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the use of high-tech strength materials make it possible to obtain a 
significant reduction of the combined  line lengths, hence reducing the 
amount of parasitic drag  and the weight of the glider for better efficiency.

IKS.- The IKS (Interlock System) is an ultra-lightweight, high strength 
connecting system that aims to complement the light product range 
and replace the current systems based on the use of the maillons and/
or carabiners. This new system is based on a secure connection using a 
simple Dyneema loop provided with a fixing and locking system, ensuring 
the complete efficiency and safety of the connection, and allowing the 
equipment to be ready at all times, either with or without load. 

The IKS1000 is designed and dimensioned as a connection system 
between the risers and the lines. It has a breaking load of 1055 kg, which 
greatly exceeds that of the classic 3mm (550 kg) maillon, but with a much 
less weight. This feature makes it a key element in the entire range of 
P-Series (lightweight) wings, which are delivered with this technology as 
standard.

Being 25 times lighter (0.2 g), this IKS model has a load bearing braking 
point of 1055 kg compared to the 800 kg of the classic maillon. 

Please note: the IKS1000 kg system was not designed nor certified 
to connect the risers to the harness and/or a rescue parachute to the 
harness. For that specific function, Niviuk developed the IKS3000. For 
more information visit 

niviuk.com

 

1. Locate the elastic sleeve’s inner small diameter tube. 

2. Push the IKS line through it. 

3. Push now the IKS line through the lines and the riser. The reinforced 
end with the black tab should be located on the side of the riser. 

4. Push the upper looped end downward through the elastic sleeve (not 
the small diameter tube) and then through the reinforced loop end where 
the black tab is located. 

5. Continue with the procedure in a counter-clockwise motion by pushing 
the looped end through the riser. 

6. Push the looped end first upward through the elastic sleeve (not the 
small diameter tube) and through the lines again following the same 
pattern. 

7. Push the looped end downward through the elastic sleeve (not the 
small diameter tube) first, and then through the loop with the reinforced 
end (black tab) once more. 

8. Push the reinforced end loop (black tab) through the looped end to 
secure them together. 

9. Pull tight to secure the knot and connection. 

Summary of Contents for HOOK 4 P Series

Page 1: ...USER MANUAL HOOK 4 P...

Page 2: ...nature who want to decide when how and where they want to progress You are free to choose your starting point and progression route We are confident that you will enjoy flying this wing and will soon...

Page 3: ...LANDING 10 3 7 FOLDING INSTRUCTIONS 10 4 IN FLIGHT 10 4 1 FLYING IN TURBULENCE 10 4 2 POSSIBLE CONFIGURATIONS 10 4 3 USING THE ACCELERATOR 12 4 4 FLYING WITHOUT BRAKE LINES 12 4 5 LINE KNOT S IN FLIG...

Page 4: ...t time you pilot a Niviuk glider just enjoy it 1 4 ASSEMBLY MATERIALS The HOOK 4 P has all the technological innovations used on other Niviuk gliders Furthermore it is full of small details like the S...

Page 5: ...g this IKS model has a load bearing braking point of 1055 kg compared to the 800 kg of the classic maillon Please note the IKS1000 kg system was not designed nor certified to connect the risers to the...

Page 6: ...fabric manufacturer Niviuk gliders are made of premium materials Information about the various materials used to manufacture the wing can be reviewed on the final pages of this manual 1 5 ELEMENTS CO...

Page 7: ...bar is pushed using the feet the wing accelerates The speed can be regulated by varying the pressure on the bar Once the pressure on the bar is released the speed system returns to the neutral setting...

Page 8: ...the knots are located tightly in the riser connections The system or procedure for connecting the kite knot is exactly the same as the Brummel hooks and can be used in other systems or connection ele...

Page 9: ...training hill or obstacle free area We recommend that a qualified instructor is present and supervising the entire procedure 3 2 PREPARATION Repeat the procedures detailed in chapter 2 UNPACKING AND...

Page 10: ...s affecting the harness stability To prevent the collapse from happening pull the toggle corresponding to the affected side of the wing It will increase the incidence of the wing angle of attack If th...

Page 11: ...s default overhead flying location To resume normal flight conditions progressively and symmetrically release the brake line tension to regain air speed When the wing reaches the overhead position the...

Page 12: ...ground speed 4 5 LINE KNOT S IN FLIGHT The best way to avoid knots and tangles is to thoroughly inspect the lines as part of a systematic pre flight check If a knot is spotted during the running phas...

Page 13: ...o a normal flight configuration 5 3 SPIRAL DIVE This is a more effective way to rapidly lose altitude Beware that the wing will experience and be subjected to a tremendous amount of descending and rot...

Page 14: ...no need for compression during the procedure doing so may damage the fabric including the risers and lines 8 CARE AND MAINTENANCE 8 1 MAINTENANCE Careful maintenance of your equipment will ensure con...

Page 15: ...must not use this equipment if you have not been properly trained to use it Do not take advice or accept any informal training from anyone who is not properly qualified as a flight instructor or qual...

Page 16: ...IO 4 4 4 4 FLATTENING 15 15 15 15 CORD MAXIMUM m 2 47 2 58 2 69 2 8 MINIMUM m 0 49 0 52 0 54 0 56 AVERAGE m 1 97 2 06 2 14 2 23 LINES TOTAL METERS m 208 218 227 236 HEIGHT m 6 5 6 8 7 09 7 36 NUMBER 1...

Page 17: ...MANY RIB REINFORCEMENT LTN 0 8 STICK SPORTWARE CO CHINA THREAD SERAFIL 60 AMAN GERMANY SUSPENSION LINES FABRIC CODE SUPPLIER UPPER CASCADES DC 040 LIROS GMHB GERMANY UPPER CASCADES DC 060 LIROS GMHB G...

Page 18: ...18 11 3 RISERS LAYOUT...

Page 19: ...19 11 4 LINE PLAN...

Page 20: ...8 5726 5800 11 5286 5273 5372 12 5184 5188 5246 RISERS LENGTH m m A B B C 470 470 470 470 STANDARD 340 360 380 470 ACCELERATED LINES HEIGHT m m A B C D br 1 6305 6204 6307 6416 7131 2 6241 6142 6218 6...

Page 21: ...5 6316 6386 11 5824 5810 5918 12 5711 5717 5779 RISERS LENGTH m m A B B C 470 470 470 470 STANDARD 340 360 380 470 ACCELERATED LINES HEIGHT m m A B C D br 1 6873 6770 6886 6999 7699 2 6806 6703 6790 6...

Page 22: ...signature GB REV 01 07 06 2016 ISO 71 9 10 Page 1 of 1 In accordance with standards EN 926 2 2013 EN 926 1 2015 LTF 91 09 Class B PG_1097 2016 Date of issue DMY 16 05 2017 Manufacturer Niviuk Gliders...

Page 23: ...ature GB REV 01 07 06 2016 ISO 71 9 10 Page 1 of 1 In accordance with standards EN 926 2 2013 EN 926 1 2015 LTF 91 09 Class B PG_1099 2016 Date of issue DMY 16 05 2017 Manufacturer Niviuk Gliders Air...

Page 24: ...The importance of small details niviuk com...

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