PLANEPRINT RISE nano Programming manual

You can find the STL data
at www.planeprint.com
NOTE: Slicing only
works with CURA!
PRINTING & ASSEMBLING MANUAL
PRINTING & ASSEMBLING MANUAL
PRINTING & ASSEMBLING MANUAL
PRINTING & ASSEMBLING MANUAL

RISE NANO 2
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
PLALW-PLA TPU CARBON STEEL

RISE NANO 3
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
RC Components
ENGINE AXI 2203/40 VPP or comparable indoor-20 grams-motors.
31 mm
or comparable indoor-20 grams-motors.
PROP Aeronaut folding prop 6x3 or comparable, also possible 6x4, 7x3, 7x4
BEC-CONTROLLER 15 A (one matching the motor)
RECEIVER 3 Channel
BATTERY 2S Lipo, 350 MaH (ideal weight 24 to 27 grams)
SERVOS • Stemedu Micro 3.7g Servo GH-S37D
• PLANET-HOBBY ECO PLUS
• PICCO 8 DIGITAL SERVO
• Diamond D47
• Hitec HS 40 Eco Servo 4,8g
or similar in the same size, 2 pieces
There are also ready-made indoor drive sets with motor, servos and battery available from many dealers.
max. 22 mm max. 8.5 mm
max. 27 mm
Required accessoires – basic equipment
• LW-PLA (cannot be replaced by PLA!), ~100 grams
• PLA or Tough PLA, ~20 grams
• TPU A95, ~10 grams
• CA super glue (liquid and liquid medium)
• CA activator
• Steel wire Ø0.8*1000mm, 1 piece
• Carbon rod Ø4*1000mm, 1 piece
• Rod connection small, 2 pieces
• Neodym-Super-Magnet 5x5x5mm, 4 pieces
Tools
Cutter knife, Drill, small Philips screwdriver, Sandpaper,
Metal saw, Needle nose pliers
Rod connection hole 1 mm

RISE NANO
4
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Printing the parts – Printing profiles
For the new PROFILE P5_Gyroid it is essential to use Cura Version 5 or later, It will work with
older versions, but the weight of the parts will be higher and the printing time longer.
This manual is constantly being improved and supplemented, we recommend downloading
the latest version from our website before building.
The development of a complex, airworthy RC flight model to express on any stan-
dard 3D printer is a very complex and extensive process. Therefore, we appeal to
your fairness not to forward the STL data you have acquired to third parties.
Thank you for your understanding and have fun with your PLANEPRINT MODEL!
Important for the
1-wall-print (P3, P5)!
In order to print airfoils of the lowest possi-
ble weight with high stability, it is necessa-
ry to print with only one wall line (Nozzle 0.4
mm). Decisive here is the adhesion between
the layers! To achieve this, you must print at
a much higher temperature than normal. As
a guideline, 230° C is a good starting point.
The parts-cooling fan should be set to 0% or
a maximum of 20%. Since not every printer
works the same, it may be necessary to make
small adjustments to these settings.
For slicing all Planeprint
models, these profiles have
to be created in Cura:
PROFILE P1_Fullbody
PROFILE P2_Hollowbody
PROFILE P3_Surface
PROFILE P4_Flex
PROFILE P5_Gyroid
You can find the description at
www.planeprint.com/print
PROFILE P5_Gyroid
It is essential for the necessary stability of the LW parts
printed with PROFILE_5 are as stable as possible. Please
use a test part to check the strength by fracture tests. It must
not break along the layer lines under any circumstances! Also
note that the printing temperature for LW-PLA is as low as
possible to obtain a wall thickness of 0.4 to 0.6 mm at a flow
of 60 to 70 % (depending on brand).
Caution: at too high temperatures, LW-PLA becomes brittle
and breaks more easily.

P1_Parts_Rn.stl
MATERIAL PLA, Weight: ~ 3 g
ADDITIONAL SETTINGS
None required
PROFILE P1_Fullbody PLA or Tough PLA
The following parts must be sliced with the PROFILE P1_Fullbody.
Please note the additional settings for the individual parts!
P1_Motormount-XXX_Rn.stl
MATERIAL PLA, Weight: ~ 1 g
ADDITIONAL SETTINGS
None required

RISE NANO 6
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P1_Spinner folding prop Xmm_Rn.stl
MATERIAL PLA, Weight: ~ 1 g
ADDITIONAL SETTINGS
None required
PROFILE P1_Fullbody PLA or Tough PLA
The following parts must be sliced with the PROFILE P1_Fullbody.
Please note the additional settings for the individual parts!
P1_Protector_Rn.stl
MATERIAL PLA, Weight: ~ 3 g
ADDITIONAL SETTINGS
None required

RISE NANO 7
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
PROFILE P4_Flex TPU A95
The following parts must be sliced with the PROFILE P4_Flex.
Please note the additional settings for the individual parts!
P4_Hinges_Rn.stl
MATERIAL TPU ~ A95, Weight: ~ 1 g
ADDITIONAL SETTINGS
None required

RISE NANO 8
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_Canopy_Rn.stl
MATERIAL LW-PLA, ~ 2 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
P5_Elevator-L_Rn.stl and
P5_Elevator-R_Rn.stl
MATERIAL LW-PLA, ~ 2 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
PROFILE P5_Gyroid Light-Weight LW-PLA!
The following parts must be sliced with the PROFILE P5_Gyroid. Please note the additional settings
for the individual parts! It is essential to print these parts with LW-PLA!
Basic settings for LW-PLA: Please follow the instructions in our WINGTEST AND CALIBRATION TOOL
on our website for correct adjustment!

RISE NANO 9
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_Fuselage 1_Rn.stl
MATERIAL LW-PLA, ~ 6 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
P5_Fuselage 2_Rn.stl
MATERIAL LW-PLA, ~ 7 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
PROFILE P5_Gyroid Light-Weight LW-PLA!
The following parts must be sliced with the PROFILE P5_Gyroid. Please note the additional settings
for the individual parts! It is essential to print these parts with LW-PLA!
Basic settings for LW-PLA: Please follow the instructions in our WINGTEST AND CALIBRATION TOOL
on our website for correct adjustment!

RISE NANO 10
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_V-Tail_Rn.stl
MATERIAL LW-PLA, ~ 8 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
• Z Seam Position: back left
P5_Wing 1-L_Rn.stl and
P5_Wing 1-R_Rn.stl
MATERIAL LW-PLA, ~ 20 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
PROFILE P5_Gyroid Light-Weight LW-PLA!
The following parts must be sliced with the PROFILE P5_Gyroid. Please note the additional settings
for the individual parts! It is essential to print these parts with LW-PLA!
Basic settings for LW-PLA: Please follow the instructions in our WINGTEST AND CALIBRATION TOOL
on our website for correct adjustment!

RISE NANO 11
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_Wing 2-L_Rn.stl and
P5_Wing 2-R_Rn.stl
MATERIAL LW-PLA, ~ 19 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
P5_Wing 3-L_Rn.stl and
P5_Wing 3-R_Rn.stl
MATERIAL LW-PLA, ~ 8 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
PROFILE P5_Gyroid Light-Weight LW-PLA!
The following parts must be sliced with the PROFILE P5_Gyroid. Please note the additional settings
for the individual parts! It is essential to print these parts with LW-PLA!
Basic settings for LW-PLA: Please follow the instructions in our WINGTEST AND CALIBRATION TOOL
on our website for correct adjustment!

RISE NANO 12
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_Interconnects_Rn.stl
MATERIAL LW-PLA, ~ 1 g*
*Weighed (approximate guideline)
ADDITIONAL SETTINGS
None required
PROFILE P5_Gyroid Light-Weight LW-PLA!
The following parts must be sliced with the PROFILE P5_Gyroid. Please note the additional settings
for the individual parts! It is essential to print these parts with LW-PLA!
Basic settings for LW-PLA: Please follow the instructions in our WINGTEST AND CALIBRATION TOOL
on our website for correct adjustment!

RISE NANO
13
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Basic Information:
Gluing the parts printed with PROFILE P5
STEP 1 As a first step, it is important to roughen and smooth the adhesive surfaces with sandpaper.
STEP 2 Insert the interconnects into the slots provided on one side.
STEP 3 Apply a lot of glue to the side with the interconnects. It is important that there is glue everywhere,
especially on the outside and inside of the wall surfaces, in order to achieve a perfect connection.
The interconnects only serve to align the parts to each other. It is better not to apply glue here,
otherwise it can happen that the glue suddenly hardens while the parts are being put together and
stops the process.
Use medium viscosity CA glue, thinner glue would run down the parts too easily.
After assembly, align the two parts exactly and wipe off the excess CA glue from the surface
with a cloth. Now spray with activator spray along the gluing surface and carefully press the parts
together.
STEP 4 Clean the glued areas slightly with a sharp-bladed cutter.

RISE NANO 14
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
medium l.
P5_Wing 1-L_Rn.stl
P5_Wing 2-L_Rn.stl
P5_Wing 3-L_Rn.stl
Wings assembly
Use the carbon rod for alignment but make sure that it is not glued!
Carbon rod Ø4*580mm
(Do not glue!)
P5_Interconnects_Rn.stl

RISE NANO 15
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Fuselage assembly
medium l.
P5_Fuselage 2_Rn.stl
P5_Fuselage 1_Rn.stl
P1_Parts_Rn.stl
Remove support.
Please be careful with the knife!
P5_Interconnects_Rn.stl
Carbon rod Ø4*340mm
Carbon rod Ø4*340mm
P1_Protector_Rn.stl
P1_Protector_Rn.stl
Use the carbon rods for
alignment but make sure
they are not glued along!
Carbon rod Ø4*80mm
(Do not glue!)
P1_Parts_Rn.stl

RISE NANO 16
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_Canopy_Rn.stl
Canopy assembly
Steel wire Ø0.8*60mm
STEP1 STEP2

RISE NANO 17
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Motor mount
P1_Motormount-31mm_Rn.stl
P1_Spinner folding prop 6mm_Rn.stl
Tape the motor mount well to the fuselage and screw the motor on. Mount the folding
prop blades to the spinner, making sure they move easily but the screw is tight. Choose
the right width (6 or 8 mm) for your folding prop!
Then attach them with the rubber ring that comes with the motor (The spinner must be
very tight!). Normally the spinner fits exactly on a 5.5 mm shaft. If your motor is different,
this spinner must not be mounted. The prop must run absolutely accurate and
balanced! Always keep it away from you (and other people) when starting the motor!

RISE NANO 18
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
P5_V-Tail_Rn.stl
P5_Elevator-R_Rn.stl
P5_Elevator-L_Rn.stl
P1_Parts_Rn.stl
Tailplane assembly
Hinges: Put V-Tail, hinges and an elevator together and add a drop
of thin! CA glue on each hinge (photo). Due to the capillary effect,
the glue runs into the gaps. The distance between the V-tail and the
elevator must be large enough so that the elevator can be rotated by
about 45° (about 1.5 mm gap in neutral position).
Important: There must not be too much glue on the hinge and
the elevator must move easily.
P4_Hinges_Rn.stl
thin liquid

RISE NANO
19
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Tailplane assembly
Insert the carbon rod for the wing into the fuselage and place it upside
down on two supports of the same height so that it is absolutely parallel
to the ground (in this case, caps from activator spray cans). Then place
the V-tail on the rear carbon rod. When the V-tail rests on the table, it is
automatically in the correct position relative to the fuselage. Then put
thin CA glue in the gap of the carbon rod.
thin liquid

RISE NANO 20
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
RISE NANO
20
PRINTING & ASSEMBLING MANUAL
© PLANEPRINT
Linkage
Clip the linkage clamps to the Carbon rod as shown.
The rear one comes directly to the V-tail, the others have
a distance of 65 mm each. Align them exactly downwards
and glue them without putting glue in the small holes.
Bend the two steel wires by 90° and guide them from
behind into the clamps and into the fuselage.
Make sure that the wire moves very smoothly.
The servos must sit as low as possible in the fuselage.
There are two different servo holders in different heights,
suitable for different servos.
P1_Parts_Rn.stl
65 mm
Steel wire Ø0.8*450mm
(better a little longer, it can then
be shortened at the front later).
Servo mount
P1_Parts_Rn.stl
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