vector ?
The main focus of ASRAAM was speed and range, their idea was to strike first, before the enemy enter the engagement zone of its IR missileThis is why the ASRAAM doesn't have thrust vectoring
And what about the fins efficiency in very high altitude (a long range AA missile used a bell shaped trajectory, reaching high altitude where air is very thin) ?Thrust vectoring in missiles works essentially works in 2 steps, first the thrust vectoring is used to make the whole missile point in a direction and then thrust is used to accelerate in that direction.
So thrust vectoring isn't useful when you have little DeltaV left and overall is not useful at range.
Having rear fins with a big range of motion allows the missile to reach high angles of attack without wasting burn time and combined with a second pulse would be more efficient to increase kill probability.
This is why the ASRAAM doesn't have thrust vectoring, it's fins have a huge range of motion so they can stay paralell to the air flow at high angles of attack and take advantage of the fact that the center of gravity of the missile further back when they still have fuel so they are more maneuverable at that stage.
Also the reason why all modern missiles use rear fins instead of canards to maneuver.
You are right. I was nearly sure ASRAAM has thrust vectoring... I was wrong.The main focus of ASRAAM was speed and range, their idea was to strike first, before the enemy enter the engagement zone of its IR missile
There was a P3I variant that did but it was cancelled.You are right. I was nearly sure ASRAAM has thrust vectoring... I was wrong.
Money probably.Any idea as to why it was cancelled Forest Green? It would have made an excellent pair with the non thrust vectoring ASRAAM I would have thought.
Yet it can hit targets in the rear hemisphereThe main focus of ASRAAM was speed and range, their idea was to strike first, before the enemy enter the engagement zone of its IR missile
You sure about that? Never heard that claim for anything other than Python 4/5.Yet it can hit targets in the rear hemisphere
https://defenceweb.co.za/aerospace/aerospace-aerospace/raaf-scores-a-first-with-asraam/You sure about that? Never heard that claim for anything other than Python 4/5.
This was a requirement in response to the AA-11 Archer being abe to be fired rearward.You sure about that? Never heard that claim for anything other than Python 4/5.
Broadly speaking, only the French really demonstrated it, and conditions appear to mean it's more of a flex rather than a useful capability (buddy/datalink targeting between two aircraft in a stable horizontal flight).
Yes but the AA-11 was pointed backward on the pylon and fired that way.This was a requirement in response to the AA-11 Archer being abe to be fired rearward.
However, the ASRAAM had to be cued via helmet/sensor input and needed midcourse feed for this to work. So it's missing a setting to autmatically turn around and engage. This would have been time consuming and since this is meant for close knife fight/defensive move that delay woud have been fata.
never said ASRAAM have bad maneuverability or something in this line, it is said it can pull up to 50G's, but if the MAIN goal of it was maneuverability, it would have adopted TVC or fins like Python 4 or 5Yet it can hit targets in the rear hemisphere
There is a video where the R-73 shoots forward and turns 180 degrees through the topYes but the AA-11 was pointed backward on the pylon and fired that way.
MICA also do it.You sure about that? Never heard that claim for anything other than Python 4/5.
Overall ASRAAM and some other missiles (up to 2-3t monsters) are good examples that this setup is maneuverable.Which is that it's layout seems similar to AIM-260, and that is more about efficiency of design for the flight profile.
Would be a nice surprise on CCAs.Lol
Or that simply the missile enters field service with unit flying aircraft without any internal carriage... In other words, what can't be hidden will best remain in plain sight.![]()
Would be a nice surprise on CCAs.![]()
Confirms our reporting from November 2025Australia is said to be buying AIM-260
https://aviationweek.com/defense/mi...a-buy-aim-260-joint-advanced-tactical-missile
Interesting on the nose shapeView attachment 821039
If assuming the length and diameter are the same, it will look something like this.
Almost looks like the ogive on the bottom side extends further back, what's the seeker arrangement? Conformal umbilical?Interesting on the nose shape
The red strake bugs me, we've only seen one side of the missile but if it is a vortex generator there must be another on the other side and the missile must have roll control and bilateral symmetry.Nothing really new since we got the first renders - much longer motor, assuming banding is accurate, much smaller warhead assuming same, and less volume for guidance and electronics. Shape is minority more aerodynamic with small control surfaces forward, likely fixed vortex generators.
It seems to have a regular data link antenna protruding from the rearIt does seem to sport a lot of RF arrays. I would assume forward ones are TDD/guidance related and less radial examples in the rear datalink related.