The topic of ADF and DME integration in the G1000 seems to be a source of misunderstanding, so I will try to make the situation a bit more clear for anybody.
At first, you must know that ADF and DME are not part of the standard G1000, but are options. One bad consequence of this is the way they are integrated. At audio box level, there are keys for turning their audio on or off, but all the rest goes through soft-keys and the FMS knobs.
Typically, tuning and ADF frequency needs the following steps:
1) Press the ADF / DME softkey
2) Go in the frequency box
3) Change the frequency with the FMS knobs
4) Press enter to validate the new frequency
5) Press enter to activate the new frequency (flip-flop)
6) If needed, use the FMS knobs to adjust the audio volume
Not exactly simple, isn'it ?
The same kind of procedure is needed to switch DME from NAV1 to NAV2 receivers. Because of this, the school where I trained decided to always fly with the DME coupled to NAV1, to avoid too complex and lengthy manipulation in flight.
Something else that is not possible with the G1000 is to have two simultaneous display of the ILS. I know many people tuning NAV1 and NAV2 on the ILS while flying with classical instrumentation, so as to be able to continue in case of receiver failure during the approach. As the G1000 has only one HSI, this is not possible. Nevertheless, you can tune the ILS on the two NAV boxes, and in one fail it is possible to switch the HSI source with one soft-key click.
Showing posts with label G1000. Show all posts
Showing posts with label G1000. Show all posts
Sunday, August 26, 2007
Wednesday, August 22, 2007
DA 50 update
Diamond air recently posted more information about the DA50 SuperStar on their website, it is even possible to reserve one ! I won't recopy all of the information here, but I just want to highlight some points.Unlike the DA40 and DA42, the DA50 will have a dual G1000, with two PFDs and one central MFD. This is possible because Diamond moved the circuits breakers on the ceiling.
The engine will be a 350 HP turbo continental, controlled by a FADEC.
The prop is not yet defined, and could be 3 or 4 blades. It won't be pressurized, but offers built-in oxygen, and TKS de-icing as well as a parachute are optional.They announce a speed of 200+ kts in the low flight levels, which seems credible, depending the definition of "low", but the PA46 familly has the same performance, with pressurization.
DA50 is a five seater, but Diamond call it 4+1, as the 5th seat is between the two normal back-seats, which is the way the automtive industry is doing for years, so one more time Diamond re-use automotive ideas.
Begin a modern aircraft, the DA50 will include some goodies, like an MP3 player, and other gadgets.
Tuesday, August 7, 2007
IFR in IMC in a DA40 with G1000
IFR is about two things: flying according to procedures, and being able to maintain the plane attitude using instruments only. Procedures can be trained in simulator and in flight. Simulator and simulated IMC can give a base for flying in clouds, but nothing is like the real thing. When I made my G1000 training on a DA40, and then my IR(A) renewal, I did not had the opportunity to fly actual IMC.
I returned to Cannes Aviation recently, for some pleasure flying in south-eastern France. While in cruise a flight level 90, I flew through a perfect IPL (IMC practice layer). It was a stratus layer, approximately 800 feet thick, exactly centered on my flight level. I remained in that layer for about 20 minutes, having my first actual IMC with a DA40 / G1000.
After a few minutes using autopilot to get re-used to IMC, and practice my scanning, I disconnected the AP and flew manually. The first feeling was a strong nose down attitude, which was purely resulting from disorientation. The huge sky / earh line on the PFD confirmed that I still was flying straight and level.
Scanning the G1000 is really easy, because any attitude change is made obvious by the PFD. The slightiest roll movement results in the screenwide horizon line moving, and this is immediately noticeable. In pitch, the scale is quite wide as well, so any change is easy to detect. Flying in clouds with an accuracy of +/- 20 feet was really easy, even with the very sensitive wing of the DA40.
As a conclusion, the G1000 held all its promises when dealing with the hardest aviavion task, single pilot IFR in IMC.
I returned to Cannes Aviation recently, for some pleasure flying in south-eastern France. While in cruise a flight level 90, I flew through a perfect IPL (IMC practice layer). It was a stratus layer, approximately 800 feet thick, exactly centered on my flight level. I remained in that layer for about 20 minutes, having my first actual IMC with a DA40 / G1000.
After a few minutes using autopilot to get re-used to IMC, and practice my scanning, I disconnected the AP and flew manually. The first feeling was a strong nose down attitude, which was purely resulting from disorientation. The huge sky / earh line on the PFD confirmed that I still was flying straight and level.
Scanning the G1000 is really easy, because any attitude change is made obvious by the PFD. The slightiest roll movement results in the screenwide horizon line moving, and this is immediately noticeable. In pitch, the scale is quite wide as well, so any change is easy to detect. Flying in clouds with an accuracy of +/- 20 feet was really easy, even with the very sensitive wing of the DA40.
As a conclusion, the G1000 held all its promises when dealing with the hardest aviavion task, single pilot IFR in IMC.
Labels:
Cannes,
DA40,
Diamond Star,
G1000,
Garmin 1000,
glass cockpit,
IFR,
IMC
Saturday, April 28, 2007
G1000 - Get rid of the six-pack
Apart from plastic body (still no news about the gelcoat problem...) and plastic engine, the bigger change recently is certainly the plastic instruments - a.k.a glass cockpits.
This change has been made in steps, from years now, but the revolution is now complete.
One of the first step was probably electronic HSI like sandel tubes, which presented HSI on a small CRT tube, with additional route information. In parallel, GPS coupled with databases like the famous GNS 430 / 530 familly did bring moving maps in our cockpits.
An other step was the introduction of "low cost" inertial devices, allowing to replace the good old mechanical gyros, providing electronical attitude information.
Mix all of that together, and you obtain a G1000. I won't say a lot here on concurent product like Avidyne Entegra as I have no flying experience with them. However one must note one advantage of the G1000 over its competitors: it is the only one to integrate GPS and COM/NAV boxes. With Avidyne, it is still necessary to have separate GNSs.
So, when you fly a glass cockpit plane, the classical six instruments are all represented symbolically on the screen in front of you. And by represented, I don't mean "replicated as the mechanical". Typically, speed and and altitude indicators are in form of sliding tapes, not with round dials and needles.
My progression during the conversion to G1000 was in steps:
1) Get used to the HUGE attitude indicator that fills the whole screen
2) Find where information is
3) Sort out where the knobs are
4) Fly the bugs, not the figures
All of them will be detailled later, but here are a few words on each.
1) The vertical displacement corresponding to a given pitch change is much larger than on a classical horizon. This can be disturbing, when you're used to move your horizon by a few millimeters, to move it by centimeters to establish climb attitude.
2) Any IFR pilot is used to the T layout. This no longer exists with G1000, and even if the reading of the Primary Flight Display (PFD) is logical and easy, some training is needed.
3) In an electromechanical cockpit, each knob is situated in the corresponding instrument, i.e. baro setting on the altimeter, HDG bug and CRS selector on the HSI. As information is on the screen of the G1000, the knobs are all grouped on the side. Finding the proper knob can not be based on the instrument location, and there is noting worse than turning the baro setting instead of the CRS selector (based on my own experience...)
4) Even when flying with classical instrument, what we look at is the position of the needle, in the geometrical sense, not the actual values. Typically, when maintaining an altitude in cruise, one just manage to keep the needle vertical. This seems obvious, or even silly, but when flying with a G1000, there is no such thing, but a vertical tape with a bug you can set. The equivalent of keeping the needle vertical is to keep the bug aligned. Trying to interpret the figures displayed beside the tape is just not possible, and will lead to serious delay in the scanning.
As mentionned eariler, I will develop all of these topics, but the first conclusion is that conversion to G1000, even for VFR only, requires both theoretical and practical training. This is not an easy transition.
SyS
This change has been made in steps, from years now, but the revolution is now complete.
One of the first step was probably electronic HSI like sandel tubes, which presented HSI on a small CRT tube, with additional route information. In parallel, GPS coupled with databases like the famous GNS 430 / 530 familly did bring moving maps in our cockpits.
An other step was the introduction of "low cost" inertial devices, allowing to replace the good old mechanical gyros, providing electronical attitude information.
Mix all of that together, and you obtain a G1000. I won't say a lot here on concurent product like Avidyne Entegra as I have no flying experience with them. However one must note one advantage of the G1000 over its competitors: it is the only one to integrate GPS and COM/NAV boxes. With Avidyne, it is still necessary to have separate GNSs.
So, when you fly a glass cockpit plane, the classical six instruments are all represented symbolically on the screen in front of you. And by represented, I don't mean "replicated as the mechanical". Typically, speed and and altitude indicators are in form of sliding tapes, not with round dials and needles.
My progression during the conversion to G1000 was in steps:
1) Get used to the HUGE attitude indicator that fills the whole screen
2) Find where information is
3) Sort out where the knobs are
4) Fly the bugs, not the figures
All of them will be detailled later, but here are a few words on each.
1) The vertical displacement corresponding to a given pitch change is much larger than on a classical horizon. This can be disturbing, when you're used to move your horizon by a few millimeters, to move it by centimeters to establish climb attitude.
2) Any IFR pilot is used to the T layout. This no longer exists with G1000, and even if the reading of the Primary Flight Display (PFD) is logical and easy, some training is needed.
3) In an electromechanical cockpit, each knob is situated in the corresponding instrument, i.e. baro setting on the altimeter, HDG bug and CRS selector on the HSI. As information is on the screen of the G1000, the knobs are all grouped on the side. Finding the proper knob can not be based on the instrument location, and there is noting worse than turning the baro setting instead of the CRS selector (based on my own experience...)
4) Even when flying with classical instrument, what we look at is the position of the needle, in the geometrical sense, not the actual values. Typically, when maintaining an altitude in cruise, one just manage to keep the needle vertical. This seems obvious, or even silly, but when flying with a G1000, there is no such thing, but a vertical tape with a bug you can set. The equivalent of keeping the needle vertical is to keep the bug aligned. Trying to interpret the figures displayed beside the tape is just not possible, and will lead to serious delay in the scanning.
As mentionned eariler, I will develop all of these topics, but the first conclusion is that conversion to G1000, even for VFR only, requires both theoretical and practical training. This is not an easy transition.
SyS
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