
2
Contents
GENERAL................................................................................................................... 3
OVERALL PLAN ......................................................................................................... 4
TECHNICAL DESCRIPTION ...................................................................................... 5
MATERIALS................................................................................................................ 8
TECHNICAL SPECIFICATIONS ................................................................................. 9
HARNESS................................................................................................................... 9
CHECK ON A NEW PARAGLIDER .......................................................................... 10
ADJUSTING BRAKE LINES ..................................................................................... 10
FLYING THE EDEN 5 ............................................................................................... 11
TOWING ................................................................................................................... 15
MOTORISED FLIGHT............................................................................................... 15
EXTREME FLYING MANOEUVRES ........................................................................ 15
RAPID DESCENTS................................................................................................... 19
LOOKING AFTER YOUR PARAGLIDER.................................................................. 21
FULL LINE LENGTHS .............................................................................................. 23
LINE PLANS ............................................................................................................. 24
LINE PLAN EDEN 5.................................................................................................. 25
LENGTH OF LINE EDEN 5....................................................................................... 26
MANUAL FOR PARAGLIDER CHECKS................................................................... 28
TREATING NATURE WITH RESPECT .................................................................... 29
CHECKS ................................................................................................................... 30
TEST FLIGHT CERTIFICATE................................................................................... 31
Technical data........................................................................................................... 31

3
GENERAL
Dear MAC PARA pilot
We congratulate you on your purchase of a MAC PARA paraglider. Extensive
development work and numerous tests make the Eden 5 a very high performance
paraglider with maximum possible safety. The Eden 5 is constructed for thermal and
cross-country flying, and will enable pilots to get maximum enjoyment. The Eden 5 offers
very easy inflation and simple ground-handling characteristics by take off, excellent
handling in flight and easy landing. Please read this manual carefully before you start,
this way you will get the most out of your glider. MAC PARA wish you many pleasant
flights with your Eden 5.
Please read this manual carefully and note following details:
Paragliding is a sport, which demands, besides the optimum equipment, a high degree of
attentiveness, good judgement, and theoretical knowledge. Paragliding can be a
dangerous sport, which may lead to injury and death. This paraglider meets at the time of
delivery requirements of the EN (European Norm) 926 or LTF (German Certificate of
Airworthiness). Any alternations to the paraglider will render its certification invalid! The
use of this paraglider is solely at the user’s own risk! Manufacturer and distributor do not
accept any liability. Pilots are responsible for their own safety and their paraglider
airworthiness. The paraglider carries no warranty! The author assumes that the pilot is in
possession of a valid paragliding licence for glider’s category, insurance etc.
Before delivery, as well as during production, each paraglider goes through a strict visual
inspection, and is test-flown by your dealer. Stamps on the placard, together with a
completed test-flight certificate, confirm this. Check that the paraglider has been testflown before your first take-off. If it has not, consult your dealer.
Any inadequate use or misuse increases the risks considerably. The Eden 5 must not be
used outside the certified weight range. The Eden 5 must not be used during rain or
snow-fall. The Eden 5 must not be used in high or gusty winds. The Eden 5 must not be
used in cloud and fog. The Eden 5 must not be used by pilots without sufficient
knowledge or experience.
If, after carefully reading this handbook, you still have questions, suggestions or criticism
regarding this product do not hesitate to contact your dealer or us. We will be glad to help
and advice.
MAC PARA wish you many pleasant flights with your
Eden 5
Version 2.0 Stand 20.10.2013

4
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Operating limits
The Eden 5 is light sport aircraft with an empty weight of less than 120 kg in the category
paraglider. The Eden 5 has been tested by certification laboratory European Para
Academy to LTF/EN-B category. The Eden 5 is certified for solo flight. The Eden 5 has
been load and shock-tested and passed with a load corresponding to 8G of the maximum
weight in flight 145 kg. Its flying tests have shown that the glider remains stable and
controllable over a wide range of normal and abnormal flight conditions. Nevertheless,
turbulence and gusting winds can lead to a partial or complete collapse of the canopy.
Therefore never fly in such conditions.
Any changes made to this paraglider invalidate the certificate of airworthiness.
OVERALL PLAN
Trailing edge
Leading edge
Brake handle
Main karabineer
Rapid links
Main lines
Riser
Main brake line
Brake line
Stabilizer line
Top surface
Bottom surface
Glider’s label on the
central main rib
Stabilizer

5
TECHNICAL DESCRIPTION
Construction of the canopy:
The canopy of the EDEN 5 consists of 52 cells over the wingspan. The wingtips are
slightly pulled down and this produces a kind of stabilizer. The Eden 5 is combination of
two and third rib diagonal-construction paraglider. Every second or third main rib is
attached to the 3 or 4 suspension lines. Between these main suspension ribs,
intermediate ribs are suspended by diagonal ribs. These diagonal ribs lead to top surface
of canopy. This construction ensures a smooth top surface and precise airfoil
reproduction. The internal reinforcements maintain the precise form of the canopy and
provide stability. The cell openings on the under-surface of the profile’s nose provide
airflow into the glider. Stretch resistant flares, integrated with diagonal ribs at the
suspension points, ensure an even distribution of load throughout the canopy. A stretch
resistant Mylar reinforcements combined with plastic rods on the leading edge help to
keep airfoils in right shape and this guarantees a high level of stability. Large cross spots
allow effective airflow inside the canopy, providing good re-inflation without reducing the
profile accuracy. The Eden 5 is made of the proven Nylon fabrics Porcher Sport Skytex
Rip-stop 9017 E32A, 9017 E38A and 9017 E29A. Like any synthetic material, this can
deteriorate through excessive exposure to UV.
Rigging system:
The lines of the Eden 5 are made of proven strong and stretch resistant covered
Aramid/Kevlar lines and non covered Dynema and Vectran lines. The entire rigging
system comprises individual suspension lines looped and stitched at each end. The
sheathed Aramid and unsheathed Dynema and Vectran lines cascade unsheated lines
have strengths from 65 kg up to 280 kg.
The suspension lines are comprised of “cascaded top lines” (attached to the undersurface),”cascaded middle lines” (cascade 2 to 2 top lines together on middle main lines),
and “main lines”. Main lines lead to the “quick link” (a Maillon which connects lines and
risers). The “stabilizer lines” connect the upper stabilizer lines on the outer suspension
points with the quick link. The”brake lines” are not load carrying suspension lines. They
lead from the trailing edge of the canopy to the main brake lines and run through the
pulleys on the C-risers to the brake handles.

6
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A mark on the main brake line indicates the position of the brake handle. This adjustment,
on the one hand, allows sufficient brake to be applied during extreme flying situations and
when landing, while on the other hand, this ensures that brakes are not permanently
applied to the canopy (especially when fully accelerated). This trimming should not be
altered. For differentiation purposes the main A-lines are coloured red, the main brake
lines are orange, all remaining main lines are yellow. Also the main suspension loop, on
the bottom of the riser, is covered red. This is where the main karabiner should be
hooked in, which then in turn connects the risers to the harness.
The Eden 5 is equipped with 4 risers per side (A, A1, B, C). The two central A-lines per
side are attached to the main A-risers while outermost A main lines are attached to
A1 risers. The 3 B-main lines and the stabilizer lines are attached to the B-riser.
The 3 C-main lines to the C-riser. The main brake lines leads through the pulleys on the
C riser.
The line connections are made to triangular Maillons (quick links) fitted with a rubber ”oring” in the form of a ”figure eight” which prevents any slipping of the lines on the quick
link. See line plan for details.
Speed system:
The Eden 5 is equipped with a stirrup operated speed-system, which returns
automatically to normal position when the stirrup is released. The serial risers of the Eden
5 do not have a lockable trimmer.
The speed system affects the A-, A1- and B- risers and changes the angle of attack. In
normal flight all risers have an overall length of 49,5 cm without quick links. When the
stirrup is pushed out the A-risers are shortened by up to a maximum of 14 cm,
the A1-risers are shortened by up to a max of 14 cm, the B-risers by up to a max. of
11 cm, the C-risers retain their original length. These measurements influence the
certification! An incorrectly fitted speed system causes loss of certification!
Fitting the speed-system:
Most modern harnesses have pulleys attached for speed system fitting. In case not, it is
important to attach pulleys (sewn on tabs) in such a way that they allows the pilot to
maximize the power vector of his / her legs without ”pushing back” in the harness.
The Eden 5 speed system, including Brummel-hooks supplied, must be assembled as per
instructions. The speed system cord is firmly attached (use bowline or other nonslip knot)
to the foot stirrup (webbing or alloy bar). The other end of the cord is run through a pulley
on the harness and then in an upward direction to be then firmly attached to the
Brummel-hooks! The length of the cord leading to the stirrup should be adjusted so that it
is easy to put your feet into the stirrup in flight but still short enough to allow full speed
system travel. (Use of 2 stirrups in a ladder fashion can enable you to reach the full range
if your legs are not long enough.) Ensure both cords on the stirrup are of equal length, to
avoid putting a turn in the glider.

7
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Test your speed system for the correct length of cord on the ground first (simulating flying
position), with your harness and risers, before flying with it! The full range is reached
when the 2 pulleys join together.
Before launch, attach the paraglider’s risers to the harness with the main karabiners.
Then attach the ”Brummel-hook” on the end of each speed system cord to the Brummel
hook on the end of the cord which runs through the 2 pulleys on the A risers. Ensure that
the speed system is untangled and operates freely before flying!
Riser
Color
marking
Loop for main
karabineer
Trimm postition
Accelerated
Brake handle
Change of the
an
le of attack
A A1 B C Br
A
A1 B C Br
Brakeline
pulley
press buttons
Slower

8
MATERIALS
Tissue
(PORCHER SPORT, Rue du Ruisseau B.P. 710,38290 ST. QUENTIN FALLAVIER, FRANCE)
Top Sail - Leading Edge - SKYTEX 40 E32A - 100% nylon 6.6 , 33 Dtex, 40 g/m
2
Top Sail - Trailing Edge - SKYTEX 40 E38A - 100% nylon 6.6 , 33 Dtex, 40 g/m
2
Bottom Sail - SKYTEX 40 E38A - 100% nylon 6.6 , 33 Dtex, 40 g/m
2
Main ribs, Diagonals - SKYTEX 40 E29A - 100% nylon 6.6 , 33 Dtex, 40 g/m
2
Ribs - SKYTEX 40 E38A - 100% nylon 6.6 , 33 Dtex, 40 g/m
2
Reinforcement main ribs - Grille Polyester 200 g/m2
Reinforcement Ribs - W382 Polyester 180 g/m
2
Lines
(EDELMAN+RIDDER+CO. Achener Weg 66, D-88316 ISNY IM ALLGEAU, GERMANY)
Upper lines - Aramid A-6843-065, Breaking Load
65 kg
Upper lines, Middle cascade C - Aramid A-6843-080, Breaking Load 80 kg
Middle cascade A,B - Aramid A-7343-140, Breaking Load
140 kg
Main lines C1 - Aramid/Polyester A-7343-190, Breaking Load 190 kg
Main lines A1,B1,C2,C3 - Aramid/Polyester A-7343-230, Breaking Load 230 kg
Main lines A2,A3,B2,B3 – Aramid/Polyester A-7343-280, Breaking Load 280 kg
Wing tip line - Aramid/Polyester A-7343-090, Breaking Load 90 kg
Main brake line - Dynema/Polyester A-7850-240, Breaking Load 240 kg
( Rosenberger Tauwerk GmbH, Poststr. 11, D95192 Lichtenberg, GERMANY)
Upper lines A,B - Liros Dynema - DC 100, Breaking Load
100 kg
(Cousin Trestec, Comines CEDEX, France)
Brakelines - top cascade - Vectran – 0,6mm Breaking Load 50 kg
Top cascade lines C,D, Brake lines - Vectran – 0,9mm Breaking Load 115 kg
Brakelines - Vectran – 1,2mm Breaking Load 145 kg
Attachment straps
(STUHA a.s., DOBRUSKA, Opočenská 442, 518 01 Dobruška CZECH REPUBLIC)
STAP-POLYESTERBRIDLE 13 mm, Breaking Load 70 kg
Risers
(Cousin Trestec, 8 rue Abbé Bonpain 59 117 Wervicq-sud France, FRANCE)
Aramid-Polyester 3455 12 mm Breaking Load 1100 kg
Thread
(AMANN SPONIT ltd, Dobronická 635, 148 25 PRAHA 4, CZECH REPUBLIC)
Lines-SYNTON 60, Main lines-SERABOND 60, Canopy-SYNTON 40, Riser-SYNTON 20
Rapid links
(ELAIR SERVIS, Axmanova 3913/9,767 01 KROMERIZ, CZECH REPUBLIC)
NIRO TRIANGLE 200 - Max. Load 200 kg
Rigifoils
(MERKUR SLOVAKIA s.r.o.,Kamenné pole 4554/6,031 01 Liptovský Mikuláš, SLOVAKIA)
Rigifoils - Bison - Kopolyamid 6/12 2,00 mm/2,7 mm

9
TECHNICAL SPECIFICATIONS
High Performance
Eden
5
Eden
5
Eden
5
Eden
5
Eden
5
Eden
5
Size 22 (XS) 24 (S) 26 (M) 28 (L) 30 (XL) 33 (XXL)
Zoom flat [%] 87 92 95,7 100 104 108
Area flat
[m
2
]
21,78 23,80 25,75 28,12 30,41 33,41
Area projected
[m
2
]
19,45 21,25 23,00 25,11 27,16 29,83
Span flat [m] 11,04 11,55 12,01 12,55 1 3,05 13,68
Span projected [m] 9,28 9,71 10,10 10,55 10,97 11,5
Aspect ratio flat - 5,6 5,6 5,6 5,6 5,6 5,6
Root cord [m]2,422,532,632,752,863,00
Cells - 52 52 52 52 52 52
Weight [kg] 4,7 4,95 5,2 5,6 6,0 6,4
Weight range-free flying* [kg] 60-75 67-85 75-95 85-110 105-130 115-145
Weight range-free flying* [lbs]
132-165 148-187 165-209 187-243 231-287 254-320
Min.speed [km/h] 23-25 23-25 23-25 23-25 23-25 23-25
Max.speed [km/h] 36-38 36-38 36-38 36-38 36-38 36-38
Top speed (accelerator) [km/h] 48-50 48-50 48-50 48-50 48-50 48-50
Glide ratio - 9,7 9,7 9,7 9,7 9,7 9,7
Min. Sink rate [m/s] 1,05 1,05 1,05 1,05 1,05 1,05
Weight range - PPG** [kg] 77-100 89-113 100-127 113-147 140-180 153-193
Weight range - PPG** [lbs]
170-220 196-249 220-280 249-324 309-397 337-425
* free flying pilot equipped = weight naked + cca. 20 Kg (44 lbs)
** powered pilot equipped = weight naked + cca. 35 - 40 Kg (77- 88 lbs)
HARNESS
The Eden 5 is certified with GH type certified ABS harnesses. Nearly all harnesses
available on the market are „GH“ type. These harnesses have the distance between the
seat plate and carabineers 42-47 cm depending on the size of the harness . Please note:
the hang point position changes the position of the brakes relative to the pilot’s body.
The distance between carabineers (adjustable on chest strap ) is 42 cm for the glider
sizes S and M , 44 cm for the glider size L, 46 cm for the glider sizes XL and XXL.
Differences of more than 5cm change the basic characteristics of the glider and are
potentially dangerous.
Nearly all on the market ABS harnesses are " GH " harnesses and suitable for the Eden 5
. These “GH“harnesses are different to “GX“ harnesses, which have a lower attachment
point for the main karabiners and effective cross bracing. The Eden 5 was not tested with
harnesses with an effective cross bracing system.
MAC PARA recomends very comfortable covered Hawaii harness for XC flights.

10
CHECK ON A NEW PARAGLIDER
Before delivery, as well as during production, each paraglider goes through a strict visual
inspection. Additionally we recommend that you to check your new glider in accordance
with the following points. We recommend that you make this check after flying extreme
manoeuvres or after tree landings or similar.
Inspection of the canopy for tears or damage, especially the seams which join the
ribs to the upper and lower surfaces, but also the area of the attachment tapes and
brake-line connections.
Inspection of the lines for damage to the stitches. The line lengths must be checked
after 50 hours flying time and whenever the flight behaviour of the glider changes.
Inspection of attachment tapes for damage to the stitches. It is also important to
check the attachment tapes and brake-lines for tangles.
Inspection of the risers for faultless condition. Rapid links must be secured.
With even slight damage the glider loses its airworthiness!
ADJUSTING BRAKE LINES
The brake lines lead from the trailing edge of the canopy to the main brake lines which
then run through pulleys on the C-risers to the brake handles. A mark on the main brake
line indicates the position of the brake handle. .
The glider is delivered with a standard set-up and its speed can reach 37 - 39 km/h
depending on the weight of the pilot. The brake-lines should always be adjusted so that
the first brake-lines just come under tension when the brake handles have been pulled 510 cm. The test results relate to this brake-line adjustment. This adjustment, on the one
hand, allows sufficient brake to be applied during extreme flying situations and when
landing, while on the other hand, it ensures that the canopy is not permanently braked
(especially when fully accelerated). This trim should not be altered. In extreme situations
any other settings may lead to the glider reacting differently to versions which have been
tested. .
NOTE!! If in doubt about the brake-line adjustment, it is preferable to leave them too long,
as any necessary shortening can easily be achieved by wrapping them round your hand.
The length of the control lines measured from the first cascade line is:
320 cm for Eden 5-22, 335 cm for Eden 5-24, 350 cm for Eden 5-26,
365 cm for Eden 5-28, 380 cm for Eden 5-30 , 395 cm for Eden 5-33.
The available brake travel before stalling the wing depends on the size and loading. By
max. load it is approximately 55cm for the Eden 5-22, 61cm for the Eden 5-24, 63cm for
the Eden 5-26, 68cm for the Eden 5-28, 70cm for the Eden 5-30 und 75cm for the Eden
5-33. (The publication of the brake travel is claimed by the EN 926.)

11
FLYING THE EDEN 5
The following information must not under any circumstances be taken as a manual
for practising paragliding. We would like to advise you of th e Eden 5‘s features an d
important information for your flying and security.
Preparing for take off:
As for any aircraft a thorough pre-flight check must be made prior to each flight on the
Eden 5! Before every launch check lines, risers and canopy for damage! Do not launch
with even the slightest damage!
Also check the maillons connecting the lines and the risers. They have to be closed tight.
Put on the harness with maximum care and check the handle of the safety system and
that all the flaps of the outer container are fastened securely and correctly. The main
karabiner must also be checked carefully. Replace it if any damage is visible, or generally
after 300 flying hours. Finally connect the risers to your harness with the main karabiners.
Check carefully that they are properly closed. Attention! Never fly with an open main
karabiner! Do not take off if you find any damage on your equipment!
Having unpacked and laid out the paraglider in a slight horseshoe pattern the following
checks must be made:
Checklist:
Preparing the wing:
canopy without any damage
risers without damage
maillons (quick links) closed tight
stitching of the main lines near the risers is o.k.
all main lines run free from the riser to the canopy, brake lines are free
Putting on the harness:
rescue handle and deployment pins secure
buckles (leg- ,front riser) closed
main karabiners
Before takeoff:
speed-system mounted and connected properly
risers not twisted
brake handle in hands, brake lines free
pilot‘s position relative to the wing (centred: all lines same tension)
wind direction
obstacles on the ground
free airspace

12
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When laying out the glider, the wind direction should be observed. The canopy should be
deployed into the wind so both halves of it are loaded symmetrically. The paraglider
should be arranged in a semicircle against the wind. This ensures that the A-lines in the
centre section of the canopy will tension before the ones at the wing tips. Thus the
canopy inflates evenly and an easy launch in the desired direction is guaranteed.
All lines and risers should be carefully untangled and arranged in a way that they do not
catch on anything. It is equally important to untangle the brake lines so that they are clear
and can not catch on any thing during launch. The brake lines should run freely through
the pulleys to the trailing edge of the canopy.
Make sure the risers are not twisted; this can prevent the brake lines from running freely
through their pulleys. It is often impossible to untangle lines during flight.
It is important that no lines are looped around the canopy. Also called a “line-over”, this
may have disastrous consequences during take off. Finally connect the risers with your
harness by using the main karabiners. Check carefully that they are closed properly.
Launch
The Eden 5 is very easy to launch. This is possible in almost all wind conditions except
strong headwinds. Before take off recheck the canopy, the direction of the wind and the
air space around you! When the pilot is ready to take off he/she holds all A-risers and the
brake handles in each hand. To facilitate differentiation between the risers, the A-lines,
including the sleeves on the A-risers, are coloured red. Before take-off, place yourself
centrally at the gliders axis. Let the B- and C-risers fall into the crook of your arm and hold
the A risers with arms outstretched behind you. Pull up the canopy dynamically using the
A-risers. (The stronger the headwind the less run-up you need to pull the canopy up).
After the initial effort of inflation, keep applying forward pressure on the A-risers (pushing
them forward, not pulling down) until the pressure on the A risers eases. The canopy
should now be directly over the pilot’s head. As soon as the glider is above you, stop
pulling on the A-risers. A good progressive run ensures your Eden 5 will inflate and come
up equally and quickly. Should the canopy surge forward, control it by braking gently.
Now do a visual check upwards, to ensure the canopy is completely open (otherwise,
abort the take-off). Only then is the final decision to continue the launch taken! If anything
is not completely safe the launch should be aborted!
Now accelerate continuously until you lift off. It is easier to take-off in a light headwind if
after reaching minimum flying speed you apply the brakes slightly. After the take-off,
gently release the brakes again.
The paraglider should be braked gently to stabilize the glider and possibly correct for drift.
Moving the pilot’s body to the centre of the glider is the best method of correction, if there
is sufficient room.
WARNING!! Do not use the forward launch in very strong winds. Make sure you don't pull
the risers too much towards yourself or downwards as this can result in a frontal collapse,
or in an asymmetric take-off.

13
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The Eden 5 is easy to reverse launch. When doing a reverse launch or when launching in
strong winds the paraglider can possibly surge forward more quickly or lift off sooner than
desired. To avoid this, walk uphill following the canopy during inflation. As this launch
technique can be difficult and turning the wrong way can result in the pilot taking off with
twisted risers. It is recommended to practice the reverse launch on a training hill or slight
slope first. When deflating the canopy in strong winds, or aborting a launch, use the
C- risers, not the brakes. Using the brakes in strong wind will cause more lift, lifting the
pilot up and dragging him/her much further back.
If you let the brake handles go out of your hands during take-off, take care that the brake
line is not twisted around the brake pulley!
Flight
The glider is delivered with a standard set-up and its speed can reach 37 - 39 km/h
depending on the weight of the pilot. Always fly with sufficient clearance from the terrain.
The Eden 5 glides best with open brakes, descends best with lightly applied brakes.
In turbulence fly with brakes lightly applied (10-15 cm) to avoid canopy collapse.
If the canopy pendulums forward, this should be corrected by prompt braking.
A pendulum movement of the canopy backwards is corrected by loosening the brakes in
good time.
In a calm air the Eden 5 can reach its minimum speed (depending on the wing loading)
by application of 60 cm up to 65 cm of the brake range.
Accelerated Flight:
When flying with the speed system applied the angle of attack is lower and the canopy
can collapse more easily than in normal (trim) flight. The faster the canopy is flown the
more dynamic the collapses and stalls will be and the more skill will be required for quick
recoveries. Therefore do not use speed system in turbulent conditions, close to the
ground or near other airspace users. Always fly with sufficient clearance from the terrain
and always keep the brake handles in your hands!
To use the speed system, simply place your feet on the stirrup and push forward in a
horizontal plane. If a loss of back pressure of the stirrup on your legs is noticed, this is a
warning that the canopy is probably about to collapse. Release the stirrup and thus the
speed system immediately. With this feeling you may actually prevent most collapses
from happening while using the speed system. If a collapse should still occur, release the
speed system immediately and correct the collapse as described below.
Attention: Do not apply brakes when fully accelerated! Braking increases lift near the
trailing edge. The main lift point moves backwards. Due to this the wing can loose stability
for a short time.!

14
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Steering - turns:
The Eden 5 is a very responsive paraglider and reacts very directly and instantly to any
steering input. Weight shift input quickens turns and ensures minimal height loss. Any
weight shift has a greater effect the more loosely the chest-strap is fastened.
A combined technique of weight shift and pulling on the inside brake line is the most
efficient turning method, whereby the radius of the turn is determined by the amount of
inside brake pulled and weight shift. A stalling wing tip announces itself by a gentle surge
backwards of the wingtip. If this occurs you will need to release the brakes immediately.
In case it is impossible to control the Eden 5 with the brake lines the C-risers may be
used to steer and land the canopy. Attention! Pulling brake too fast or too hard can result
in the canopy entering a negative spin.
Active Flying (Thermaling and Soaring):
In turbulent conditions the glider should be flown actively with brakes lightly applied to
avoid canopy collapse. This improves stability by increasing the angle of attack of the
canopy. The canopy should not rock back or surge forward much but should remain
above the pilot. In turbulent flight, if the canopy pendulums forward, this should be
corrected by prompt braking. A pendulum movement of the canopy backwards is
corrected by releasing the brakes in good time. This is part of basic active flying.
Approach and Landing:
To avoid excessively demanding situations on the approach to landing, it is important to
initiate the process at an adequate altitude. This leaves you enough time to observe and
appropriately deal with wind direction and any other aircraft in your vicinity.
The Eden 5 is easy to land. The final leg of the landing approach must be into the wind.
During this final glide the paraglider should be decelerated slowly and at approximately
one meter above the ground, according to conditions, the pilot should flare the canopy.
The glider may climb again, gaining height, if too much brake is used too early. Strong
wind landings require correspondingly less brake. Do not apply full brake before the pilot
is safely on the ground. The final glide during the landing approach should be straight
and not marked by steep or alternating turns as these can result in a dangerous
pendulum effect near the ground.
Attention! Do not allow the canopy to fall onto the leading edge with energy. This can
destroy the material and affects the life of the ribs at the leading edge!

15
TOWING
The Eden 5 is certified for towing. The Eden 5 has no out of the ordinary towing
characteristics, although a relatively low angle of attack and thus low tow tension should
be maintained during launch and the initial part of the tow. The Eden 5 has no
tendencies towards deep stall/parachuting. Therefore we allow tow- launched flights with
a similar technique to that described above. There is sufficient margin to counter-steer the
glider in a normal towing situation. Make sure you use proper equipment, experienced
personnel and all relevant safety precautions for towing.
WARNING!! Please always ensure that the brake lines are adjusted to the lengths
recommended here. Setting them shorter could lead to a tendency to stall during towed
flight. Apart from this, there are no special procedures.
MOTORISED FLIGHT
Note!! Although, motorized flight can be a great success due to the gliders very easy
take-off characteristics, stability and good handling, always use a certified combination of
engine - harness and glider. If in doubt check with your federation. Contact the
manufacturer or importer for the current legality of motorized flight.
WARNING!! The Eden 5 is not suitable for jumps from aircraft.
WARNING!! The Eden 5 is not designed to b e used for aerobatics.
EXTREME FLYING MANOEUVRES
This section describes flying conditions which can be deliberately induced, or which can
develop unintentionally due to turbulence or pilot error. Any pilot who flies through
turbulence is sure to be faced with these special flight conditions at some point. So take a
good look at these flight manoeuvres or prepare for them by SIV (safety training over
water). Mastering these flying conditions significantly improves your active flight safety.
Sufficient height, as well as carrying a reserve parachute, is imperative.
WARNING!! All the critical flight conditions described here require a thorough knowledge;
otherwise carrying them out may be very dangerous. Sufficient height above the ground
is imperative. Bear in mind that all deformations of the canopy can increase the sink rate
by 2 - 10 m/sec, depending on the degree of deformation. Carrying out these
manoeuvres wrongly may lead to a crash.
Remember this is a glider with unspectacular reactions to disturbances in the air.
Whenever in doubt, raise the brakes and let the glider fly. The glider has a high internal
pressure, resistance to tucking and very high degree of passive safety. It is
recommended that at this stage you already practise an active flying style. The key to

16
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active piloting is keeping the glider above your head at all times. We recommend in
principle that you hold the brake handle in your hand whenever possible, or fly with your
hands through the brake handles, to allow you to react immediately to any possible
disturbances.
WARNING!! If you fly with your hands through the brake handles, you may lose valuable
time in activating the rescue system.
Asymmetric collapse:
A negative angle of attack can cause all or part of the leading-edge of the Eden 5 to
collapse (e.g. in turbulent air). Basically the Eden 5 will re-open spontaneously from
closures of up to 70% with a change of direction of up to 360°. The time this takes, and
the associated height loss, can however be noticeably reduced by appropriate action by
the pilot. Apply opposite brake on the inflated side, the outside of the curve, to stop the
turning movement of the canopy. This should be accompanied by appropriate weightshift. If you react immediately, 30% brake on the open side should suffice to hold the
canopy on a straight course. In the event of a big collapse, this braking should be applied
very carefully to avoid stalling the remaining inflated wing. The pilot’s correction for
direction can be aided by a pumping out the deflation; a slow, long pumping action of the
brake of the deflated side of the wing helps the canopy to re-inflate. If the glider does not
self recover and the pilot does not correct the canopy can enter a stable spiral dive!
“Cravat” / Line-over:
In the event of some lines becoming tangled during flight (caused by whatever), the
following action is recommended: The pilot stabilizes the glider by gently applying the
brakes. Please be aware that in this condition the brake pressure can be higher and the
brake travel shorter.
Without pilot input a line-over will result in a stable spiral dive.
Here are the various options to untangle a line-over:
pumping the collapsed side.
pulling the stabilizer line or lines causing the problem.
should both measures fail, it may be possible to untangle the line-over by inducing a
full stall. This manoeuvre, however, should only be carried out by advanced pilots
with experience in extreme flight situations and with sufficient altitude available.
Attention! If these manoeuvres fail or if in any doubt, the pilot should instantly use their
emergency parachute system!
Front Tuck:
A front tuck can be induced by strongly pulling the A-risers or by sudden, heavy
turbulence. The entire leading edge spontaneously collapses. Gentle braking on both
sides will reduce the lateral pendulum motions and simultaneously accelerate re-inflation.

17
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The Eden 5 generally self recovers from an initiated front tuck. When having a very large
front tuck, a frontal rosette can happen (the wingtips move forwards: shaping a
horseshoe). Gentle braking can avoid this deformation.
A quick recognition of the situation and a quick reaction by braking on both sides as long
as the collapsed wing is behind the pilot helps the recovery and limits the altitude loss.
Parachutal stall (deep stall):
In a parachutal stall the paraglider has no forward momentum combined with a high
descent rate. A parachutal stall can be caused by, among other reasons, a too slow exit
from a B-line stall or severe turbulence. Porous canopies (UV influence) or canopies out
of trim (stretched or shrunken lines) are much more susceptible to a parachutal stall and
therefore should not be flown. These are some of the reasons regular checks should be
carried out on your glider. A wet canopy or temperatures below zero centigrade (0°C)
may also cause a stable parachutal stall. The Eden 5 will usually spontaneously recover
from a parachutal stall within 2-3 seconds. If the canopy remains in a parachutal stall, it is
sufficient to gently push both A risers forward or to push the accelerator.
Attention! If brakes are applied while in a parachutal stall, the glider may suddenly enter a
full stall!
If a parachutal stall occurs on landing approach, the pilot should prepare for a hard
landing and make a parachute roll landing. In close proximity to the ground, due to the
forward surging pendulum effect, a recovery may be more dangerous than a hard landing
in parachutal stall.
Full-stall:
To induce a full stall, apply full brake on both sides. The glider slows down steadily until it
stalls completely. The canopy suddenly surges backwards a long way. In spite of this
uncomfortable reaction of the canopy, both brake lines must be consequently held down
with all your strength until the canopy is stabilized (directly overhead). This usually takes
3-6 seconds. The Eden 5 generally flies backwards during a full stall but doesn’t always
form a front rosette. A frontal rosette can be formed by entering the full stall slowly. When
entering (braking) fast, the canopy will not always form the desired front rosette.
Attention! Always apply both brakes evenly!
To recover from a full stall, Smoothly release both brakes simultaneously until 90% of
leading edge reopens, then release brakes rapidly. The glider ends the full stall on its
own without surging forward.
WARNING!! If the brakes are released rapidly and asymmetrically, the glider may surge
almost 90° and suffer an extensive asymmetric collapse.
The danger of overcorrecting and overreacting exists during all extreme flight
manoeuvres. Thus, any corrective action must be gentle and steady and done with feel!

18
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Spin (or negative spin):
Pulling brake on one side too fast or too hard can result in a negative spin. During a spin
the canopy turns relatively fast around the centre section of the canopy while the inner
wing flies backwards (hence the term negative).
There are two usual reasons for an unintentional spin:
One brake line is being pulled down too far and too fast (e.g. when inducing a spiral
dive)
When flying at low speed one side is being braked too hard (e.g. when thermaling).
To recover from an unintentional spin, the pulled down brake line should be immediately
released as soon as a spin is suspected. The canopy will accelerate and return to its
normal straight and stable flying position, without losing too much height. If the spin is
allowed to develop for some time, the glider surges a long way forward on one side and a
dynamic asymmetric collapse or a line-over can occur. Gently apply the brakes to avoid
side or central collapse of the canopy and the possibility of a cravat (one of the tips
becoming entangled in the lines). See part collapses.
WARNING!! If you are LOW and are in an unintentional spin, or if the canopy is caught in
a cravat USE YOUR RESERVE.
Wingover:
To induce a wingover the pilot flies consecutive alternating turns to gradually steepen the
angle of bank. During wingovers with a high bank angle, the outside wing begins to
unload. Further increase of the angle of bank must be avoided, because any possible
resulting collapse may be quite dynamic!
WARNING! Full-stall, spin and wingover (over 90 degree angle of bank) are
prohibited aerobatic manoeuvres and may not be performed during normal flying.
Incorrect recovery procedures or overreacting of the pilot may have dangerous
consequences! Attention! The Eden 5 is not designed to be used for aerobatics.
Alternative (emergency) steering:
If for some reason it becomes impossible to control the Eden 5 with the brake lines
the C-risers may be used to steer and land the canopy. Attention! Of course the range is
much shorter (5-10 cm) then with the brakes. It is also possible to control the direction of
the flight by pulling on a stabilizer line or by weight-shifting.

19
RAPID DESCENTS
Spiral dive:
A spiral dive is the fastest way to lose altitude, however, the very high G-forces make it
difficult to sustain a spiral dive for long and it can place high loads on the pilot and glider.
By tensing ones abdominal muscles and a higher body tension you can to some extent
resist the high G-forces. Don’t forget proper breathing! As soon as any, even slight, light
dizziness or impaired vision is noticed the spiral should be exited immediately.
The Eden 5 has a very effective spiral dive. This allows rapid descent without stalling.
To enter a spiral dive the pilot should weight-shift on one side while slowly pulling the
brake gradually on the same side as weight-shifting. During a spiral dive the angle of
bank can be controlled by increasing or reducing the amount of inside brake. When spiral
diving the Eden 5 it is recommended that the outside brake is lightly applied. This helps
stabilize the wing and enables an easier and safer exit from the spiral. To exit, release the
inside brake slowly. The Eden 5 did not show a tendency to remain in a stable spiral by
sink rates up tp 10 m/s during testing. At high sink speeds or if the pilot keeps his weight
on the inside, the wing can stay in a continued deep spiral and has to be actively exited.
This is done by weight shifting to the outside and gentler braking of the outside wing.
WARNING!! Nearly all gliders will have a tendency to stay in the spiral if the sink-rate
exceeds around 15-m/s, depending on weight-shifting, wing loading and G-force.
In fact most gliders need a counter-input to end a turn.
Attention! Due to energy retention, the glider will climb a lot after a deep spiral-dive
release. If you apply inner brake and decelerate the glider for two or three turns, big
pendulum effects can be avoided.
WARNING!! Practise spiralling with caution and lower sink-rates to get a feel for the
gliders behaviour. A pilot who is dehydrated or not accustomed to spiralling can lose
consciousness in a steep spiral dive!
Big ears:
When in big-ears, the horizontal speed is higher than the sink rate, unlike a spiral dive or
a B-line stall. This rapid descent technique is used to quickly and horizontally exit a
dangerous area in the desired direction. In order to collapse the outside wing, pull the
outside A-lines.
When the pilot holds the outside A1-risers on both sides and pulls them down, the Eden 5
easily tucks the outside wings and enters a stable descent mode. The pilot keeps hold of
the brake handles along with the outside A1-risers in his hands. By braking on one side
and weight-shifting, the canopy remains steerable. In order to increase the sink rate as
well as the horizontal speed, this manoeuvre should be done together with use of the
speed system. Apply the speed system after big ears are induced (step into the speedbar before you grab the outer A1-risers). Big-ears substantially reduces the risk of canopy
stability problems in turbulent air. To exit Big-ears release the A1-risers. The
canopy does very slowly self-recover. To quicken the recovery, the pilot can dynamicaly
pull down and immediately release the brakes of the glider.

20
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WARNING! Never do big-ears in spirals, as this may drastically reduce the number of
lines taking the already high loads, causing structural failure.
Attention! All rapid descent techniques should first be practised in calm air and with
sufficient height so the pilot can use them in emergency situations! By far the best
technique is to fly correctly and safely, so you never have to descend rapidly!
B-line stalls:
To induce a B-line stall symmetrically pull down slowly on both B-risers, until the canopy
folds (parallel to its long axis). The airflow over the top surface is almost fully detached
and the canopy enters a vertical descent flight mode without forward movement. Further
pulling of the B-risers reduces the surface area more and increases the sink rate. (Up to 8
m/s) Be careful, pulling too far or too rapidly may cause a frontal horseshoe to form. To
exit from this flight mode release the B-risers at first rapidly but then gently (1 sec). The
canopy surges forward re-attaching the airflow over the top surface and resumes normal
flight. When the B-risers are released, the brakes should not be activated. This will
give the canopy the chance to gain speed and resume normal flight. On exit from a Bline stall on no account just release the B-risers, as this can cause overloading. If canopy
does not recover apply both brakes gently to recover or pull the A-risers, until the canopy
regains forward speed.
Summary:
For all extreme manoeuvres and rapid descents please note:
first practise manoeuvres with an instructor during safety training!
before inducing any manoeuvre the pilot must check that there are no other airspace
users below him!
during the manoeuvre the pilot must have the canopy within his view!

21
LOOKING AFTER YOUR PARAGLIDER
Looking after your canopy correctly will prolong the life of your paraglider.
Deterioration: a few tips!
The canopy is mainly made of NYLON, cloth which, like any synthetic material, deteriorates
through excessive exposure to UV. Hence, it is recommended that you reduce UV exposure to
a minimum by keeping the paraglider packed away when not in use. Even when packed in the
bag do not leave it in the sun.
Keep the canopy and lines clean as dirt may penetrate into the fibre and damage the lines or
the cloth.
Ensure that the lines are not folded tightly. It’s extremely important to avoid any sharp bending
of the lines, especially the main lines. Pay careful attention to the lines to avoid damaging them.
Any over stretching of lines apart from the strain imposed during normal flight, should be
avoided as over stretching is irreversible.
Be careful, not to allow snow, sand or stones to enter inside the canopy’s cells: the weight can
change the angle of attack, or even stall the glider; additionally the sharp edges can destroy the
cloth!
Check line lengths after tree or water landings. They can stretch or shrink lines.
Never drag the wing over rough ground! This will damage the cloth on the wear points. When
preparing the wing on a takeoff with rough ground, don’t pull the wing over it (i.e. by pulling the
brakes). Please try to pack the wing on soft ground.
Uncontrolled strong wind takeoffs or landings can result in the leading edge of the canopy
hitting the ground at high speed which may cause rips in the profile and damage the rib
material.
We advise you to fold the glider “accordion wise”, rib to rib. This packing procedure takes
slightly longer and is easier to do with an assistant, but it guarantees the rigidity of the plastic
profile reinforcements. This is very important for the performance of your glider!
Prevent lines from catching on anything as they may be over stretched. Do not step onto the
lines. Although the lines were tested with a bending test they can be damaged if stepped on
whilst on a hard surface, or if they come into contact with sharp objects.
Do not always fold the canopy symmetrically to the centre cell as this can cause constant stress
on the centre cell (centre cell always to the outside).
Clean the paraglider with fresh water after contact with salt water. Salt water crystal
can reduce line strength, even after rinsing in fresh water. Replace lines immediately
after contact with salt water. Also check canopy material after water landings, as
waves can place uneven forces and cause cloth to distort in specific areas. Always
remove gliders from the water by holding only the trailing edge. Clean the paraglider
with water and a soft sponge. Do not use any chemicals or spirits for cleaning, as
these can permanently damage the cloth
Storage:
Store the paraglider in a dry space at ambient temperature away from chemicals and
UV light.
Never pack or store the glider wet. This shortens the life of the cloth Always dry
glider thoroughly before any packing or storage.
During transport it has to be considered, that some materials of the paraglider are
temperature sensitive. Avoid subjecting your wing to high temperatures (e.g. the
luggage space of a parked car in the sun)!
When sending your wing as a parcel, take extra care with packing.

22
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Repairs and checks:
Tears in the canopy must be professionally sewn. Adhesive patches are only
adequate for very minor damage.
Repairs should only be carried out by the manufacturer, distributor or authorized
workshops. Only original spare parts may be used!
The lines must be checked after every 50 hours flying time and whenever the flight
behaviour changes
Any changes to the canopy lines or risers, except those approved by the
manufacturer, will void the certificate of airworthiness.
The Eden 5 must be checked as a minimum, after two years or after 100 flying hours
by the manufacturer or authorized workshops.
Disposal:
The synthetic materials used in a paraglider need professional disposal. Please send
disused canopies back to us: we will dismantle and dispose of it.
In Conclusion:
The Eden 5 is a modern paraglider. You will enjoy many safe years of flying with your
Eden 5 if you look after it correctly and adopt a mature and responsible approach to the
demands and dangers flying can pose. It must be clearly understood that all air sports are
potentially dangerous and that your safety is ultimately dependent upon you. We strongly
urge you to fly safely. This includes your choice of flying conditions as well as safety
margins during flying manoeuvres. We recommend once more that you only fly with a
certified harness, reserve parachute, and helmet. Also the certification placard must be
present on the glider. Every pilot should be suitably qualified, have a valid license and 3rd
party insurance. The Eden 5 is delivered with a stuff-sack, Velcro compression strap,
MAC PARA backpack, repair kit and user manual.

23
FULL LINE LENGTHS
Full line lengths Eden 5
All lengths are measured from riser`s main attachment point up to the tissu e of
canopy on attachment points. Brake lines are measured from the Swivel on brake
handle up to the trailing edge.
CenterABCDBrakes
1 6924 6851 6943 7027 7430
2 6874 6800 6891 6974 7170
3 6845 6776 6863 6944 6978
4 6865 6792 6874 6956 6902
5 6814 6749 6821 6899 6761
6 6794 6731 6802 6872 6640
7 6754 6699 6757 6800 6543
8 6615 6571 6611 6642 6552
9 6554 6518 6530 6557 6485
10 6525 6493 6511 6521 6417
11 6237 6195 6382
12 6125 6340
13 6059 6054 6071 6120 6381
Eden 5 22 (XS)
CenterABCDBrakes
1 7302 7221 7315 7404 7899
2 7245 7163 7257 7350 7625
3 7217 7139 7229 7317 7391
4 7238 7161 7246 7329 7309
5 7185 7108 7183 7269 7153
6 7162 7088 7163 7242 7016
7 7126 7056 7114 7173 6924
8 6980 6923 6963 7007 6931
9 6914 6868 6876 6917 6833
10 6881 6842 6861 6881 6779
11 6582 6541 6748
12 6468 6706
13 6401 6400 6423 6473 6759
Eden 5 24 (S)
CenterABCDBrakes
1 7576 7496 7590 7682 8160
2 7521 7438 7532 7623 7870
3 7493 7413 7501 7592 7634
4 7510 7428 7519 7605 7550
5 7454 7376 7455 7546 7388
6 7431 7358 7433 7513 7242
7 7392 7323 7382 7443 7148
8 7243 7185 7224 7267 7155
9 7174 7126 7136 7175 7043
10 7138 7096 7114 7140 6984
11 6809 6765 6964
12 6688 6918
13 6618 6615 6639 6695 6980
Eden 5 26 (M)
CenterABCDBrakes
1 7902 7814 7914 8006 8492
2 7842 7753 7851 7947 8193
3 7813 7724 7821 7913 7978
4 7835 7744 7837 7925 7894
5 7774 7694 7775 7867 7720
6 7750 7675 7751 7834 7580
7 7709 7641 7697 7761 7474
8 7554 7493 7531 7577 7482
9 7481 7434 7443 7483 7397
10 7447 7401 7419 7443 7330
11 7095 7050 7288
12 6969 7244
13 6896 6895 6917 6968 7288
Eden 5 28 (L)
CenterABCDBrakes
1 8187 8097 8206 8300 8861
2 8126 8041 8143 8244 8620
3 8099 8011 8110 8208 8360
4 8120 8032 8125 8221 8271
5 8054 7972 8060 8155 8101
6 8029 7951 8038 8123 7939
7 7988 7913 7976 8047 7828
8 7825 7760 7807 7855 7840
9 7752 7700 7713 7758 7724
10 7714 7668 7687 7717 7652
11 7380 7330 7607
12 7250 7560
13 7173 7164 7189 7248 7601
Eden 5 30 (XL)
CenterABCDBrakes
1 8483 8392 8499 8603 9237
2 8420 8325 8433 8537 8909
3 8393 8295 8401 8501 8644
4 8409 8319 8416 8516 8554
5 8343 8255 8346 8445 8373
6 8317 8233 8322 8413 8200
7 8272 8194 8266 8335 8091
8 8103 8035 8085 8135 8101
9 8026 7971 7992 8034 7985
10 7993 7943 7968 7993 7905
11 7647 7600 7863
12 7508 7812
13 7428 7426 7455 7519 7862
Eden 5 33 (XXL)

24
LINE PLANS
Line descriptions:
The following printed line plans show the line configurations.
Line strengths in colours
Riser lengths Eden 5
The lengths are measured from the main attachment point to the lower edge of rapid links.
A A1 B C
Trim-position
520 520 520 520
Accelerated
380 380 410 520

26
LENGTH OF LINE EDEN 5
Eden 5 22 Eden 5 24 Eden 5 26 Eden 5 28 Eden 5 30 Eden 5 33
mA1 425 450 470 490 510 530 Aramid/Polyester A-7343-230
mA2 425 450 470 490 510 530 Aramid/Pol
ester A-7343-280
mA3 425 450 470 490 510 530 Aramid/Pol
ester A-7343-280
A0 73,8 80,7 84,2 86,6 92,1 92,5 Aramid/Pol
ester A-6843-065
A1 80,3 87,5 91,3 94 99,8 100,5 Aramid/Pol
ester A-6843-065
A2 91,3 99,2 103,5 106,7 113 114,2 Aramid/Pol
ester A-6843-065
A4 90,5 96,2 98,9 103,7 107,4 111,2 Aramid/Pol
ester A-6843-080
A6 92,8 98,6 101,4 106,3 110,2 114 Aramid/Pol
ester A-6843-080
A9 184,9 196 202 212,2 220,3 228,4 Aramid/Pol
ester A-6843-080
A12 198,6 210,5 217 227,9 236,6 245,3 Aramid/Pol
ester A-6843-080
A15 202,9 214,5 221,2 232,3 241,2 250,1 Aramid/Pol
ester A-7343-140
A18 205 216,7 223,5 234,7 243,7 252,7 Aramid/Pol
ester A-7343-140
A21 83,1 85,4 89,4 94 98,4 100,7 Liros DC 100
A22 81,3 83,6 87,6 92,1 96,4 98,7 Liros DC 100
A24 83,8 86,1 90,2 94,8 99,2 101,6 Liros DC 100
A25 89,1 91,7 96 100,9 105,5 108,2 Liros DC 100
A26 87 92 95 100 104 108 Aramid/Pol
ester A-6843-080
A27 130 140 143 150 155 162 Aramid/Pol
ester A-7343-140
A28 130 140 143 150 155 162 Aramid/Pol
ester A-7343-140
st1 480 508 528 553 573 598 Aramid/Pol
ester A-7343-090
mB1 425 450 470 490 510 530 Aramid/Pol
ester A-7343-230
mB2 425 450 470 490 510 530 Aramid/Pol
ester A-7343-280
mB3 425 450 470 490 510 530 Aramid/Pol
ester A-7343-280
B0 73,2 80,7 84,2 86,6 92 92,5 Aramid/Pol
ester A-6843-065
B2 87,4 95 99,2 102,2 108,3 109,4 Aramid/Pol
ester A-6843-065
B4 88,1 92,6 95,1 99,8 103,4 107 Aramid/Pol
ester A-6843-080
B6 89,7 94,3 96,9 101,6 105,3 108,9 Aramid/Pol
ester A-6843-080
B9 180,7 190,5 196,3 206,2 214 221,9 Aramid/Pol
ester A-6843-080
B12 193,5 204 210,3 220,9 229,3 237,8 Aramid/Pol
ester A-6843-080
B15 196,8 207,5 214 224,7 233,3 241,9 Aramid/Pol
ester A-7343-140
B18 198,5 209,4 215,9 226,7 235,4 244 Aramid/Pol
ester A-7343-140
B21 76,4 77,7 81,5 85,7 89,7 91,8 Liros DC 100
B22 74,8 76,1 79,8 83,9 87,9 89,8 Liros DC 100
B24 77,1 78,6 82,4 86,6 90,7 92,7 Liros DC 100
B25 82,4 84,2 88,2 92,7 97 99,3 Liros DC 100
B26 87 92 95 100 104 108 Aramid/Pol
ester A-6843-080
B27 130 140 143 150 155 162 Aramid/Pol
ester A-7343-140
B28 130 140 143 150 155 162 Aramid/Pol
ester A-7343-140
mC1 425 450 470 490 510 530 Aramid/Pol
ester A-7343-190
mC2 425 450 470 490 510 530 Aramid/Pol
ester A-7343-230
mC3 425 450 470 490 510 530 Aramid/Pol
ester A-7343-230
C0 75,5 82,9 86,5 89 94,5 95 Aramid/Pol
ester A-6843-065
C4 44 46 48 50 52 54 Vectran 0,9
C6 44 46 48 50 52 54 Vectran 0,9
C9 52 55 58 60 62 65 Vectran 0,9
C12616567707376 Vectran 0,9
C15616567707376 Vectran 0,9
C18616567707376 Vectran 0,9
C21 82,7 84,5 88,5 93 97,3 99,6 Vectran 0,9
C22 81,2 82,9 86,9 91,3 95,6 97,8 Vectran 0,9
C24 83,9 85,7 89,8 94,4 98,8 101,2 Vectran 0,9
C25 89,2 91,4 95,7 100,5 105,1 107,7 Vectran 0,9
Length of line [ cm ]
MaterialLine

27
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Eden 5 22 Eden 5 24 Eden 5 26 Eden 5 28 Eden 5 30 Eden 5 33
C26 46,6 49,2 49,8 52,6 54,3 56 Aramid/Polyester A-6843-065
C27 48 50,7 51,3 54,2 56 57,8 Aramid/Pol
ester A-6843-065
C28 87 92 95 100 104 108 Aramid/Pol
ester A-6843-080
C29 133,7 140,7 143,7 151,9 158 163 Aramid/Pol
ester A-6843-065
C30 139,1 145,9 150,5 158,4 164,1 170 Aramid/Pol
ester A-6843-065
C31 144 151,2 156 164,1 170,1 176 Aramid/Pol
ester A-6843-080
C32 146,1 153,3 158,2 166,4 172,5 178,5 Aramid/Pol
ester A-6843-080
C33 130 140 143 150 155 162 Aramid/Pol
ester A-6843-080
C34 130 140 143 150 155 162 Aramid/Pol
ester A-6843-080
D0 79,2 87 90,8 93,5 99,2 99,9 Aramid/Pol
ester A-6843-065
D4 45,8 48 50 52,1 54,2 56,3 Vectran 0,9
D6 47,5 49,7 51,8 54 56,2 58,3 Vectran 0,9
D9 56 59,2 62,3 64,5 66,7 70 Vectran 0,9
D12 66,5 71 73,2 76,5 79,8 83 Vectran 0,9
D15 68 72,5 74,8 78,2 81,5 85 Vectran 0,9
D18 68,6 73,3 75,6 79 82,4 85,7 Vectran 0,9
D21 90,5 92,7 97,1 102 106,7 109,4 Vectran 0,9
D22 89,3 91,5 95,8 100,6 105,2 107,8 Vectran 0,9
D24 92,3 94,6 99 104 108,8 111,5 Vectran 0,9
D25 97,5 100,1 104,8 110 115 118 Vectran 0,9
mBR 320+30 335+30 350+30 365+30 380+30 395+30 D
nema/Polyester A-7850-240
br2485053565760 Vectran 0,6
br4 44 46 48,5 51,5 52,5 55 Vectran 0,6
br5485053565760 Vectran 0,6
br74849525557,559 Vectran 0,6
br9 54,5 55,5 59 62 64,5 67 Vectran 0,6
br11 60,5 64,5 68 71 74 79 Vectran 0,6
br13 59,5 63,5 67 70 73 78 Vectran 0,6
br15 64 68,5 72 75,5 79 83 Vectran 0,6
br17 76 82,5 87 91 95 100 Vectran 0,6
br19 61,5 64,5 67,5 71,5 73 77 Vectran 0,6
br21 69 72,5 76 80 82 86 Vectran 0,6
br23 58,5 61 64 67,5 68 72 Vectran 0,6
br25 84,5 88,5 93,5 97,5 92 104 Vectran 0,6
br26 106,5 113 116 122 126 135 Vectran 0,9
br27 110 118 120 127 130 138 Vectran 0,9
br28 160 171 178 185 194 199 Vectran 1,2
br29 117 125 130 135 140 144 Vectran 0,9
br30 122 130 135 140 145 150 Vectran 0,9
br31 154 165 170 179 186 193 Vectran 1,2
br32 188 203 210 220 230 240 Vectran 1,2
br33 117 125 130 135 140 144 Vectran 0,9
br34 146 160 165 173 180 185 Vectran 0,9
Length of line [ cm ]
MaterialLine

28
MANUAL FOR PARAGLIDER CHECKS
Check-intervals
All paragliders used in flight must be checked at least every 24 months. For paragliders
used by paragliding schools the period is 12 months.
Personnel authorised to carry out checks
A valid flying license and training course by National association are the basis for
permission to carry out paraglider checks
Identification of glider
An identity sticker with details of certification and serial number is attached to the glider.
Components of the check
Porosity
The porosity should be checked with a porosity meter (JDC). Compare the resultant data
with the producer's manual.
Porosity measures should be taken on at least three points of both the top and bottom
surface. The first point should be placed 20-30 cm from leading edge in the middle of
canopy. Second and third points are placed left and right from first measure point at 25%
of the span. One additional measurement should be made on the top surface of the wing
tip.
The identified time should be higher than 30 second (JDC). In the event of the result
being less than 30 seconds, the result of the check is a fail.
Overall strength check
The check of canopy strength should be made with a Bettsometer (B.M.A.A approved
Patent No. GB 2270768 Clive Betts Sales). On the top and bottom surfaces make small
holes with a needle at the Aline attachment points. The exact verification should be made
in accordance with the Bettsometer user manual.
Line strength check
Line strengths should be as specified in accordance with the certification requirements.
One main line should be taken from each array and have its strength checked with a
tension-meter.
Required strengths should be higher than:
A + B main lines x measured value > 8 x maximum take-off weight and higher then
800 kg for the A + B arrays.
C + D mean lines x measured value > 6 x maximum take-off weight and higher then
600 kg for the A + B arrays.
Replacements for damaged lines must be with new original lines. Line lengths are taken
from the lines data page.

29
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Line length measurement
Lines should be separated and each line measured under a tension of 5 kg.
Measurement is made from the line karabiner to the canopy according to the method of
certification. Rib numbering begins in the middle of canopy and leads to the wing tip.
Measured full lengths should be documented in the inspection record and are compared
with certified full line lengths protocol. Lengths should not differ by more than 10 mm. The
opposite sides should be checked for symmetry.
Canopy line-attachment points check
Attachment points should be checked for damage and stretching. Defects, loops and
flares should be repaired.
Canopy fabric check
Ribs, diagonal ribs, top and bottom surface should be checked. Any damage to sewing or
tears to the fabric, which could influence flying characteristics must be repaired.
Lines
All lines should be checked for tears, breaks any damage to the sheath or signs of wear.
Special attention should be paid to the sewing of the line loops. Damaged lines must be
replaced.
The results should be documented in the inspection record.
Connector check
All line carabineers, trimmers (if used), speed systems and pulleys should be inspected
for visible damage. Open or improperly secured connectors should be secured in
accordance with the producers recommendations.
Risers
Both risers should be checked for tears, signs of wear or any damage and measured with
a pull of 5 daN strength. Measured data should be documented in the inspection record.
The difference must not be higher then 5 mm when compared to specified lengths.
Final check
The glider sticker and check sticker must be inspected for readability and correctness.
The check must be documented with date, signature and stamp on the canopy and in the
user manual.
TREATING NATURE WITH RESPECT
Finally the call to practise our sport with respect for nature and wildlife! Don't walk outside
marked routes, don't leave any waste, don't make needless noise and respect the
sensitive biological balance in the mountain eco system: especially in the take off area!

31
TEST FLIGHT CERTIFICATE
Paraglider type: EDEN 5 –
Serial number: . . . . . . . .
Test flown on: _________________________________
by
MAC PARA TECHNOLOGY
Confirmation by dealer: _________________________________
Technical data
High Performance
Eden
5
Eden
5
Eden
5
Eden
5
Eden
5
Eden
5
Size 22 (XS) 24 (S) 26 (M) 28 (L) 30 (XL) 33 (XXL)
Zoom flat [%] 87 92 95,7 100 104 108
Area flat
[m
2
]
21,78 23,80 25,75 28,12 30,41 33,41
Area projected
[m
2
]
19,45 21,25 23,00 25,11 27,16 29,83
Span flat [m] 11,0 4 11,55 12,01 12,55 13,05 13,68
Span projected [m] 9,28 9,71 10,10 10,55 10,97 11,5
Aspect ratio flat - 5,6 5,6 5,6 5,6 5,6 5,6
Root cord [m]2,422,532,632,752,863,00
Cells - 52 52 52 52 52 52
Weight [kg] 4,7 4,95 5,2 5,6 6,0 6,4
Weight range-free flying* [kg] 60-75 6 7-85 75-95 85-110 105-130 115-145
Weight range-free flying* [lbs ]
132-165 148-187 165-209 187-243 231-287 254-320
Min.speed [km/h] 23-25 23-25 23-25 23-25 23-25 23-25
Max.speed [km/h] 36-38 36-38 36-38 36-38 36-38 36-38
Top speed (accelerator) [km/h] 48-50 48-50 48-50 48-50 48-50 48-50
Glide ratio - 9,7 9,7 9,7 9,7 9,7 9,7
Min. Sink rate [m/s] 1,05 1,05 1,05 1,05 1,05 1,05
Weight range - PPG** [kg] 77-100 89-113 100-127 113-147 140-180 153-193
Weight range - PPG** [lbs]
170-220 196-249 220-280 249-324 309-397 337-425
* free flying pilot equipped = weight naked + cca. 20 Kg (44 lbs)
** powered pilot equipped = weight naked + cca. 35 - 40 Kg (77-88 lbs)
–