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3 modelos etiquetados

#case

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Vista de Insertos y tapa baja para estuche Whoopster de 65 mm

Inserts and low lid for 65 mm Whoopster case

Modification of the 65 mm Whoopster case with a lower lid to transport the equipment without the charger. The author includes removable compartments and handles to access the contents without tipping over the box. This is an adaptation of an existing case, not a confirmation that any 65 mm micro-drone will fit. Preparation, compatibility, and printing Check which elements the file contains and which case body you need to keep. Before printing the entire modification, check the clearance of the lid, drawers, and handles. The reduced lid foregoes the charger space according to the source. No printing parameters are documented; avoid trying to fix a stuck drawer by forcing its walls.

Technology
Sin probar
material
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Difficulty
Sin especificar
Vista de Cubierta frontal personalizable para emisora RC

Customizable front cover for RC transmitter

This cover serves as a front housing to develop a radio control handle or a custom electronic panel. The piece combines in a single casing an upper rectangular window, two circular openings for control mechanisms, and several small apertures distributed across the front. The deep perimeter edge provides volume for subsequent assembly, but the package does not include a back to close the assembly. The geometry measures approximately 230.10 × 42.91 × 207 mm and should be understood as a design base, not as a universal housing. The download includes a printable STL and an editable STEP of the same design. It does not include a screen, joysticks, antenna, switches, battery, electronic board, connectors, screws, cables, or a back cover. These elements, if shown in a usage scene, are generic and external references. The openings allow for planning a control layout, but their diameter, position, and depth do not demonstrate compatibility with commercial components. The STEP source facilitates modifying the part; after any change, a new mesh must be generated and geometric and dimensional validation must be repeated. The audited STL has 7,118 vertices, 14,396 triangles, and a single closed, manifold component without detected topological defects. The STEP presents a complete ISO-10303-21 structure with a BREP solid and 351 advanced surfaces; surface-to-surface equivalence between both representations has not been demonstrated. The cover is large, so the useful volume, the head travel, and the stability of the orientation must be checked. A wide face can offer support, but the decision must preserve the edges of the windows and avoid trapped supports. As a reasonable starting point: 0.20–0.28 mm layers, four perimeters, and moderate infill, with local reinforcements only where the actual assembly justifies them. Print partial templates of the openings and design closures, ventilation, insulation, and strain relief separately. Possible uses. Build the front of a custom RC transmitter from measured components. Test the ergonomics and spacing of two joystick mechanisms. Test the position of a screen and auxiliary controls on a desktop panel. Modify the STEP source to adapt windows, mountings, and thickness to your own project. Create a non-critical interface mockup for robotics or teleoperation. Preparation and printing. Measure the screen, joysticks, connectors, switches, board, and hardware before modifying or slicing the front. Print partial templates of each opening to adjust diameters, radii, thickness, and clearances with minimal material. Confirm that the 230.10 × 42.91 × 207 mm box fits within the build volume and does not invade the head travel. Compare orientations on wide faces, protecting the edge of the window and the two circular openings. Start with 0.20–0.28 mm layers and four perimeters; adjust the infill based on the achieved stiffness rather than a universal figure. Place supports only where they can be removed without closing openings, damaging housings, or reducing the wall section. Use PETG if toughness is needed or ASA for an evaluated thermal environment; PLA is suitable for indoor fit prototypes. Assemble first without a battery, check edges, clearances, and retention, and check insulation and cable relief before powering the electronics. Limits and checks. Does not include back, screen, joysticks, electronics, antenna, battery, hardware, connectors, or wiring. There is no verified compatibility with a specific transmitter, board, screen, or control mechanism. The STEP is kept as an editable source, but it has not been fully compared to the STL via a CAD kernel. No testing has been performed for load, impact, drop, vibration, temperature, flammability, or environmental protection. The data sheet does not certify electrical insulation, radio frequency, ergonomics, autonomy, or battery safety. It must not be used for critical control until design, assembly, functional testing, and safe stop measures are completed. The local file preserves exclusively the supported 3D files and a new proprietary cover. The image is a photorealistic editorial interpretation based on the audited geometry: it shows the context of use but does not replace the measurements, the slicer preview, a physical fit test, or the instructions of the associated equipment. Before manufacturing, it is advisable to check scale, units, orientation, supports, path, material, and environment. After printing, remove strings and burrs, check for cracks or weak layers, and discard any copy that does not support, fit, or function stably.

Technology
Sin probar
material
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Difficulty
Sin especificar
Vista de Estuche sencillo para Beacon y joysticks HOVERAir X1 Pro/ProMax

Simple case for Beacon and joysticks for HOVERAir X1 Pro/ProMax

Identified carrying case or holder for the Beacon and the joysticks of the HOVERAir X1 Pro/ProMax. The source aims to keep these accessories together and facilitate their preparation. It does not document protection against impacts, water, or dust, nor does it claim to be suitable for transporting the complete drone. Preparation, compatibility, and printing Check which accessories fit into the housings and check their removal before printing. The fit must hold them without pressing buttons or connectors. No material, layer, or infill is documented. An initial test of the cavities will allow checking tolerances without assuming that all revisions of the accessories share the same dimensions.

Technology
Sin probar
material
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Difficulty
Sin especificar